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纳米颗粒包裹的氯喹/他莫昔芬组合通过诱导型一氧化氮合酶(吲哚胺2,3-双加氧酶)信号通路与间充质干细胞协同作用,阻止急性胰腺炎小鼠病情进展。

Nanoparticle encapsulated CQ/TAM combination harmonizes with MSCs in arresting progression of severity in AP mice through iNOS (IDO) signaling.

作者信息

Liu Huimin, Liu Simeng, Song Xiaoshuang, Jiang Ailing, Zou Yu, Deng Yuchuan, Yue Chao, Li Zhenlu, Yang Dujiang, Yang Chengli, Sun Dan, Yang Fan, Li Mao, Jiang Kun, Lu Huimin, Hu Weiming, Zheng Yu

机构信息

State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, Sichuan, 6110041, China.

Department of Hepatobiliary and Pancreatic Surgery, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan Province, China.

出版信息

Mater Today Bio. 2022 Feb 26;14:100226. doi: 10.1016/j.mtbio.2022.100226. eCollection 2022 Mar.

Abstract

BACKGROUND

Sever acute pancreatitis (SAP) is a critical disease with high mortality, and lack of clinically available treatments with specificity and effectiveness. Bone marrow derived mesenchymal stem cells (BMSCs) exhibited moderate effect on AP which needs further improvement.

METHODS

Pancreatic infiltrating lymphocytes were analyzed to demonstrate the intervention of BMSCs on inflammatory cell infiltration of AP. Gene silencing with siRNA and small molecule inhibitor were utilized to determine the key effector molecule of BMSCs on AP. Pharmacological regulation and nanotechnology were introduced to further ameliorate BMSCs action.

RESULTS

It was revealed that BMSCs prevent the progression of acute pancreatitis (AP) by reducing recruitment of macrophages, neutrophils and CD4+T cells in the lesion site. The pivotal role of chemokine-iNOS-IDO axis for BMSCs to intervene AP was confirmed. Compared with any single drug, Chloroquine/Tamoxifen combination together with IFN-γ pronouncedly up-regulated the transcription of several MSC immune regulators such as COX-2, PD-L1, HO-1 especially iNOS/IDO. As expected, BMSCs and human umbilical cord mesenchymal stem cells (UMSCs) pretreated with CQ/TAM/IFN-γ exerted enhanced intervention in AP and SAP mice. Moreover, pretreatment with CQ-LPs/TAM-NPs combination not only counteracted MSCs proliferation inhibition induced by free drugs but also enhanced their efficacy.

CONCLUSION

Under the background of rapid progress in MSCs clinical translation, this study focuses on the urgent clinical issue and initiates an original mechanism-based strategy to promote intervention on severity progression of SAP, which promises its clinical translation in future.

摘要

背景

重症急性胰腺炎(SAP)是一种死亡率高的危重病,且缺乏具有特异性和有效性的临床可用治疗方法。骨髓来源的间充质干细胞(BMSCs)对急性胰腺炎(AP)显示出一定疗效,但仍需进一步改善。

方法

分析胰腺浸润淋巴细胞,以证明BMSCs对AP炎症细胞浸润的干预作用。利用小干扰RNA(siRNA)和小分子抑制剂进行基因沉默,以确定BMSCs对AP的关键效应分子。引入药理学调控和纳米技术以进一步改善BMSCs的作用。

结果

研究发现,BMSCs通过减少病变部位巨噬细胞、中性粒细胞和CD4+T细胞的募集来阻止急性胰腺炎(AP)的进展。证实了趋化因子-iNOS-IDO轴在BMSCs干预AP中的关键作用。与任何单一药物相比,氯喹/他莫昔芬联合干扰素-γ显著上调了几种MSC免疫调节因子如COX-2、PD-L1、HO-1尤其是iNOS/IDO的转录。正如预期的那样,用CQ/TAM/IFN-γ预处理的BMSCs和人脐带间充质干细胞(UMSCs)对AP和SAP小鼠的干预作用增强。此外,用CQ-LPs/TAM-NPs联合预处理不仅抵消了游离药物诱导的MSCs增殖抑制,还增强了它们的疗效。

结论

在MSCs临床转化快速进展的背景下,本研究聚焦于紧迫的临床问题,开创了一种基于机制的原创策略来促进对SAP严重程度进展的干预,有望在未来实现其临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e08/8924312/252d6fdec6ae/ga1.jpg

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