Thiophene‐Engineered Lipid II Recognition Enables Potent Membranolytic Eradication of MRSA

A Aniket Jana (IDRP Smart Healthcare, Interdisciplinary Research Platform, Indian Institute of Technology, Jodhpur, Karwar, Rajasthan 342030, India) M Moumita Jash (Department of Bioscience and Bioengineering, Indian Institute of Technology Jodhpur, Karwar Rajasthan India) S Samya Sen (iHUB Drishti Foundation) D Dipro Mukherjee (Department of Bioscience and Bioengineering, Indian Institute of Technology Jodhpur, Karwar Rajasthan India) S Surojit Ghosh (Smart Healthcare Interdisciplinary Research Division Indian Institute of Technology Jodhpur, Karwar Rajasthan India) S Sandip Sarkar (Department of Chemical Sciences and Center for Advanced Functional Materials) S Satyajit Ghosh R Rajsekhar Roy (Department of Bioscience & Bioengineering) M Monika Singh S Subhadra Nandi (Central Research Facility (CRF) Indian Institute of Technology Jodhpur, Karwar Rajasthan India) P Priya Rajdev (School of Applied and Interdisciplinary Sciences Indian Association for the Cultivation of Science (IACS) Kolkata India) S Surajit Ghosh J Jayita Sarkar (Central Research Facility (CRF) Indian Institute of Technology Jodhpur, Karwar Rajasthan India) A Amitava Das (Department of Chemical Sciences and Center for Advanced Functional Materials)

Abstract

ABSTRACT Methicillin‐resistant Staphylococcus aureus (MRSA) remains a significant global health threat, necessitating the development of new antimicrobials. We report the rational design of a small molecule TPL(II)‐07, that combines multiple functional modules: (i) 2‐phenylthiophene for specific recognition and binding to lipid II, a key intermediate in peptidoglycan biosynthesis; (ii) an adamantane fragment with high interfacial permeability to destabilize lipid packing; (iii) a cationic lysine moiety to disperse biofilms; and (iv) a moderate aliphatic chain to disrupt membrane integrity. Among seven analogues, TPL(II)‐07 exhibited the highest potency, highlighting the synergistic contribution of each component. Mechanistic assays confirmed preferential binding of lipid II, bactericidal potency, biofilm dispersion, and the generation of reactive oxygen species, effective against both drug‐resistant (MIC 19 µM) and drug‐sensitive (MIC 9 µM) S. aureus strains. TPL(II)‐07 demonstrated excellent biocompatibility, with IC 50  > 50 mM in HEK‐293 and WI38 cells and negligible hemolytic activity. In addition, it suppressed key virulence traits, including hemolysin activity, biofilm formation, and staphyloxanthin production. Further, a borate‐functionalized guar gum hydrogel incorporating TPL(II)‐07 achieved effective infection control and enhanced wound repair in a murine excisional model, establishing thiophene‐based lipid II targeting as a versatile platform for next‐generation antimicrobials with dual antibacterial and wound‐healing potential.

Article Details

Volume / Issue Vol. 65, Issue 33
Published August 10, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (14)

A

Aniket Jana

IDRP Smart Healthcare, Interdisciplinary Research Platform, Indian Institute of Technology, Jodhpur, Karwar, Rajasthan 342030, India

M

Moumita Jash

Department of Bioscience and Bioengineering, Indian Institute of Technology Jodhpur, Karwar Rajasthan India

S

Samya Sen

iHUB Drishti Foundation

D

Dipro Mukherjee

Department of Bioscience and Bioengineering, Indian Institute of Technology Jodhpur, Karwar Rajasthan India

S

Surojit Ghosh

Smart Healthcare Interdisciplinary Research Division Indian Institute of Technology Jodhpur, Karwar Rajasthan India

S

Sandip Sarkar

Department of Chemical Sciences and Center for Advanced Functional Materials

S

Satyajit Ghosh

R

Rajsekhar Roy

Department of Bioscience & Bioengineering

M

Monika Singh

S

Subhadra Nandi

Central Research Facility (CRF) Indian Institute of Technology Jodhpur, Karwar Rajasthan India

P

Priya Rajdev

School of Applied and Interdisciplinary Sciences Indian Association for the Cultivation of Science (IACS) Kolkata India

S

Surajit Ghosh

J

Jayita Sarkar

Central Research Facility (CRF) Indian Institute of Technology Jodhpur, Karwar Rajasthan India

A

Amitava Das

Department of Chemical Sciences and Center for Advanced Functional Materials