Aseervatham Jaya
Department of Neurology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Biology (Basel). 2023 May 12;12(5):710. doi: 10.3390/biology12050710.
Exosomes are extracellular vesicles that originate from endosomes and are released by all cells irrespective of their origin or type. They play an important role in cell communication and can act in an autocrine, endocrine, or paracrine fashion. They are 40-150 nm in diameter and have a similar composition to the cell of origin. An exosome released by a particular cell is unique since it carries information about the state of the cell in pathological conditions such as cancer. miRNAs carried by cancer-derived exosomes play a multifaceted role by taking part in cell proliferation, invasion, metastasis, epithelial-mesenchymal transition, angiogenesis, apoptosis, and immune evasion. Depending on the type of miRNA that it carries as its cargo, it can render cells chemo- or radiosensitive or resistant and can also act as a tumor suppressor. Since the composition of exosomes is affected by the cellular state, stress, and changes in the environment, they can be used as diagnostic or prognostic biomarkers. Their unique ability to cross biological barriers makes them an excellent choice as vehicles for drug delivery. Because of their easy availability and stability, they can be used to replace cancer biopsies, which are invasive and expensive. Exosomes can also be used to follow the progression of diseases and monitor treatment strategies. A better understanding of the roles and functions of exosomal miRNA can be used to develop noninvasive, innovative, and novel treatments for cancer.
外泌体是起源于内体的细胞外囊泡,由所有细胞释放,无论其来源或类型如何。它们在细胞通讯中发挥重要作用,可通过自分泌、内分泌或旁分泌方式发挥作用。其直径为40 - 150纳米,与来源细胞具有相似的组成。特定细胞释放的外泌体是独特的,因为它携带了诸如癌症等病理条件下细胞状态的信息。癌症来源的外泌体携带的微小RNA(miRNA)通过参与细胞增殖、侵袭、转移、上皮-间质转化、血管生成、凋亡和免疫逃逸发挥多方面作用。根据其携带的miRNA类型,它可使细胞对化疗或放疗敏感或耐药,也可作为肿瘤抑制因子。由于外泌体的组成受细胞状态、应激和环境变化的影响,它们可作为诊断或预后生物标志物。它们跨越生物屏障的独特能力使其成为药物递送载体的绝佳选择。因其易于获取和稳定,它们可用于替代具有侵入性且昂贵的癌症活检。外泌体还可用于跟踪疾病进展和监测治疗策略。对外泌体miRNA的作用和功能有更深入的了解可用于开发针对癌症的非侵入性、创新性和新型治疗方法。