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Rational Design, Synthesis, and Anti-Proliferative Evaluation of Novel 4-Aryl-3,4-Dihydro-2H-1,4-Benzoxazines.
Fu, Xiaoming; Wenholz, Daniel; Chan, Daniel S H; Black, David StC; Kumar, Naresh.
Affiliation
  • Fu X; School of Chemistry, University of New South Wales (UNSW), Kensington, Sydney 2052, Australia.
  • Wenholz D; School of Chemistry, University of New South Wales (UNSW), Kensington, Sydney 2052, Australia.
  • Chan DSH; School of Chemistry, University of New South Wales (UNSW), Kensington, Sydney 2052, Australia.
  • Black DS; School of Chemistry, University of New South Wales (UNSW), Kensington, Sydney 2052, Australia.
  • Kumar N; School of Chemistry, University of New South Wales (UNSW), Kensington, Sydney 2052, Australia.
Molecules ; 29(1)2023 Dec 27.
Article in En | MEDLINE | ID: mdl-38202749
ABSTRACT
A synthetic pathway to a novel 4-aryl-3,4-dihydro-2H-1,4-benzoxazine scaffold was developed and a series of compounds based on the scaffold were synthesised as potential anticancer agents. The 4-aryl-substituted compounds were prepared via Buchwald-Hartwig cross-coupling between substituted bromobenzenes and various 1,4-benzoxazines, which in turn were generated from a cascade hydrogenation and reductive amination one-pot reaction. These analogues exhibited moderate to good potency against various cancer cell lines. Structure-activity relationship analysis indicated that the inclusion of hydroxyl groups on ring A and ring B was beneficial to biological activity, while having a para-amino group on ring C significantly enhanced potency. Molecule 14f displayed the most potent anticancer activity (IC50 = 7.84-16.2 µM against PC-3, NHDF, MDA-MB-231, MIA PaCa-2, and U-87 MG cancer cell lines), indicating its potential as a lead compound for further structural optimisation. All the synthesised compounds were fully characterised with NMR, HMRS, and IR. The novel benzoxazine scaffold described in this study holds promise and deserves further in-depth studies.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bromobenzenes / Benzoxazines Language: En Journal: Molecules Journal subject: BIOLOGIA Year: 2023 Type: Article Affiliation country: Australia

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Bromobenzenes / Benzoxazines Language: En Journal: Molecules Journal subject: BIOLOGIA Year: 2023 Type: Article Affiliation country: Australia