Theme: Investigating recent research and innovations in Structural and Molecular Biology

Structural Biology Congress 2021

Renowned Speakers

Structural Biology Congress 2021

The “16th International Conference on Structural and Molecular Biology” which will be held on October 12-13, 2021 Manila, Philippines.

STRUCTURAL BIOLOGY CONGRESS 2021 contributes opportunities to Scientists, research scholars, students, delegates, and exhibitors to enhance their skills and improve quality of research. We welcome you to go along with us at the Structural Biology Congress 2021, where you will make certain to have an important involvement with both your colleagues and experts from around the globe. It helps you to implement practical, proven strategies to run your research more effectively, efficiently, and profitably.  All individuals from the Structural Biology Congress 2021 sorting out council anticipate meeting you in Manila, Philippines.

The conference is going to be organized on the theme: Investigating recent research and innovations in Structural and Molecular Biology. This Structural Biology Congress 2021 goes to be the most important and most promising international conference that specifically focuses on the Biochemistry by bringing all renowned researchers under one roof. this is often a 3-day multidisciplinary meeting covering all aspects of novel research and contributions within the field of structural biology and Molecular Biology.

Commendable talks by the first-string of the worldwide scientific community.

Sterling workshop sessions.

• Global Recognition to meritorious Researchers.

• Global Networking with 50+ Countries.

• Novel Techniques to profit Your Research.

Global Business and Networking Opportunities.

• Exquisite platform for exhibiting your by-products and International Sponsorship

Young Scientist Benefits

Our conferences provide best Platform for your research through oral presentations.

Share the ideas with both eminent researchers and mentors.

Young Scientist will get International Certificate.

Platform for collaboration among young researchers for better development

Target Audience

Biotechnologist

Research Scientist

Clinical Scientist

Research Associates

Chemist Microbiologist

Biomedical Scientist

Pharmacologist

Laboratory Technician

Lecturer in an Educational institution

Medical Institutes

Hospitals

Research Institutes

Why to attend?

Structural Biology and molecular biology conference focus on creating an international platform for the participants to share their knowledge and research work on the respective fields. It will include various tracks and sub-tracks within the Structural and molecular biology field, which will further allow the participants to choose their respective tracks of their interests. The conference will give an opportunity to explore the topic with highly qualified researchers, scientists, doctors, professors and related people and associations who are involved in this field. It will be a great opportunity for the young researchers as well to learn and explore about their respective fields in Structural and Molecular Biology.

Track 1: Structural Biology

Structural Biology is that the branch of biology which embarks the importance of biophysics and biochemistry within the molecular structure of biological macromolecules. It also provides information about the effect of structural alterations of macromolecules on their function. This process of determination of structures of proteins, nucleic acids may take years because the shape, size and assemblies of those molecules could also be altering the function.

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Track 2: Molecular Biology

Molecular biology concerns the molecular basis of biological activity between the various systems of a cell, including the interactions between the different types of DNA, RNA and proteins and their biosynthesis, and studies how these interactions are regulated. It has many applications like in gene finding, molecular mechanisms of diseases and its therapeutic approaches by cloning, expression, and regulation of gene. Research area includes gene expression, epigenetics and chromatin structure and function, RNA processing, functions of non-coding RNAs, transcription. Nowadays, most advanced research are going on these topics: Molecular biology, DNA replication, repair and recombination, Transcription, RNA processing, Post-translational modification, proteomics, Mutation, Site-directed mutagenesis, Epigenetics, chromatin structure and function, Molecular mechanisms of diseases.

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Track 3: Biochemistry and Biophysics

Biochemistry is that the study of chemical processes happening inside the physical body. Recently this subject has found its importance within the biological world because it has found its importance altogether fields of bioscience and biology. By controlling information flow through biochemical signaling and therefore the flow of energy through metabolism, biochemical processes produce to the complexity of life. Its main focus is to know how biological molecules produce to the processes that occur within living cells.

Biophysics is that the trending topic within the field of biology. It relates physics and biology. In other words, it signifies how traditional physical methods are wont to study the biological phenomena inside the physical body. Biophysical research shares significant overlap with biochemistry, biology, chemistry, physiology, nanotechnology, bioengineering, computational biology, biomechanics, and systems biology.

