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Porous silicon for drug delivery applications and theranostics: recent advances, critical review and perspectives

机译:用于药物递送应用和Theranostics的多孔硅:最近的进展,批判性审查和观点

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摘要

Introduction: Porous silicon (pSi) engineered by electrochemical etching has been used as a drug delivery vehicle to address the intrinsic limitations of traditional therapeutics. Biodegradability, biocompatibility, and optoelectronic properties make pSi a unique candidate for developing biomaterials for theranostics and photodynamic therapies. This review presents an updated overview about the recent therapeutic systems based on pSi, with a critical analysis on the problems and opportunities that this technology faces as well as highlighting pSi's growing potential. Areas covered: Recent progress in pSi-based research includes drug delivery systems, including biocompatibility studies, drug delivery, theranostics, and clinical trials with the most relevant examples of pSi-based systems presented here. A critical analysis about the technical advantages and disadvantages of these systems is provided along with an assessment on the challenges that this technology faces, including clinical trials and investors' support. Expert opinion: pSi is an outstanding material that could improve existing drug delivery and photodynamic therapies in different areas, paving the way for developing advanced theranostic nanomedicines and incorporating payloads of therapeutics with imaging capabilities. However, more extensive in-vivo studies are needed to assess the feasibility and reliability of this technology for clinical practice. The technical and commercial challenges that this technology face are still uncertain.
机译:引言:通过电化学蚀刻工程化的多孔硅(PSI)已被用作药物递送载体,以解决传统治疗剂的内在局限性。生物降解性,生物相容性和光电性能使PSI成为用于显影其治疗器和光动力疗法的生物材料的独特候选者。该审查提出了关于基于PSI最近治疗系统的更新概览,关于这项技术面临的问题和机遇以及突出PSI不断增长的潜力的关键分析。所涵盖的领域:基于PSI的研究进展包括药物递送系统,包括生物相容性研究,药物递送,治疗方法和临床试验,以及这里提出的基于PSI的系统最相关的实例。提供了关于这些系统的技术优势和缺点的关键分析,并对这项技术面临的挑战进行了评估,包括临床试验和投资者的支持。专家意见:PSI是一种杰出的材料,可以改善不同领域的现有药物递送和光动力疗法,为开发先进的治疗纳米海检生和用成像能力纳入治疗方法的有效载荷。然而,需要更广泛的体内研究来评估该技术的临床实践的可行性和可靠性。这项技术面孔仍然不确定的技术和商业挑战。

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