眼科 ›› 2023, Vol. 32 ›› Issue (6): 509-515.doi: 10.13281/j.cnki.issn.1004-4469.2023.06.011

• 论著 • 上一篇    下一篇

新型水凝胶眼内植入材料与人视网膜Müller细胞体外组织相容性的研究

苟月琴  冉瑞金  陶梦颖  张明   

  1. 四川大学华西医院眼科,成都610041
  • 收稿日期:2023-05-06 出版日期:2023-11-25 发布日期:2023-12-07
  • 通讯作者: 张明,Email: zhangmingscu@126.com
  • 基金资助:
    国家重点研发计划(2018YFC1106103)

A study on histocompatibility between a new type of endotamponade hydrogel substitute and Müller cells of human retina in vitro

Gou Yueqin, Ran Ruijin, Tao Mengying, Zhang Ming   

  1. Department of Ophthalmology, West China Hospital, Sichuan University, Chengdu 610041, China
  • Received:2023-05-06 Online:2023-11-25 Published:2023-12-07
  • Contact: Zhang Ming, Email: zhangmingscu@126.com
  • Supported by:
    National Key Research and Development Project (2018YFC1106103)

摘要: 目的 探讨一种新型水凝胶眼内植入材料与人视网膜Müller细胞的体外组织相容性。设计 实验研究。研究对象 人视网膜Müller细胞系(MIO-M1)。方法 将人视网膜Müller细胞传代培养,生长稳定后将其分为三组,分别加入一定浓度的平衡盐溶液(BSS)、新型水凝胶浸提液、全氟化碳液(PFCL)进行培养,观察24 h后各组细胞形态,各组共培养1 h、4 h、12 h、24 h、48 h、72 h后,MTT法测定不同时间点各组细胞活力,流式细胞术检测细胞凋亡情况,ELISA测不同时间点上清液中白介素(IL)-6浓度,免疫荧光鉴定培养24 h后细胞内活性氧(ROS)表达水平。主要指标 细胞形态,细胞存活率,IL-6浓度,细胞凋亡率,ROS浓度。 结果 与BSS组相比,新型水凝胶浸提液作用于Müller细胞72 h后细胞活力及细胞存活率不下降,细胞形态无明显变化,IL-6分泌水平无明显上升,作用于细胞24 h后细胞内ROS水平无明显升高。与BSS组相比,PFCL作用于Müller细胞12 h即可出现IL-6分泌水平升高(P=0.0105),24 h后细胞活力开始下降(P=0.0147),与PFCL接触的细胞皱缩、数目减少、排列疏松,同时分析不同时间点细胞凋亡情况发现24 h后Müller细胞晚期凋亡+坏死率升高(P=0.0201),细胞内ROS水平显著升高(P<0.0001)。结论 合成的新型水凝胶眼内植入材料与人视网膜Müller细胞共培养在72 h内具有良好的体外组织相容性,PFCL与Müller细胞接触12 h即可引起细胞IL-6分泌水平增高,24 h后细胞活力下降、凋亡增加,可能与细胞内ROS激活的氧化应激机制有关。(眼科,2023,32: 509-515)

关键词:  , Müller细胞;全氟化碳液;水凝胶;人工玻璃体

Abstract: Objective To investigate the histocompatibility between a new type of endotamponade hydrogel substitute and human retinal Müller cells in vitro. Design Experiment study. Participants Human retinal Müller cell line (MIO-M1). Methods Human retinal Müller cells were passaged and cultured until stable growth, and then divided into three groups, which were respectively treated with a certain concentration of balanced salt solution (BSS), new type of Hydrogel extract, and perfluorocarbon liquid (PFCL) for cultivation. The morphology of cells in each group was observed after 24 h. The cells were cultured for 1 h, 4 h, 12 h, 24 h, 48 h, and 72 h, respectively. The cell viability was measured using MTT assay at different time points. Flow cytometry was used to detect the cell apoptosis, and the concentration of IL (interleukin)-6 in the supernatant was measured using ELISA at different time points. Meanwhile, expression of intracellular reactive oxygen species (ROS) was identified by immunofluorescence after 24 h of culture. Main Outcomes Measures Cell morphology, cell viability, IL-6 concentration, cell apoptosis rate, ROS concentration. Results After co-culturing the new hydrogel extract and Müller cells for 72 h, compared with the group of BSS, there was no decrease in cell viability or cell survival rate, no significant change in cell morphology, no significant increase in the secretion level of IL-6 and intracellular ROS after 24 h. In addition, compared with the group of BSS, after co-culturing PFCL and Müller cells for 12 h, the secretion level of IL-6 was increased (P=0.0105), the cell viability started to decrease after 24 h (P=0.0147), and the cells in contact with PFCL shrank, the number of the cells decreased, and the arrangement of cells was loose. Meanwhile, the analysis of apoptosis at different time points showed that the late apoptosis and necrosis rate of Müller cells increased after 24 h (P=0.0201). The level of intracellular ROS significantly increased after 24 h(P<0.0001). Conclusions The new type of endotamponade hydrogel substitute has good histocompatibility with human retinal Müller cells in 72 h. Exposing Müller cells to PFCL for 12 h can increase the secretion level of IL-6. After 24 hours, the cell viability decreased and the level of apoptosis increased, which may be related to the oxidative stress mechanism activated by ROS in cells. (Ophthalmol CHN, 2023, 32: 509-515)

Key words: Müller cells, endotamponade substitute, perfluorocarbon liquid, hydrogel, artificial vitreous body