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Track 4: Computational Approach in Structural Biology

Computational approaches are a boon for structural biology. These methods use the concepts of bioinformatics to work out the structure of macromolecules. generally, the structure of molecules is decided by experimental methods is both time intense and price effective. to beat these constraints, computational approaches like ab-initio modelling, homology modelling and threading method are used.

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Track 5: Molecular Modelling and Dynamics

Molecular modelling involves the hypothetical and computational procedures which are wont to mimic the behavior of macromolecules. Molecular modelling techniques are utilized in various fields a number of which are drug design, computational chemistry, materials science and computational biology. These methods are used for studying and understanding the properties of the molecules. one among the main applications of molecular modelling is molecular simulation. this is often the technique which uses powerful lculatiocomputers to simulate the interactions between atoms and to know the properties of materials. Such simulations involve methods that range from very detailed quantum mechanical cans on atoms to coarse-grained classical dynamics of huge groups of molecules on a timescale of milliseconds or longer.

Molecular dynamics (MD) deals with the study of physical movements of the atoms and molecules using simulation method, so it's mentioned together of the sort of N-body simulation. The atoms and molecules are allowed to interact for a hard and fast period of your time, giving a view of the dynamic evolution of the system. The trajectories of atoms and molecules are commonly determined by solving them numerically using Newton’s equations of motion for a gaggle of collaborating particles. The forces between the particles and their potential energies are calculated using inter-atomic potentials or molecular mechanics force fields. Steered molecular dynamics (SMD)

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Track 6: Drug Designing and Biomarkers

A biomarker is an attribute which will be studied as an indicator of pathogenic and biological operation alongside pharmacological retort to a therapeutic involvement. They indicate either normal or diseased activity within the body. Biomarkers are specific molecules, genes, gene products, hormones, cells, or enzymes.

Drug designing is an ingenious process to seek out new medication centered on the knowledge of biological target. Drug is most ordinarily a little molecule that inhibits or activates the function of a biomolecule, which successively outcomes during a therapeutic benefit to the patient. Drug design commonly but not essentially relies on computational techniques. this sort of modelling is usually mentioned to as computer-aided drug design.

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Track 7: Gene regulation and Cell Signaling.

Signaling is that the process through which the cells communicate with one another. they are often secreted from the cell and released into the extracellular space. Regulation of organic phenomenon comprises a comprehensive range of mechanisms that are employed by cells to manage the assembly of specific gene products and is familiarly termed as gene regulation. Sophisticated programs of organic phenomenon are extensively observed in biology, for instance to trigger developmental pathways, adapt to new food sources, or answer environmental stimuli.

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Track 8: Sequencing Analysis

Sequence analysis are often explained as a process of exposing DNA, RNA or peptide sequence to a good range of analytical methods so as to know its structure, function and evolution. The methods include sequence alignment and biological databases. Synergistic use of three-dimensional structures and deep sequencing is completed to understand the effect of personalized medicine. The usage of sequence analysis in structural biology will pave the thanks to new methods which may be utilized to work out the structure of molecules.

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Track 9: Hybrid approaches in Structure prediction

This is a price effective approach for determining the protein structure. The computational prediction methods, like initiating fragment assembly, advanced fold recognition, composite approaches, and molecular docking are regularly applied in recent times to expand our understanding of protein structures. Hybrid approach may be a channel to beat these disadvantages, by incorporating limited experimental measurements, reliable structures are often computed, and unlikely predictions are eliminated. the present researches are showing great interest during this method of approach.

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Track 10: Structural Bioinformatics

Structural bioinformatics is an exceptionally cost-effective solution for protein structure determination. Purely computational prediction methods, like initially fragment assembly, advanced fold recognition, composite approaches, and molecular docking are regularly applied today to increase our understanding of protein structures. However, predicted structures aren't given an equivalent reliance as their experimental complements. Hybrid approaches are a way to beat these limitations; by incorporating limited experimental measurements, reliable structures are often computed, and unlikely predictions eliminated. Hybrid approaches cash in of knowledge derived from a good range of various biophysical and biochemical methods. These methods are of growing interest in current research of structural biology.

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Track 11: Frontiers in Structural Biology

The focus of a structural biologist is protein structure determination and drug design. Protein plays a crucial role in physical body. Living things would not exist without proteins. The proteins are usually involved altogether sorts of expressions of the living organism. Most of the proteins are evolved in providing structure to the cell while the others tend to bin and carry vital molecules during the body. Some proteins are involved in biochemical reactions within the body which are termed as enzymes. Others are involved in muscle contractions and immunity. Structure determination of proteins has always been a challenging filed. The complex areas within the field include viruses, pathogens, membrane proteins and signaling pathways. Novel progressions are being wiped out the arenas of nano-patterning and multi-scale modelling of cell signaling proteins.

