Department of Chemical Engineering, National Tsing Hua University, Hsinchu, Taiwan, ROC.
Institute of Biomedical Engineering, National Tsing Hua University, Hsinchu, Taiwan, ROC.
Biomaterials. 2015 Jul;56:26-35. doi: 10.1016/j.biomaterials.2015.03.060. Epub 2015 Apr 15.
Repeated cancer treatments are common, owing to the aggressive and resistant nature of tumors. This work presents a chitosan (CS) derivative that contains self-doped polyaniline (PANI) side chains, capable of self-assembling to form micelles and then transforming into hydrogels driven by a local change in pH. Analysis results of small-angle X-ray scattering indicate that the sol-gel transition of this CS derivative may provide the mechanical integrity to maintain its spatial stability in the microenvironment of solid tumors. The micelles formed in the CS hydrogel function as nanoscaled heating sources upon exposure to near-infrared light, thereby enabling the selective killing of cancer cells in a light-treated area. Additionally, photothermal efficacy of the micellar hydrogel is evaluated using a tumor-bearing mouse model; hollow gold nanospheres (HGNs) are used for comparison. Given the ability of the micellar hydrogel to provide spatial stability within a solid tumor, which prevents its leakage from the injection site, the therapeutic efficacy of this hydrogel, as a photothermal therapeutic agent for repeated treatments, exceeds that of nanosized HGNs. Results of this study demonstrate that this in situ-formed micellar hydrogel is a highly promising modality for repeated cancer treatments, providing a clinically viable, minimally invasive phototherapeutic option for therapeutic treatment.
由于肿瘤具有侵袭性和耐药性,因此癌症的重复治疗很常见。本工作提出了一种壳聚糖(CS)衍生物,其包含自掺杂的聚苯胺(PANI)侧链,能够自组装形成胶束,然后在局部 pH 变化的驱动下转化为水凝胶。小角 X 射线散射分析结果表明,该 CS 衍生物的溶胶-凝胶转变可能为其提供机械完整性,以维持其在实体瘤微环境中的空间稳定性。在 CS 水凝胶中形成的胶束在近红外光照射下充当纳米级加热源,从而能够选择性地杀死光处理区域中的癌细胞。此外,使用荷瘤小鼠模型评估了胶束水凝胶的光热功效;空心金纳米球(HGNs)用于比较。鉴于胶束水凝胶在实体瘤内提供空间稳定性的能力,可防止其从注射部位泄漏,因此作为重复治疗的光热治疗剂,该水凝胶的治疗效果优于纳米级 HGNs。该研究结果表明,这种原位形成的胶束水凝胶是一种很有前途的重复癌症治疗方式,为治疗提供了一种临床可行的微创光疗选择。