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Cancer targeted magic bullets for effective treatment of cancer

机译:针对癌症的魔术子弹,可有效治疗癌症

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Cancer is a multifaceted disorder with serious threat across the globe. The vision for accomplishing an effective treatment strategy for cancer has always been a major concern worldwide. Although conventional drug therapy, esp. the chemotherapeutics provide benefits upto certain extent for treatment and management of cancers, yet it possesses umpteen challenges in terms of the associated side effects and adverse effects, lack of targeting ability, multi-drug resistance, poor patient acceptance and compliance, etc. at the desired site. To overcome these problems, the nanomedicines have been evolved as an effective and cost-effectual alternative for treatment of cancer. Inspiring from the concept of magic bullet, the world is moving towards developing the surface modified nanocarriers, which not only provide effective drug delivery but also allows site-specific monitoring of the cancer cells through in vivo diagnostic imaging. The present review endeavors to provide an explicit account on various drug targeting strategies employed for nanomedicines like active targeting, passive targeting, magnetic targeting, physical targeting and ultrasound targeting, etc, followed by their utility in the treatment of a particular type of cancer. According to the recent market survey, many nanocarrier-based drug delivery systems have been approved by USFDA, EMEA, MHRA and other global regulatory agencies, testify the high degrees of acceptance of the nanomedicines for treatment of cancer, while many products are under the preclinical and clinical development phases. Thus, for the translation of such technologies into the clinic, the pharma industry needs to be metamorphosing for a change in its culture of developing the traditional therapeutics.
机译:癌症是一种多方面的疾病,在全球范围内受到严重威胁。实现有效的癌症治疗策略的愿景一直是全世界的主要关注点。尽管是常规药物疗法,尤其是。化学疗法在一定程度上为癌症的治疗和管理带来益处,但是在相关的副作用和不良反应,缺乏靶向能力,多药耐药性,患者对药物的接受度和依从性差等方面面临着诸多挑战。所需的网站。为了克服这些问题,纳米药物已经发展成为治疗癌症的有效且具有成本效益的替代方法。受到魔术子弹概念的启发,世界正朝着开发表面修饰的纳米载体发展,该载体不仅可提供有效的药物递送,而且还可以通过体内诊断成像对癌细胞进行位点特异性监测。本综述力图提供用于纳米药物的各种药物靶向策略的明确说明,例如主动靶向,被动靶向,磁靶向,物理靶向和超声靶向等,然后将其用于治疗特定类型的癌症。根据最近的市场调查,许多基于纳米载体的药物递送系统已获得USFDA,EMEA,MHRA和其他全球监管机构的批准,证明了纳米药物用于治疗癌症的高度接受性,而许多产品仍处于临床前阶段。和临床开发阶段。因此,为了将这种技术转化为临床,制药业需要改变其发展传统疗法的文化。

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