Category Archives: Biochemistry

Researchers discover new function of protein tBID – News-Medical.net

The protein tBID can trigger programmed cell death (apoptosis) by inducing damage in the energy suppliers of the cells, the mitochondria. Apoptosis is essential for maintaining tissue balance. In addition, apoptosis plays a critical role as a defense mechanism and in the elimination of damaged or redundant cells in our bodies. Impaired apoptosis has been linked to many human diseases, from cancer and autoimmune diseases to neurological disorders and heart failure. The discovery by Professor Dr Ana Garcia-Saez and her collaborators and colleagues at the University of Cologne's CECAD Cluster of Excellence for Aging Research that tBID, previously thought to be a signal transducer, can also execute apoptosis could open up new therapies to treat malignant cells such as cancer cells. The article 'tBID can act as a BAX-like effector of apoptosis' has now been published in The EMBO Journal.

The protein tBID belongs to the family of BCL-2 proteins, which are fundamentally important for the self-determined apoptosis of cells and tissue balance. Because of the overlapping functions of this protein family, studying them individually is particularly challenging. Garcia-Saez and her team set out to characterize the roles of the various family members. Using cell lines lacking much of the BCL-2 proteins, they were able to determine the function of tBID. In addition, state-of-the-art microscopy (confocal, STED and electron microscopy) was used to analyze in detail the effects of tBID at the mitochondrial membrane in the cell. Activating tBID was also able to combat cellular infection with the bacterium Shigella flexneri and kill blood cancer cells (leukemia). In addition, the researchers showed that apoptosis triggered by tBID is independent of other known apoptosis induction pathways.

'For us, it was amazing to see that proteins which are quite well known still surprise us after four decades. The realization that a protein that was considered a signal transducer for twenty years has an effector function under certain conditions is mind-blowing,' Garcia-Saez remarked. This newly discovered function of tBID could in the future become useful in medicine.

For example, activating tBID could induce apoptosis when other known apoptosis signaling pathways fail or lack the proteins that carry it out. Activating tBID could also help with Shigella infections, where the proteins that usually induce apoptosis are not activated."

Professor Dr Ana Garcia-Saez, University of Cologne's CECAD Cluster of Excellence for Aging Research

The work for this study started at the IFIB (Interfaculty Institute of Biochemistry) in Tbingen and was further developed at the CECAD Research Center, Institute for Genetics, in Garcia-Saez's core laboratory, together with the laboratories of Professor Dr Hamid Kashkar und Dr Lukas Frenzel as well as external collaborators from the University of Nebraska and the laboratory of Andreas Villunger (University of Innsbruck and CeMM Research Center, Austria).

Source:

Journal reference:

Flores-Romero, H., et al. (2021) tBID can act as a BAX-like effector of apoptosis. The EMBO Journal. doi.org/10.15252/embj.2021108690.

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Researchers discover new function of protein tBID - News-Medical.net

Market Assessment of Itaconic Acid Industry: Growth Drivers by Top Players like Kehai Biochemistry, Guoguang Biochemistry, Huaming Biochemistry, Alpha…

content

The report provides an in-depth analysis of the Global Market of Itaconic Acid. It presents the latest data of the market value, consumption, domestic production, exports and imports, and price dynamics. The Itaconic Acid market report shows the sales data, allowing you to identify the key drivers and restraints. You can find here a strategic analysis of key factors influencing the market. Forecasts illustrate how the market will be transformed in the medium term. Profiles of the leading players like Kehai Biochemistry, Guoguang Biochemistry, Huaming Biochemistry, Alpha Chemika, Zhongshun Science & Technology,, etc. are also included.

Data Coverage in Itaconic Acid Market Report are:

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Segmentation Analysis:

Itaconic Acid market is split by Type and by Application. For the period 2016-2026, the growth among segments provides accurate calculations and forecasts for sales by Type and by Application in terms of volume and value. This analysis can help you expand your business by targeting qualified niche markets.

Market Segmentation by Type:

Market Segmentation by Applications:

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The report offers valuable insight into the Itaconic Acid market progress and approaches related to the Itaconic Acid market with an analysis of each region. The report goes on to talk about the dominant aspects of the market and examine each segment.

