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This volume presents some of the latest research and applications
in using natural substances and processes for pharmaceutical
products. It presents an in-depth examination of the chemical and
biological properties of selected natural products that are either
currently used or have the potential for useful applications in the
chemical and pharmaceutical industries. It covers emerging
technologies and case studies and is a source of up-to-date
information on the topical subject of natural products and
microbial technology. It provides an applied overview of the field,
from traditional medicinal targets to cutting-edge molecular
techniques. Natural products have always been of key importance to
drug discovery, but as modern techniques and technologies have
allowed researchers to identify, isolate, extract, and synthesize
their active compounds in new ways, they are once again coming to
the forefront of drug discovery.
Taking an interdisciplinary approach, this new volume brings
together innovative research, new concepts, and novel developments
in the application of new tools in green chemistry and sustainable
technology. The diverse coverage includes chapters on ionic liquids
as green solvents, an environmentally friendly approach to the
synthesis and biological evaluation of -aminophosphonate
derivatives, the application of nanotechnology in biological
sciences and green chemistry, eco-friendly polymers, the effect of
global warming and greenhouse gases on environmental system, and
more.
This book covers the general properties of heterocyclic compounds
and methods for their preparation to use in applications of green
chemistry. Heterocyclic compounds are an important class of
molecules in organic chemistry due to their presence in natural
products and their use in pharmaceuticals and new materials. They
also play a vital role in the metabolism of living cells.
Heterocyclic compounds have a wide range of applications in
agrochemicals, pharmaceuticals, veterinary products, etc. This
research-oriented volume is ideal for readers who want to fully
realize the almost limitless potential of heterocyclic compounds
and to discover new and effective pharmaceuticals among
heterocyclic compounds, the largest and most varied family of
organic compounds. The book features several case studies and
step-by-step descriptions of synthetic methods and practical
techniques. It also serves as a guide for chemists, offering them
new insights and new paths to explore for effective drug discovery.
Taking an interdisciplinary approach, this new volume brings
together innovative research, new concepts, and novel developments
in the application of new tools in green chemistry and sustainable
technology. The diverse coverage includes chapters on ionic liquids
as green solvents, an environmentally friendly approach to the
synthesis and biological evaluation of -aminophosphonate
derivatives, the application of nanotechnology in biological
sciences and green chemistry, eco-friendly polymers, the effect of
global warming and greenhouse gases on environmental system, and
more.
This book covers the general properties of heterocyclic compounds
and methods for their preparation to use in applications of green
chemistry. Heterocyclic compounds are an important class of
molecules in organic chemistry due to their presence in natural
products and their use in pharmaceuticals and new materials. They
also play a vital role in the metabolism of living cells.
Heterocyclic compounds have a wide range of applications in
agrochemicals, pharmaceuticals, veterinary products, etc. This
research-oriented volume is ideal for readers who want to fully
realize the almost limitless potential of heterocyclic compounds
and to discover new and effective pharmaceuticals among
heterocyclic compounds, the largest and most varied family of
organic compounds. The book features several case studies and
step-by-step descriptions of synthetic methods and practical
techniques. It also serves as a guide for chemists, offering them
new insights and new paths to explore for effective drug discovery.
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