4.7 Article

Hydrophobic modification of polymethyl methacrylate as intraocular lenses material to improve the cytocompatibility

期刊

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2014.05.056

关键词

Posterior capsule opacification; Poly (methyl methacrylate); Intraocular lenses; Polyhedral oligomeric silsesquioxane

资金

  1. National Natural Science Foundation of China [81271703, 51203120]
  2. Natural Science Foundation of Zhejiang Province [LQ12E03001]
  3. Medical & Health Technology Program of Zhejiang Province [2013KYA133, 2014KYA149]
  4. International Scientific and Technological Cooperation Projects [2012DFB30020]
  5. Specialized Research Fund for Science and Technology Major Projects of Higher Education of China [ZD2007006]

向作者/读者索取更多资源

The development of posterior capsule opacification (PCO) after intraocular lenses (IOL) implantation for dealing with cataract is mainly due to the severe loss of the human lens epithelial cells (HLECs) during surgery contact. A novel poly (hedral oligomeric silsesquioxane-co-methyl methacrylate) copolymer (allyl POSS-PMMA) was synthesized by free radical polymerization method to promote the adhesion of HLECs. FT-IR and H-1 NMR measurements indicated the existence of POSS cage in the product, which demonstrated the successful synthesis of allyl POSS-PMMA copolymer. Effect of allyl POSS in the hybrids on crystal structure, surface wettability and morphology, optical transmission, thermodynamic properties and cytocompatibility was investigated in detail. X-ray diffraction peaks at 20 similar to 11 degrees and 12 degrees indicated that POSS molecules had aggregated and crystallized. Thermogravimetric analysis-differential scanning calorimeter and optical transmission measurements confirmed that the allyl POSS-PMMA copolymer had high glass transition temperatures (more than 100 degrees C) and good transparency. The hydrophilicity and morphology of PMMA and copolymers surfaces were characterized by static water contact angle and atomic force microscopy. The results revealed that the surface of the allyl POSS-PMMA copolymer displayed higher hydrophobicity and higher roughness than that of pure PMMA. The surface biocompatibility was evaluated by morphology and activity measurement with HLECs in vitro. The results verified that the surface of allyl POSS-PMMA copolymer films had more HLECs adhesion and better spreading morphology than that of PMMA film. (C) 2014 Elsevier Inc. All rights reserved.

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