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Table of Contents
1. Microbial Fraction Library: A Screening Source for Drug Discovery
2. Efficient Total Synthesis of Ōmura Natural Products
3. Enantioselective Total Synthesis of the Antitumor Polycyclic Natural Products, FR182877 and Taxol
4. Synthetic Approaches on the Pluramycin-class Antibiotics
5. Recent Progress Toward the Total Synthesis of Duocarmaycins A and SA, Yatakemaycin, and PDE-I and –II
6. Structure-Activity Relationship Studies of Maitotoxin Based on Chemical Synthesis
7. Substitution of Allylic Picolinates with Various Copper Reagents and Synthetic Applications
8. Total Synthesis of Ingenol
9. Strategies for Synthesis of Anti-inflammatory Metabolites of Unsaturated Fatty Acids
10. Biosynthesis, biological functions, and receptors of leukotriene B4 and 12(S)-hydroxyheptadecatrienoic acid
11. Synthesis of classical/non-classical hybrid cannabinoids and related compounds
12. Exploring bioactive marine natural products and identification of their molecular targets
13. Target protein chemical modification
14. Target Identification of Bioactive Compounds by Photoaffinity Labeling Using Diazido Probes.
2. Efficient Total Synthesis of Ōmura Natural Products
3. Enantioselective Total Synthesis of the Antitumor Polycyclic Natural Products, FR182877 and Taxol
4. Synthetic Approaches on the Pluramycin-class Antibiotics
5. Recent Progress Toward the Total Synthesis of Duocarmaycins A and SA, Yatakemaycin, and PDE-I and –II
6. Structure-Activity Relationship Studies of Maitotoxin Based on Chemical Synthesis
7. Substitution of Allylic Picolinates with Various Copper Reagents and Synthetic Applications
8. Total Synthesis of Ingenol
9. Strategies for Synthesis of Anti-inflammatory Metabolites of Unsaturated Fatty Acids
10. Biosynthesis, biological functions, and receptors of leukotriene B4 and 12(S)-hydroxyheptadecatrienoic acid
11. Synthesis of classical/non-classical hybrid cannabinoids and related compounds
12. Exploring bioactive marine natural products and identification of their molecular targets
13. Target protein chemical modification
14. Target Identification of Bioactive Compounds by Photoaffinity Labeling Using Diazido Probes.