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Track 12: Structural Biology in Cancer Research

The main aim of integrating structural biology data into cancer research is to style and find out novel and effective drugs to cure the disease. Structural biology combined with molecular modelling mainly aims at drug designing. Consequently, variety of Structural Biologists are conducting cancer research, to speed-up the method of understanding the mechanism of biomolecules to enhance the newer cancer therapies.

Major a part of research is being administered within the area of cancer. the most aim is to style and find out novel and effective drugs to cure the disease. Structural biology combined with molecular modelling mainly aims at drug designing. Subsequently, numerous team leaders in Structural biology perform cancer research to accelerate the exploitation of molecular understanding of biomolecules within the advancement of novel cancer therapies.

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Track 13: Structural Biology Databases

A database is an organized collection of knowledge. As a result of enormous research which is being wiped out Structural biology massive data has been produced. to assemble the info during a catalogued manner, bioinformatics databases are used. Various databases are created to store biological data, like sequence databases, structure databases, signaling pathway databases, etc.

A database may be a structured collection of knowledge. within the field of structural biology enormous research is being done and as a result massive data is being produced to pile the info in an organized manner, bioinformatics databases are used. Various databases are created to store biological data, like sequence databases, structure databases, signaling pathway databases, etc. within the field of structural biology, the mainly used databases are Protein Data Bank

(PDB), microscopy Data Bank, Protein Structure Classification Database (CATH) and Structural Classification of Protein (SCOP).

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Track 14: Advancements in structural Biology

Structural biology is one among the progressing fields. within the course of your time many developments are happening. Huge numbers of solved structures have exaggerated rapidly. the sector of drug design and drug discovery has been advanced. Functional annotations are another field where progressions are rapidly evolving. Alterations to enhance the effectiveness of prevailing tools also can be noted. Remarkable advances are made within the areas of technical imaging and advancement of hybrid methods to know the structure and performance of proteins.

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Track 15: Molecular and Structural Biochemistry    

Structural Biochemistry is a sub-division of biochemistry that mainly focuses on the structural characteristics of the molecules within the cells and other made from living organisms. The main area is concentrated on structural basis of fundamental biological processes. It involves the study of the structure of macro molecules. It includes methods for structure determination and large data of structural information. Few of the tools are going to be wont to study some class of structures like membrane, regulatory proteins, and structural proteins. These structural macromolecules will provide the framework for discussion on domains, motifs, structural homology, etc., also as addressing on how specific biological problems are often solved at the atomic level.

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Track 16: Protein and Analytical Biochemistry

Proteins offer most of the molecular machinery of cells. Several square measure enzymes or subunits of enzymes. Alternative proteins play structural or mechanical roles, like those that kind the struts and joints of the structure.

Every macromolecule is linear polymers designed of amino acids. Analytical biochemistry can be mentioned as a study of biochemical components found in a cell or other biological sample. This field uses a broad vary of techniques for separation, identification, quantification and practical characterization of biological molecules like nucleic acids, enzymes, proteins, pigments, carbohydrates and further.

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Track 17: Molecular Medicine

A branch of medicine that develops ways to diagnose and treat disease by understanding the way genes, proteins, and other cellular molecules work. Molecular medicine is based on research that shows how certain genes, molecules, and cellular functions may become abnormal in diseases such as cancer.

In recent findings elucidate disease pathogenesis at the molecular or physiological level, which may lead to the design of specific tools for disease diagnosis, treatment, or prevention. Manuscripts containing material relevant to the genetic, molecular, or cellular basis of key physiologic or disease processes are considered for publication. Manuscripts submitted to Molecular Medicine should describe the implications of the results for human disease and medicine, at a level approachable by our broad audience.

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Track 18: Molecular Development Biology

Molecular Development Biology is the study of the process by which organisms grow and develop at a molecular and genetic level. The study is concerned with the genetic control of cell growth, differentiation, proliferation, and morphogenesis.

Studies in the field of molecular developmental biology provide insight about the changes that occur at the cellular level during differentiation and development. Researchers examine the physical and chemical mechanisms that regulate cell functions. This helps in understanding how cells give rise to specialized tissues within the maturing embryo, and how defects at the molecular level can lead to disease states.

