College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, Seoul, Republic of Korea.
Cancer Res. 2019 Dec 15;79(24):6178-6189. doi: 10.1158/0008-5472.CAN-19-0975. Epub 2019 Oct 31.
Microbial carboxyl and catechol siderophores have been shown to have natural iron-chelating abilities, suggesting that hyaluronic acid (HA) and the catechol compound, gallic acid (GA), may have iron-coordinating activities. Here, a photoresponsive self-gelling hydrogel that was both injectable and could be applied to the skin was developed on the basis of the abilities of HA and GA to form coordination bonds with ferric ions (Fe). The conjugate of HA and GA (HA-GA) instantly formed hydrogels in the presence of ferric ions and showed near-infrared (NIR)-responsive photothermal properties. Following their subcutaneous injection into mice, HA-GA and ferric ion formed a hydrogel, which remained at the injection site for at least 8 days. Intratumoral injection of HA-GA/Fe hydrogel into mice allowed repeated exposure of the tumor to NIR irradiation. This repeated NIR irradiation resulted in complete tumor ablation in KB carcinoma cell-xenografted mice and suppressed lung metastasis of 4T1-Luc orthotopic breast tumors. Application of HA-GA/Fe hydrogel to the skin of A375 melanoma-xenografted tumor sites, followed by NIR irradiation, also resulted in complete tumor ablation. These findings demonstrate that single applications of HA-GA/Fe hydrogel have photothermal anticancer effects against both solid tumors and skin cancers. SIGNIFICANCE: These findings provide new insights into noninvasive anticancer phototherapy using self-gelling hydrogels. Application of these hydrogels in preclinical models reduces the sizes of solid tumors and skin cancers without surgery, radiation, or chemotherapy.
微生物羧基和儿茶酚类铁载体已被证明具有天然的铁螯合能力,这表明透明质酸(HA)和儿茶酚化合物没食子酸(GA)可能具有与铁配位的活性。在这里,基于 HA 和 GA 与三价铁离子(Fe)形成配位键的能力,开发了一种具有光响应性的自凝胶水凝胶,它既可以注射又可以应用于皮肤。HA 和 GA 的共轭物(HA-GA)在存在三价铁离子的情况下立即形成水凝胶,并表现出近红外(NIR)响应的光热特性。将 HA-GA 及其与铁离子混合物皮下注射到小鼠体内后,HA-GA 和铁离子形成水凝胶,至少在注射部位保留 8 天。将 HA-GA/Fe 水凝胶瘤内注射到小鼠体内后,可使肿瘤反复暴露于 NIR 照射下。这种重复的 NIR 照射导致 KB 癌细胞异种移植小鼠的肿瘤完全消融,并抑制了 4T1-Luc 原位乳腺癌肿瘤的肺转移。将 HA-GA/Fe 水凝胶应用于 A375 黑色素瘤异种移植肿瘤部位的皮肤,并进行 NIR 照射,也导致肿瘤完全消融。这些发现表明,HA-GA/Fe 水凝胶的单次应用具有针对实体瘤和皮肤癌的光热抗癌作用。意义:这些发现为使用自凝胶水凝胶进行非侵入性抗癌光疗提供了新的见解。这些水凝胶在临床前模型中的应用可在不进行手术、放疗或化疗的情况下缩小实体瘤和皮肤癌的体积。