Fang Xiaoni, Wang Yuqing, Wang Shurong, Liu Baohong
School of Pharmacy, Shanghai Stomatological Hospital, Department of Chemistry, Fudan University, Shanghai, 200438, China.
Mater Today Bio. 2022 Jul 22;16:100371. doi: 10.1016/j.mtbio.2022.100371. eCollection 2022 Dec.
Exosomes has attracted tremendous research interests as they are emerging as a new paradigm of liquid biopsy. Although the concentration of exosomes in blood is relatively abundant, there still exists various vesicle-like nanoparticles, such as microvesicles, apoptotic bodies. It's an urgent need to isolate and enrich exosomes from the complex contaminants in biofluid samples. Moreover, the expressing level of exosomal biomarkers varies a lot, which make the sensitive molecular detection of exosomes in high demand. Unfortunately, the efficient isolation and sensitive molecular quantification of exosomes is still a major obstacle hindering the further development and clinical application of exosome-based liquid biopsy. Nanomaterials, with unique physiochemical properties, have been widely used in biosensing and analysis aspects, thus they are thought as powerful tools for effective purification and molecular analysis of exosomes. In this review, we summarized the most recent progresses in nanomaterials assisted exosome isolation and analysis towards liquid biopsy. On the one hand, nanomaterials can be used as capture substrates to afford large binding area and specific affinity to exosomes. Meanwhile, nanomaterials can also be served as promising signal transducers and amplifiers for molecular detection of exosomes. Furthermore, we also pointed out several potential and promising research directions in nanomaterials assisted exosome analysis. It's envisioned that this review will give the audience a complete outline of nanomaterials in exosome study, and further promote the intersection of nanotechnology and bio-analysis.
外泌体作为液体活检的一种新范式,已引起了极大的研究兴趣。尽管血液中外泌体的浓度相对丰富,但仍存在各种囊泡状纳米颗粒,如微泡、凋亡小体。迫切需要从生物流体样本中的复杂污染物中分离和富集外泌体。此外,外泌体生物标志物的表达水平差异很大,这使得对外泌体进行灵敏的分子检测需求很高。不幸的是,外泌体的高效分离和灵敏分子定量仍然是阻碍基于外泌体的液体活检进一步发展和临床应用的主要障碍。具有独特物理化学性质的纳米材料已广泛应用于生物传感和分析方面,因此它们被认为是有效纯化和分子分析外泌体的有力工具。在本综述中,我们总结了纳米材料辅助外泌体分离和分析用于液体活检的最新进展。一方面,纳米材料可作为捕获底物,为外泌体提供大的结合面积和特异性亲和力。同时,纳米材料还可作为有前景的信号传感器和放大器用于外泌体的分子检测。此外,我们还指出了纳米材料辅助外泌体分析的几个潜在且有前景的研究方向。预计本综述将为读者提供外泌体研究中纳米材料的完整概述,并进一步促进纳米技术与生物分析的交叉融合。