BioMediTech, Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Stem Cells Transl Med. 2022 Jul 20;11(7):753-766. doi: 10.1093/stcltm/szac029.
Human pluripotent stem cell (hPSC)-derived retinal pigment epithelium (RPE) is extensively used in RPE research, disease modeling, and transplantation therapies. For successful outcomes, a thorough evaluation of their physiological authenticity is a necessity. Essential determinants of this are the different ion channels of the RPE, yet studies evaluating this machinery in hPSC-RPE are scarce. We examined the functionality and localization of potassium (K+) channels in the human embryonic stem cell (hESC)-derived RPE. We observed a heterogeneous pattern of voltage-gated K+ (KV) and inwardly rectifying K+ (Kir) channels. Delayed rectifier currents were recorded from most of the cells, and immunostainings showed the presence of KV1.3 channel. Sustained M-currents were also present in the hESC-RPE, and based on immunostaining, these currents were carried by KCNQ1-KCNQ5 channel types. Some cells expressed transient A-type currents characteristic of native human fetal RPE (hfRPE) and cultured primary RPE and carried by KV1.4 and KV4.2 channels. Of the highly important Kir channels, we found that Kir7.1 is present both at the apical and basolateral membranes of the hESC- and fresh native mouse RPE. Kir currents, however, were recorded only from 14% of the hESC-RPE cells with relatively low amplitudes. Compared to previous studies, our data suggest that in the hESC-RPE, the characteristics of the delayed rectifier and M-currents resemble native adult RPE, while A-type and Kir currents resemble native hfRPE or cultured primary RPE. Overall, the channelome of the RPE is a sensitive indicator of maturity and functionality affecting its therapeutic utility.
人多能干细胞(hPSC)衍生的视网膜色素上皮(RPE)广泛用于 RPE 研究、疾病建模和移植治疗。为了获得成功的结果,必须对其生理真实性进行彻底评估。这方面的重要决定因素是 RPE 的不同离子通道,但评估 hPSC-RPE 中这种机制的研究很少。我们研究了人胚胎干细胞(hESC)衍生的 RPE 中钾(K+)通道的功能和定位。我们观察到电压门控 K+(KV)和内向整流 K+(Kir)通道的异质模式。大多数细胞记录到延迟整流电流,免疫染色显示 KV1.3 通道的存在。hESC-RPE 中也存在持续的 M 电流,根据免疫染色,这些电流由 KCNQ1-KCNQ5 通道类型携带。一些细胞表达特征性的瞬时 A 型电流,类似于天然人胎儿 RPE(hfRPE)和培养的原代 RPE,并由 KV1.4 和 KV4.2 通道携带。在重要的 Kir 通道中,我们发现 Kir7.1 存在于 hESC 和新鲜天然小鼠 RPE 的顶侧和基底外侧膜上。然而,只有 14%的 hESC-RPE 细胞记录到 Kir 电流,且幅度相对较低。与之前的研究相比,我们的数据表明,在 hESC-RPE 中,延迟整流和 M 电流的特征类似于天然成年 RPE,而 A 型和 Kir 电流类似于天然 hfRPE 或培养的原代 RPE。总的来说,RPE 的通道组是成熟度和功能的敏感指标,影响其治疗用途。