Rappaport Family Institute for Research in the Medical Sciences, Technion-Israel Institute of Technology, Haifa 31096, Israel.
Head and Neck Institute, The Holy Family Hospital Nazareth, Nazareth 1641100, Israel.
Cells. 2022 Apr 11;11(8):1294. doi: 10.3390/cells11081294.
Although the pathogenic operations of cancer-nerve crosstalk (e.g., neuritogenesis, neoneurogensis, and perineural invasion-PNI) in the peripheral nervous system (PNS) during tumorigenesis, as well as the progression of all cancer types is continuing to emerge as an area of unique scientific interest and study, extensive, wide-ranging, and multidisciplinary investigations still remain fragmented and unsystematic. This is especially so in regard to the roles played by extracellular vesicles (EVs), which are lipid bilayer-enclosed nano- to microsized particles that carry multiple-function molecular cargos, facilitate intercellular communication in diverse processes. Accordingly, the biological significance of EVs has been greatly elevated in recent years, as there is strong evidence that they could contribute to important and possibly groundbreaking diagnostic and therapeutic innovations. This can be achieved and the pace of discoveries accelerated through cross-pollination from existing knowledge and studies regarding nervous system physiology and pathology, as well as thoroughgoing collaborations between oncologists, neurobiologists, pathologists, clinicians, and researchers. This article offers an overview of current and recent past investigations on the roles of EVs in cancer-nerve crosstalk, as well as in neural development, physiology, inflammation, injury, and regeneration in the PNS. By highlighting the mechanisms involved in physiological and noncancerous pathological cellular crosstalk, we provide hints that may inspire additional translational studies on cancer-nerve interplay.
尽管癌症与神经串扰(例如,神经突生成、新生神经生成和神经周围侵袭-PNI)在肿瘤发生过程中以及所有癌症类型的进展中的发病机制仍在不断成为独特的科学关注和研究领域,但广泛、广泛和多学科的研究仍然支离破碎且缺乏系统性。这在细胞外囊泡(EVs)的作用方面尤为如此,EVs 是由脂质双层包裹的纳米到微尺寸颗粒,携带多种功能分子货物,促进各种过程中的细胞间通讯。因此,近年来 EVs 的生物学意义大大提高,因为有强有力的证据表明它们可能有助于重要的、可能具有开创性的诊断和治疗创新。这可以通过交叉授粉现有关于神经系统生理学和病理学的知识和研究来实现,并通过肿瘤学家、神经生物学家、病理学家、临床医生和研究人员之间的彻底合作来加速发现的步伐。本文概述了当前和最近对 EVs 在癌症与神经串扰以及 PNS 中的神经发育、生理学、炎症、损伤和再生中的作用的研究。通过强调涉及生理和非癌性病理细胞串扰的机制,我们提供了可能激发对癌症与神经相互作用进行更多转化研究的线索。