Manipulation of protein corona for nanomedicines.

Tao Li, Yupeng Wang, Dongfang Zhou
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Abstract

Nanomedicines have significantly advanced the development of diagnostic and therapeutic strategies for various diseases, while they still encounter numerous challenges. Upon entry into the human body, nanomedicines interact with biomolecules to form a layer of proteins, which is defined as the protein corona that influences the biological properties of nanomedicines. Traditional approaches have primarily focused on designing stealthy nanomedicines to evade biomolecule adsorption; however, due to the intricacies of the biological environment within body, this method cannot completely prevent biomolecule adsorption. As research on the protein corona progresses, manipulating the protein corona to modulate the in vivo behaviors of nanomedicines has become a research focus. In this review, modern strategies focused on influencing the biological efficacy of nanomedicines in vivo by manipulating protein corona, along with their wide-ranging applications across diverse diseases are critically summarized, highlighted and discussed. Finally, future directions for this important yet challenging research area are also briefly discussed. This article is categorized under: Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Therapeutic Approaches and Drug Discovery > Emerging Technologies Biology-Inspired Nanomaterials > Protein and Virus-Based Structures.

Abstract Image

为纳米药物操纵蛋白质电晕。
纳米药物极大地推动了各种疾病诊断和治疗策略的发展,但同时也面临着诸多挑战。纳米药物进入人体后,会与生物大分子相互作用,形成一层蛋白质,这层蛋白质被定义为影响纳米药物生物特性的蛋白质电晕。传统方法主要侧重于设计隐形纳米药物,以避免生物大分子吸附;然而,由于体内生物环境错综复杂,这种方法无法完全避免生物大分子吸附。随着蛋白质电晕研究的深入,操纵蛋白质电晕以调节纳米药物的体内行为已成为研究重点。在这篇综述中,我们对通过操纵蛋白质电晕来影响纳米药物在体内的生物学功效的现代策略及其在各种疾病中的广泛应用进行了批判性总结、强调和讨论。最后,还简要讨论了这一重要而又充满挑战的研究领域的未来发展方向。本文归类于生物纳米技术 > 生物学中的纳米尺度系统 治疗方法和药物发现 > 新兴技术 生物启发纳米材料 > 蛋白质和病毒结构。
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CiteScore
17.60
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