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Comparison of eosin and fluorescein conjugates for the photoinitiation of cell-compatible polymer coatings

机译:曙红和荧光素结合物用于细胞相容性聚合物涂层光引发的比较

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摘要

Targeted photopolymerization is the basis for multiple diagnostic and cell encapsulation technologies. While eosin is used in conjunction with tertiary amines as a water-soluble photoinitiation system, eosin is not widely sold as a conjugate with antibodies and other targeting biomolecules. Here we evaluate the utility of fluorescein-labeled bioconjugates to photopolymerize targeted coatings on live cells. We show that although fluorescein conjugates absorb approximately 50% less light energy than eosin in matched photopolymerization experiments using a 530 nm LED lamp, appreciable polymer thicknesses can still be formed in cell compatible environments with fluorescein photosensitization. At low photoinitiator density, eosin allows more sensitive initiation of gelation. However at higher functionalization densities, the thickness of fluorescein polymer films begins to rival that of eosin. Commercial fluorescein-conjugated antibodies are also capable of generating conformal, protective coatings on mammalian cells with similar viability and encapsulation efficiency as eosin systems.
机译:靶向光聚合是多种诊断和细胞封装技术的基础。虽然曙红与叔胺结合用作水溶性光引发体系,但曙红并未作为与抗体和其他靶向生物分子的结合物广泛销售。在这里,我们评估了荧光素标记的生物共轭物在活细胞上光聚合目标涂层的效用。我们显示,尽管在使用530 nm LED灯进行的匹配光聚合实验中,荧光素共轭物比曙红吸收的光能少约50%,但是在荧光素光敏化的细胞兼容环境中,仍然可以形成可观的聚合物厚度。在低光引发剂密度下,曙红允许更敏感的胶凝引发。然而,在更高的官能化密度下,荧光素聚合物膜的厚度开始与曙红的厚度相抗衡。商业荧光素偶联抗体还能够在哺乳动物细胞上产生与曙红系统相似的生存力和封装效率的保形保护涂层。

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