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首页> 外文期刊>ACS applied materials & interfaces >Peptide-Based Photoelectrochemical Cytosensor Using a Hollow-TiO2/EG/ZnIn2S4 Cosensitized Structure for Ultrasensitive Detection of Early Apoptotic Cells and Drug Evaluation
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Peptide-Based Photoelectrochemical Cytosensor Using a Hollow-TiO2/EG/ZnIn2S4 Cosensitized Structure for Ultrasensitive Detection of Early Apoptotic Cells and Drug Evaluation

机译:基于肽的光电化学胞嘧体使用空心-TiO2 /例如/ Znin2S4的化合物化结构,用于超细检测早期凋亡细胞和药物评估

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摘要

The ability to rapidly detect apoptotic cells and accurately evaluate therapeutic effects is significant in cancer research. To address this target, a biocompatible, ultrasensitive photoelectrochemical (PEC) cytosensing platform was developed based on electrochemically reduced graphene (EG)/ZnIn2S4 cosensitized TiO2 coupled with specific recognition between apoptotic cells and phosphatidylserinebincling peptide (PSBP). In this strategy, the HL-60 cells ivete selected as a model and COOS, nilotitib, and imatiriib were selected as apoptosis inducers to show cytosensing performances. In particular, a TiO2 photoactive substrate was designed as hollow spheres to enharice the PEC performance. Giaphene was electrodeposited on the hollow TiO2-modified electrode to accelerate electron transfer and increase conductivity, followed by in Situ growth of ZnIn2S4 natoclystals as photosensitizers via successive ionic layer adsorption and reaction method, forming a TiO2/EG/ZnIn2S4 cosensitized structure that was used as a PEC matrix to immobilize PSBP for the recognition of early apoptotic cells. The detection of apoptotic cells was based on steric hindrance originating from apoptotic cell capture to induce an obvious decrease in the photocurrent signal. the ultrahigh sensitivity of the cytosensor resulted from enhanced PEC performance, bioactivity, and high binding affinity between PSBP and apoptotic cells. Compared with other assays, incorporate toxic elements were avoided, such as Cd, Ru, and Te, which ensured normal cell growth and are appropriate for cell analysis. The designed PEC cytosensor showed a low detection limit of apoptotic cells (as low as three cells), a wide linear range from 1 x 10(3) to 5 X 10(7) cells/mL, and an accurate evaluation of therapeutic effects. It also exhibited good specificity, reproducibility, and stability.
机译:癌症研究中快速检测凋亡细胞和准确评估治疗效果的能力是显着的。为了解决该靶,基于电化学还原的石墨烯(例如)/ Znin2S4辅助TiO 2与凋亡细胞和磷脂酰胆碱基因肽(PSBP)之间的特异性识别偶联,开发生物相容性的超敏光电化学(PEC)胞嘧化平台。在该策略中,选择选择作为模型和CoOS,NiLotitib和Imatirib的HL-60细胞作为细胞凋亡诱导剂,以显示细胞化性能。特别地,设计了TiO2光活性底物作为中空球体以获得PEC性能。在中空TiO2改性电极上电沉积胶烯,以加速电子转移并增加电导率,然后通过连续离子层吸附和反应方法原位生长作为光敏剂,形成使用的TiO 2 /例如/ Znin2S4个组织化结构将PSBP固定为早期凋亡细胞的PEC矩阵。凋亡细胞的检测基于源自凋亡细胞捕获的空间阻断,诱导光电流信号的明显降低。胞间传感器的超高敏感性因增强的PEC性能,生物活性和PSBP和凋亡细胞之间的高结合亲和力而导致。与其他测定相比,避免了掺入有毒元素,例如Cd,Ru和Te,其确保正常细胞生长并且适合细胞分析。设计的PEC细胞传感器显示凋亡细胞的低检测限(低至三个细胞),宽线性范围为1×10(3)至5×10(7)个细胞/ mL,以及准确评估治疗效果。它还表现出良好的特异性,可重复性和稳定性。

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