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用于恶性黑素瘤的碳纳米管的进展:治疗的机会。

Advances in Carbon Nanotubes for Malignant Melanoma: A Chance for Treatment.

机构信息

Telecommunication and Control Engineering Department, Engineering School, University of São Paulo-USP, São Paulo, SP, Brazil.

Laboratório de Automação e Controle, Escola Politécnica-Universidade de São Paulo, Avenida Prof. Luciano Gualberto-travessa 3-158, São Paulo, 05508-900, Brazil.

出版信息

Mol Diagn Ther. 2018 Dec;22(6):703-715. doi: 10.1007/s40291-018-0363-7.

Abstract

Malignant melanoma is an aggressive skin cancer with limited therapeutic options. Cancer is the second largest cause of death in society and one of the most difficult diseases to treat. Advances in biotechnology have enabled the current use of nanotechnology via the application of nanomaterials, especially as drug delivery systems for the transportation of very small particles. In this context, carbon nanotubes, with a potential role in the diagnosis and treatment of melanoma, are still an emerging research field. Their properties have been extensively studied for the use of antineoplastics drugs, as well as for DNA and RNA interference for the treatment of cancer. However, the most important challenge in nanomedicine is to decrease the toxicity and increase the biocompatibility of the nanomaterials used to transport therapeutic molecules. In this sense, this article addresses the recent advances in the use of carbon nanotubes in melanoma therapy and highlights the opportunities and challenges in this area. The advances and challenges involving these topics are essential to the success of nanoconjugate systems, and studies improving the comprehension of these nanosystems contribute to the development of specific antitumor therapies.

摘要

恶性黑色素瘤是一种侵袭性皮肤癌,治疗选择有限。癌症是社会上第二大致死原因,也是最难治疗的疾病之一。生物技术的进步使得纳米技术得以通过应用纳米材料来实现,特别是作为药物输送系统,用于运输非常小的颗粒。在这种情况下,碳纳米管在黑色素瘤的诊断和治疗中有潜在的作用,仍然是一个新兴的研究领域。它们的性质已经被广泛研究用于抗肿瘤药物,以及用于 DNA 和 RNA 干扰治疗癌症。然而,纳米医学中最重要的挑战是降低用于输送治疗分子的纳米材料的毒性并提高其生物相容性。在这方面,本文介绍了碳纳米管在黑色素瘤治疗中的最新应用进展,并强调了该领域的机遇和挑战。涉及这些主题的进展和挑战对于纳米共轭系统的成功至关重要,而提高对这些纳米系统的理解的研究有助于开发特定的抗肿瘤疗法。

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