Bai Lifang, Wang Ying
Aier Academy of Ophthalmology, Central South University, Changsha, Hunan, PR China.
Aier Academy of Ophthalmology, Central South University, Changsha, Hunan, PR China; Liaoning Aier Eye Hospital, Shenyang, Liaoning Province, China.
Exp Cell Res. 2024 Aug 15;441(2):114170. doi: 10.1016/j.yexcr.2024.114170. Epub 2024 Jul 15.
Diabetic retinopathy (DR) is a major cause of vision loss and blindness in adults. Cellular senescence was involved in the pathogenesis of early-stage DR and is positively correlated with progression. Thus, our study aimed at exploring the effect and potential mechanism of Mesenchymal stem cells-derived exosomes (MSCs-EXOs) on Retinal Pigment Epithelial (RPE) cells senescence at an early stage of DR in vivo and in vitro. ARPE-19 cells were incubated in high glucose (HG) medium mixed with MSCs-EXOs to observe the changes in cell viability. Senescence-associated β-galactosidase (SA-β-gal) staining, Western blot and qRT-PCR were used to assess the expression of senescence-related genes and antioxidant mediators. Quantitative Real-Time polymerase chain reaction (qRT-PCR), Optical coherence tomography (OCT) Hematoxylin and eosin (HE) staining and Electroretinogram (ERG) were respectively used to verify cellular senescence, the structure and function of the retina. Our findings demonstrated that MSCs-EXOs inhibited HG-induced senescence in ARPE-19 cells. Furthermore, MSCs-EXOs reduced HG-induced cell apoptosis and oxidative stress levels while promoting cell proliferation. Mechanistically, HG suppressed PI3K/AKT phosphorylation as well as nuclear factor erythroid 2-related factor 2 (Nrf2) expression along with its downstream target gene expression in ARPE-19 cells. However, MSCs-EXOs reversed these changes by alleviating cellular senescence while enhancing antioxidant activity. In line with our results in vitro, MSCs-EXOs significantly ameliorated hyperglycemia-induced senescence in DR mice by downregulating mRNA expression of P53, P21, P16, and SASP. Additionally, MSCs-EXOs improved the functional and structural integrity of the retina in DR mice. Our study revealed the protective effect of MSCs-EXOs on cellular senescence, offering new insights for the treatment of DR.
糖尿病性视网膜病变(DR)是成人视力丧失和失明的主要原因。细胞衰老参与了早期DR的发病机制,且与疾病进展呈正相关。因此,我们的研究旨在探讨间充质干细胞来源的外泌体(MSCs-EXOs)在体内和体外对DR早期视网膜色素上皮(RPE)细胞衰老的影响及潜在机制。将ARPE-19细胞在与MSCs-EXOs混合的高糖(HG)培养基中培养,以观察细胞活力的变化。采用衰老相关β-半乳糖苷酶(SA-β-gal)染色、蛋白质印迹法和qRT-PCR评估衰老相关基因和抗氧化介质的表达。分别使用定量实时聚合酶链反应(qRT-PCR)、光学相干断层扫描(OCT)、苏木精-伊红(HE)染色和视网膜电图(ERG)来验证细胞衰老、视网膜的结构和功能。我们的研究结果表明,MSCs-EXOs可抑制HG诱导的ARPE-19细胞衰老。此外,MSCs-EXOs可降低HG诱导的细胞凋亡和氧化应激水平,同时促进细胞增殖。机制上,HG抑制ARPE-19细胞中PI3K/AKT磷酸化以及核因子红细胞2相关因子2(Nrf2)表达及其下游靶基因表达。然而,MSCs-EXOs通过减轻细胞衰老同时增强抗氧化活性来逆转这些变化。与我们的体外结果一致,MSCs-EXOs通过下调P53、P21、P16和衰老相关分泌表型(SASP)的mRNA表达,显著改善了DR小鼠高血糖诱导的衰老。此外,MSCs-EXOs改善了DR小鼠视网膜的功能和结构完整性。我们的研究揭示了MSCs-EXOs对细胞衰老的保护作用,为DR的治疗提供了新的见解。