Effect of Danggui Buxue decoction on hypoxia-induced injury of retinal Müller cells in vitro.

IF 2.1 4区 生物学 Q4 CELL BIOLOGY European Journal of Histochemistry Pub Date : 2024-11-25 DOI:10.4081/ejh.2024.4140
Xilin Ge, Caoxin Huang, Wenting Chen, Chen Yang, Wenfang Huang, Jia Li, Shuyu Yang
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Abstract

Retinopathy is a common complication of diabetes mellitus and the leading cause of visual impairment. Danggui Buxue decoction (RRP) has been used as a traditional drug for the treatment of diabetic nephropathy for many years. The aim of this study was to investigate the effects of RRP on hypoxia-induced retinal Müller cell injury. A model of retinal Müller cell damage was created using high glucose levels (25 mmol/L) and/or exposure to low oxygen conditions (1% O2). RRP was given to rats by continuous gavage for 7 days to obtain drug-containing serum. After sterilization, the serum was added to the culture medium at a ratio of 10%. Cell viability, apoptosis, and cell proliferation were assessed using the CCK-8 kit, Annexin V-FITC/propidium iodide apoptosis kit, and EdU kit. The mRNA levels of angiogenesis factors (ANGPTL4, VEGF) and inflammatory factors (IL-1B, ICAM-1) were detected by RT-qPCR. Western blot analysis was employed to assess the levels of proteins related to the ATF4/CHOP pathway. Following hypoxia for 48 h and 72 h, there was a significant decrease in cell viability and proliferation, as well as a notable increase in apoptosis compared to the control group (21% O2). However, high glucose stimulation had no significant effect, and high glucose combined with hypoxia had no further damage to cells. After 48 h of exposure to low oxygen levels, the mRNA expression levels of ANGPTL4, VEGF, IL-1B, and ICAM-1 in retinal Müller cells were significantly higher than in the control group (21% O2). RRP treatment significantly alleviated the increase of cell apoptosis and the upregulation of IL-1B and-1 in retinal Müller cells induced by hypoxia. RRP has the potential to reduce the suppression of the ATF4/CHOP pathway in hypoxia-induced retinal Müller cells, and it significantly alleviates cell apoptosis through regulating inflammatory factors and the ATF4/CHOP pathway.

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丹桂苦参汤对缺氧诱导的体外视网膜 Müller 细胞损伤的影响
视网膜病变是糖尿病的常见并发症,也是视力受损的主要原因。多年来,当归附子汤(RRP)一直被用作治疗糖尿病肾病的传统药物。本研究的目的是探讨 RRP 对缺氧诱导的视网膜 Müller 细胞损伤的影响。利用高血糖水平(25 mmol/L)和/或暴露于低氧条件(1% O2),建立了视网膜 Müller 细胞损伤模型。连续给大鼠灌胃 RRP 7 天,以获得含药物的血清。灭菌后,按 10%的比例将血清添加到培养基中。使用 CCK-8 试剂盒、Annexin V-FITC/propidium iodide 细胞凋亡试剂盒和 EdU 试剂盒评估细胞活力、细胞凋亡和细胞增殖。通过 RT-qPCR 检测血管生成因子(ANGPTL4、VEGF)和炎症因子(IL-1B、ICAM-1)的 mRNA 水平。采用 Western 印迹分析评估 ATF4/CHOP 通路相关蛋白的水平。与对照组(21% O2)相比,缺氧 48 小时和 72 小时后,细胞活力和增殖显著下降,细胞凋亡明显增加。然而,高糖刺激对细胞没有明显影响,高糖与低氧结合对细胞也没有进一步损害。暴露于低氧水平 48 小时后,视网膜 Müller 细胞中 ANGPTL4、VEGF、IL-1B 和 ICAM-1 的 mRNA 表达水平明显高于对照组(21% 氧)。RRP 能明显缓解缺氧引起的视网膜 Müller 细胞凋亡增加和 IL-1B 和-1 的上调。RRP有可能减少缺氧诱导的视网膜Müller细胞中ATF4/CHOP通路的抑制,并通过调节炎症因子和ATF4/CHOP通路明显缓解细胞凋亡。
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来源期刊
European Journal of Histochemistry
European Journal of Histochemistry 生物-细胞生物学
CiteScore
3.70
自引率
5.00%
发文量
47
审稿时长
3 months
期刊介绍: The Journal publishes original papers concerning investigations by histochemical and immunohistochemical methods, and performed with the aid of light, super-resolution and electron microscopy, cytometry and imaging techniques. Coverage extends to: functional cell and tissue biology in animals and plants; cell differentiation and death; cell-cell interaction and molecular trafficking; biology of cell development and senescence; nerve and muscle cell biology; cellular basis of diseases. The histochemical approach is nowadays essentially aimed at locating molecules in the very place where they exert their biological roles, and at describing dynamically specific chemical activities in living cells. Basic research on cell functional organization is essential for understanding the mechanisms underlying major biological processes such as differentiation, the control of tissue homeostasis, and the regulation of normal and tumor cell growth. Even more than in the past, the European Journal of Histochemistry, as a journal of functional cytology, represents the venue where cell scientists may present and discuss their original results, technical improvements and theories.
期刊最新文献
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