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A special and important task in medicinal implant technology is to prevent the material from fouling or make it compatible for tissues by coating the material with functionalized lipid biomolecules.
We employed a fluorine-based medicinal chemistry technology to synthesize 14 novel analogs of epoxyketone-based proteasome inhibitors and screened them for their stability, ability to inhibit the chymotrypsin-like proteasome, and antimyeloma activity in vitro.
Advances in molecular and cellular biology as well as biotechnology led to definition of a group of drugs referred to as medicinal products of advanced technologies.
All in all, network-based drug discovery is taking the pharmaceutical industry into a new age where efficient use of systems biology and computational technologies for medicinal herbs investigation will function as a powerful engine for multi-target drug discovery and development of network medicine.
Would you want to? –Would you classify medicinal drugs as medical technology?
These technologies have enabled medicinal chemists to focus on molecular design without concern regarding compatibility of physicochemical properties with traditional, blend-based technologies.
Using drug discovery technologies, computational modeling, medicinal chemistry, cell culture and in vivo assays, novel small molecule Mps1/TTK inhibitors have been identified as potential targeted therapies for breast cancers.
Corilagin has been found in many medicinal plants and some advanced technologies have been employed to detect the content of corilagin in those plants [ 44].
These technologies help today's medicinal chemist to make the right compounds with appropriate drug-like biological, physicochemical, pharmacokinetics, ADMET, and safety properties.
The high potency and specificity of gene silencing induced by small interfering RNA (siRNA) makes this technology particularly appealing for medicinal applications; however, safe and efficient delivery of siRNA into targeted cells remains a major challenge.
In general, solid phase organic synthesis (SPOS) is a rapidly expanding field which is being widely exploited in search for new peptide derivatization techniques to be used in medicinal chemistry and compatible with combinatorial technology.
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