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- The isolation-biological activities (2014–2022), bio, semi, total synthesis (1978–2022) and SAR studies of a potential naturally engineered scaffold aristolactam. Mallu Chenna Reddy, Ashutosh Dey, Masilamani Jeganmohan, Kishor Padala
, New J. Chem.
, 2023
, 47
, 16266
- Naturally occurring aristolochic acid analogues and their toxicities. Johanna Michl, Martin J. Ingrouille, Monique S. J. Simmonds, Michael Heinrich
, Nat. Prod. Rep.
, 2014
, 31
, 676
- Naturally occurring aristolactams, aristolochic acids and dioxoaporphines and their biological activities. Vineet Kumar, Poonam, Ashok K. Prasad, Virinder S. Parmar
, Nat. Prod. Rep.
, 2003
, 20
, 565
- Total synthesis of aristolactam alkaloids via synergistic C–H bond activation and dehydro-Diels–Alder reactions. Mallu Chenna Reddy, Masilamani Jeganmohan
, Chem. Sci.
, 2017
, 8
, 4130
- Binding studies of aristololactam-β-d-glucoside and daunomycin to human serum albumin. Abhi Das, Gopinatha Suresh Kumar
, RSC Adv.
, 2014
, 4
, 33082
- Probing the binding of two sugar bearing anticancer agents aristololactam–β-d-glucoside and daunomycin to double stranded RNA polynucleotides: a combined spectroscopic and calorimetric study. Abhi Das, Gopinatha Suresh Kumar
, Mol. BioSyst.
, 2012
, 8
, 1958
- Heteroannulation enabled by a bimetallic Rh(iii)/Ag(i) relay catalysis: application in the total synthesis of aristolactam BII. Wei-Wei Ji, E. Lin, Qingjiang Li, Honggen Wang
, Chem. Commun.
, 2017
, 53
, 5665
- Recent developments in detoxication techniques for aristolochic acid-containing traditional Chinese medicines. Yang Fan, Zongming Li, Jun Xi
, RSC Adv.
, 2020
, 10
, 1410
- A deconstruction–reconstruction strategy to access 1-naphthol derivatives: application to the synthesis of aristolactam scaffolds. Jeong Min Bak, Moonyeong Song, Inji Shin, Hee Nam Lim
, Org. Biomol. Chem.
, 2023
, 21
, 8936
- Plant species forbidden in health food and their toxic constituents, toxicology and detoxification. Xi-Lin Xu, Yu Shang, Jian-Guo Jiang
, Food Funct.
, 2016
, 7
, 643