Cell membrane camouflaged and ROS responsive nanosomes for targeted endometriosis therapy via reversing inflammatory, low-autophagy, and immunotolerant microenvironment
Nanosomes camouflaged with cell membranes and responsive to reactive oxygen species were developed to target endometriosis by reversing its inflammatory, low-autophagy, and immunotolerant microenvironment.
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Cited by (3)
- NRF2 signalling in endometriosis: A hormone-independent axis for fertility-preserving therapeutic innovation 2026
- Biomaterials for women's health: Recent progress in nanomaterials and innovative therapies for endometriosis treatment 2026
- Anti-NRP1 peptide-engineered ROS/pH dual-responsive nanoparticles for Alpelisib delivery regulate Sema3A-NRP1/PI3K-AKT signaling to balance oxidative stress and inhibit angiogenesis in endometriosis 2026
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