Elemene Antitumor Drugs: Molecular Compatibility Theory and Its Applications in New Drug Development and Clinical Practice
Object category:
Elektronische Ressource
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Publisher:
Elsevier
Ort:
San Diego
Date:
2022
Language:
Englisch
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Abstract:
Intro -- Title page -- Table of Contents -- Copyright -- Forward I -- Forward II -- Part 1. Development of Elemene Antitumor Drug Based on Molecular Compatibility -- Chapter 1. Molecular Compatibility Theory and Its Applications in Tumor Treatment -- 1.1. Developmental history of Chinese medicine compatibility -- 1.2. Theoretical basis and characteristics of molecular compatibility theory -- 1.3. Applications of molecular compatibility -- 1.4. Significance of developing the molecular compatibility theory -- 1.5. Development of research methods of modern Chinese medicines by molecular compatibility theory -- 1.6. Innovative strategies for clinical treatment of systematic and complicated diseases provided by molecular compatibility theory -- 1.7. Conclusions -- Chapter 2. Research and Development of The Antitumor Drug Elemene Liposome -- 2.1. Research and development history of elemene liposome -- 2.2. Market application of elemene liposome -- 2.3. Conclusions -- Part 2. Drug Sources of Elemene -- Chapter 3. Traditional Extraction and Separation, Manufacturing Process, and Quality Standards of Elemene -- 3.1. Introduction -- 3.2. Extraction and separation techniques for elemene -- 3.3. GMP flow chart -- 3.4. Specification standards of elemene-related products -- 3.5. Conclusions -- Chapter 4. Advances in The Biosynthesis of β-elemene -- 4.1. Key enzyme of sesquiterpene synthesis in mevalonate and methylerythritol 4-phosphate pathways -- 4.2. Transcriptome analysis of Curcuma wenyujin -- 4.3. Biosynthesis of elemene in microbial cells -- 4.4. Conclusions -- Part 3. Studies on The Antitumor Mechanism of Elemene -- Chapter 5. An Overview of The Anticancer Mechanism of Elemene -- 5.1. Introduction -- 5.2. Apoptosis -- 5.3. Nonapoptotic cell death -- 5.4. Antimetastasis -- 5.5. Immune system -- 5.6. Cell cycle arrest.
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Created:
2023-04-12
Last changed:
2022-12-09
Added to portal:
2023-04-12
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