声动力疗法
光热治疗
光动力疗法
材料科学
癌症研究
体内
乙烯醇
医学
生物医学工程
纳米技术
化学
聚合物
有机化学
生物
生物技术
复合材料
作者
Tingting Hu,Jia Lu,Heng Li,Chunyu Yang,Yuening Yan,Huiming Lin,Feng Zhang,Fengyu Qu,Wei Guo
标识
DOI:10.1002/adhm.202303147
摘要
Abstract Phototherapy and sonodynamic therapy (SDT) are widely used for the synergistic treatment of tumors and have received considerable attention. However, an inappropriate tumor microenvironment, including pH, H 2 O 2 , oxygen, and glutathione levels, can reduce the therapeutic effects of synergistic phototherapy and SDT. Here, a novel Bi‐based soluble microneedle (MN) is designed for the CT imaging of breast tumors and starvation therapy/gas therapy‐enhanced phototherapy/SDT. The optimized Bi/BiVO 4 Schottky heterojunction serves as the tip of the MN, which not only has excellent photothermal conversion ability and CT contrast properties, but its heterojunction can also avoid the rapid combination of electrons and hole pairs, thereby enhancing the photodynamic/sonodynamic effects. A degradable MN with excellent mechanical properties is fabricated by optimizing the ratios of poly(vinyl alcohol), poly(vinyl pyrrolidone), and sodium hyaluronate. Glucose oxidase (GO x ) and diallyl trisulfide are loaded into the MN to achieve tumor starvation and gas therapy, respectively; And the controlled release of GO x and H 2 S can be achieved under ultrasound or near‐infrared laser irradiation. The in vitro and in vivo results demonstrate that this multifunctional MN can achieve high therapeutic efficacy through starvation therapy/gas therapy‐enhanced phototherapy/SDT. The designed multifunctional MN provides a prospective approach for synergistic phototherapy and SDT.
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