首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >The effect of anti-TGF-β_2 antibody functionalized intraocular lens on lens epithelial cell migration and epithelial-mesenchymal transition
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The effect of anti-TGF-β_2 antibody functionalized intraocular lens on lens epithelial cell migration and epithelial-mesenchymal transition

机译:抗TGF-β_2抗体功能化的人工晶状体对晶状体上皮细胞迁移和上皮-间质转化的影响

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Migration and epithelial-mesenchymal transition (EMT) of lens epithelial cells (LECs) are main causes of central posterior capsule opacification after cataract extraction combined with intraocular lens (IOL) implantation. In this study, commercially available hydrophobic acrylic IOLs were first pretreated with atmospheric pressure glow discharge plasma to produce plenty of negatively charged chemical groups onto IOL surface, then polyethylenimine was deposited onto IOL surfaces as a precursor monolayer, and then anti-TGF-β_2 (anti-T) antibody and poly-L-lysine were sequentially deposited onto IOL surface for four cycles followed by another upmost monolayer of anti-T antibody via layer-by- layer self-assembly technique. After the fabrication of anti-T antibody multilayers on IOL surface, the surface characteristics of the anti-T antibody functionalized IOL, as well as its effect on LECs adhesion, proliferation, migration and EMT were then tested in this study. Our results revealed that anti-T antibody multilayers could be successfully immobilized onto IOL surfaces by plasma pretreatment and layer-by-layer self-assembly technique, and could keep stable for at least 3 months on IOL surface. The anti-T antibody immobilized in the multilayers on IOL surfaces showed good immunological activity by its specific antigen-antibody interaction with exogenous TGF-β_2. Anti-T antibody functionalized IOL surface was as smooth and flat as the untreated IOL surface. No difference in optical or physical properties was found between the anti-T antibody functionalized IOLs and the untreated IOLs. Compared with the untreated IOLs, the anti-T antibody functionalized IOL greatly inhibited LECs from migration and EMT, yet showed only transient inhibition to LECs adhesion and no inhibition to LECs proliferation. With these data, we demonstrate a simple, inexpensive, and feasible method to fabricate surface functionalized IOL for in situ capture and neutralization of TGF-P2 in the capsular bag, which might be a possible solution to preventing posterior capsule opacification after cataract surgery.
机译:晶状体上皮细胞(LECs)的迁移和上皮-间充质转变(EMT)是白内障摘除联合人工晶状体(IOL)植入后中央后囊混浊的主要原因。在这项研究中,首先使用大气压辉光放电等离子体对可商购的疏水丙烯酸IOL进行预处理,以在IOL表面上产生大量带负电荷的化学基团,然后将聚乙烯亚胺作为前体单层沉积到IOL表面上,然后再使用抗TGF-β_2(将抗T)抗体和聚L-赖氨酸依次沉积在IOL表面上四个周期,然后通过逐层自组装技术将另一层最上层的抗T抗体。在IOL表面上制备抗T抗体多层后,然后在此研究中测试了抗T抗体功能化IOL的表面特性,以及其对LEC粘附,增殖,迁移和EMT的影响。我们的结果表明,抗T抗体多层膜可以通过等离子体预处理和逐层自组装技术成功地固定在IOL表面上,并且可以在IOL表面上保持至少3个月的稳定性。固定在IOL表面多层膜上的抗T抗体通过与外源TGF-β_2的特异性抗原抗体相互作用,表现出良好的免疫活性。抗T抗体功能化的IOL表面与未处理的IOL表面一样光滑。在抗T抗体功能化的IOL和未处理的IOL之间没有发现光学或物理性质的差异。与未处理的IOL相比,抗T抗体功能化的IOL极大地抑制了LEC的迁移和EMT,但仅表现出对LEC粘附的短暂抑制,而没有抑制LEC增殖。利用这些数据,我们证明了一种简单,廉价且可行的方法来制造表面功能化的IOL,用于原位捕获和中和囊袋中的TGF-P2,这可能是预防白内障手术后后囊混浊的可能解决方案。

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