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纳米技术在缺血性中风中的作用:靶向治疗与诊断的进展以改善临床结局

Role of Nanotechnology in Ischemic Stroke: Advancements in Targeted Therapies and Diagnostics for Enhanced Clinical Outcomes.

作者信息

Yadav Virendra Kumar, Gupta Rachna, Assiri Abdullah A, Uddin Jalal, Ishaqui Azfar A, Kumar Pankaj, Orayj Khalid M, Tahira Shazia, Patel Ashish, Choudhary Nisha

机构信息

Marwadi University Research Center, Department of Microbiology, Faculty of Sciences, Marwadi University, Rajkot 360003, Gujarat, India.

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Ahmedabad 382021, Gujarat, India.

出版信息

J Funct Biomater. 2025 Jan 1;16(1):8. doi: 10.3390/jfb16010008.


DOI:10.3390/jfb16010008
PMID:39852564
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11766075/
Abstract

Each year, the number of cases of strokes and deaths due to this is increasing around the world. This could be due to work stress, lifestyles, unhealthy food habits, and several other reasons. Currently, there are several traditional methods like thrombolysis and mechanical thrombectomy for managing strokes. The current approach has several limitations, like delayed diagnosis, limited therapeutic delivery, and risks of secondary injuries. So, there is a need for some effective and reliable methods for the management of strokes, which could help in early diagnosis followed by the treatment of strokes. Nanotechnology has played an immense role in managing strokes, and recently, it has emerged as a transformative solution offering innovative diagnostic tools and therapeutic strategies. Nanoparticles (NPs) belonging to several classes, including metallic (metallic and metal oxide), organic (lipids, liposome), and carbon, can cross the blood-brain barrier and may exhibit immense potential for managing various strokes. Moreover, these NPs have exhibited promise in improving imaging specificity and therapeutic delivery by precise drug delivery and real-time monitoring of treatment efficacy. Nanomaterials like cerium oxide (CeO) and liposome-encapsulated agents have neuroprotective properties that reduce oxidative stress and promote neuroregeneration. In the present article, the authors have emphasized the significant advancements in the nanomedicine management of stroke, including NPs-based drug delivery systems, neuroprotective and neuroregenerative therapies, and multimodal imaging advancements.

摘要

每年,全球范围内因中风导致的病例数和死亡人数都在增加。这可能归因于工作压力、生活方式、不健康的饮食习惯以及其他一些原因。目前,有几种传统方法,如溶栓和机械取栓术来治疗中风。当前的方法存在一些局限性,如诊断延迟、治疗传递受限以及二次损伤的风险。因此,需要一些有效且可靠的中风治疗方法,这有助于早期诊断并随后进行中风治疗。纳米技术在中风治疗中发挥了巨大作用,最近,它已成为一种变革性的解决方案,提供创新的诊断工具和治疗策略。属于几种类别的纳米颗粒(NPs),包括金属(金属和金属氧化物)、有机(脂质、脂质体)和碳,可以穿过血脑屏障,并且在治疗各种中风方面可能具有巨大潜力。此外,这些纳米颗粒在通过精确给药和实时监测治疗效果来提高成像特异性和治疗传递方面已展现出前景。氧化铈(CeO)和脂质体包裹剂等纳米材料具有神经保护特性,可减少氧化应激并促进神经再生。在本文中,作者强调了中风纳米医学治疗方面的重大进展,包括基于纳米颗粒的药物递送系统、神经保护和神经再生疗法以及多模态成像进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/730999a8664b/jfb-16-00008-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/3f13eccb8271/jfb-16-00008-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/73379caee8c6/jfb-16-00008-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/974869edaffd/jfb-16-00008-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/7cdc16381475/jfb-16-00008-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/8aa1456f7979/jfb-16-00008-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/730999a8664b/jfb-16-00008-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/3f13eccb8271/jfb-16-00008-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/73379caee8c6/jfb-16-00008-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/974869edaffd/jfb-16-00008-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/7cdc16381475/jfb-16-00008-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/8aa1456f7979/jfb-16-00008-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c44/11766075/730999a8664b/jfb-16-00008-g006.jpg

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本文引用的文献

[1]
Neuroprotective Effects of Functionalized Hydrophilic Carbon Clusters: Targeted Therapy of Traumatic Brain Injury in an Open Blast Rat Model.

Biomedicines. 2024-12-13

[2]
Fabrication and characterization of ConA-conjugated curcumin-loaded solid lipid nanoparticles for theranostic applications in lung cancer treatment.

Nanoscale. 2025-2-6

[3]
The role of nanomaterials in revolutionizing ischemic stroke treatment: Current trends and future prospects.

iScience. 2024-11-15

[4]
The Cerebrovascular Side of Plasticity: Microvascular Architecture across Health and Neurodegenerative and Vascular Diseases.

Brain Sci. 2024-9-28

[5]
Reactive Oxygen Species-Responsive Chitosan-Bilirubin Nanoparticles Loaded with Statin for Treatment of Cerebral Ischemia.

Biomater Res. 2024-10-24

[6]
Advances in nanoparticle-based therapeutics for ischemic stroke: Enhancing drug delivery and efficacy.

Biomed Pharmacother. 2024-11

[7]
The Role of Induced Pluripotent Stem Cells in the Treatment of Stroke.

Curr Neuropharmacol. 2024

[8]
Blood-Brain Barrier-Penetrating Metal-Organic Framework Antioxidant Nanozymes for Targeted Ischemic Stroke Therapy.

Adv Healthc Mater. 2024-10-7

[9]
Metabolomics integrated with network pharmacology of blood-entry constituents reveals the bioactive component of Xuefu Zhuyu decoction and its angiogenic effects in treating traumatic brain injury.

Chin Med. 2024-9-26

[10]
Polydopamine-Cloaked Nanoarchitectonics of Prussian Blue Nanoparticles Promote Functional Recovery in Neonatal and Adult Ischemic Stroke Models.

Biomater Res. 2024-9-18

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