The Itaconic Acid market report gives CAGR value, Industry Chains, Upstream, Geography, End-user, Application, Competitor analysis, SWOT Analysis, Sales, Revenue, Price, Gross Margin, Market Share, Import-Export, Trends, and Forecast. The report also gives insight into the entry and exit barriers of the industry.

Global Itaconic Acid Market Report Scope:

The report offers a complete company profiling of leading players competing in the global Itaconic Acid market with a high focus on the share, gross margin, net profit, sales, product portfolio, new applications, recent developments, and several other factors. It also throws light on the vendor landscape to help players become aware of future competitive changes in the global Itaconic Acid market.

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Market Assessment of Itaconic Acid Industry: Growth Drivers by Top Players like Kehai Biochemistry, Guoguang Biochemistry, Huaming Biochemistry, Alpha...

What the First Two Laws of Thermodynamics Are and Why They Matter – Interesting Engineering

Thermodynamics is the branch of physics that studies the relationship between heat and other forms of energy. It's especially focused on energy transfer and conversion and has a lot to contribute to the fields of chemical and mechanical engineering, physical chemistry, and biochemistry.

The term thermodynamics was likely first coined by mathematical physicist William Thompson, also known as Lord Kelvin, in his paper On the Dynamical Theory of Heat (1854).

Modern thermodynamics is based on four laws:

In this article, well be focusing on the first and second laws of thermodynamics.

The first law of thermodynamics is also known as the law of conservation of energy. Given that the energy cant be created or destroyed, the total energy of an isolated system will always be constant because, and can only be converted into another form of energy or transferred somewhere else in the system.

The formula of the first law of thermodynamics is U = Q W, where U is the change in internal energy U of the system, Q is the net heat transferred into the system (the sum of all the heat transfers of the system), and W is the net work done by the system (the sum of all work performed on or by the system).

The second law introduces the concept of entropy in thermodynamics. Entropy is a physical property that measures the amount of thermal energy in a system that is unavailable for doing useful work. The energy that cant do work turns into heat, and the heat increases the molecular disorder of the system. Entropy can also be thought of as a measurement of that disorder.

The second law of thermodynamics states that entropy is always increasing. This is because, in any isolated system, there is always a certain amount of energy that is not available to do work. Consequently, heat will always be produced and this naturally increases the disorder (or entropy) of the system.

The increasing entropy (S) equates to the heat transfer (Q) divided by the temperature (T). This is why the second law of thermodynamics can be expressed with the formula S =Q / T.

As stated above, the first law of thermodynamics closely relates to the law of conservation of energy, which was first expressed by Julius Robert Mayer in 1842.Mayer realized that a chemical reaction produces heat and work and that work can then produce a definite amount of heat. Although this is essentially a statement of the conservation of energy, Mayer was not part of the scientific establishment, and his work was ignored for some years.

Instead, German physicist Rudolf Clausius, Irish mathematician William Thomson (Lord Kelvin), and Scottish mechanical engineer William Rankine would have a greater role in developing the science of thermodynamics and adapting the conservation of energy to thermodynamic processes, starting in around 1850.

The second law of thermodynamics has its origin in the work of French mechanical engineerNicolas Lonard Sadi Carnot, who studied steam engines. He is often considered the father of thermodynamics due to his book Reflections on the Motive Power of Fire (1824),which presented a theoretical discussion of the perfect (but unattainable) heat engine Motive power is what wed call work nowadays, and fire refers to heat.

In this book, Sadi Carnot wrote an early statement of the second law of thermodynamics, which was reformulated by Rudolf Clausius more than forty years later. Other scientists also contributed to defining the law: the aforementioned Lord Kelvin (1851), German mathematician Max Planck (1897), and Greek mathematician Constantin Carathodory (1909).

According to thermal science researcher Jayaraman Srinivasan, the discovery of the first and second laws of thermodynamics was revolutionary in the physics of the 19th Century.

The third law of thermodynamics was developed by German chemist Walther Nernst at the beginning of the 20th century. Nernst demonstrated that the maximum work obtainable from a process could be calculated from the heat evolved at temperatures close to absolute zero. The zeroth law had been studied since the 1870s but was defined as a separate law during the 1900s.

The first and second laws of thermodynamics are independent of each other because the law of entropy is not directly derived or deduced from the law of conservation of energy or vice versa.

