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Ion channel/Stat6-driven nano-immune programming of tissue-resident macrophages by amide-functionalized nanocellulose
- Dutta, Sayan Deb;
- An, Jeong Man;
- Mondal, Jagannath;
- Bose, Subhankar;
- Jana, Santosh Kumar;
- ... Maity, Chandan Kuman;
- 외 3명
WEB OF SCIENCE
2SCOPUS
2초록
Nanocellulose has long been studied as a bioactive material for tissue engineering; however, the mechanisms underlying its surface chemistry-mediated immune reprogramming remain unclear. Herein, we report a comprehensive multi-omics study of pristine cellulose nanocrystals (CNCs) and amide-functionalized CNCs (aCNCs) to elucidate their 'nano-immune' interaction and impact on tissue-resident macrophages in vivo. Using integrated scRNA-Seq, bulk RNA-Seq, pharmacological inhibition, and histological profiling, we reveal that aCNCs exhibit outstanding biocompatibility, showing no pro-inflammatory activation of macrophages across major organs within 14-day subacute window. In particular, a-CNCs exposure correlates with enhanced voltagegated ion channel (KCa3.1 and Scn1b) and Stat6 signaling, while suppressing Nfkb-driven pro-inflammatory signals. This suggest that ion channel activation is strongly associated with M2 macrophage polarization. Moreover, a 28-day splenocytes profiling revealed no observable increase in CD4+/CD8+ T cells, suggesting nonadaptive immune response after a-CNC exposure. Concurrently, pseudotime mapping further discloses that aCNC exposure preserves natural macrophage developmental trajectories across organ niches, while pristine CNCs induce mild M1-skewing in the spleen. In vitro validation confirms that a-CNCs intrinsically drive a pro-healing phenotype in macrophages, underscoring that macro-scale immune behavior can be transcriptionally triggered through nano-level surface chemistry of CNCs.
키워드
- 제목
- Ion channel/Stat6-driven nano-immune programming of tissue-resident macrophages by amide-functionalized nanocellulose
- 저자
- Dutta, Sayan Deb; An, Jeong Man; Mondal, Jagannath; Bose, Subhankar; Jana, Santosh Kumar; Seol, Youjin; Maity, Chandan Kuman; Lee, Yong-kyu; Lim, Ki-Taek
- 발행일
- 2026-08
- 유형
- Article
- 저널명
- BIOACTIVE MATERIALS
- 권
- 62
- 페이지
- 883 ~ 898