ACADEMIC INTEREST AREAS Structure, interactions and evolution of proteins Enzymology, including development of catalytic antibodies Protein mo...
Ph.D. in Pharmaceutical Chemistry with experience in Drug Design & Discovery with computational tools, Synthetic Medicinal Chemistry a...
A cross-functional research scientist with over 10 years of experience in molecular and structural biology, biochemistry and bioinformatics. Pr...
I hold a PhD in Computational Structural Biology from McGill University, Montreal, Canada. I an proficient in protein structure prediction, hom...
Skilled in Medicinal Chemistry, Organic Synthesis, Drug Discovery, Spectroscopy, and Research and Development (R&D). Performing multi-s...
I am a chemical engineer with a masters degree in mathematical modeling and simulation of petrochemical process. I have a double major in chemi...
Copy editing, technical writing and proof reading are my key skills.Reviewed certain Pharmacology based Journals.Executed various projects in M...
My career in research started with a degree in Genetics and Molecular Biology followed by a British Society of Physiology Summer Studentship in...
Ph.D in medicinal chemistry with experience in drug design & discovery, medicinal chemistry and analytical chemistry. Extensive backgr...
Self-directed and motivated Chemistry professional with 7+ years of experience in experimental design and managing projects aimed at engineeri...
I have 10 years of experience in academic research. scientific publishing and science communication. I speak and write fluently English, Italia...
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Molecular modeling is a fast growing field that combines molecular biology with computer science. From 3D visualization of molecules to complicated computer simulation of nanostructures, this field relies on cutting edge computer-based techniques.
Through computational simulation, the structure of biological molecules can be studied and changed to solve issues related to drug development, chemistry, material science and computational biology. Both small chemical changes and large modifications to entire molecules can be simulated through molecular modeling. Changes in the behavior of the molecules can also be evaluated.
Molecular modeling, drug designing and computational chemistry are often interlinked and many experts in molecular modeling also have a deep understanding of these related fields.
In order to mimic the behavior of molecules, experts in molecular modeling need to have knowledge on theoretical models and computational models. These professionals also need to understand different methods in the fields of drug development, computational biology, computational chemistry and biomaterial science.
The computer-based systems used by data modeling experts are based on the atomic constitution of the molecules. Some projects require modelling at the quantum level, working with protons, neutrons (including gluons, quarks and anti-quarks) and electrons (with photons), while others remain at the molecular level, with atoms as the smallest entity.
The molecules can be modelled according to a vacuum system or a solvent system (such as water for example). Biological, inorganic and synthetic molecular systems can be investigated for surface properties, thermal properties, dynamics and general structure.
Up to now, molecular modeling systems have been used in research projects investigating protein folding and stability, enzyme catalysis, molecular recognition of DNA, proteins, membrane systems and structural changes during biomolecular function.
Contract Research Organizations (CRO) and pharmaceutical companies are investing more and more in computer-based systems for molecular modeling in order to optimize the workflow of drug designing. Thus, new compounds can be tested more quickly and precisely.
Science, research, academia, bioinformatics and computational biophysicist are a few work opportunities for molecular modeling experts.
Through the use of molecular modeling techniques, it is possible to develop more potent drugs to target conditions such as arthritis and cancer. Some companies are studying the crystallographic structure of certain proteins that are keys for disease and using molecular modeling techniques to design targeted drugs in the form of small molecules to inhibit protein activity, thus improving disease.
New materials and new inorganic compounds have also been created through this new technology, which can be applied to ceramic, optic and semiconductor biomaterials.
Research on artificial photosynthesis has also been facilitated through molecular modeling systems. The potential of this technique is huge as it is developing at a very quick pace.
Professionals specialized in molecular modeling are certainly in demand, as their special skills can help improve our understanding of molecules, organs and ultimately life in general.
For a minimum of 30 USD per hour, you can get dedicated help from freelance experts in this field. If you prefer to establish a fixed rate for your entire project, this is also possible.
Hiring a freelance expert can considerably cut the costs for your project, as it is much more cost-effective than working with a bigger consultancy agency.
Finding a highly skilled expert in molecular modeling or a freelance CRO expert is crucial for the success of your research project. Here’s the information you should provide in your job description to make sure you find the best expert:
There is no better way to explore proteins and other molecules than to apply molecular modeling. It can greatly contribute to the evolution of nanotechnology and to the development of new drugs for challenging diseases, such as cancer and arthritis.