Bakker Noëlle, Croes Aïcha A, Prevaes Eva, van Noorden Cornelis J F, Schlingemann Reinier O, Klaassen Ingeborg
Ocular Angiogenesis Group, Department of Ophthalmology, Amsterdam UMC location University of Amsterdam, Amsterdam, The Netherlands.
Amsterdam Cardiovascular Sciences, Microcirculation, Amsterdam, The Netherlands.
J Histochem Cytochem. 2025 Mar-Apr;73(3-4):147-170. doi: 10.1369/00221554251323655. Epub 2025 Mar 17.
Vascular pericytes are widely present across the human body and crucial in regulating vascular flow, permeability, and homeostasis. In the human retina, pericytes are important for forming and maintaining the blood-retinal barrier, as well as for autoregulation of blood flow. Pericyte loss has been implicated in various pathological conditions. Visualization of pericytes by immunofluorescence (IF) staining provides valuable information on pericyte number, morphology, location, and on expression of anatomic and functional markers. However, species-specific differences in pericyte marker expression exist. In this study, we aimed to develop a novel IF co-staining protocol to detect the pericyte markers NG2, PDGFRβ, αSMA, CD13, and RFC1 in human retinal flatmounts. Unlike retinal sections, retinal flatmounts enable 3D visualization of pericyte distribution across the entire vascular network. Key optimizations included tailoring the fixation method, blocking buffer composition and antibody solvent, as well as using jasplakinolide to enhance αSMA detection. Our protocol successfully enabled double staining of NG2 and PDGFRβ, as well as αSMA and PDGFRβ, whereas CD13 and RFC1 expression was not detectable in human retinal flatmounts. This novel 3D IF protocol enhances in situ visualization of human retinal pericytes, enabling accurate studies of their role in vascular health and disease to aid targeted therapy development.
血管周细胞广泛存在于人体各处,对调节血管血流、通透性和体内平衡至关重要。在人类视网膜中,周细胞对于形成和维持血视网膜屏障以及对血流的自动调节都很重要。周细胞丢失与多种病理状况有关。通过免疫荧光(IF)染色对周细胞进行可视化,可提供有关周细胞数量、形态、位置以及解剖和功能标志物表达的有价值信息。然而,周细胞标志物表达存在物种特异性差异。在本研究中,我们旨在开发一种新型的IF共染色方案,用于检测人视网膜平铺标本中的周细胞标志物NG2、血小板衍生生长因子受体β(PDGFRβ)、α平滑肌肌动蛋白(αSMA)、CD13和红细胞叶酸载体1(RFC1)。与视网膜切片不同,视网膜平铺标本能够对整个血管网络中的周细胞分布进行三维可视化。关键的优化包括调整固定方法、封闭缓冲液成分和抗体溶剂,以及使用茉莉酸内酯来增强αSMA的检测。我们的方案成功实现了NG2和PDGFRβ以及αSMA和PDGFRβ的双重染色,而在人视网膜平铺标本中未检测到CD13和RFC1的表达。这种新型的三维IF方案增强了人视网膜周细胞的原位可视化,能够准确研究它们在血管健康和疾病中的作用,以帮助开发靶向治疗。