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首页> 外文期刊>Bioconjugate Chemistry >Cys-diabody Quantum Dot Conjugates (ImmunoQdots) for Cancer Marker Detection
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Cys-diabody Quantum Dot Conjugates (ImmunoQdots) for Cancer Marker Detection

机译:半胱氨酸双抗体量子点缀合物(ImmunoQdots)用于癌症标志物检测

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摘要

The present work demonstrates the use of small bivalent engineered antibody fragments, cys-diabodies, for biological modification of nanoscale particles such as quantum dots (Qdots) for detection of target antigens. Novel bioconjugated quantum dots known as immunoQdots (iQdots) were developed by thiol-specific oriented coupling of tumor specific cys-diabodies, at a position away from the antigen binding site to amino PEG CdSe/ZnS Qdots. Initially, amino PEG Qdot 655 were coupled with reduced anti-HER2 cys-diabody by amine-sulfhydryl-reactive linker [N-ε-maleimidocaproyloxy] succinimide ester (EMCS) to produce anti-HER2 iQdot 655. Spectral characterization of the conjugate revealed that the spectrum was symmetrical and essentially identical to unconjugated Qdot. Specific receptor binding activity of anti-HER2 iQdot 655 was confirmed by flow cytometry on HER2 positive and negative cells. Immunofluorescence results showed homogeneous surface labeling of the cell membrane with Qdot 655 conjugate. In addition, cys-diabodies specific for HER2, as well as prostate stem cell antigen (PSCA), were conjugated successfully with amino PEG Qdot 800. All of these iQdots retain the photoluminescence properties of the unconjugated Qdot 800 as well as the antigen binding specificity of the cys-diabody as demonstrated by flow cytometry. Simultaneous detection of two tumor antigens on LNCaP/PSCA prostate cancer cells (which express PSCA and HER2) in culture was possible using two iQdots, anti-HER2 iQdot 655 and anti-PSCA iQdot 800. Thus, these iQdots are potentially useful as optical probes for sensitive, multiplexed detection of surface markers on tumor cells. The present thiol-specific conjugation method demonstrates a general approach for site-specific oriented coupling of cys-diabodies to a wide variety of nanoparticles without disturbing the antigen binding site and maintaining small size compared to intact antibody.
机译:本工作证明了使用小的二价工程化抗体片段cys-双价抗体,可对纳米级粒子(例如量子点(Qdots))进行生物学修饰,以检测目标抗原。新型的生物共轭量子点被称为immunoQdots(iQdots)通过肿瘤特异性的cys-双抗体的巯基特异性定向偶联在远离抗原结合位点的位置结合到氨基PEG CdSe / ZnS Qdots上而开发的。最初,氨基PEG Qdot 655通过胺-巯基反应性连接物[N-ε-马来酰亚胺基己酰氧基]琥珀酰亚胺酯(EMCS)与还原的抗HER2 cys-双价抗体偶联,生成抗HER2的iQdot655。缀合物的光谱表征表明光谱是对称的,与非共轭Qdot基本相同。通过流式细胞术在HER2阳性和阴性细胞上证实了抗HER2 iQdot 655的特异性受体结合活性。免疫荧光结果显示,用Qdot 655偶联物对细胞膜进行了均匀的表面标记。此外,HER2特异的半胱氨酸双抗体以及前列腺干细胞抗原(PSCA)已成功与氨基PEG Qdot 800偶联。所有这些iQdot都保留了未偶联的Qdot 800的光致发光特性以及抗原结合特异性通过流式细胞术证实半胱氨酸双抗体。使用两个iQdot(抗HER2 iQdot 655和抗PSCA iQdot 800)可以同时检测培养的LNCaP / PSCA前列腺癌细胞(表达PSCA和HER2)上的两种肿瘤抗原。因此,这些iQdot可能可用作光学探针用于灵敏,多重检测肿瘤细胞表面标志物。与完整抗体相比,本发明的硫醇特异性缀合方法证明了cys-双抗体与多种纳米颗粒进行位点特异性定向偶联的通用方法,而不会干扰抗原结合位点并保持较小的尺寸。

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