Zhang Yulong, Liu Xueyu, Geng Chongrui, Shen Hongyu, Zhang Qiupeng, Miao Yuqing, Wu Jingxiang, Ouyang Ruizhuo, Zhou Shuang
Institute of Bismuth and Rhenium Science, University of Shanghai for Science and Technology, Shanghai 200093, China.
Shanghai Chest Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200030, China.
Nanomaterials (Basel). 2023 Jan 29;13(3):551. doi: 10.3390/nano13030551.
Despite the significant improvement in the survival rate of cancer patients, the total cure of bone cancer is still a knotty clinical challenge. Traditional surgical resectionof bone tumors is less than satisfactory, which inevitably results in bone defects and the inevitable residual tumor cells. For the purpose of realizing minimal invasiveness and local curative effects, photothermal therapy (PTT) under the irradiation of near-infrared light has made extensive progress in ablating tumors, and various photothermal therapeutic agents (PTAs) for the treatment of bone tumors have thus been reported in the past few years, has and have tended to focus on osteogenic bio-scaffolds modified with PTAs in order to break through the limitation that PTT lacks, osteogenic capacity. These so-called bifunctional scaffolds simultaneously ablate bone tumors and generate new tissues at the bone defects. This review summarizes the recent application progress of various bifunctional scaffolds and puts forward some practical constraints and future perspectives on bifunctional scaffolds for tumor therapy and bone regeneration: two hawks with one arrow.
尽管癌症患者的生存率有了显著提高,但骨癌的完全治愈仍是一个棘手的临床挑战。传统的骨肿瘤手术切除效果不尽人意,不可避免地会导致骨缺损和不可避免的残留肿瘤细胞。为了实现微创性和局部治疗效果,近红外光照射下的光热疗法(PTT)在消融肿瘤方面取得了广泛进展,在过去几年中,各种用于治疗骨肿瘤的光热治疗剂(PTA)也纷纷被报道,并且倾向于聚焦于用PTA修饰的成骨生物支架,以突破PTT缺乏成骨能力的限制。这些所谓的双功能支架能够同时消融骨肿瘤并在骨缺损处生成新组织。本文综述了各种双功能支架的近期应用进展,并对用于肿瘤治疗和骨再生的双功能支架提出了一些实际限制和未来展望:一箭双雕。