But at the same time, the two laws complement each other because, while the first law of thermodynamics includes the transfer or transformation of energy, the second law of thermodynamics talks about the directionality of physical changes how isolated or closed systems move from lower to higher entropy due to the energy that cant be used for work.

In other words, the second law of thermodynamics takes into account the fact that the energy transformation described in the first law of thermodynamics always releases some extra, useless energy that cant be converted into work.

The laws of physics explain how natural phenomena and machines work. These explanations not only satisfy our curiosity but also allow us to predict phenomena. In fact, they are instrumental in allowing us to build functional machinery.

As a branch of physics, thermodynamics is no exception for this. If you know how much energy in a system can be used for work, and how much will turn into heat (and theres always a certain amount of useless energy in a system), you can predict how much heat a given machine will produce under different conditions. Then, you can decide what to do with that heat.

Heat is a form of energy and if you know that energy cant be destroyed but only transformed, you could find a way to turn that thermal energy into mechanical energy which is what, in fact, heat engines do.

Given this basic application of the first and second laws of thermodynamics, you can probably imagine how useful they can be in the engineering field. But they can also have applications in chemistry, cosmology (entropy predicts the eventual heat death of the universe), atmospheric sciences, biology (plants convert radiant energy into chemical energy during photosynthesis), and many other fields. Hence the importance of thermodynamics

To break the first law of thermodynamics, wed have to create a "perpetual motion" machine that worked continuously without the input of any kind of power. That doesnt exist yet. All the machines that we know receive energy from a source (thermal, mechanical, electrical, chemical, etc.) and transform it into another form of energy. For example, steam engines convert thermal energy into mechanical energy.

To break the first law of thermodynamics, life itself would have to be reimagined. Living things also exist in concordance with the law of conservation of energy. Plants use photosynthesis to make food (chemical energy for their use) and animals and humans eat to survive.

Eating is basically extracting energy from food and converting it into chemical energy (stored as glucose) which is what actually gives us energy. We turn that chemical energy into mechanical energy when we move, and into thermal energy when we regulate our bodys temperature, etc.

But things may be a bit different in the quantum world. In 2002, chemical physicists of the Australian National University in Canberra demonstrated that the second law of thermodynamics can be briefly violated at the atomic scale. The scientists put latex beads in water and trapped them with a precise laser beam. Regularly measuring the movement of the beads and the entropy of the system, they observed that the change in entropy was negative over time intervals of a few tenths of a second.

More recently, researchers, including some working on Googles quantum processor Sycamore, created "time crystals", an out of equilibrium phase of matter cycling indefinitely between two energy states without losing any energy to the environment. These nanoparticles never reach thermal equilibrium. They form a quantum system that does not appear to increase its entropy which totally violates the second law of thermodynamics.

This is a real-life demonstration of Maxwell's demon, a thought experiment to break the second law of thermodynamics.

Proposed by Scottish mathematician James Clerk Maxwell in 1867, the experiment consisted of putting a demon in the middle of two chambers of gas. The demon controlled a massless door that allowed the chambers to exchange gas molecules. But given that the demon opened and closed the door so quickly, only fast-moving molecules passed through in one direction, and only slow-moving molecules passed through in the other. This way, one chamber heated up and the other cooled down, diminishing the total entropy of the two gases without involving work.

Although we still dont know exactly how to use time crystals, it is already considered a revolutionary discovery in condensed matter physics. Time crystals could, at the very least, significantly improve quantum computing technology.

But theres also something about the concept of perpetual motion without using any energy that unavoidably leads futuristic minds to imagine perpetual motion quantum devices which wont require any additional input of energy such as an unplugged refrigerator that is still able to cool your food down; or more science-fictiony, a supercomputer sustaining the simulation we could be living in.

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What the First Two Laws of Thermodynamics Are and Why They Matter - Interesting Engineering

Supercomputers joined the fight against antibiotic resistance – EurekAlert

The participating researchers work at the Ruhr-Universitt Bochum (RUB), the University of Duisburg-Essen (UDE) in Germany, the University of Portsmouth, UK, as well as at the University of Queensland in Australia and the Weizmann Institute in Israel.

