首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Near-infrared stimulated hydrogel patch for photothermal therapeutics and thermoresponsive drug delivery
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Near-infrared stimulated hydrogel patch for photothermal therapeutics and thermoresponsive drug delivery

机译:近红外刺激水凝胶贴片,用于光热治疗和热敏药物递送

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Nanotechnology driven cancer theranostics hold potential as promising future clinical modalities. Currently, there is a strong emphasis on the development of combinational modalities, especially for cancer treatment. In this study, we present a topical hydrogel patch for nanomaterial-assisted photothermal therapeutics as well as for on-demand drug delivery application. The patch was derived from interpenetrating networks (IPNs) of alginate (Alg) and polyacrylamide (PAAm) in weight ratio 8:1 by free radical polymerization. The patch interiors were composed of hybrid nanostructures derived from gold nanorods (AuNRs) anchored onto polyvinylpyrrolidone (PVP) functionalized graphene oxide (PVP-nGO) to form PVP-nGO@AuNRs hybrids. Field emission scanning electron microscopy (FE-SEM) images revealed the porous nature of the hybrid hydrogel patch with an average pore size of similar to 28.60 +/- 3.10 mu m. Besides, functional characteristics of the hybrid patch, such as mechanical strength, viscoelastic and swelling behavior, were investigated. Under near-infrared (NIR) radiation exposure, the hybrid patch exhibited photothermal properties such as surface temperature rise to 75.16 +/- 0.32 degrees C, sufficient to ablate cancer cells thermally. Besides, the heat generated in the hybrid patch could be transmitted to an underlying hydrogel (mimicking skin tissue) when stacked together without much loss. Under cyclic photothermal heating, the patch could retain its photothermal stability for four cycles. Furthermore, the hybrid patch demonstrated NIR stimulated drug release, which was evaluated using methotrexate (MTX, water-insoluble anticancer drug) and rhodamine B (RhB, water-soluble dye). Taken together, this work provides a new dimension towards the development of externally placed hydrogel patches for thermal destruction of localized solid tumors and tunable delivery of chemotherapeutic drugs at the target site.
机译:纳米技术驱动癌症治疗患者持有未来未来临床方式的潜力。目前,强调组合方式的发展,特别是对于癌症治疗。在这项研究中,我们介绍了一种用于纳米材料辅助光热治疗剂的局部水凝胶贴片,以及按需药物递送应用。通过自由基聚合,通过自由基聚合衍生自藻酸盐(ALG)和聚丙烯酰胺(PAAM)的相互渗透网络(IPN)和聚丙烯酰胺(PAAM)。贴片室是由源自锚定的金纳米棒(AUNR)的杂化纳米结构组成,该族纳米棒(AUNRS)固定在聚乙烯基吡咯烷酮(PVP)官能化的石墨烯氧化物(PVP-NGO)上以形成PVP-NGO @ AUNRS杂种。场发射扫描电子显微镜(Fe-SEM)图像显示杂种水凝胶蛋白的多孔性质,平均孔径与28.60 +/-3.10μm相似。此外,研究了混合贴剂的功能特性,例如机械强度,粘弹性和溶胀行为。在近红外(NIR)辐射曝光下,杂交贴剂表现出光热性质,例如表面温度升至75.16 +/- 0.32℃,足以热烧蚀癌细胞。此外,在堆叠在一起时,可以将混合贴片中产生的热量传递到底层水凝胶(模拟皮肤组织),而不会损失。在循环光热加热下,贴剂可保持其4个循环的光热稳定性。此外,杂交贴剂证明了NIR刺激的药物释放,其使用甲氨蝶呤(MTX,水 - 不溶性抗癌药物)和罗丹明B(RHB,水溶性染料)评价。在一起,这项工作为外部放置的水凝胶斑块的开发提供了新的尺寸,以进行局部实体肿瘤的热破坏,并在靶位部位进行可调谐递送化学治疗药物。

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