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可注射载地塞米松的肽水凝胶通过调节 mTOR 信号通路治疗放射性耳毒性。

Injectable dexamethasone-loaded peptide hydrogel for therapy of radiation-induced ototoxicity by regulating the mTOR signaling pathway.

机构信息

Cancer center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, Hubei, China; Hubei Key Laboratory of Precision Radiation Oncology, Wuhan 430022, China; Institute of Radiation Oncology, Union Hospital, Tongji Medical College, Huazhong, University of Science and Technology, Wuhan 430022, China.

The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310009, Zhejiang Province, China.

出版信息

J Control Release. 2024 Jan;365:729-743. doi: 10.1016/j.jconrel.2023.12.004. Epub 2023 Dec 14.

Abstract

Radiation-induced ototoxicity is associated with inflammation response and excessive reactive oxygen species in the cochlea. However, the effectiveness of many drugs in clinical settings is limited due to anatomical barriers in the inner ear and pharmacokinetic instability. To address this issue, we developed an injectable hydrogel called RADA-HRN-dexamethasone (RHD). The RHD hydrogel possesses self-anti-inflammatory properties and can self-assemble into nanofibrous structures, ensuring controlled and sustained release of dexamethasone in the local region. Flow cytometry analysis revealed that the uptake of FITC-conjugated RHD gel by hair cells increased in a time-dependent manner. Compared to free dexamethasone solutions, dexamethasone-loaded RHD gel achieved a longer and more controlled release profile of dexamethasone. Additionally, RHD gel effectively protected against the inflammatory response, reduced excessive reactive oxygen species production, and reversed the decline in mitochondrial membrane potentials induced by ionizing radiation, leading to attenuation of apoptosis and DNA damage. Moreover, RHD gel promoted the recovery of outer hair cells and partially restored auditory function in mice exposed to ionizing radiation. These findings validated the protective effects of RHD gel against radiation-induced ototoxicity in both cell cultures and animal models. Furthermore, RHD gel enhanced the activity of the mammalian target of rapamycin (mTOR) signaling pathway, which was inhibited by ionizing radiation, thereby promoting the survival of hair cells. Importantly, intratympanic injections of RHD gel exhibited excellent biosafety and do not interfere with the anti-tumor effects of radiotherapy. In summary, our study demonstrates the therapeutic potential of injectable dexamethasone-loaded RHD hydrogel for the treatment of radiation-induced hearing loss by regulating the mTOR signaling pathway.

摘要

辐射诱导的耳毒性与耳蜗内的炎症反应和过量的活性氧物质有关。然而,由于内耳的解剖学屏障和药代动力学不稳定,许多药物在临床环境中的效果有限。为了解决这个问题,我们开发了一种名为 RADA-HRN-地塞米松(RHD)的可注射水凝胶。RHD 水凝胶具有自我抗炎特性,可以自组装成纳米纤维结构,确保地塞米松在局部区域的控制和持续释放。流式细胞术分析显示,毛细胞对地塞米松标记的 RHD 凝胶的摄取呈时间依赖性增加。与游离地塞米松溶液相比,地塞米松负载的 RHD 凝胶实现了更长时间和更受控的地塞米松释放。此外,RHD 凝胶有效地抑制了炎症反应,减少了过量活性氧物质的产生,并逆转了电离辐射引起的线粒体膜电位下降,从而减轻了细胞凋亡和 DNA 损伤。此外,RHD 凝胶促进了外毛细胞的恢复,并在接受电离辐射的小鼠中部分恢复了听觉功能。这些发现验证了 RHD 凝胶在细胞培养和动物模型中对辐射诱导的耳毒性的保护作用。此外,RHD 凝胶增强了哺乳动物雷帕霉素靶蛋白(mTOR)信号通路的活性,该通路被电离辐射抑制,从而促进了毛细胞的存活。重要的是,鼓室内注射 RHD 凝胶表现出优异的生物安全性,并且不干扰放射治疗的抗肿瘤作用。总之,我们的研究表明,可注射的地塞米松负载的 RHD 水凝胶通过调节 mTOR 信号通路具有治疗辐射诱导的听力损失的潜力。

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