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Encapsulation of fluorescent molecules by functionalized polymeric nanocontainers: Investigation by confocal fluorescence Imaging and fluorescence correlation Spectroscopy

机译:通过功能化的聚合物纳米容器封装荧光分子:通过共聚焦荧光成像和荧光相关光谱研究

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Nanocontainers (NCs) were prepared from amphiphilic triblock copolymers, having an average molecular weight of around 8000 g/mol, by using previously published preparation methods consisting of dispersing the polymer in an aqueous buffer solution containing molecules for encapsulation. A small molecular weight fluorophore, sulforhodamine B, as well as the fluorescent protein avidin labeled with Alexa 488 were encapsulated, and the resulting nanocontainers were characterized using fluorescence correlation spectroscopy (FCS) and fluorescence cross-correlation spectroscopy (FCCS). Nanocontainer size determination by FCS is very robust and compares well with results obtained from photon correlation spectroscopy: the measured diameters of the polymeric nanocontainers vary between 140 and 172 nm. Encapsulation of fluorescent molecules was determined by evaluating the molecular brightness of nanocontainers with an encapsulated fluorescently labeled protein (avidin-Alexa 488). Results indicate that the number of encapsulated avidin-Alexa 488 molecules corresponds well with the initial concentration of the fluorescently labeled protein and the encapsulated volume. A nanocontainer binding assay was developed using biotinylated fluorescently labeled nanocontainers. Binding of biotinylated nanocontainers to fluorescently labeled streptavidin was followed by fluorescence cross-correlation spectroscopy. The intrinsic dissociation constant, K-d, of labeled streptavidin to the ligand-modified nanocontainers is 1.7 +/- 0.4 x 10(-8) M, and about 1921 +/- 357 molecules of labeled streptavidin are bound to each nanocontainer.
机译:通过使用先前公开的制备方法,由平均分子量为约8000 g / mol的两亲三嵌段共聚物制备纳米容器(NC),所述制备方法包括将聚合物分散在包含用于封装的分子的水性缓冲溶液中。封装了小分子荧光团,磺基若丹明B以及用Alexa 488标记的荧光蛋白亲和素,并使用荧光相关光谱(FCS)和荧光互相关光谱(FCCS)对所得的纳米容器进行了表征。通过FCS确定纳米容器的尺寸非常可靠,并且可以很好地与从光子相关光谱学获得的结果进行比较:聚合物纳米容器的测量直径在140至172 nm之间变化。荧光分子的封装是通过评估带有封装的荧光标记蛋白(avidin-Alexa 488)的纳米容器的分子亮度来确定的。结果表明,包封的抗生物素蛋白-Alexa 488分子的数量与荧光标记蛋白的初始浓度和包封的体积非常吻合。使用生物素化的荧光标记纳米容器开发了纳米容器结合测定法。生物素化的纳米容器与荧光标记的链霉亲和素的结合,然后进行荧光互相关光谱。标记的链霉亲和素与配体修饰的纳米容器的固有解离常数K-d为1.7 +/- 0.4 x 10(-8)M,大约1921 +/- 357个标记的链霉亲和素分子与每个纳米容器结合。

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