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Implantable versatile oxidized bacterial cellulose membrane for postoperative HNSCC treatment via photothermal-boosted immunotherapy
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作者 jun-jie zhou Xiao-Hong Li +7 位作者 Peng-Yu He Fu-Yu Qi Muhammad Wajid Ullah Shu-Jin Li Yuan-Tong Liu Lin-Lin Bu Guang Yang Zhi-Jun Sun 《Nano Research》 SCIE EI CSCD 2023年第1期951-963,共13页
The recurrence of head and neck squamous cell carcinoma(HNSCC)after surgical resection continues to pose a major challenge to cancer treatment.Advanced HNSCC exhibits a low response rate to immune checkpoint blockade(... The recurrence of head and neck squamous cell carcinoma(HNSCC)after surgical resection continues to pose a major challenge to cancer treatment.Advanced HNSCC exhibits a low response rate to immune checkpoint blockade(ICB),while photothermal therapy(PTT)can increase the infiltration of immune cells to make tumors more susceptible to cancer immunotherapy.In this regard,we designed and constructed a novel multifunctional nanocomposite comprised of oxidized bacterial cellulose(OBC),thrombin(TB),and gold nanocages(AuNCs)containing anti-programmed death 1(PD-1)antibody(αPD-1@AuNCs),which allows the combination of therapies with remarkable postoperative antitumor immunity to control local tumor recurrence.TheαPD-1@AuNCs displayed high light-to-heat conversion efficiency and induced pyroptosis under near infrared(NIR)irradiation,which activated a potent antitumor immune response.More importantly,the therapeutic system could induce tumor pyroptosis and enhance antitumor immune response by increasing T-cell infiltration and reducing the immune suppressive cells,when combined with local ICB therapy,which effectively avoided the tumor recurrence in a HNSCC postoperative mice model.Overall,the newly developed multifunctional nanocomposites could be a promising candidate for the treatment of postoperative HNSCC. 展开更多
关键词 head and neck squamous cell carcinoma(HNSCC) oxidized bacterial cellulose PYROPTOSIS IMMUNOTHERAPY postoperative treatment
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基于海藻酸钠电沉积技术制备ZnO量子点及其复合膜的检测应用研究 被引量:3
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作者 刘俊 夏传杰 +5 位作者 王康龙 李端明 王清华 周俊杰 陶青 王艺峰 《高分子学报》 SCIE CAS CSCD 北大核心 2022年第2期145-152,共8页
天然高分子电沉积技术为构建新型功能材料和器件提供了契机.ZnO量子点(QDs)具备无毒、荧光稳定等特点日益受到人们的重视.本工作基于天然高分子海藻酸钠的配位电沉积技术制备ZnO QDs及其纳米复合膜;所采用方法具备操作简单、易于控制、... 天然高分子电沉积技术为构建新型功能材料和器件提供了契机.ZnO量子点(QDs)具备无毒、荧光稳定等特点日益受到人们的重视.本工作基于天然高分子海藻酸钠的配位电沉积技术制备ZnO QDs及其纳米复合膜;所采用方法具备操作简单、易于控制、条件温和、绿色环保等优点;并且产物后处理简便,可以直接在电极上构建出ZnO QDs/海藻酸钠复合膜.测试结果表明复合膜中存在大小均一的ZnO QDs,平均粒径为6 nm.复合膜的外观均一平整,呈现明显的橙色荧光.ZnO QDs/海藻酸钠复合膜不仅对K3[Fe(CN)6]具有电化学检测作用,而且对Cu2+具有荧光检测作用.本工作为ZnO QDs的制备以及QDs/天然高分子纳米复合材料的构建提供一种新方法,所制得的复合膜在电化学检测和荧光检测领域具有应用价值. 展开更多
关键词 电沉积 海藻酸钠 ZnO量子点 纳米复合膜 检测
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