Chronic pancreatitis (CP) is marked by progressive fibrosis and the activation of pancreatic stellate cells (PSCs), accompanied by the destruction of pancreatic parenchyma, leading to the loss of acinar cells (ACs). Few research studies have explored the mechanism by which damaged ACs (DACs) contribute to PSCs activation and pancreatic fibrosis. Currently, there are no effective drugs for curing CP or limiting the progression of pancreatic fibrosis. In this research, co-culture with intact acinar cells (IACs) suppressed PSC activation, while co-culture with DACs did the opposite. Krüppel-like factor 4 (KLF4) was significantly upregulated in DACs and was established as the key molecule that switches ACs from PSCs-suppressor to PSCs-activator. We revealed the exosomes of IACs contributed to the anti-activated function of IACs-CS on PSCs. MiRNome profiling showed that let-7 family is significantly enriched in IAC-derived exosomes (>30% miRNome), which partially mediates IACs' suppressive impacts on PSCs. Furthermore, it has been observed that the enrichment of let-7 in exosomes was influenced by the expression level of KLF4. Mechanistic studies demonstrated that KLF4 in ACs upregulated Lin28A, thereby decreasing let-7 levels in AC-derived exosomes, and thus promoting PSCs activation. We utilized an adeno-associated virus specifically targeting KLF4 in ACs (shKLF4-pAAV) to suppress PSCs activation in CP, resulting in reduced pancreatic fibrosis. IAC-derived exosomes hold potential as potent weapons against PSCs activation via let-7s, while activated KLF4/Lin28A signaling in DACs diminished such functions. ShKLF4-pAAV holds promise as a novel therapeutic approach for CP.
Optimized rAAV8 targeting acinar KLF4 ameliorates fibrosis in chronic pancreatitis via exosomes-enriched let-7s suppressing pancreatic stellate cells activation.
优化的 rAAV8 靶向腺泡 KLF4,通过富含 let-7 的外泌体抑制胰腺星状细胞活化,从而改善慢性胰腺炎的纤维化
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作者:Zhao Yating, Feng Yongpu, Sun Fengyuan, Li Lei, Chen Jiayu, Song Yingxiao, Zhu Wenbo, Hu Xiulin, Li Zhaoshen, Kong Fanyang, Du Yiqi, Kong Xiangyu
| 期刊: | Molecular Therapy | 影响因子: | 12.000 |
| 时间: | 2024 | 起止号: | 2024 Aug 7; 32(8):2624-2640 |
| doi: | 10.1016/j.ymthe.2024.06.030 | 研究方向: | 细胞生物学 |
| 疾病类型: | 胰腺炎 | ||
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