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Track 19: Molecular Virology

Molecular virology is the study of viruses on a molecular level. Viruses are submicroscopic parasites that replicate inside host cells.

Molecular Virology of Human Pathogenic Viruses provides essential information for students and professionals in virology, molecular biology, microbiology, infectious disease, and immunology and contains outstanding features such as study questions and recommended journal articles with perspectives at the end of each chapter to assist students with scientific inquiries and in reading primary literature.

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Track 20: Theoretical Bases of Biotechnology

Biotechnology is a broad area of biology, involving the use of living systems and organisms to develop or make products. Depending on the tools and applications, it often overlaps with related scientific fields. In the late 20th and early 21st centuries, biotechnology has expanded to include new and diverse sciences, such as genomics, recombinant gene techniques, applied immunology, and development of pharmaceutical therapies and diagnostic tests. The term biotechnology was first used by Karl Erik in 1919, meaning the production of products from raw materials with the aid of living organisms.

Biotechnology is a wide-ranging discipline in which biological phenomena, organisms, cells, or cellular components are exposed to the scientific engineering to develop new technologies.

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Track 21: Structural and Functional Genomics.

Structural genomics involves the physical nature of genomes and includes the sequencing and mapping of genomes. Functional genomics involves studying the expression and function of the genome. Genomics can also involve the investigation of interactions between genes and between genes and the environment.

The field of genomics can be subdivided into a number of areas. For instance, comparative genomics involves comparing the genomes of different organisms. Comparative genomics can be used to define important structural sequences that are identical in many genomes and to detect evolutionary changes across genomes. Structural genomics involves the physical nature of genomes and includes the sequencing and mapping of genomes. Functional genomics involves studying the expression and function of the genome. Genomics can also involve the investigation of interactions between genes and between genes and the environment.

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Track 22: Computational Biology

Computational biology, a branch of biology involving the application of computers and computer science to the understanding and modeling of the structures and processes of life. It entails the use of computational methods (e.g., algorithms) for the representation and simulation of biological systems, as well as for the interpretation of experimental data, often on a very large scale.

Computational biology, which includes many aspects of bioinformatics, is the science of using biological data to develop algorithms or models in order to understand biological systems and relationships. Until recently, biologists did not have access to very large amounts of data.

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Track 23: Bioluminescence

Bioluminescence is the production and emission of light by a living organism. It is a form of chemiluminescence. Bioluminescence occurs widely in marine vertebrates and invertebrates, as well as in some fungi, microorganisms including some bioluminescent bacteria, and terrestrial arthropods such as fireflies.

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Abstract Submission Criteria and Eligibility

PRESENTATION REQUIREMENTS:

Participating authors are responsible for registration, travel and hotel costs. Note: Those who submitted abstracts will receive an acknowledgment email allowing them to register for the gathering.

Abstracts will be compiled, and conference books will be made available to conference participants.

Any presenter who is unable to attend should arrange for another qualified person to present the paper / poster in question. If such a change is required, please let our conference team know.

 

SUBMISSION OPTIONS:

Oral paper introductions will have 30-minute schedule time slot. The keynote session will have for 45-minute presentation duration, workshop/special session will have 1-hour long schedule opening and symposium will have 1-hour long availability followed by 5-minute Q&A session.

Graduate and master’s understudies are qualified to present their abstracts under poster and e-poster presentation category.

Ph.D. understudies are qualified to submit their abstract under special YRF (Young Researcher's Forum), poster and e-poster presentation category.

NOTE: YRF category includes short oral presentation especially for Ph. D. students

Extended abstract: Submissions should utilize the Abstract Template. Papers submitted in this category may represent original empirical research, theoretical development, reviews, or critiques.

 

Market Analysis:

Conference Series is overwhelmed to announce the commencement of “16th International Conference on Structural and Molecular Biology” to be held on October 12-13, 2021 Manila, Philippines.

The upcoming conference will be organized around the theme “Investigating recent research and innovations in Structural and Molecular Biology”.

Summary of Biochemistry Analyzer Market:

The biochemistry analyzers are very safe to use and require very less to determine and analyze chemical reactions and biological processes. Biochemistry analyzers basically operate on the principle of Lamberts and Beers law of photochemistry.

