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胶体钯纳米粒子在电子显微镜标记中的应用。

Application of colloidal palladium nanoparticles for labeling in electron microscopy.

机构信息

Institute of Parasitology, Biology Centre, Academy of Sciences of the Czech Republic, Branišovská 31, 370 05 České Budějovice, Czech Republic.

出版信息

Microsc Microanal. 2011 Oct;17(5):810-6. doi: 10.1017/S1431927611000547. Epub 2011 Sep 9.

Abstract

The application of palladium nanoparticles as electron-dense markers for labeling in both transmission and scanning electron microscopy requires their conjugation to a specific protein. The conjugation protocol described here includes the dihydrolipoic acid (DHLA) capping of Pd nanoparticles (8 nm equivalent diameter) and their subsequent covalent attachment to functional protein molecules such as streptavidin, protein A, or avidin. The single-step reaction was mediated using the cross-linking agent ethyl-3-(3-dimethylaminopropyl)carbodiimide (EDC). The final Pd conjugates were fully functional, as demonstrated by labeling of ultrathin resin sections of either bovine serum albumin or secretory granules of the salivary gland isolated from the partially fed female Ixodes ricinus tick. The results of bovine serum labeling were quantified, statistically evaluated, and compared with results obtained using commercially available gold particle conjugates (10 nm diameter). The highest values of labeling density were achieved using both streptavidin-Pd (106 ± 7 particles/μm2) and protein A-Au conjugates (130 ± 18 particles/μm2) compared to a commercial streptavidin-Au (66 ± 16 particles/μm2) and protein A-Pd conjugates (70 ± 11 particles/μm2). The concentrations of both DHLA and EDC, pH during conjugation, and finally thorough washing away of unbound proteins crucially influenced conjugation.

摘要

钯纳米粒子作为电子致密标记物在透射和扫描电子显微镜中的应用需要将其与特定蛋白质结合。这里描述的缀合方案包括二氢硫辛酸 (DHLA) 封端钯纳米粒子(8nm 当量直径),并随后将其共价连接到功能蛋白分子,如链霉亲和素、蛋白 A 或亲和素。使用交联剂 1-乙基-3-(3-二甲基氨基丙基)碳二亚胺 (EDC) 介导了单步反应。如用部分喂食的雌性硬蜱分离的牛血清白蛋白或唾液腺分泌颗粒的超薄树脂切片进行标记所示,最终的 Pd 缀合物具有完全的功能。用商业上可获得的金颗粒缀合物(10nm 直径)进行的牛血清标记的结果进行了量化、统计评估并与结果进行了比较。与商业上可获得的链霉亲和素-Au(66±16 个颗粒/μm2)和蛋白 A-Pd 缀合物(70±11 个颗粒/μm2)相比,使用链霉亲和素-Pd(106±7 个颗粒/μm2)和蛋白 A-Au 缀合物获得了最高的标记密度值。DHLA 和 EDC 的浓度、缀合过程中的 pH 值以及最后彻底去除未结合的蛋白质对缀合至关重要。

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