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人脐带间充质干细胞外泌体通过抑制大鼠和 NRK-52E 细胞焦亡缓解急性肾损伤。

Human umbilical cord mesenchymal stem cell exosomes alleviate acute kidney injury by inhibiting pyroptosis in rats and NRK-52E cells.

机构信息

Department of Urology, Children's Hospital of Chongqing Medical University, Chongqing, PR China.

Pediatric Research Institute, Children's Hospital of Chongqing Medical University, Chongqing, PR China.

出版信息

Ren Fail. 2023 Dec;45(1):2221138. doi: 10.1080/0886022X.2023.2221138.


DOI:10.1080/0886022X.2023.2221138
PMID:37293812
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10259332/
Abstract

Human umbilical cord mesenchymal stem cells (hucMSCs) have been shown to improve kidney injury. Exosomes have been indicated to be important mediators of renal protection in MSC therapy. In spite of this, the mechanism remains unclear. Our study investigated how exosomes derived from hucMSCs (hucMSC-Ex) improve acute kidney injury (AKI). Exosomes were extracted by using an ultracentrifugation technique and identified by transmission electron microscopy (TEM), nanoparticle tracking analysis (NTA), and Western blot. Twenty-four male SD rats were randomly divided into four groups: sham group, sham + hucMSC-Ex group, ischemia-reperfusion injury (IRI) group, and IRI + hucMSC-Ex group. , we treated rat proximal renal tubular epithelial cell line (NRK-52E) with cisplatin to mimic models of AKI. The NRK-52E cells were treated with or without 160 μg/mL hucMSC-Ex, and 1 µg/mL cisplatin was added after 9 h. Cells were harvested after 24 h. In the IRI group, the levels of serum creatinine (Scr) and blood urea nitrogen (BUN) were increased; renal tubules were dilated, epithelial cells were vacuolated, and collagen fibers were deposited in the renal interstitium. After treatment with cisplatin, the NRK-52E cells displayed pyroptotic morphology characterized by pyroptotic bodies. The protein expression levels of fibronectin, α-smooth muscle actin (α-SMA), vimentin, gasdermin D (GSDMD), caspase-1, interleukin-1 (IL-1β) and NLRP3 in IRI tissues and in cisplatin treatment NRK-52E cells were significantly upregulated. However, after the hucMSC-Ex intervention, kidney injury was effectively improved and . The current study shows that pyroptosis is involved in AKI and that hucMSC-Ex improves AKI by inhibiting pyroptosis.

摘要

人脐带间充质干细胞(hucMSCs)已被证明可改善肾损伤。外泌体已被证明是 MSC 治疗中肾保护的重要介质。尽管如此,其机制仍不清楚。本研究探讨了 hucMSCs 来源的外泌体(hucMSC-Ex)如何改善急性肾损伤(AKI)。通过超速离心技术提取外泌体,并通过透射电子显微镜(TEM)、纳米颗粒跟踪分析(NTA)和 Western blot 进行鉴定。24 只雄性 SD 大鼠随机分为四组:假手术组、假手术+hucMSC-Ex 组、缺血再灌注损伤(IRI)组和 IRI+hucMSC-Ex 组。为了建立 AKI 模型,我们用顺铂处理大鼠近端肾小管上皮细胞系(NRK-52E)。NRK-52E 细胞用或不用 160μg/mL hucMSC-Ex 处理,9 小时后加入 1μg/mL 顺铂。24 小时后收获细胞。在 IRI 组中,血清肌酐(Scr)和血尿素氮(BUN)水平升高;肾小管扩张,上皮细胞空泡化,肾间质沉积胶原纤维。用顺铂处理后,NRK-52E 细胞呈现出焦亡形态,特征是焦亡体。IRI 组织和顺铂处理 NRK-52E 细胞中纤维连接蛋白、α-平滑肌肌动蛋白(α-SMA)、波形蛋白、gasdermin D(GSDMD)、半胱氨酸天冬氨酸蛋白酶-1(caspase-1)、白细胞介素-1β(IL-1β)和 NLRP3 的蛋白表达水平均显著上调。然而,在 hucMSC-Ex 干预后,肾损伤得到有效改善。本研究表明焦亡参与 AKI,hucMSC-Ex 通过抑制焦亡来改善 AKI。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/28463fca5d2d/IRNF_A_2221138_F0007_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2c7b10954fd7/IRNF_A_2221138_F0001_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2e8e98375c90/IRNF_A_2221138_F0002_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2f8cd3e41f4c/IRNF_A_2221138_F0003_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/77052522215c/IRNF_A_2221138_F0004_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/c12a5cfd8266/IRNF_A_2221138_F0005_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/d1e8533bdfb6/IRNF_A_2221138_F0006_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/28463fca5d2d/IRNF_A_2221138_F0007_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2c7b10954fd7/IRNF_A_2221138_F0001_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2e8e98375c90/IRNF_A_2221138_F0002_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/2f8cd3e41f4c/IRNF_A_2221138_F0003_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/77052522215c/IRNF_A_2221138_F0004_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/c12a5cfd8266/IRNF_A_2221138_F0005_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/d1e8533bdfb6/IRNF_A_2221138_F0006_C.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d5/10259332/28463fca5d2d/IRNF_A_2221138_F0007_C.jpg

