首页> 外文期刊>Acta Pharmaceutica Sinica B >Computed tomography and photoacoustic imaging guided photodynamic therapy against breast cancer based on mesoporous platinum with insitu oxygen generation ability
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Computed tomography and photoacoustic imaging guided photodynamic therapy against breast cancer based on mesoporous platinum with insitu oxygen generation ability

机译:基于中孔铂的乳腺癌,计算机断层扫描和光声成像引导光动力学疗法

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Photodynamic therapy (PDT) has been widely used in cancer treatment. However, hypoxia in most solid tumors seriously restricts the efficacy of PDT. To improve the hypoxic microenvironment, we designed a novel mesoporous platinum (mPt) nanoplatform to catalyze hydrogen peroxide (H2O2) within the tumor cells in situ without an extra enzyme. During the fabrication, the carboxy terminus of the photosensitizer chlorin e6 (Ce6) was connected to the amino terminus of the bifunctional mercaptoaminopolyglycol (SH-PEG-NH2) by a condensation reaction, and then PEG-Ce6 was modified onto the mPt moiety via the mercapto terminal of SH-PEG-NH2. Material, cellular and animal experiments demonstrated that [email?protected] catalyzed H2O2 to produce oxygen (O2) and that Ce6 transformed O2 to generate reactive oxygen species (ROS) upon laser irradiation. The [email?protected] nanoplatform with uniform diameter presented good biocompatibility and efficient tumor accumulation. Due to the high atomic number and good near-infrared absorption for Pt, this [email?protected] nanoplatform showed computed tomography (CT) and photoacoustic (PA) dual-mode imaging ability, thus providing an important tool for monitoring the tumor hypoxic microenvironment. Moreover, the [email?protected] nanoplatform reduced the expression of hypoxia-inducible factor-1 α (HIF-1 α ) and programmed death-1 (PD-1) in tumors, discussing the relationship between hypoxia, PD-1, and PDT for the first time.
机译:光动力疗法(PDT)已被广泛用于癌症治疗方法。然而,大多数实体瘤中的缺氧严重限制了PDT的疗效。为了改善缺氧微环境,我们设计了一种新的中孔铂(MPT)纳米纳米纳薄晶形,以催化在肿瘤细胞内的过氧化氢(H 2 O 2),而不会额外酶。在制造过程中,通过缩合反应将光敏剂氯氯E6(CE6)的羧基末端连接到双官能巯基氨基吡酰基(SH-PEG-NH2)的氨基末端,然后通过缩合反应将PEG-CE6改性到MPT部分上SH-PEG-NH2的巯基末端。材料,细胞和动物实验证明了[邮箱吗?受保护的]催化的H 2 O 2制备氧(O 2),CE6转化的O 2在激光照射时产生反应性氧物质(ROS)。 [邮箱吗?受保护的]纳米纳薄,具有均匀直径呈现良好的生物相容性和有效的肿瘤积累。由于高原子序数和PT的近红外吸收,这是一种[邮箱吗?受保护的]纳米片显示出计算断层扫描(CT)和光声(PA)双模成像能力,从而提供了监测肿瘤缺氧微环境的重要工具。此外,[邮箱吗?受保护的]纳米片状降低肿瘤中缺氧诱导因子-1α(HIF-1α)和编程死亡-1(PD-1)的表达,讨论了缺氧,PD-1和PDT第一次。

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