[Classification and Application of Ultrasound-Responsive Nanomaterials in Anti-Inflammatory Therapy].

Q3 Medicine
Lixin Xie, Zhefei DU, Qiuxia Peng, Kun Zhang, Chao Fang
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引用次数: 0

Abstract

Ultrasound, a high-frequency mechanical wave with excellent tissue penetration, has been widely applied in medical diagnostic imaging. Furthermore, it has been reported that ultrasound has broad prospects for extensive applications in the field of disease treatment in recent years due to its non-invasiveness and high efficiency. Ultrasound-responsive nanomaterials have the unique advantages of a small size and a high reactivity. Such materials have the capability for precision control of drug release under ultrasound stimulation, which provides a new approach to enhancing the efficiency of drug therapy. Therefore, these materials have attracted the attention of a wide range of scholars. Inflammation is a defensive response produced by organisms to deal with injuries. However, excessive inflammatory response may lead to various tissue damages in organisms and even endanger patients' lives. Many studies have demonstrated that limiting the inflammatory response using ultrasound-responsive nanomaterials is a viable way of treating diseases. Currently, there are still challenges in the application of ultrasound-responsive nanomaterials in anti-inflammatory therapy. The design and synthesis process of nanomaterials is complicated, and further verification of the biocompatibility and safety of these materials is needed. Therefore, in this review, we summarized and classified common ultrasound-responsive nanomaterials in the field of anti-inflammation and systematically introduced the properties of different nanomaterials. In addition, the anti-inflammatory applications of ultrasound-responsive nanomaterials in various diseases, such as bone diseases, skin and muscle diseases, autoimmune diseases, and respiratory diseases, are also described in detail. It is expected that this review will provide insights for further research and clinical applications in the realms of precision treatment, targeted drug delivery, and clinical trial validation of ultrasound-responsive nanomaterials used in anti-inflammatory therapies.

[超声响应纳米材料的分类及在消炎治疗中的应用]。
超声波是一种高频机械波,具有良好的组织穿透性,已广泛应用于医学影像诊断。此外,据报道,近年来,超声波以其无创、高效的特点在疾病治疗领域有着广泛的应用前景。超声响应纳米材料具有体积小、反应活性高的独特优势。这类材料能够在超声刺激下精确控制药物释放,为提高药物治疗效率提供了一种新方法。因此,这类材料吸引了众多学者的关注。炎症是生物体为应对伤害而产生的一种防御性反应。然而,过度的炎症反应可能导致生物体内各种组织损伤,甚至危及患者生命。许多研究表明,利用超声响应纳米材料限制炎症反应是治疗疾病的一种可行方法。目前,超声响应纳米材料在抗炎治疗中的应用仍面临挑战。纳米材料的设计和合成过程十分复杂,其生物相容性和安全性也有待进一步验证。因此,本综述对抗炎领域常见的超声响应纳米材料进行了总结和分类,系统介绍了不同纳米材料的特性。此外,还详细介绍了超声响应纳米材料在骨骼疾病、皮肤和肌肉疾病、自身免疫性疾病和呼吸系统疾病等各种疾病中的抗炎应用。希望这篇综述能为超声响应纳米材料在抗炎疗法中的精准治疗、靶向给药和临床试验验证等领域的进一步研究和临床应用提供启示。
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
四川大学学报(医学版)
四川大学学报(医学版) Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
0.70
自引率
0.00%
发文量
8695
期刊介绍: "Journal of Sichuan University (Medical Edition)" is a comprehensive medical academic journal sponsored by Sichuan University, a higher education institution directly under the Ministry of Education of the People's Republic of China. It was founded in 1959 and was originally named "Journal of Sichuan Medical College". In 1986, it was renamed "Journal of West China University of Medical Sciences". In 2003, it was renamed "Journal of Sichuan University (Medical Edition)" (bimonthly). "Journal of Sichuan University (Medical Edition)" is a Chinese core journal and a Chinese authoritative academic journal (RCCSE). It is included in the retrieval systems such as China Science and Technology Papers and Citation Database (CSTPCD), China Science Citation Database (CSCD) (core version), Peking University Library's "Overview of Chinese Core Journals", the U.S. "Index Medica" (IM/Medline), the U.S. "PubMed Central" (PMC), the U.S. "Biological Abstracts" (BA), the U.S. "Chemical Abstracts" (CA), the U.S. EBSCO, the Netherlands "Abstracts and Citation Database" (Scopus), the Japan Science and Technology Agency Database (JST), the Russian "Abstract Magazine", the Chinese Biomedical Literature CD-ROM Database (CBMdisc), the Chinese Biomedical Periodical Literature Database (CMCC), the China Academic Journal Network Full-text Database (CNKI), the Chinese Academic Journal (CD-ROM Edition), and the Wanfang Data-Digital Journal Group.
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