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排序方式: 共有190条查询结果,搜索用时 31 毫秒
1.
以氧化石墨烯(GO)为原料, 利用温和方法制备了3种不同还原程度的部分还原氧化石墨烯pRGO1, pRGO2和pRGO3(pRGO1—3); 利用傅里叶变换红外光谱(FTIR)、 拉曼光谱(Raman)、 X 射线光电子能谱(XPS)、 紫外-可见光谱(UV-Vis)、 透射电子显微镜(TEM)和 EDS能谱对其结构和形貌进行了表征. 细胞实验结果表明, 无激光照射下pRGO1—3本身的细胞毒性较低; 近红外(NIR)激光照射下pRGO1—3通过光热和光毒性双重作用杀伤肿瘤细胞. 实验结果显示了pRGO 在肿瘤光热疗法和光动力疗法领域的应用潜力.  相似文献   
2.
《中国化学快报》2020,31(5):1168-1172
Near-infrared (NIR) light-triggered photothermal therapy (PTT) is a promising treatment strategy for treating cancer. The combination of nanotechnology and NIR has been widely applied. However, the therapeutic efficacy of the drug-delivery system depends on their ability to avoid phagocytosis of endothelial system, cross the biological barriers, prolong circulation life, localize and rapidly release the therapeutic at target sites. In this work, we designed a platelet membrane (PM)-camouflaged hollow mesoporous bismuth selenide nanoparticles (BS NPs) loading with indocyanine green (ICG) (PM@BS-ICG NPs) to achieve the above advantages. PM-coating has active tumor-targeting ability which could prevent drug leakage and provide drug long circulation, causing drug delivery systems to accumulate in tumor sites effectively. Moreover, as a type of the photothermal sensitizers, BS NPs are used as the inner cores to improve ICG stability and are served as scaffolds to enhance the hardness of this drug delivery system. For one hand, the thermal vibration of BS NPs under NIR laser irradiation causes tumor inhibition through hyperthermia. For another hand, this hyperthermia process could damage PM and let ICG rapid release from PM@BS-ICG NPs. The in vitro and in vivo results showed that this biomimetic nano-drug delivery system exhibits obvious antitumor activity which has good application prospect.  相似文献   
3.
The gold nanoprisms (GNPs) have exhibited special plasmonic properties for biomedical applications because of their unique shapes and dimensions. Based on their optical performance, the NIR dye IR780 not only enabled the GNPs-based nanosystem as SERRS nanoparticles for Raman-encoded molecular imaging, but also enhanced the plasmonic photothermal property by laser irradiation. Meanwhile, the GNPs/IR780-Lyp-1 by introduction of tumor-homing peptide segment LyP-1, which presents high affinity to p32 protein, demonstrated the increased enrichment in tumor region and enhanced photothermal therapy efficacy.  相似文献   
4.
《Current Applied Physics》2018,18(1):127-132
By utilizing a near infrared laser diode as an excitation light source, we demonstrated a photothermally controlled current gating of 50 mA in a two-terminal planar device based on a vanadium dioxide (VO2) thin film grown by a pulsed laser deposition method. The photothermally controlled on/off triggering of the device current was accomplished by controlling the output power of the laser beam that illuminated the VO2 film. The transient responses of photothermally triggered currents were analyzed when periodical laser pulses from the laser diode stimulated the VO2 device at a variety of pulse widths and repetition rates. A switching contrast between off-state and on-state currents was evaluated as ∼11905, and average rising and falling times were measured as ∼45 and ∼19 ms, respectively.  相似文献   
5.
硫代部花菁是氮杂环阳离子和末端氨基、 羟基或烷氧基通过π共轭桥连在一起的一类荧光染料, 具有优异的光学性质和生物相容性, 其近红外发射优势以及光敏特性使以硫代部花菁为骨架的荧光探针和诊疗试剂在荧光/光声成像和肿瘤治疗方面发挥着重要作用. 本文综合评述了基于硫代部花菁构建的荧光探针和诊疗分子在识别各种生命或环境分析物以及光基疗法中的研究及应用, 讨论了该领域面临的问题, 并对未来的发展趋势进行了展望.  相似文献   
6.
以有机小分子4,9-二(5-9H-芴-2-基-噻吩-2-基)-6',7-联苯[1,2,5]噻二唑并[3,4-g]喹喔啉(TQF)为前驱体, 通过化学方法将其修饰为可引发可逆加成-断裂链转移聚合(RAFT)反应的小分子链转移剂TQF-苯基硫代链 转移剂(CTA). 以TQF-CTA为链转移剂, 以偶氮二异丁腈为引发剂, 引发N-异丙基丙烯酰胺(NIPAAm)和 甲基丙烯酸寡聚乙二醇酯(OEGMA)发生RAFT聚合反应, 合成了具有良好水溶性和较低临界溶解温度(LCST)的小分子基共聚物[TQF-P(NIPAAm-co-OEGMA), TPNO]. 将其直接溶于水中可制备成温敏的球形纳米粒子 TPNO NPs. 研究结果表明, TPNO NPs在温度大于LCST(35 ℃)时表现出一个明显的粒径变化和显著的荧光 增强行为(2.2倍), 并成功实现了对活体小鼠血管与肿瘤的明亮近红外二区(NIR-Ⅱ)荧光成像(FI). 同时, TPNO NPs有着良好的光热转换效率(PCE=29.8%), 通过体外细胞实验证明了其对细胞具有较好的光热治疗(PTT)效果.  相似文献   
7.
