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纳米酶在癌症治疗及其他疾病中的应用潜力:现状与未来挑战

Potentiality of Nanoenzymes for Cancer Treatment and Other Diseases: Current Status and Future Challenges.

作者信息

Sindhu Rakesh K, Najda Agnieszka, Kaur Prabhjot, Shah Muddaser, Singh Harmanpreet, Kaur Parneet, Cavalu Simona, Jaroszuk-Sierocińska Monika, Rahman Md Habibur

机构信息

Chitkara College of Pharmacy, Chitkara University, Punjab 140401, India.

Department of Vegetable Crops and Medicinal Plants, University of Life Sciences in Lublin, 50A Doświadczalna St., 20-280 Lublin, Poland.

出版信息

Materials (Basel). 2021 Oct 11;14(20):5965. doi: 10.3390/ma14205965.

Abstract

Studies from past years have observed various enzymes that are artificial, which are issued to mimic naturally occurring enzymes based on their function and structure. The nanozymes possess nanomaterials that resemble natural enzymes and are considered an innovative class. This innovative class has achieved a brilliant response from various developments and researchers owing to this unique property. In this regard, numerous nanomaterials are inspected as natural enzyme mimics for multiple types of applications, such as imaging, water treatment, therapeutics, and sensing. Nanozymes have nanomaterial properties occurring with an inheritance that provides a single substitute and multiple platforms. Nanozymes can be controlled remotely via stimuli including heat, light, magnetic field, and ultrasound. Collectively, these all can be used to increase the therapeutic as well as diagnostic efficacies. These nanozymes have major biomedical applications including cancer therapy and diagnosis, medical diagnostics, and bio sensing. We summarized and emphasized the latest progress of nanozymes, including their biomedical mechanisms and applications involving synergistic and remote control nanozymes. Finally, we cover the challenges and limitations of further improving therapeutic applications and provide a future direction for using engineered nanozymes with enhanced biomedical and diagnostic applications.

摘要

过去几年的研究发现了各种人工酶,这些酶是根据其功能和结构来模拟天然存在的酶而设计的。纳米酶拥有类似于天然酶的纳米材料,被认为是一类创新物质。由于这种独特的性质,这一创新类别在各种发展和研究中都获得了出色的反响。在这方面,许多纳米材料被作为天然酶模拟物用于多种应用,如成像、水处理、治疗和传感。纳米酶具有纳米材料的特性,其遗传性提供了单一替代物和多个平台。纳米酶可以通过热、光、磁场和超声波等刺激进行远程控制。总的来说,这些都可用于提高治疗和诊断效果。这些纳米酶具有主要的生物医学应用,包括癌症治疗与诊断、医学诊断和生物传感。我们总结并强调了纳米酶的最新进展,包括它们的生物医学机制以及涉及协同和远程控制纳米酶的应用。最后,我们阐述了进一步改善治疗应用所面临 的挑战和限制,并为使用具有增强生物医学和诊断应用的工程纳米酶提供了未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a51/8539628/b90e0a46ee1c/materials-14-05965-g001.jpg

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