Nanotherapeutics in Kidney Disease: Innovations, Challenges, and Future Directions.

IF 10.3 1区 医学 Q1 UROLOGY & NEPHROLOGY
Amir Roointan, Rong Xu, Simon Corrie, Christoph E Hagemeyer, Karen Alt
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Abstract

The treatment and management of kidney diseases present a significant global challenge, affecting over 800 million individuals and necessitating innovative therapeutic strategies that transcend symptomatic relief. The application of nanotechnology to therapies for kidney diseases, while still in its early stages, holds transformative potential for improving treatment outcomes. Recent advancements in nanoparticle-based drug delivery leverage the unique physicochemical properties of nanoparticles for targeted and controlled therapeutic delivery to the kidneys. Current research is focused on understanding the functional and phenotypic changes in kidney cells during both acute and chronic conditions, allowing for the identification of optimal target cells. In addition, the development of tailored nanomedicines enhances their retention and binding to key renal membranes and cell populations, ultimately improving localization, tolerability, and efficacy. However, significant barriers remain, including inconsistent nanoparticle synthesis and the complexity of kidney-specific targeting. To overcome these challenges, the field requires advanced synthesis techniques, refined targeting strategies, and the establishment of animal models that accurately reflect human kidney diseases. These efforts are critical for the clinical application of nanotherapeutics, which promise novel solutions for kidney disease management. This review evaluates a substantial body of in vivo research, highlighting the prospects, challenges, and opportunities presented by nanotechnology-mediated therapies and their potential to transform kidney disease treatment.

肾脏疾病的纳米治疗:创新、挑战和未来方向。
肾脏疾病的治疗和管理是一项重大的全球挑战,影响着超过8亿人,需要超越症状缓解的创新治疗策略。纳米技术在肾脏治疗中的应用,虽然仍处于早期阶段,但在改善治疗结果方面具有变革性的潜力。基于纳米颗粒的药物递送的最新进展利用纳米颗粒独特的物理化学特性来靶向和控制治疗递送到肾脏。目前的研究主要集中在了解急性和慢性疾病期间肾细胞的功能和表型变化,从而确定最佳靶细胞。此外,量身定制的纳米药物的发展增强了它们对关键肾膜和细胞群的保留和结合,最终提高了定位、耐受性和疗效。然而,重大的障碍仍然存在,包括不一致的纳米颗粒合成和肾脏特异性靶向的复杂性。为了克服这些挑战,该领域需要先进的合成技术,精细的靶向策略,以及建立准确反映人类肾脏疾病的动物模型。这些努力对于纳米疗法的临床应用至关重要,纳米疗法有望为肾脏疾病管理提供新的解决方案。本综述评估了大量的体内研究,强调了纳米技术介导疗法的前景、挑战和机遇,以及它们改变肾脏疾病治疗的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of The American Society of Nephrology
Journal of The American Society of Nephrology 医学-泌尿学与肾脏学
CiteScore
22.40
自引率
2.90%
发文量
492
审稿时长
3-8 weeks
期刊介绍: The Journal of the American Society of Nephrology (JASN) stands as the preeminent kidney journal globally, offering an exceptional synthesis of cutting-edge basic research, clinical epidemiology, meta-analysis, and relevant editorial content. Representing a comprehensive resource, JASN encompasses clinical research, editorials distilling key findings, perspectives, and timely reviews. Editorials are skillfully crafted to elucidate the essential insights of the parent article, while JASN actively encourages the submission of Letters to the Editor discussing recently published articles. The reviews featured in JASN are consistently erudite and comprehensive, providing thorough coverage of respective fields. Since its inception in July 1990, JASN has been a monthly publication. JASN publishes original research reports and editorial content across a spectrum of basic and clinical science relevant to the broad discipline of nephrology. Topics covered include renal cell biology, developmental biology of the kidney, genetics of kidney disease, cell and transport physiology, hemodynamics and vascular regulation, mechanisms of blood pressure regulation, renal immunology, kidney pathology, pathophysiology of kidney diseases, nephrolithiasis, clinical nephrology (including dialysis and transplantation), and hypertension. Furthermore, articles addressing healthcare policy and care delivery issues relevant to nephrology are warmly welcomed.
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