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- Merging the potential of microbial genetics with biological and chemical diversity: an even brighter future for marine natural product drug discovery. Christine E. Salomon, Nathan A. Magarvey, David H. Sherman
, Nat. Prod. Rep.
, 2004
, 21
, 105
- Quantitative and qualitative analysis of saframycins. Polarographic and voltammetric behaviour and direct polarographic determination of saframycin A in fermentation broth and the high-performance liquid chromatographic determination of various saframycins. Pierre M. Bersier, Hans-Beat Jenny
, Analyst
, 1988
, 113
, 721
- Base-controlled [3+3] cycloaddition of isoquinoline N-oxides with azaoxyallyl cations. Yuanyuan An, Hongguang Xia, Jie Wu
, Chem. Commun.
, 2016
, 52
, 10415
- An expedient approach to 1,2-dihydroisoquinoline derivatives via cobalt catalysed 6-endo dig cyclization followed by Mannich condensation of o-alkynylarylaldimines. Urvashi, Gaurav K. Rastogi, Sandeep K. Ginotra, Alka Agarwal, Vibha Tandon
, Org. Biomol. Chem.
, 2015
, 13
, 1000
- Ecteinascidins. A review of the chemistry, biology and clinical utility of potent tetrahydroisoquinoline antitumor antibiotics. V. H. Le, M. Inai, R. M. Williams, T. Kan
, Nat. Prod. Rep.
, 2015
, 32
, 328
- Approaches to identify, clone, and express symbiont bioactive metabolite genes. Mark Hildebrand, Laura E. Waggoner, Grace E. Lim, Katherine H. Sharp, Christian P. Ridley, Margo G. Haygood
, Nat. Prod. Rep.
, 2004
, 21
, 122
- The catalyst-free decarboxylative dearomatization of isoquinolines with β-keto acids and sulfonyl chlorides in water: access to dihydroisoquinoline derivatives . Yutong Zhang, Fuzhong Han, Lina Jia, Xiangping Hu
, Org. Biomol. Chem.
, 2020
, 18
, 8646
- β-Phenylethylamines and the isoquinoline alkaloids. K. W. Bentley
, Nat. Prod. Rep.
, 1993
, 10
, 449
- Crystal engineering with 1,4-piperazine-2,5-diones. Eugene A. Mash
, CrystEngComm
, 2014
, 16
, 8620