Development of new antibiotics difficult

Developing a new antibiotic is particularly difficult and very few new classes of antibiotics have been developed since the 1960s. In the current study, the researchers follow another approach. They do not develop a completely new type, but start from an already existing antibiotic, which they then modify. To do this, they used a strategy in which they simulated computationally several aspects of the candidates. Among other things, how soluble the antibiotic is, how effectively it penetrates the bacterial membrane and how efficiently it blocks the pathogens' protein production are important for its effectiveness. "The computational evaluation of whether a chemical compound will be active before it is actually synthesised avoids chemical waste." explains Professor Frank Schulz from RESOLV at RUB.

Head-to-head

The past has shown that often not much time passes before resistance to a new antibiotic emerges. Thus, it is to be expected that the bacteria will develop counterstrategies against the researchers' counterstrategies and become resistant to the new antibiotic variant. "Our hope with this study is to show that the resistance mechanisms of bacteria can be addressed in a systematic way with computational strategies that help to make the development of new antibiotic derivatives faster and more affordable" explains Professor Elsa Sanchez-Garcia, head of the Computational Biochemistry group at the UDE and Principal Investigator of RESOLV. "In this way, science can continuously fight back with the computer-assisted development of new antibiotics."

Promising candidate

The results of the supercomputer calculations were tested experimentally. In the study, the research team not only implemented the computer-based simulation approach, but also presented a new promising drug candidate. The drug candidate, which still must be clinically tested, was shown to be up to 56 times more active for the tested bacterial strains than two known antibiotics that are on the World Health Organisation's list of essential medicines. The new antibiotic variant is not only more effective against the target organisms tested, but also shows activity against the three highest ranked bacteria on the World Health Organization's priority list, for which the existing antibiotics tested are not effective. In addition to this success, a library of compounds with antibacterial activity was created, which allows for faster iteration in the development of further antibiotic variants.

Proceedings of the National Academy of Sciences

Rational prioritization strategy allows the design of macrolide derivatives that overcome antibiotic resistance

16-Nov-2021

Disclaimer: AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert system.

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Supercomputers joined the fight against antibiotic resistance - EurekAlert

IDF ranks Pakistan third in prevalence of diabetes – The Nation

KARACHI - Professor Dr Shamim Qureshi from Department of Biochemistry, University of Karachi said that the International Diabetes Federation (IDF) has ranked Pakistan as third in the prevalence of diabetes following China and India.

According to the IDF, around 33 million people in the country are living with diabetes. These views were expressed by Professor Dr Shamim, while addressing a seminar entitled Access to Diabetes Care here on Wednesday.

The department of biochemistry in collaboration with the University of Karachi Alumni Association (UKAA) Baltimore, Washington, USA organized a poster competition and seminar in connection with World Diabetes Day.

Overall, more than 537 million people are suffering from diabetes across the globe. During the Covid-19 lockdown, we have seen an increase in the prevalence of type-II diabetes around the world as well as in Pakistan as the pandemic has restricted physical activities and obesity was seen on the raise during the pandemic duration, she informed.

She informed the audience that this is very alarming that the country has been witnessing so many people with diabetes and still not taking it seriously.

Dr Abbasi highlighted the significance of standardization of health care establishments and their services in his talk. He said that the Second National Diabetic survey revealed the prevalence of diabetes is 26.19 percent among people over 20 years of age.

He mentioned that it means that every fourth person is diabetic in the country. He stated that health facilities are insufficient and diabetes supplies are not regular. He emphasized structured training of health care providers to cope with the huge burden of diabetes at one end and ensuring uninterrupted affordable diabetes supply at the other. He reiterated that an all-out approach with the right efforts is required on a priority basis.

Dr Abbasi was of the opinion that policymakers and authorities must give due recognition to the fact that more prevention and good control of diabetes will reduce the workload of other specialtiesoriented facilities like cardiac hospitals, kidney hospitals, and neurological centers.

Consultant Dietitian Mariam Abde Ali gave a good account of the implications of a balanced diet on the health of diabetes patients. She said that a healthy diet ensures good health. The success of dietary management in diabetes care depends upon flexibility, portion control, and consistency.

She shared that better lifestyle choice on an all-time basis leads to desired results of medical nutrition therapy. She advised that body weight has to be controlled and maintained in order to keep the body mass index (BMI) below 25 kg/m2.

