Research Center for Analytical Sciences, Tianjin Key Laboratory of Biosensing and Molecular Recognition, College of Chemistry, Nankai University, Tianjin, 300071, P. R. China.
Key Laboratory of Molecular Microbiology and Technology, Ministry of Education, Department of Microbiology, College of Life Sciences, Nankai University, Tianjin, 300071, P. R. China.
Small. 2022 Oct;18(40):e2200263. doi: 10.1002/smll.202200263. Epub 2022 Sep 3.
Stimuli-responsive DNA hydrogels are promising candidates for cancer treatment, as they not only possess biocompatible and biodegradable 3D network structures as highly efficient carriers for therapeutic agents but also are capable of undergoing programmable gel-to-solution transition upon external stimuli to achieve controlled delivery. Herein, a promising platform for highly efficient photothermal-chemo synergistic cancer therapy is established by integrating DNA hydrogels with Ti C T -based MXene as a photothermal agent and doxorubicin (DOX) as a loaded chemotherapeutic agent. Upon the irradiation of near-infrared light (NIR), temperature rise caused by photothermal MXene nanosheets triggers the reversible gel-to-solution transition of the DOX-loaded MXene-DNA hydrogel, during which the DNA duplex crosslinking structures unwind to release therapeutic agents for efficient localized cancer therapy. Removal of the NIR irradiation results in the re-formation of DNA duplex structures and the hydrogel matrix, and the recombination of free DOX and adaptive hydrogel transformations can also be achieved. As demonstrated by both in vitro and in vivo models, the MXene-DNA hydrogel system, with excellent biocompatibility and injectability, dynamically NIR-triggered drug delivery, and enhanced drug uptake under mild hyperthermia conditions, exhibits efficient localized cancer treatment with fewer side effects to the organisms.
刺激响应型 DNA 水凝胶是癌症治疗的有前途的候选物,因为它们不仅具有生物相容性和可生物降解的 3D 网络结构,作为治疗剂的高效载体,而且能够在外来刺激下进行可编程的凝胶到溶液的转变,以实现控制释放。本文通过将 DNA 水凝胶与 TiC T 基 MXene 整合为光热剂和阿霉素(DOX)作为负载化疗药物,建立了一种用于高效光热化疗协同癌症治疗的有前途的平台。在近红外光(NIR)的照射下,光热 MXene 纳米片引起的温度升高触发了负载 DOX 的 MXene-DNA 水凝胶的可逆凝胶到溶液的转变,在此过程中,DNA 双链交联结构展开以释放治疗剂,从而实现高效的局部癌症治疗。去除 NIR 照射会导致 DNA 双链结构和水凝胶基质的重新形成,并且还可以实现游离 DOX 的重组和自适应水凝胶转变。通过体外和体内模型证明,具有出色的生物相容性和可注射性、动态 NIR 触发药物输送以及在温和的热疗条件下增强药物摄取的 MXene-DNA 水凝胶系统,具有高效的局部癌症治疗效果,对生物体的副作用较少。