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Macrophage phenotypic switch orchestrates the inflammation and repair/regeneration following acute pancreatitis injury

机译:巨噬细胞表型切换器在急性胰腺炎损伤后康运和修复/再生

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Background Impaired or hyperactive pancreas regeneration after injury would cause exocrine insufficiency or recurrent / chronic pancreatitis and potentially carcinogenesis. Macrophages are the most abundant immune cells in the regenerative pancreas, however their phenotype and role remain poorly defined. Method Using caerulein-induced acute pancreatitis (AP) model, we examined the dynamic landscape of pancreatic macrophages throughout the acute inflammation to regeneration phases by flow cytometric and RNA-seq analyses. Liposome depletion of macrophages, Il4ra sup?/?/sup mice as well as inhibitors were used to elucidate the role and regulatory mechanism of macrophages during pancreatic regeneration. Findings We found that M1 macrophages dominated in the pro-inflammatory phase of AP, while M2-like macrophages dominated during pancreas repair/regeneration. Depletion of macrophages at early or late regenerative stage dramatically blocked the acinar-ductal metaplasia (ADM) or delayed inflammation resolution, respectively. Moreover, alternative activation of macrophages was partially dependent on IL-4RA signaling, and ECM/AKT activation in pancreatic macrophages facilitated inflammation resolution during tissue regeneration. Interpretation Our findings illustrate a dynamic phenotype and function of macrophages during AP repair/regeneration, helping us better understand the mechanism of pancreatic regeneration and providing clues for novel therapeutic strategy.
机译:损伤后的背景损伤或过度活跃的胰腺再生会导致外分泌功能不全或复发性/慢性胰腺炎和潜在的致癌作用。巨噬细胞是再生胰腺中最丰富的免疫细胞,但它们的表型和作用仍然定义不足。使用Caerulein诱导的急性胰腺炎(AP)模型的方法,通过流式细胞术和RNA-SEQ分析检查了整个急性炎症的胰腺癌的动态景观。脂质体耗尽巨噬细胞,IL4RA β/α/α/α/α/α/α/α/α/β-β-β-β-抑制剂才能阐明胰腺再生期间巨噬细胞的作用和调节机制。结果发现我们发现M1巨噬细胞在AP的促炎阶段中占主导地位,而M2样巨噬细胞在胰腺修复/再生期间主导。早期或晚期再生阶段的巨噬细胞的耗尽显着阻止了分别的癌症 - 导管元(ADM)或延迟的炎症分辨率。此外,巨噬细胞的替代活化部分依赖于IL-4Ra信号传导,并且在组织再生期间胰腺癌的ECM / AKT活化促进炎症分辨率。解释我们的研究结果说明了AP修复/再生期间巨噬细胞的动态表型和功能,帮助我们更好地理解胰腺再生的机制并提供新的治疗策略的线索。

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