Musaie Kiyan, Abbaszadeh Samin, Nosrati-Siahmazgi Vahideh, Qahremani Mostafa, Wang Shige, Eskandari Mohammad Reza, Niknezhad Seyyed Vahid, Haghi Fakhri, Li Yulin, Xiao Bo, Shahbazi Mohammad-Ali
Department of Pharmaceutical Biomaterials, School of Pharmacy, Zanjan University of Medical Science, 45139-56184 Zanjan, Iran.
Department of Pharmacology, School of Medicine, Zanjan University of Medical Sciences, 45139-56111 Zanjan, Iran.
Biomater Sci. 2023 Mar 28;11(7):2486-2503. doi: 10.1039/d2bm01965e.
Photothermal therapy (PTT) is a promising approach for treating cancer. However, it suffers from the formation of local lesions and subsequent bacterial infection in the damaged area. To overcome these challenges, the strategy of mild PTT following the high-temperature ablation of tumors is studied to achieve combined tumor suppression, wound healing, and bacterial eradication using a hydrogel. Herein, BiS nanorods (NRs) are employed as a photothermal agent and coated with hyaluronic acid to obtain BiH NRs with high colloidal stability. These NRs and allantoin are loaded into an injectable Fe-coordinated hydrogel composed of sodium alginate (Alg) and Farsi gum (FG), which is extracted from Spach. The hydrogel can be used for localized cancer therapy by high-temperature PTT, followed by wound repair through the combination of mild hyperthermia and allantoin-mediated induction of cell proliferation. In addition, an outstanding blood clotting effect is observed due to the water-absorbing ability and negative charge of FG and Alg as well as the porous structure of hydrogels. The hydrogels also eradicate infection owing to the local heat generation and intrinsic antimicrobial activity of the NRs. Lastly, studies reveal an efficient photothermal-based tumor eradication and accelerated wound healing by the hydrogel.
光热疗法(PTT)是一种很有前景的癌症治疗方法。然而,它存在局部损伤形成以及受损区域随后发生细菌感染的问题。为了克服这些挑战,研究了在肿瘤高温消融后进行温和光热疗法的策略,以使用水凝胶实现联合肿瘤抑制、伤口愈合和细菌根除。在此,双硫化物纳米棒(NRs)被用作光热剂,并包覆透明质酸以获得具有高胶体稳定性的BiH NRs。这些纳米棒和尿囊素被负载到由海藻酸钠(Alg)和从波斯皂荚中提取的波斯胶(FG)组成的可注射铁配位水凝胶中。该水凝胶可通过高温光热疗法用于局部癌症治疗,随后通过温和热疗和尿囊素介导的细胞增殖诱导相结合来进行伤口修复。此外,由于FG和Alg的吸水能力、负电荷以及水凝胶的多孔结构,观察到了出色的凝血效果。由于纳米棒的局部产热和固有抗菌活性,水凝胶还能消除感染。最后,研究表明该水凝胶能有效地基于光热作用根除肿瘤并加速伤口愈合。