Department of Human Anatomy and Histology, Faculty of Medicine, University of Zaragoza, Zaragoza, Spain.
J Cell Mol Med. 2013 Aug;17(8):1016-24. doi: 10.1111/jcmm.12111.
The potential of stem cell (SC) therapies for eye diseases is well-recognized. However, the results remain only encouraging as little is known about the mechanisms responsible for eye renewal, regeneration and/or repair. Therefore, it is critical to gain knowledge about the specific tissue environment (niches) where the stem/progenitor cells reside in eye. A new type of interstitial cell-telocyte (TC) (www.telocytes.com) was recently identified by electron microscopy (EM). TCs have very long (tens of micrometres) and thin (below 200 nm) prolongations named telopodes (Tp) that form heterocellular networks in which SCs are embedded. We found TCs by EM and electron tomography in sclera, limbus and uvea of the mouse eye. Furthermore, EM showed that SCs were present in the anterior layer of the iris and limbus. Adhaerens and gap junctions were found to connect TCs within a network in uvea and sclera. Nanocontacts (electron-dense structures) were observed between TCs and other cells: SCs, melanocytes, nerve endings and macrophages. These intercellular 'feet' bridged the intercellular clefts (about 10 nm wide). Moreover, exosomes (extracellular vesicles with a diameter up to 100 nm) were delivered by TCs to other cells of the iris stroma. The ultrastructural nanocontacts of TCs with SCs and the TCs paracrine influence via exosomes in the epithelial and stromal SC niches suggest an important participation of TCs in eye regeneration.
干细胞 (SC) 疗法在眼部疾病中的应用潜力已得到广泛认可。然而,目前对负责眼部更新、再生和/或修复的机制知之甚少,因此,了解干细胞/祖细胞在眼部所处的特定组织环境(龛位)至关重要。最近,通过电子显微镜 (EM) 发现了一种新型的间质细胞- 纤维母细胞原细胞 (TC)(www.telocytes.com)。TCs 具有非常长(数十微米)和细(低于 200nm)的延伸部分,称为 telopodes(Tp),它们形成异细胞网络,其中嵌入有 SCs。我们通过 EM 和电子断层扫描在小鼠眼睛的巩膜、角膜缘和葡萄膜中发现了 TCs。此外,EM 显示 SCs 存在于虹膜和角膜缘的前层。在葡萄膜和巩膜中发现,TCs 之间通过粘着连接和缝隙连接形成网络。在 TC 与其他细胞(SCs、黑色素细胞、神经末梢和巨噬细胞)之间观察到纳米接触(电子致密结构)。这些细胞间的“足”桥接了细胞间的裂隙(约 10nm 宽)。此外,TCs 将外泌体(直径可达 100nm 的细胞外囊泡)递送至虹膜基质的其他细胞。TCs 与 SCs 的超微结构纳米接触以及 TCs 通过外泌体对上皮和基质 SC 龛位的旁分泌影响表明 TCs 可能在眼部再生中发挥重要作用。