ISBN 978-93-91215-20-0 (Print)
ISBN 978-93-91215-28-6 (eBook)
DOI: 10.9734/bpi/mono/978-93-91215-20-0

Natural molecules are natural arsenal against diseases for mankind and living beings. They are not only the source of herbal remedies but also provide a real platform and source of inspiration for synthetic chemists. Since last two decades much effort had been devoted by synthetic chemists towards synthesis and bio evaluation of nature inspired molecules. This book has been written with an objective to provide a comprehensive overview of research in the domain of natural product inspired synthesis of bioactive heterocycles. Contents of present book are fabricated in a compiled and easy manner to give comprehensive and clear understanding of subject to readers. Detailed synthetic route of complex organic molecules is demonstrated in step by step manner. Natural product inspired molecules are categorised according to their biological activity and book is divided in following chapters.

 

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Recent Advances on Natural Product Inspired Design and Synthesis of Medicinally Active Heterocycles

Vishwa Deepak Tripathi

Recent Advances on Natural Product Inspired Design and Synthesis of Medicinally Active Heterocycles, 23 June 2021, Page 1-62
https://doi.org/10.9734/bpi/mono/978-93-91215-20-0

Mother nature is the source of primary treatment of almost all the health ailments as well as inspiration for synthetic and medicinal chemists to explore the new chemical space. Natural molecules have shown their undoubted role in the area of medicine and chemotherapy. Gradually these natural molecules have inspired synthetic chemists to modify the natural product molecules in desired way to incorporate therapeutic potential in them. This fashion of tailoring the natural molecules in desired way arises the area of natural product inspired synthesis. The verified significance of natural molecules and natural product inspired synthesis motivated us to write this book containing a comprehensive compilation of natural product derived molecules with their detailed synthetic protocols and biological potential against different targets. The small synthetic molecules have been focused and they are categorized according to their biological activities and targets. We incorporated anticancer, antidiabetic, antifungal, antibacterial, antitubercular, antileishmanial and other activities. Various pharmacophoric nucleus selected from bioactive natural products and the pathway for their derivatization have been studied. The detailed synthetic protocol of the molecule is reported in an easy manner to correlate the structure and activity of molecule with the specific targets.