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纳米颗粒:在医学领域占据独特地位。

Nanoparticles: Taking a Unique Position in Medicine.

作者信息

Joseph Tomy Muringayil, Kar Mahapatra Debarshi, Esmaeili Amin, Piszczyk Łukasz, Hasanin Mohamed S, Kattali Mashhoor, Haponiuk Józef, Thomas Sabu

机构信息

Department of Polymer Technology, Faculty of Chemistry, Gdańsk University of Technology, G. Narutowicza, 80-233 Gdańsk, Poland.

Department of Pharmaceutical Chemistry, Dadasaheb Balpande College of Pharmacy, Nagpur 440037, India.

出版信息

Nanomaterials (Basel). 2023 Jan 31;13(3):574. doi: 10.3390/nano13030574.

Abstract

The human nature of curiosity, wonder, and ingenuity date back to the age of humankind. In parallel with our history of civilization, interest in scientific approaches to unravel mechanisms underlying natural phenomena has been developing. Recent years have witnessed unprecedented growth in research in the area of pharmaceuticals and medicine. The optimism that nanotechnology (NT) applied to medicine and drugs is taking serious steps to bring about significant advances in diagnosing, treating, and preventing disease-a shift from fantasy to reality. The growing interest in the future medical applications of NT leads to the emergence of a new field for nanomaterials (NMs) and biomedicine. In recent years, NMs have emerged as essential game players in modern medicine, with clinical applications ranging from contrast agents in imaging to carriers for drug and gene delivery into tumors. Indeed, there are instances where nanoparticles (NPs) enable analyses and therapies that cannot be performed otherwise. However, NPs also bring unique environmental and societal challenges, particularly concerning toxicity. Thus, clinical applications of NPs should be revisited, and a deep understanding of the effects of NPs from the pathophysiologic basis of a disease may bring more sophisticated diagnostic opportunities and yield more effective therapies and preventive features. Correspondingly, this review highlights the significant contributions of NPs to modern medicine and drug delivery systems. This study also attempted to glimpse the future impact of NT in medicine and pharmaceuticals.

摘要

人类的好奇心、求知欲和创造力可以追溯到人类诞生之初。与我们的文明史相伴,人们对运用科学方法揭示自然现象背后机制的兴趣也在不断发展。近年来,药物和医学领域的研究取得了前所未有的增长。纳米技术(NT)应用于医学和药物,正朝着在疾病诊断、治疗和预防方面取得重大进展迈出坚实步伐,这一转变正从幻想变为现实,人们对此抱以乐观态度。对纳米技术未来医学应用的兴趣与日俱增,催生了纳米材料(NMs)与生物医学这一全新领域。近年来,纳米材料已成为现代医学中的关键角色,其临床应用涵盖从成像造影剂到肿瘤药物及基因递送载体等多个方面。事实上,在某些情况下,纳米颗粒(NPs)能够实现其他方式无法进行的分析和治疗。然而,纳米颗粒也带来了独特的环境和社会挑战,尤其是在毒性方面。因此,应重新审视纳米颗粒的临床应用,从疾病的病理生理基础深入理解纳米颗粒的影响,可能会带来更精密的诊断机会,并产生更有效的治疗方法和预防措施。相应地,本综述强调了纳米颗粒对现代医学和药物递送系统的重大贡献。本研究还试图展望纳米技术在医学和制药领域的未来影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5389/9920911/a7ead1040877/nanomaterials-13-00574-g001.jpg

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