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An Ugi–Joullié Platform for Medicinally Relevant 1,4-Dihydrobenzothiazines

delete2026-07-03
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X
Xiaofang Lei
C
Christina Tomza
M
Maria-Aikaterini Giannakaki
M
Maria Gkountouva
I
Ioannis Olbasalis
R
Rafaela Maria Giappa
C
Constantinos C. Stoumpos
A
Alexander Dömling
C
Constantinos G. Neochoritis
DOI:10.1002/cmdc.70368delete
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Abstract

Abstract

En 中文
A concise and modular synthetic platform for the rapid assembly of functionalized 1,4-dihydrobenzothiazines is reported through an Ugi–Joullié two-component reaction of a preformed benzothiazine-derived imine with diverse isocyanides. The methodology proceeds under mild, operationally simple conditions and exhibits broad isocyanide scope, accommodating aryl, benzylic, aliphatic, and heterocyclic substituents to furnish a 19-member library of benzothiazines in 51%–96% yields. The reaction demonstrates high functional-group tolerance and scalability to the millimole level, enabling efficient access to structurally diverse benzothiazine derivatives relevant for medicinal chemistry exploration. Single-crystal X-ray diffraction analyses revealed characteristic conformational features of the scaffold, including a twisted-boat geometry and a Z-oriented arrangement of the two NH groups. In addition, late-stage oxidation of the sulfur atom to the corresponding sulfone was readily achieved in high yield, highlighting the versatility of the scaffold for post-assembly diversification. Preliminary antimicrobial evaluation against a panel of Gram-positive and Gram-negative bacterial strains revealed strain-dependent antibacterial activity for selected derivatives, supporting the suitability of the benzothiazine framework for further medicinal chemistry optimization.
Keywords:
antimicrobial
dihydrobenzothiazines
multicomponent reactions
Ugi–Joullié
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ChemMedChem cover
ChemMedChem
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