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外泌体蛋白在乳腺癌诊断和检测中的进展:聚焦纳米技术。

Advancements in Exosome Proteins for Breast Cancer Diagnosis and Detection: With a Focus on Nanotechnology.

机构信息

Faculty of Pharmacy, Middle East University, Amman, 11831, Jordan.

Anesthesia Techniques Department, College of Health and Medical Techniques, Al-Mustaqbal University, Babylon, 51001, Iraq.

出版信息

AAPS PharmSciTech. 2024 Nov 27;25(8):276. doi: 10.1208/s12249-024-02983-8.

Abstract

Breast cancer, a leading cause of mortality among women, has been recognized as requiring improved diagnostic methods. Exosome proteins, found in small extracellular vesicles, have emerged as a promising solution, reflecting the state of their cell of origin and playing key roles in cancer progression. This review examines their potential in breast cancer diagnosis, discussing advanced isolation and characterization techniques such as ultracentrifugation and microfluidic-based approaches. Various detection methods-including electrochemical, nano-based, optical, and machine learning platforms-were evaluated for their high sensitivity, specificity, and non-invasive capabilities. Electrochemical methods were used to identify unique protein signatures for rapid, cost-effective diagnosis, while machine learning enhanced the classification of exosome proteins. Nano-based techniques leveraged nanomaterials to detect low-abundance proteins, and optical methods offered real-time, label-free monitoring. Despite their promise, challenges in standardizing protocols and integrating these diagnostics into clinical practice remain. Future directions include technological advancements, personalized medicine, and exploring the therapeutic potential of exosome proteins.

摘要

乳腺癌是女性死亡的主要原因之一,人们已经认识到需要改进其诊断方法。在外泌体中发现的蛋白质存在于小型细胞外囊泡中,它们已成为一种很有前途的解决方案,反映了它们起源细胞的状态,并在癌症进展中发挥关键作用。本综述探讨了它们在乳腺癌诊断中的潜在应用,讨论了先进的分离和表征技术,如超速离心和基于微流控的方法。各种检测方法,包括电化学、基于纳米的、光学和机器学习平台,因其高灵敏度、特异性和非侵入性而受到评估。电化学方法用于识别独特的蛋白质特征,以实现快速、具有成本效益的诊断,而机器学习增强了外泌体蛋白质的分类。基于纳米的技术利用纳米材料来检测低丰度蛋白质,而光学方法提供了实时、无标记监测。尽管有这些前景,但在标准化方案和将这些诊断方法整合到临床实践中仍存在挑战。未来的方向包括技术进步、个性化医疗和探索外泌体蛋白质的治疗潜力。

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