相似文献

[1]
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[2]
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引用本文的文献

[1]
The role of stem cell-derived exosomes in regulating pyroptosis for disease therapy.

Stem Cell Res Ther. 2025-7-18

[2]
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Biochem Biophys Rep. 2025-6-3

[3]
Human umbilical cord mesenchymal stem cell-derived exosomes repair IBD by activating the SIRT1-FXR pathway in macrophages.

Stem Cell Res Ther. 2025-5-9

[4]
Emerging roles of exosomes in the diagnosis and treatment of kidney diseases.

Front Pharmacol. 2025-4-16

[5]
The Role of Viral Infections in Acute Kidney Injury and Mesenchymal Stem Cell-Based Therapy.

Stem Cell Rev Rep. 2025-4-8

[6]
Emerging Frontiers in acute kidney injury: The role of extracellular vesicles.

Bioact Mater. 2025-2-18

[7]
Exosome Loaded in Microneedle Patch Ameliorates Renal Ischemia-Reperfusion Injury in a Mouse Model.

Stem Cells Int. 2025-1-15

[8]
Exosomes Derived from Adipose Mesenhymal Stem Cells Ameliorate Lipid Metabolism Disturbances Following Liver Ischemia-Reperfusion Injury in Miniature Swine.

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[9]
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[10]
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本文引用的文献

[1]
Stem Cells in Kidney Ischemia: From Inflammation and Fibrosis to Renal Tissue Regeneration.

Int J Mol Sci. 2023-2-27

[2]
Protective Effect of GM1 Attenuates Hippocampus and Cortex Apoptosis After Ketamine Exposure in Neonatal Rat via PI3K/AKT/GSK3β Pathway.

Mol Neurobiol. 2021-7

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Pyroptosis and Redox Balance in Kidney Diseases.

Antioxid Redox Signal. 2021-7

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Andrade-Oliveira Salvianolic Acid B Modulates Caspase-1-Mediated Pyroptosis in Renal Ischemia-Reperfusion Injury Nrf2 Pathway.

Front Pharmacol. 2020-9-3

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Tisp40 Induces Tubular Epithelial Cell GSDMD-Mediated Pyroptosis in Renal Ischemia-Reperfusion Injury via NF-κB Signaling.

Front Physiol. 2020-8-13

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Acta Clin Croat. 2020-3

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Ultrastructural Characteristics of DHA-Induced Pyroptosis.

Neuromolecular Med. 2020-6

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Immunomodulation by Mesenchymal Stem Cells (MSCs): Mechanisms of Action of Living, Apoptotic, and Dead MSCs.

Front Immunol. 2019-6-4

[9]
Neutrophil pyroptosis: new perspectives on sepsis.

Cell Mol Life Sci. 2019-3-14

[10]
Transplantation of bone marrow mesenchymal stromal cells attenuates liver fibrosis in mice by regulating macrophage subtypes.

Stem Cell Res Ther. 2019-1-11

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