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Black TiO2 based core-shell nanocomposites as doxorubicin carriers for thermal imaging guided synergistic therapy of breast cancer

机译:黑色基于二氧化钛核壳纳米复合材料阿霉素为热成像制导航空公司协同治疗乳腺癌

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摘要

TiO2 nanomaterials have been widely used for anticancer drug carriers and UV/980 nm NIR triggered cancer synergistic platforms. However, traditional pure TiO2 nanocarriers encounter some serious drawbacks, such as low drug loading ability, limited tissue penetration of UV light, and heating effect of 980 nm NIR on normal tissue, which obstruct their further application in cancer treatment. To overcome those challenges, novel mesoporous silica (mSiO(2)) coated black TiO2 core-shell nanocomposites are designed and constructed as doxorubicin carriers for 808 nm NIR triggered thermal imaging guided photothermal therapy combined chemotherapy of breast cancer. Properties of the nanocomposites such as micro-morphology, size, drug loading ability and release, targeting performance, and therapy efficiency in vitro and in vivo were evaluated. The results indicated the core-shell nanocomposites with dramatically increased loading ability were pH-responsive/NIR-accelerated doxorubicin release nanocarriers and showed synergistic breast cancer treatment in vitro and in vivo. This study verifies that the newly prepared mSiO(2) coated black TiO2 core-shell nanocarriers can overcome the limitations of traditional TiO2 nanocarriers and thus improve and broaden usage of TiO2 nanoparticles in nanomedicine.
机译:二氧化钛纳米材料已广泛用于抗癌药物载体和UV / 980 nm近红外光谱引发癌症的协同平台。传统的纯二氧化钛人们遇到一些严重的缺陷,如低药量能力,有限的组织渗透的紫外线,和980 nm NIR热效应正常组织,阻碍其进一步的应用在癌症治疗。挑战,新型介孔二氧化硅(mSiO (2))涂黑二氧化钛核壳纳米复合材料设计和建造阿霉素载体为808 nm近红外热成像制导触发光照疗法联合化疗乳腺癌。如micro-morphology、大小、药物加载能力和释放,针对性能、和体外和体内治疗效率评估。纳米复合材料,极大地提高了装载能力是pH-responsive / NIR-accelerated阿霉素的释放人们和显示协同乳腺癌治疗在体外和体内。验证新准备mSiO(2)涂层黑色二氧化钛核壳人们可以克服传统的二氧化钛人们的局限性从而改善和扩大使用二氧化钛纳米粒子在纳米。

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