The factors that propel the growth of the Biochemistry Analyzers Industry Market include increasing demand for biochemistry analyzers, rising geriatric population, increasing R and D activities and growing population and urbanization. The increase in laboratory automation as one of the primary growth factors for this market. Laboratory automation results in greater improvement in productivity with safer working conditions, reduced operational cost, and reduction in labor force. Additionally, automation enables the effectiveness in the identification of samples, easy storage of data, less component consumption and sample volume, reduction, less occupied laboratory space and reduction in turnaround time. the Americas is expected to be the major revenue contributor to the market due to the growing population, as well as the high prevalence of chronic and infectious diseases.

The global Biochemistry Analyzer market was valued at USD million in 2019 and is expected to reach USD million by the end of 2026, growing at a CAGR of during 2021-2026.

This report focuses on Biochemistry Analyzer volume and value at the global level, regional level and company level. From a global perspective, this report represents overall Biochemistry Analyzer market size by analyzing historical data and future prospect. Regionally, this report focuses on several key regions: North America, Europe, Asia-Pacific, Latin America and Middle East and Africa.

Global Biochemistry Analyzer Market: Segment Analysis:

The research report includes specific segments by region (country), by company, by Type and by Application. This study provides information about the sales and revenue during the historic and forecasted period of 2016 to 2027. Understanding the segments helps in identifying the importance of different factors that aid the market growth.

Market Segmentation:

The report is divided into major categories comprising product, application, regions, and others. Every segment is further sub-segmented into several sub-segmented that are deeply analyzed by experts to offer valuable information to the buyers and market players. Every segment is studied thoroughly in order to offer a better picture to the buyers and stakeholders to benefit from.

Information like the highest prevailing product, highly demanded product by the application segment, and end-users are rightly mentioned in the Biochemistry Analyzer market analysis report.

By Type:

● Semi-Automatic Biochemical Analyzers

● Fully Automated Biochemistry Analyzers

By Application:

● Academic Research Institutes

● Biotechnology Companies

● Contract Research Organizations

● Diagnostic Centers

● Hospitals

● Pharmaceutical Companies

 

Oral presentation: Oral Presentations may include the topics from research, theoretical, professional, or private practices in a concise manner. Individuals with personal experience are also welcomed to present personal experience or narratives which help others in everyday life.

Speakers with a 30-minute slot should plan to speak for 20-25 minutes, and Keynote speakers should plan to speak for 40-45 minutes, with the remaining time to be used for questions and discussion by the Session Chair

Workshop: For workshop presenters also, topic of talk will be same as Oral presentation with more specialized techniques and detailed demonstration. The generalized time duration for workshop presentation is about 45-50 minutes. Interested participants can join with their respective team and present the workshop with their research coordinators with special group waiver on registration.

Poster presentation: Student Poster Competition will be organized at STRUCTURAL BIOLOGY CONGRESS 2021 conference is to encourage students and recent graduates to present their original research. Presenters will be given about 5-7 minutes to present the poster including questions and answers. Judges may ask questions during the evaluation of the presentation. This is an opportunity for young scientists to learn about the recent findings of their peers to increase their capacity as multidisciplinary researchers. Poster displays will be in hard copy format of 1x1 M long.

For more details regarding Poster Presentation and Judging Criteria view Poster Presentation Guidelines

Webinar: Webinar presentation is designed for those interested attendees who cannot join in person due to schedule conflict or other obligations. In this option the presenter may record the presentation and their presentation will be presented in the Webinar presentation session.

E-Poster: e-Poster is also similar to the webinar presentation. In this session, their presentation will be published in the form of poster in the conference website and the presenter abstract will be published in the conference souvenir and journal with DOI

Exhibition: STRUCTURAL BIOLOGY CONGRESS 2021 has the opportunity to exhibit the products and services from commercial and non-commercial organizations like Drug manufactures, Clinical Trial Sites, Management Consultants, Chemists, Pharmacists, Business delegates and Equipment Manufacturers.

To know more about exhibitor booth details and benefits visit WHY TO EXHIBIT WITH US?

Advertisement: The conference program is a valuable resource that all attendees refer again and again as they navigate the conference. Advertising in the conference program is a great way to market and can help you securing long term business.

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Conference Date October 12-13, 2021
Sponsors & Exhibitors Click here for Sponsorship Opportunities
Speaker Opportunity Closed
Poster Opportunity Closed Click Here to View