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首页> 外文期刊>Pharmacological research: The official journal of The Italian Pharmacological Society >Modulation of tissue tropism and biological activity of exosomes and other extracellular vesicles: New nanotools for cancer treatment
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Modulation of tissue tropism and biological activity of exosomes and other extracellular vesicles: New nanotools for cancer treatment

机译:调制组织覆身和外泌体和其他细胞外囊泡的生物活性:癌症治疗的新纳米工具

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Exosomes are naturally secreted nanovesicles that have recently aroused a great interest in the scientific and clinical community for their roles in intercellular communication in almost all physiological and pathological processes. These 30-100 nm sized vesicles are released from the cells into the extracellular space and ultimately into biofluids in a tightly regulated way. Their molecular composition reflects their cells of origin, may confer specific cell or tissue tropism and underlines their biological activity. Exosomes and other extracellular vesicles (EVs) carry specific sets of proteins, nucleic acids (DNA, mRNA and regulatory RNAs), lipids and metabolites that represent an appealing source of novel noninvasive markers through biofluid biopsies. Exosome-shuttled molecules maintain their biological activity and are capable of modulating and reprogramming recipient cells. This multi-faceted nature of exosomes hold great promise for improving cancer treatment featuring them as novel diagnostic sensors as well as therapeutic effectors and drug delivery vectors. Natural biological activity including the therapeutic payload and targeting behavior of EVs can be tuned via genetic and chemical engineering. In this review we describe the properties that EVs share with conventional synthetic nanoparticles, including size, liposome-like membrane bilayer with customizable surface, and multifunctional capacity. We also highlight unique characteristics of EVs, which possibly allow them to circumvent some limitations of synthetic nanoparticle systems and facilitate clinical translation. The latter are in particular correlated with their innate stability, ability to cross biological barriers, efficiently deliver bioactive cargos or evade immune recognition. Furthermore, we discuss the potential roles for EVs in diagnostics and theranostics, and highlight the challenges that still need to be overcome before EVs can be applied to routine clinical practice. (C) 2016 Elsevier Ltd. All rights reserved.
机译:外泌体是天然分泌的纳米粒子,最近引起了对科学和临床界的巨大兴趣,以在几乎所有生理和病理过程中的细胞间通信中的作用。将这些30-100nm尺寸的囊泡从细胞释放到细胞外空间中,并以紧密的方式最终进入生物流体。它们的分子组合物反映了它们的来源细胞,可以赋予特定的细胞或组织覆身并强调其生物活性。外泌体和其他细胞外囊泡(EVS)携带特定的蛋白质,核酸(DNA,mRNA和调节RNA),脂质和代谢物,代表通过生物流体活组织检查代表新型非侵入性标记物的吸引力来源。外梭分子保持其生物活性,能够调节和重编程受体细胞。外孔的这种多朝向性质对改善癌症治疗具有很大的希望,以其作为新型诊断传感器以及治疗效果和药物递送载体。通过遗传和化学工程可以调整包括治疗有效载荷和EVS靶向行为的天然生物活性。在本次综述中,我们描述了EVS与常规合成纳米颗粒的性质,包括具有可定制表面的尺寸,脂质体的膜双层和多功能容量。我们还突出了EVS的独特特征,这可能使它们避免了合成纳米粒子系统的一些局限性并促进临床翻译。后者特别是与它们的先天稳定性相关,交叉生物屏障的能力,有效地递送生物活性的尸体或逃避免疫识别。此外,我们讨论了EVS在诊断和治疗器中的潜在作用,并突出了在EVS可以应用于常规临床实践之前仍然需要克服的挑战。 (c)2016 Elsevier Ltd.保留所有权利。

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