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Nanostructures for NIR light-controlled therapies

机译:纳米结构的近红外光控疗法

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摘要

In general, effective clinical treatment demands precision medicine, which requires specific perturbation to disease cells with no damage to normal tissue. Thus far, guaranteeing that selective therapeutic effects occur only at targeted disease areas remains a technical challenge. Among the various endeavors to achieve such an outcome, strategies based on light-controlled therapies have received special attention, mostly due to their unique advantages, including the low-invasive property and the capability to obtain spatial and temporal precision at the targeted sites via specific wavelength light irradiation. However, most conventional light-mediated therapies, especially those based on short-wavelength UV or visible light irradiation, have potential issues including limited penetration depth and harmful photo damage to healthy tissue. Therefore, the implemention of near-infrared (NIR) light illumination, which can travel into deeper tissues without causing obvious photo-induced cytotoxcity, has been suggested as a preferable option for precise phototherapeutic applications in vitro and in vivo. In this article, an overview is presented of existing therapeutic applications through NIR light-absorbed nanostructures, such as NIR light-controlled drug delivery, NIR light-mediated photothermal and photodynamic therapies. Potential challenges and relevant future prospects are also discussed.
机译:一般来说,有效的临床治疗的要求精密医学,这需要具体扰动对疾病细胞无损伤正常组织。选择性治疗效果只在发生有针对性的疾病领域仍然是一个技术挑战。这样的结果,基于战略光控疗法得到了特别的的关注,主要是由于其独特的优势,包括low-invasive财产和能力获得空间和时间通过具体的精度在目标地点波长光照射。传统light-mediated疗法,特别是这些基于短波的紫外线或可见光照射,有潜在的问题包括有限的穿透深度和有害的照片损害健康的组织。近红外(NIR)光的实现照明,可以进入更深组织不会引起明显的photo-inducedcytotoxcity,已被认为是可取的选择精确phototherapeutic应用程序在体外和体内。概述了现有的治疗应用程序通过近红外光谱light-absorbed纳米结构,如近红外光控药物交付,NIR light-mediated光热光谱分析光动力疗法。相关的未来前景进行了讨论。

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