Seetharam Aravindram Attiguppe, Choudhry Hani, Bakhrebah Muhammed A, Abdulaal Wesam H, Gupta Maram Suresh, Rizvi Syed Mohd Danish, Alam Qamre, Gowda Devegowda Vishakante, Moin Afrasim
Department of Pharmaceutics, JSS College of Pharmacy, JSS Academy of Higher Education and Research (JSSAHER), Sri Shivarathreeshwara Nagar, Mysore 570015, India.
Department of Biochemistry, Cancer Metabolism & Epigenetic Unit, Faculty of Science, Cancer & Mutagenesis Unit, King Fahd Medical Research Center, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Pharmaceutics. 2020 Nov 17;12(11):1101. doi: 10.3390/pharmaceutics12111101.
Microneedles (MNs) are tiny needle like structures used in drug delivery through layers of the skin. They are non-invasive and are associated with significantly less or no pain at the site of administration to the skin. MNs are excellent in delivering both small and large molecules to the subjects in need thereof. There exist several strategies for drug delivery using MNs, wherein each strategy has its pros and cons. Research in this domain lead to product development and commercialization for clinical use. Additionally, several MN-based products are undergoing clinical trials to evaluate its safety, efficacy, and tolerability. The present review begins by providing bird's-eye view about the general characteristics of MNs followed by providing recent updates in the treatment of cancer using MNs. Particularly, we provide an overview of various aspects namely: anti-cancerous MNs that work based on sensor technology, MNs for treatment of breast cancer, skin carcinoma, prostate cancer, and MNs fabricated by additive manufacturing or 3 dimensional printing for treatment of cancer. Further, the review also provides limitations, safety concerns, and latest updates about the clinical trials on MNs for the treatment of cancer. Furthermore, we also provide a regulatory overview from the "United States Food and Drug Administration" about MNs.
微针(MNs)是用于透过皮肤各层进行药物递送的微小针状结构。它们是非侵入性的,在皮肤给药部位引起的疼痛显著减轻或无痛。微针在向有需要的受试者递送小分子和大分子方面表现出色。存在几种使用微针进行药物递送的策略,其中每种策略都有其优缺点。该领域的研究促成了临床应用产品的开发和商业化。此外,几种基于微针的产品正在进行临床试验,以评估其安全性、有效性和耐受性。本综述首先概述微针的一般特征,随后介绍微针在癌症治疗方面的最新进展。特别是,我们概述了各个方面,即基于传感器技术的抗癌微针、用于治疗乳腺癌、皮肤癌、前列腺癌的微针,以及通过增材制造或三维打印制造的用于治疗癌症的微针。此外,该综述还介绍了微针治疗癌症的局限性、安全问题以及临床试验的最新进展。此外,我们还提供了美国食品药品监督管理局关于微针的监管概述。