Karbanová Jana, Thamm Kristina, Fargeas Christine A, Deniz Ilker A, Lorico Aurelio, Corbeil Denis
Biotechnology Center (BIOTEC) and Center for Molecular and Cellular Bioengineering, Technische Universität Dresden, Tatzberg 47-49, 01307, Dresden, Germany.
Tissue Engineering Laboratories, Medizinische Fakultät der Technischen Universität Dresden, Fetscherstr. 74, 01307, Dresden, Germany.
J Nanobiotechnology. 2025 Jan 29;23(1):61. doi: 10.1186/s12951-025-03102-w.
Extracellular membrane vesicles (EVs) offer promising values in various medical fields, e.g., as biomarkers in liquid biopsies or as native (or bioengineered) biological nanocarriers in tissue engineering, regenerative medicine and cancer therapy. Based on their cellular origin EVs can vary considerably in composition and diameter. Cell biological studies on mammalian prominin-1, a cholesterol-binding membrane glycoprotein, have helped to reveal new donor membranes as sources of EVs. For instance, small EVs can originate from microvilli and primary cilia, while large EVs might be produced by transient structures such as retracting cellular extremities of cancer cells during the mitotic rounding process, and the midbody at the end of cytokinesis. Here, we will highlight the various subcellular origins of prominin-1 EVs, also called prominosomes, and the potential mechanism(s) regulating their formation. We will further discuss the molecular and cellular characteristics of prominin-1, notably those that have a direct effect on the release of prominin-1 EVs, a process that might be directly implicated in donor cell reprogramming of stem and cancer stem cells. Prominin-1 EVs also mediate intercellular communication during embryonic development and adult homeostasis in healthy individuals, while disseminating biological information during diseases.
细胞外膜泡(EVs)在各个医学领域都具有潜在价值,例如,作为液体活检中的生物标志物,或作为组织工程、再生医学和癌症治疗中的天然(或生物工程改造的)生物纳米载体。基于其细胞来源,EVs在组成和直径上可能有很大差异。对哺乳动物prominin-1(一种胆固醇结合膜糖蛋白)的细胞生物学研究有助于揭示作为EVs来源的新的供体膜。例如,小EVs可源自微绒毛和初级纤毛,而大EVs可能由诸如有丝分裂圆化过程中癌细胞收缩的细胞末端以及胞质分裂末期的中间体等瞬时结构产生。在这里,我们将重点介绍prominin-1 EVs(也称为prominosomes)的各种亚细胞来源以及调节其形成的潜在机制。我们还将进一步讨论prominin-1的分子和细胞特征,特别是那些对prominin-1 EVs释放有直接影响的特征,这一过程可能与干细胞和癌症干细胞的供体细胞重编程直接相关。Prominin-1 EVs在健康个体的胚胎发育和成年内环境稳定过程中也介导细胞间通讯,同时在疾病过程中传播生物信息。