通过环境友好的葡萄糖模板法和改进的湿化学还原法制备了聚二甲基硅氧烷/铜纳米线(PDMS/CuNWs)复合薄膜, 其采用的“类夹心结构”有效解决了铜在空气中易氧化进而导致电导率大幅度下降的问题, 同时获得了具有优异电磁屏蔽和光热转化性能的双功能轻质柔性复合薄膜. CuNWs面密度为1.6 g/cm2的复合薄膜在重复弯折1000次后性能保持率最高可达99.07%; CuNWs面密度为2.4 g/cm2的复合薄膜在X波段下总电磁屏蔽效能达到30.1 dB, 屏蔽效率达到99.9%; 同时, 在2 W/cm2的近红外光照射下, 复合薄膜在仅加热15 s后其表面温度高达211.2 ℃, 具有十分快速的光热响应和转化效率.  相似文献   
8.
Combining photothermal therapy and radiotherapy(PTT-RT) with reducing tumor hypoxia acts as an important antitumor modality. However, it is a great challenge to realize photothermal therapy, radiotherapy and exogenous oxygen supply in one nanosystem. To realize a combination of the three functions, we fabricated a red blood cell membrane(RBCm)-camouflaged, red blood cell content(RBCc) and the copper sulfide(CuS) co-loaded dendritic large pore mesoporous silica nanoparticle(DLMSN/CuS/RBCc/ RBCm). The cell membrane coating endowed the nanoparticles with good stability in the physiological environment, and CuS allowed the nanoparticle exhibiting good photothermal and radiosensitization properties. RBCc loaded nanoparticle DLMSN/CuS/RBCc enhanced superior anti-tumor effect than DLMSN/CuS during combined PTT-RT therapy because the introduction of RBCc increased the exogenous oxygen supply. The in vitro study further demonstrated that the combination of photothermal therapy and radiotherapy induced superior antitumor efficacy than single therapy. Our work thus presents a unique multifunctional nanoscale platform favorable for combined PTT and RT.  相似文献   
9.
Magnetic helical microrobots swimming at low Reynolds numbers have attracted much interest because of their great potentials for biomedical applications. However, to endow them with sophisticated function integration toward targeted disease treatment still remains a major challenge. Here, we proposed a novel strategy of using Spirulina scaffolds to fabricate biohybrid magnetic helical microrobot (BMHM) with enhanced photothermal performance to fight against cancer cells and pathogenic bacteria. For the first time, CuS nanodots were densely and uniformly loaded intracellularly inside Spirulina cells after permeabilization, and Fe3O4 nanoparticles were subsequently deposited on the cell walls for magnetization. The BMHMs could be actuated forward at a high velocity and flexibly steered under rotating magnetic fields. Rapid and great photothermal temperature raise with robust cycling stability was achieved under 808 nm near-infrared laser irradiation. The BMHMs showed good biocompatibility with minor toxicity to HeLa cancer cells and Escherichia coli bacteria. Moreover, significant photothermal performance was further verified via a series of experiments for anticancer therapy and bacteria killing. Because of the remarkable features and facile cost-effective fabrication, the BMHMs demonstrated great potentials as an integrated microrobot platform for future anticancer and antibacteria applications.  相似文献   
10.
Nanomaterials with localized surface plasmon resonance (LSPR) locating in the near-infrared region have broad application prospects in the field of biomedicine. However, the biggest problem that limits the biomedical application of such nanomaterials lies in two aspects: First, the potential long-term in vivo toxicity caused by the metabolism of many nanomaterials with LSPR effect; Second, most of current nanomaterials with LSPR effect are difficult to achieve LSPR wavelength tunability in the near-infrared region to adapt to different biomedical applications. Copper selenide nanomaterials are composed of selenium and copper, which are necessary nutrient elements for human life. Because of the active and flexible chemical properties of selenium and copper, copper selenide nanomaterials can not only be effectively degraded and utilized in human body, but also be endowed with various physicochemical properties by chemical modification or doping. Recently, copper selenide nanomaterials have shown unique properties such as LSPR in the near-infrared region, making them attractive for near-infrared thermal ablation, photoacoustic imaging, disease marker detection, multimode imaging, and so on. Currently, to the best of our knowledge, there is no review on the LSPR properties of copper selenide nanomaterials and its biomedical applications. This review first discusses the relationship between the physicochemical properties and the LSPR of copper selenide nanomaterials and then summarizes the latest progress in the application of copper selenide nanomaterials in biological detection, diagnosis, and treatment of diseases. In addition, the advantages, and prospects of copper selenide nanomaterials in biomedicine are also highlighted.  相似文献   
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