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Seminiferous tubule–inspired coaxial bioprinting–derived extracellular vesicles restore Leydig cell steroidogenesis by restraining Wnt4/β-catenin signaling

2026-02-17

Abstract excerpt

<title>Abstract</title> <p>Chemotherapy-associated gonadotoxicity compromises Leydig cell steroidogenesis and leads to testosterone deficiency, yet repair is hindered by the testicular barrier–immune niche and by limited manufacturability of biologics. Inspired by the tubular architecture of seminiferous tubules, we develop a coaxial bioprinting–enabled encapsulation culture that generates continuous core–shell h...

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Literature Corpus work
95d105b1-4d30-5322-a92d-16ce47130ae0
DOI
10.21203/rs.3.rs-8836594/v1
Open publication

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Seminiferous tubule–inspired coaxial bioprinting–derived extracellular vesicles restore Leydig cell steroidogenesis by restraining Wnt4/β-catenin signalingDOI 10.21203/rs.3.rs-8836594/v1
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