On this occasion, Dr Tooba Lateef conducted self-health assessment activity through a mobile app called NutriApp (T gamma developers) among participants. Through which participants curiously knew their ideal body weight, BMI, waist to hip ratio, recommended calories, and fluid intake.

She mentioned that these are the key factors in planning a healthy diet to be fit. Dr Shershah Syed, the renowned gynecologist and surgeon, and Dr Sadaf Ahmed, Chief Executive Officer of Advanced Education Institute and Research Center were the chief guests of the event. Both of them emphasized the importance of education for youth especially females. They stated that education is the key for getting awareness not only for any disease including diabetes but also it helps to handle any problem which youth face in their social life.

The final year of students of the biochemistry department (Morning and Evening Program) actively participated in the poster competition and made colorful posters regarding awareness of diabetes and its complications, the judgment of this competition was done by Dr Hina Mudassir (Chairperson, Department of Biochemistry, Federal Urdu University of Arts, Science and Technology), Dr Musarrat Jahan (Assistant Professor, Human Nutrition and Dietetics, Ziauddin Medical University) and Dr Arisha Salman (Assistant Professor, Department of Biochemistry, Dow International Medical College).

The competition was won by Ayesha Shahbaz and received the first prize of Rs3000/- cash while a special prize of Rs1500/- cash was received by Maryum Laiquat, Rida Qamar, Hafiza Fatima Zehra, Ayesha Mustaqim, and Bakhtawar.

During the event diabetes camp to assess free blood sugar and bone mass density BMD) was also arranged by Dr Essa Diagnostic Laboratory in the department of biochemistry. Other speakers of the seminar were Dr Muhammad Zafar Iqbal Abbasi from Baqai Institute of Diabetology and Endocrinology, Mariam Abdeali, Consultant Dietitian and Dr Tooba Lateef, Assistant Professor, Department of Biochemistry.

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IDF ranks Pakistan third in prevalence of diabetes - The Nation

Infectious Disease Diagnostic Market Cumulative Impact for COVID-19 Recovery Research Report 2021 | Johnson & Johnson, Roche, Beijing Leadman…

Infectious Disease Diagnostic Market report focused on the comprehensive analysis of current and future prospects of the Infectious Disease Diagnostic industry. This report is a consolidation of primary and secondary research, which provides market size, share, dynamics, and forecast for various segments and sub-segments considering the macro and micro environmental factors. An in-depth analysis of past trends, future trends, demographics, technological advancements, and regulatory requirements for the Infectious Disease Diagnostic market has been done in order to calculate the growth rates for each segment and sub-segments.

The global Infectious Disease Diagnostic Market is expected to grow at a significant CAGR of 6.8% by 2028.

Infectious disease diagnosis is defined as a laboratory test, which is executed with the help of skilled technicians and physicians to diagnose infectious diseases. It is a diagnostic procedure in which the causative organism of an infectious disease is characterized and identified. The sample of urine, blood, mucus, or other body fluids are analyzed to provide information about the causative organism by the use of various diagnosis procedure and instruments.

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Top Key Vendors of this Market are:

Johnson & Johnson, Roche, Beijing Leadman Biochemistry, Grifols, KHB, BD, BioSino Bio-technology, Mindray, Bioekon, Sichuan Maccura Biotechnology, Abbott, Shanghai Kehua Bio-engineering, Siemens, Beijing Strong Biotechnologies, Fusun Pharma, Beckman, BioMerieux, Sysmex, DAAN Gene, Randox, Bio-Rad, DIAN DIAGNOSTICS.

Global Infectious Disease Diagnostic Market Segmentation:

Market Segmentation: By Type

Molecular Diagnostic Technique, Traditional Diagnostic Technique

Market Segmentation: By Application

Hospital, Clinic, Research

Various factors are responsible for the markets growth trajectory, which are studied at length in the report. In addition, the report lists down the restraints that are posing threat to the global Infectious Disease Diagnostic market. This report is a consolidation of primary and secondary research, which provides market size, share, dynamics, and forecast for various segments and sub-segments considering the macro and micro environmental factors. It also gauges the bargaining power of suppliers and buyers, threat from new entrants and product substitute, and the degree of competition prevailing in the market.

The report provides insights on the following pointers:

Market Penetration: Comprehensive information on the product portfolios of the top players in the Infectious Disease Diagnostic market.

Competitive Assessment: In-depth assessment of the market strategies, geographic and business segments of the leading players in the market.

