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颅内动脉瘤的转录组学:血流导向装置中的现状和机遇。

Transcriptomics of intracranial aneurysms: current state and opportunities in flow diversion.

机构信息

1Department of Neurosurgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania; and.

2Department of Neurosurgery, University of Texas Medical Branch at Galveston, Texas.

出版信息

J Neurosurg. 2023 Nov 17;140(5):1335-1343. doi: 10.3171/2023.9.JNS23565. Print 2024 May 1.

Abstract

Over the last 2 decades, the field of transcriptomics has emerged as a major subdiscipline in biology. Transcriptomic techniques have been used by many groups over this time to better understand intracranial aneurysm development, rupture, and treatment. However, only a few studies have applied transcriptomics to understand the mechanisms behind flow diversion (FD) specifically, despite its increasing importance in the neurointerventional armamentarium. FD is an increasingly safe and effective treatment option for intracranial aneurysms. However, the clinical understanding and use of FD has far outpaced the understanding of the underlying mechanisms. To make FD more predictable, clinically efficacious, and safe, it is important to understand the biological mechanisms at play that lead to successful and unsuccessful FD. In this review, the authors focus on the current understanding of FD biology, the recent advances in transcriptomics, and what future studies could be performed to deepen the understanding of FD. They propose the new concept of the FD microenvironment to be studied, which may unlock a deeper biological understanding. This review provides the background for prospective studies into the development of targeted aneurysm therapy, whether by modified devices or by medical adjuncts.

摘要

在过去的 20 年中,转录组学领域已成为生物学的一个主要分支学科。在此期间,许多研究小组都使用转录组学技术来更好地了解颅内动脉瘤的发展、破裂和治疗。然而,尽管血流导向装置(FD)在神经介入治疗中越来越重要,但只有少数研究应用转录组学来了解其背后的机制。FD 是颅内动脉瘤越来越安全有效的治疗选择。然而,FD 的临床理解和应用已经远远超过了对潜在机制的理解。为了使 FD 更具可预测性、临床疗效和安全性,了解导致 FD 成功和失败的生物学机制非常重要。在这篇综述中,作者重点介绍了 FD 生物学的当前认识、转录组学的最新进展以及未来可以进行哪些研究来加深对 FD 的理解。他们提出了研究 FD 微环境的新概念,这可能会揭示更深层次的生物学理解。这篇综述为针对动脉瘤治疗的靶向治疗的前瞻性研究提供了背景,无论是通过改良装置还是通过医学辅助手段。

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