Department of Biochemical Engineering & Biotechnology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, India.
Department of Cardiac Anaesthesia, Sir Gangaram Hospital, New Delhi, India.
J Biomater Sci Polym Ed. 2022 Aug;33(11):1435-1468. doi: 10.1080/09205063.2022.2054399. Epub 2022 Mar 24.
Skin-cancer (SC) is more common than all other cancers affecting large percentage of the population in the world and is increasing in terms of morbidity and mortality. In the United States, 3million people are affected by SC annually whereas millions of people are affected globally. Melanoma is fifth most common cancer in the United States. SC is commonly occurred in white people as per WHO. SC is divided into two groups, i.e. melanoma and non-melanoma. In the previous two decades, management of cancer remains to be a tough and a challenging task for many scholars. Presently, the treatment protocols are mostly based on surgery and chemo-radiation therapy, which sooner or later harm the unaffected cells too. To reduce these limitations, nano scaled materials and its extensive range may be recognized as the probable carriers for the selective drug delivery in response to cancerous cells. Recently, the nanocarriers based drugs and their combinations were found to be a new and interesting approach of study for the management of skin carcinoma to enhance the effectiveness, to lessen the dose-dependent side effects and to avoid the drug resistance. This review may emphasize on the wide-range of information on nanotechnology-based drugs and their combination with physical techniques.
皮肤癌(SC)比影响世界上大部分人口的所有其他癌症更为常见,其发病率和死亡率都在上升。在美国,每年有 300 万人受到 SC 的影响,而在全球范围内,有数百万的人受到影响。黑色素瘤是美国第五常见的癌症。根据世界卫生组织的说法,SC 在白人中更为常见。SC 分为两类,即黑色素瘤和非黑色素瘤。在过去的二十年中,癌症的治疗一直是许多学者的一项艰巨而具有挑战性的任务。目前,治疗方案主要基于手术和化疗放疗,这些方法迟早也会对未受影响的细胞造成伤害。为了减少这些限制,可以将纳米级材料及其广泛的应用视为针对癌细胞的选择性药物输送的可能载体。最近,基于纳米载体的药物及其组合被发现是治疗皮肤癌的一种新的、有趣的研究方法,以提高疗效,减少剂量依赖性副作用,并避免耐药性。这篇综述可能强调了基于纳米技术的药物及其与物理技术相结合的广泛信息。