MicroRNA Analysis in Meningiomas with Different Degrees of Tissue Stiffness: A Potential Tool for Effective Preoperative Planning.

IF 3.9 2区 医学 Q1 CLINICAL NEUROLOGY Neurosurgery Pub Date : 2024-11-01 DOI:10.1227/neu.0000000000003222
Milos Duba, Dagmar Al Tukmachi, Tetiana Samoilenko, Marek Vecera, Michaela Ruckova, Tereza Vankova, Lenka Radova, Milos Kerkovsky, Marek Dostal, Tereza Koprivova, Ivana Roskova, Andrej Mrlian, Ondrej Hrdy, Jaroslav Duba, Leos Kren, Martin Smrcka, Ondrej Slaby, Pavel Fadrus, Jiri Sana
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Abstract

Background and objectives: Meningioma, the most common primary intracranial tumor, presents challenges in surgical treatment because of varying tissue stiffness. This study explores the molecular background of meningioma stiffness, a critical factor in surgical planning and prognosis, focusing on the utility of microRNAs (miRNAs) as diagnostic biomarkers of tissue stiffness.

Methods: Patients with meningiomas treated surgically at the University Hospital Brno were included in this study. Total RNA, isolated from tumor tissue samples, underwent quality control and small RNA sequencing to analyze miRNA expression. Differentially expressed miRNAs were identified, and their association with tumor stiffness was assessed.

Results: This study identified specific miRNAs differentially expressed in meningiomas with different stiffness levels. Key miRNAs, such as miR-31-5p and miR-34b-5p, showed significant upregulation in stiffer meningiomas. These findings were validated using reverse transcription-quantitative polymerase chain reaction, revealing a potential link between miRNA expression and tumor consistency. The expression of miR-31-5p was most notably associated with the stiffness of the tumor tissue (sensitivity = 71% and specificity = 83%).

Conclusion: This research highlights the potential of miRNAs as biomarkers for determining meningioma tissue stiffness. Identifying specific miRNAs associated with tumor consistency could improve preoperative planning and patient prognosis. These findings pave the way for further exploration of miRNAs in the clinical assessment of meningiomas.

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不同组织僵硬度脑膜瘤的微RNA分析:有效术前规划的潜在工具
背景和目的:脑膜瘤是最常见的原发性颅内肿瘤,由于组织僵硬度不同,给手术治疗带来了挑战。脑膜瘤僵硬度是影响手术计划和预后的关键因素,本研究探讨了脑膜瘤僵硬度的分子背景,重点研究了微小核糖核酸(miRNA)作为组织僵硬度诊断生物标志物的效用:研究对象包括在布尔诺大学医院接受手术治疗的脑膜瘤患者。从肿瘤组织样本中分离出的总 RNA 经过质量控制和小 RNA 测序,以分析 miRNA 的表达。结果发现了表达不同的 miRNA,并评估了它们与肿瘤硬度的关系:结果:这项研究发现了在不同硬度水平的脑膜瘤中表达不同的特定 miRNA。miR-31-5p和miR-34b-5p等关键miRNA在硬度较高的脑膜瘤中表现出显著的上调。反转录定量聚合酶链反应验证了这些发现,揭示了 miRNA 表达与肿瘤一致性之间的潜在联系。miR-31-5p的表达与肿瘤组织的僵硬程度最明显相关(敏感性=71%,特异性=83%):这项研究凸显了 miRNA 作为生物标记物确定脑膜瘤组织硬度的潜力。确定与肿瘤一致性相关的特定 miRNA 可改善术前计划和患者预后。这些发现为进一步探索 miRNA 在脑膜瘤临床评估中的应用铺平了道路。
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来源期刊
Neurosurgery
Neurosurgery 医学-临床神经学
CiteScore
8.20
自引率
6.20%
发文量
898
审稿时长
2-4 weeks
期刊介绍: Neurosurgery, the official journal of the Congress of Neurological Surgeons, publishes research on clinical and experimental neurosurgery covering the very latest developments in science, technology, and medicine. For professionals aware of the rapid pace of developments in the field, this journal is nothing short of indispensable as the most complete window on the contemporary field of neurosurgery. Neurosurgery is the fastest-growing journal in the field, with a worldwide reputation for reliable coverage delivered with a fresh and dynamic outlook.
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