Product Development/Innovation: Detailed insights on the upcoming technologies, R&D activities, and product launches in the market.

Market Development: Comprehensive information about emerging markets. This report analyzes the market for various segments across geographies.

Market Diversification: Exhaustive information about new products, untapped geographies, recent developments, and investments in the Infectious Disease Diagnostic market.

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The influence of the latest government guidelines is also analysed in detail in the report. It studies the Infectious Disease Diagnostic markets trajectory between forecast periods. The cost analysis of the Global Infectious Disease Diagnostic Market has been performed while keeping in view manufacturing expenses, labour cost, and raw materials and their market concentration rate, suppliers, and price trend.

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Table of Contents

Global Infectious Disease Diagnostic Market Research Report 2021 2027

Chapter 1 Infectious Disease Diagnostic Market Overview

Chapter 2 Global Economic Impact on Industry

Chapter 3 Global Market Competition by Manufacturers

Chapter 4 Global Production, Revenue (Value) by Region

Chapter 5 Global Supply (Production), Consumption, Export, Import by Regions

Chapter 6 Global Production, Revenue (Value), Price Trend by Type

Chapter 7 Global Market Analysis by Application

Chapter 8 Manufacturing Cost Analysis

Chapter 9 Industrial Chain, Sourcing Strategy and Downstream Buyers

Chapter 10 Marketing Strategy Analysis, Distributors/Traders

Chapter 11 Market Effect Factors Analysis

Chapter 12 Global Infectious Disease Diagnostic Market Forecast

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Wednesday Nite at the Lab – Isthmus

press release: For the fall semester, WN@TL goes hybrid both with Zoom and with in-person presentations. The zoom registration link is still go.wisc.edu/240r59. Starting September 15, you can also watch a live web stream at biotech.wisc.edu/webcams

On November 17 we get a chance to unravel the knotty problem of how the class of chemicals called lignins help give the cell walls of plants (and especially trees) such remarkable strength in compression, tension, torsion and shear. John Ralph of Biochemistry and the Wisconsin Energy Institute will drill deep intoLignins: Intrigue and Controversies Surrounding a Little-KnownMajor Polymer.

Description:Lignin, comprising some 15-30% of plant biomass, is arguably the 2nd mostabundant terrestrial biopolymer, yet many have never heard of it (although the termlignocellulosics is now becoming more widespread). Its structure and biosynthesis areintriguing on many levels, and the theory of lignification has been delightfully controversial.Well attempt to highlight some of the intrigue with an emphasis on new findings that offerenhanced opportunities for exploiting Natures most abundant source of aromatics.

Bio:John Ralph is a Professor of Biochemistry at the University of WisconsinMadison and,since 2015, a Distinguished Professor of the Tokyo University of Agriculture and Technology.He obtained his B.Sc. (Hons) in Chemistry at Canterbury University, New Zealand, in 1976,and his Ph.D. in Chemistry/Forestry at the University of WisconsinMadison in 1982.

Ralphsgroup is recognized for its work on lignin biosynthesis, including delineation of the pathwaysof monolignol biosynthesis, lignin chemistry, and lignin reactions; particular interest is in thechemical/structural effects of perturbing lignin biosynthesis, and extensions of this work areaimed at redesigning lignins to be more valuable or more readily degraded. The group hasdeveloped synthetic methods for biosynthetic products, precursors, intermediates, molecularmarkers, cell wall model compounds, etc. It has developed methods for solution-state NMR oflignins, including whole-cell-wall methods that require no pre-fractionation of wallcomponents, and chemical/degradative, NMR, and GC-MS combinatorial methods for cellwall cross-linking mechanisms and cell wall structural analysis.

Ralph was elected as a Fellowof the American Association for the Advancement of Science (AAAS) in 2005, is on theEditorial Boards of five international journals, and has been named by the Institute forScientific Information as one of the 10 most cited authors in the plant and animal sciencesevery year since 2007.

