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声带的微血管化:分子结构、功能见解及个性化研究展望

Microvascularization of the Vocal Folds: Molecular Architecture, Functional Insights, and Personalized Research Perspectives.

作者信息

Popa Roxana-Andreea, Popa Cosmin-Gabriel, Hînganu Delia, Hînganu Marius Valeriu

机构信息

Department of Morpho-Functional Sciences I, Faculty of Medicine, "Grigore T. Popa" University of Medicine and Pharmacy, 700115 Iasi, Romania.

出版信息

J Pers Med. 2025 Jul 7;15(7):293. doi: 10.3390/jpm15070293.

Abstract

: The vascular architecture of the vocal folds plays a critical role in sustaining the dynamic demands of phonation. Disruptions in this microvascular system are linked to various pathological conditions, including Reinke's edema, hemorrhage, and laryngeal carcinoma. This review explores the structural and functional components of vocal fold microvascularization, with emphasis on pericytes, endothelial interactions, and neurovascular regulation. : A systematic review of the literature was conducted using databases such as PubMed, Scopus, Web of Science, and Embase. Keywords included "pericytes", "Reinke's edema", and "vocal fold microvascularization". Selected studies were peer-reviewed and met criteria for methodological quality and relevance to laryngeal microvascular physiology and pathology. : The vocal fold vasculature is organized in a parallel, tree-like pattern with distinct arterioles, capillaries, and venules. Capillaries dominate the superficial lamina propria, while transitional vessels connect to deeper arterioles surrounded by smooth muscle. Pericytes, present from birth, form tight associations with endothelial cells and contribute to capillary stability, vessel remodeling, and mechanical protection during vibration. Their thick cytoplasmic processes suggest a unique adaptation to the biomechanical stress of phonation. Arteriovenous anastomoses regulate perfusion by shunting blood according to functional demand. Furthermore, neurovascular control is mediated by noradrenergic fibers and neuropeptides such as VIP and CGRP, modulating vascular tone and glandular secretion. The limited lymphatic presence in the vocal fold mucosa contributes to edema accumulation while also restricting carcinoma spread, offering both therapeutic challenges and advantages. : A deeper understanding of vocal fold microvascularization enhances clinical approaches to voice disorders and laryngeal disease, offering new perspectives for targeted therapies and regenerative strategies.

摘要

声带的血管结构在维持发声的动态需求方面起着关键作用。这种微血管系统的破坏与各种病理状况相关,包括任克氏水肿、出血和喉癌。本综述探讨了声带微血管化的结构和功能组成部分,重点关注周细胞、内皮细胞相互作用以及神经血管调节。

使用PubMed、Scopus、Web of Science和Embase等数据库对文献进行了系统综述。关键词包括“周细胞”、“任克氏水肿”和“声带微血管化”。所选研究均经过同行评审,符合方法学质量标准以及与喉微血管生理学和病理学的相关性标准。

声带血管系统以平行的树状模式组织,有明显的小动脉、毛细血管和小静脉。毛细血管在浅层固有层占主导地位,而过渡血管连接到被平滑肌包围的更深层小动脉。周细胞从出生就存在,与内皮细胞形成紧密联系,并有助于毛细血管稳定、血管重塑以及在振动过程中的机械保护。它们粗大的细胞质突起表明对发声的生物力学应力有独特的适应性。动静脉吻合根据功能需求通过分流血液来调节灌注。此外,神经血管控制由去甲肾上腺素能纤维和神经肽如血管活性肠肽(VIP)和降钙素基因相关肽(CGRP)介导,调节血管张力和腺体分泌。声带黏膜中有限的淋巴管存在有助于水肿积聚,同时也限制了癌的扩散,带来了治疗挑战和优势。

对声带微血管化的更深入理解增强了对嗓音障碍和喉部疾病的临床治疗方法,为靶向治疗和再生策略提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc02/12299232/bb59b52b10d1/jpm-15-00293-g001.jpg

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