Zhang Lei, Yan Jie-Jing, Wang Hai-Yan, Li Mu-Qiong, Wang Xi-Xi, Fan Li, Wang Yu-Sheng
Shaanxi Eye Hospital, Xi'an People's Hospital (Xi'an Fourth Hospital), Xi'an 710004, Shaanxi Province, China.
Department of Ophthalmology, Xijing Hospital, Xi'an 710032, Shaanxi Province, China.
Int J Ophthalmol. 2022 Nov 18;15(11):1743-1751. doi: 10.18240/ijo.2022.11.03. eCollection 2022.
To demonstrate the feasibility of mesenchymal stem cell (MSC)-mediated nano drug delivery, which was characterized by the "Trojan horse"-like transport of hypoxia-inducible factor-1α small interfering RNA (HIF-1α siRNA) between MSCs and retinal pigment epithelial cells (RPE) under hypoxia environment.
Plasmid and lentivirus targeting the human HIF-1α gene were designed and constructed. HIF-1α siRNA was encapsulated into poly(lactic-co-glycolic acid) nanoparticles (PLGA-NPs) through the water-in-oil-in-water (w/o/w) multiple emulsion technique. The effect of PLGA-NPs uptake on the expression of HIF-1α mRNA was tested in RPE cells by real-time quantitative polymerase chain reaction (qPCR) and additional transfected conditions were used as control, including lentivirus group, nude plasmid group and blank PLGA group. MSCs were transfected with the NPs and the transfection efficacy was evaluated by flow cytometry. Transwell co-culture system of transfected MSCs and RPE cells was constructed under hypoxia environment. The effects of MSC-loaded HIF-1α siRNA PLGA-NPs on proliferation, apoptosis, and migration of RPE cells were then evaluated. The effect of transfected MSCs on HIF-1α expression of RPE cells was analyzed by using qPCR at the time points 24h, 3d, and 7d.
The average diameter of PLGA-NPs loaded with HIF siRNA was 314.1 nm and the zeta potential was -0.36 mV. The transfection efficiency of PLGA-NPs was 67.3%±5.2% into MSCs by using flow cytometry. Compared with the lentivirus group, the PLGA-NPs loaded with HIF-1α siRNA can effectively reduce the expression of HIF-1α mRNA up to 7d in RPE (0.63±0.05 at 7d, <0.001). In the Transwell co-culture system of transfected MSCs and RPE, the abilities of proliferation (2.34±0.17, 2.40±0.28, 2.47±0.24 at 48h, =0.23, =0.80), apoptosis (14.83%±2.43%, 12.94%±2.19%, 12.39%±3.21%; =0.70, =0.53) and migration (124.5±7.78, 119.5±5.32, 130±9.89, =1.33, =0.33) of the RPE cells had no differences between MSC-loaded HIF-1α siRNA PLGA-NPs and other groups. The inhibition of PLGA on the HIF-1α mRNA expression in RPE cells could continue until the 7 day, the level of HIF-1α mRNA was lower than that of other groups (=171.98, <0.001).
The delivery of PLGA-NPs loaded with HIF-1α siRNA carried by MSCs is found to be beneficial temporally for HIF-1α mRNA inhibition in RPE cells under hypoxia environment. The MSC-based bio-mimetic delivery of HIF-1α siRNA nanoparticles is a potential method for therapy against choroidal neovascularization.
证明间充质干细胞(MSC)介导的纳米药物递送的可行性,其特点是在缺氧环境下,缺氧诱导因子-1α小干扰RNA(HIF-1α siRNA)在MSC与视网膜色素上皮细胞(RPE)之间进行“特洛伊木马”样转运。
设计并构建靶向人HIF-1α基因的质粒和慢病毒。通过水包油包水(w/o/w)多重乳液技术将HIF-1α siRNA包裹于聚乳酸-羟基乙酸共聚物纳米粒(PLGA-NPs)中。采用实时定量聚合酶链反应(qPCR)检测PLGA-NPs摄取对RPE细胞中HIF-1α mRNA表达的影响,并以慢病毒组、裸质粒组和空白PLGA组等其他转染条件作为对照。用纳米粒转染MSC,通过流式细胞术评估转染效率。在缺氧环境下构建转染的MSC与RPE细胞的Transwell共培养体系。然后评估负载HIF-1α siRNA的PLGA-NPs的MSC对RPE细胞增殖、凋亡和迁移的影响。在24小时、3天和7天时间点,用qPCR分析转染的MSC对RPE细胞HIF-1α表达的影响。
负载HIF siRNA的PLGA-NPs平均直径为314.1 nm,zeta电位为-0.36 mV。通过流式细胞术检测,PLGA-NPs转染MSC的效率为67.3%±5.2%。与慢病毒组相比,负载HIF-1α siRNA的PLGA-NPs在RPE中可有效降低HIF-1α mRNA表达直至7天(7天时为0.63±0.05,<0.001)。在转染的MSC与RPE的Transwell共培养体系中,负载HIF-1α siRNA的PLGA-NPs的MSC与其他组相比,RPE细胞的增殖能力(48小时时分别为2.34±0.17、2.40±0.28、2.47±0.24,P = 0.23,P = 0.80)[原文此处可能有误,应为P值比较结果]、凋亡能力(分别为14.83%±2.43%、12.94%±2.19%、12.39%±3.21%;P = 0.70,P = 0.53)和迁移能力(分别为124.5±7.78、119.5±5.32、130±9.89,P = 1.33,P = 0.33)均无差异。PLGA对RPE细胞中HIF-1α mRNA表达水平的抑制作用可持续至7天,HIF-1α mRNA水平低于其他组(P = 171.98,<0.001)。
发现MSC携带的负载HIF-1α siRNA的PLGA-NPs递送在缺氧环境下对RPE细胞中HIF-1α mRNA的抑制具有时间上的益处。基于MSC的HIF-1α siRNA纳米粒仿生递送是治疗脉络膜新生血管的一种潜在方法。