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Wednesday Nite at the Lab - Isthmus

Growth Prospects of Citric Acid Anhydrous Market: Business Outlook 2021-2026 by Cargil, ADM, Citrique Belge, Gadot Biochemical Industries,…

The report provides an in-depth analysis of the Global Market of Citric Acid Anhydrous. It presents the latest data of the market value, consumption, domestic production, exports and imports, and price dynamics. The Citric Acid Anhydrous market report shows the sales data, allowing you to identify the key drivers and restraints. You can find here a strategic analysis of key factors influencing the market. Forecasts illustrate how the market will be transformed in the medium term. Profiles of the leading players like Cargil, ADM, Citrique Belge, Gadot Biochemical Industries, Jungbunzlauer, Laiwu Taihe Biochemistry, etc. are also included.

Data Coverage in Citric Acid Anhydrous Market Report are:

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The Key Players Covered in Citric Acid Anhydrous Market Study are:

Segmentation Analysis:

Citric Acid Anhydrous market is split by Type and by Application. For the period 2016-2026, the growth among segments provides accurate calculations and forecasts for sales by Type and by Application in terms of volume and value. This analysis can help you expand your business by targeting qualified niche markets.

Market Segmentation by Type:

Market Segmentation by Applications:

For more Customization in this Report, Connect with us at https://www.affluencemarketreports.com/industry-analysis/request-inquiry/1837740/

The report offers valuable insight into the Citric Acid Anhydrous market progress and approaches related to the Citric Acid Anhydrous market with an analysis of each region. The report goes on to talk about the dominant aspects of the market and examine each segment.

The Citric Acid Anhydrous market report gives CAGR value, Industry Chains, Upstream, Geography, End-user, Application, Competitor analysis, SWOT Analysis, Sales, Revenue, Price, Gross Margin, Market Share, Import-Export, Trends, and Forecast. The report also gives insight into the entry and exit barriers of the industry.

Global Citric Acid Anhydrous Market Report Scope:

The report offers a complete company profiling of leading players competing in the global Citric Acid Anhydrous market with a high focus on the share, gross margin, net profit, sales, product portfolio, new applications, recent developments, and several other factors. It also throws light on the vendor landscape to help players become aware of future competitive changes in the global Citric Acid Anhydrous market.

Target Audience of the Global Citric Acid Anhydrous Market in Market Study:

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Major Points from Table of Contents

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About Affluence:

Affluence Market Reports is the next generation of all your research needs with a strong grapple on the worldwide market for industries, organizations, and governments. Our aim is to deliver exemplary reports that meet the definite needs of clients, which offers an adequate business technique, planning, and competitive landscape for new and existing industries that will develop your business needs.

We provide a premium in-depth statistical approach, a 360-degree market view that includes detailed segmentation, key trends, strategic recommendations, growth figures, Cost Analysis, new progress, evolving technologies, and forecasts by authentic agencies.

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Affluence Market Reports

Contact Person: Mr. Rohit

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Growth Prospects of Citric Acid Anhydrous Market: Business Outlook 2021-2026 by Cargil, ADM, Citrique Belge, Gadot Biochemical Industries,...

Improving Investment in Women’s Health Research, Health Care | Chicago News | WTTW – WTTW News

Just a fraction of research funds into Alzheimers, heart disease, and autoimmune disease goes toward women, even though they disproportionately face those ailments.

Thats according toa new report from the group Womens Health Access Matters, which found that a $300 million dollar investment into research focused on women would yield a $13 billion economic return in reduced healthcare costs, better quality of life, and years of productivity returned to the workforce.

Nicole Woitowich, research assistant professor of medical social sciences at Northwestern Universitys Feinberg School of Medicine, says that research subjects have historically been male whether they were humans, or other animals like mice and rats.

It wasnt until 1993 through, literally, an act of Congress the NIH Revitalization Act that women were required to be included in National Institutes of Health-funded clinical research studies, said Woitowich, who holds a PhD in biochemistry and molecular biology. But then it wasnt again until 2016 when the NIH developed a mandate to require investigators consider sex as a biological variable.

Dr. Vineet Arora, dean for medical education at the University of Chicagos Pritzker School of Medicine, says just one recent example was the fact that pregnant and breastfeeding people were excluded from COVID-19 vaccine trials.

We have great data now to show that, in fact, the COVID vaccine is very important for pregnant people (and) people who are breastfeeding. Its actually protective against severe COVID, as well as protective for newborns because you can pass on antibodies. We didnt know that initially, and that lack of information gave opportunity for misinformation to arise, Arora said.

Woitowich says when investigators dont analyze data by sex, its leaving knowledge on the table. She cites a recent study of glioblastoma treatment that broke down how male and female patients were responding.

They found that males were responding more poorly to treatment than women. That brought up a whole new question: why is this actually happening, and how can we tailor our therapies to be beneficial for both sexes and improve the health of everyone? This is not just a matter of looking at reproductive health or hormonal health. This is analyzing data in all body systems, Woitowich said.

In addition to biases and oversights in research and healthcare, there are also gender disparities throughout the medical workforce persistent salary gaps, lack of maternity leave, expectations that disadvantage women who care for children or elders.

Until I started talking to other women, (I didnt know) that the challenges I faced were not because I wasnt good enough, or I wasnt smart enough, or I wasnt accomplished enough, said Dr. Shikha Jain of the University of Illinois Cancer Center. These women were amazing and way more accomplished than me (and) had very similar experiences to ones I had.

Arora says its important recognize the way that inequities and biases can contribute to women in healthcare burning out an issue even before the COVID-19 pandemic.

We need to start thinking about this as a problem that needs a concerted effort to address gender equity at all levels of an institution, particularly for mentoring and sponsoring women to move up the chain, and making sure they have opportunities, Arora said.

Its a question of changing the health care infrastructure designed before women joined the workforce, says Jain. Shes also the founder and president of the nonprofit Women in Medicine, which hosts conferences and leads trainings in an effort to close the gender gap in healthcare.

Theres a lot of women who dont achieve their full potential, not because they arent good enough in actuality theres a system set up to prevent them from getting to the level they could get to, Jain said. We need to take the onus away from the women. It needs to be everybody having these discussions and bringing these issues up.

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Improving Investment in Women's Health Research, Health Care | Chicago News | WTTW - WTTW News

Futuristics Overview of Citric Acid Anhydrous Market: Industry Insights and Forecast 2021-2026 by Cargil, ADM, Citrique Belge, Gadot Biochemical…

The Citric Acid Anhydrous market report provides a detailed analysis of global market size, regional and country-level market size, segmentation market growth, market share, competitive Landscape, sales analysis, the impact of domestic and global market players like Cargil, ADM, Citrique Belge, Gadot Biochemical Industries, Jungbunzlauer, Laiwu Taihe Biochemistry, etc., value chain optimization, trade regulations, recent developments, opportunities analysis, strategic market growth analysis, product launches, area marketplace expanding, and technological innovations.

The Key Areas That Have Been Focused in the Report:

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Citric Acid Anhydrous Market Segmentation:

Citric Acid Anhydrous market is split by Type and by Application. For the period 2016-2026, the growth among segments provides accurate calculations and forecasts for sales by Type and by Application in terms of volume and value. This analysis can help you expand your business by targeting qualified niche markets.

Citric Acid Anhydrous Market Report based on Product Type:

Citric Acid Anhydrous Market Report based on Applications:

The key market players for global Citric Acid Anhydrous market are listed below:

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Promising Regions & Countries Mentioned in Citric Acid Anhydrous Market Report:

TABLE OF CONTENTS INCLUDE

Consumption Forecast, Market Opportunities & Challenges, Risks and Influences Factors Analysis, Market Size by Application, Market Size by Manufacturers, Market Size by Type, Citric Acid Anhydrous Consumption by Regions, Citric Acid Anhydrous Production by Regions, Production Forecasts, Value Chain and Sales Channels Analysis, Key Findings in the Global Citric Acid Anhydrous Study, Manufacturers Profiles

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Impact of COVID-19 on Citric Acid Anhydrous Market

The report also contains the effect of the ongoing worldwide pandemic, i.e., COVID-19, on the Citric Acid Anhydrous Market and what the future holds for it. It offers an analysis of the impacts of the epidemic on the international Market. The epidemic has immediately interrupted the requirement and supply series. The Citric Acid Anhydrous Market report also assesses the economic effect on firms and monetary markets. Futuristic Reports has accumulated advice from several delegates of this business and has engaged from the secondary and primary research to extend the customers with strategies and data to combat industry struggles throughout and after the COVID-19 pandemic.

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Futuristics Overview of Citric Acid Anhydrous Market: Industry Insights and Forecast 2021-2026 by Cargil, ADM, Citrique Belge, Gadot Biochemical...