Legeais J M, Drubaix I, Briat B, Renard G, Pouliquen Y
Service d'Ophtalmologie, Hôtel-Dieu de Paris.
J Fr Ophtalmol. 1997;20(1):42-8.
Our goal was to evaluate a second generation biointegrable keratoprosthetic device (BioKpro II).
The device consists of a porous transparent PTFE (12 mm diameter) and a soft copolymer structure for the optical system (7 mm diameter). Intraocular pression was evaluated with a Goldmann tonometer on an artificial chamber. A lamellar dissection was carried out 3 mm radially for 360 degrees creating a pocket to accommodate the skirt. The soft optic (42.5 D; 500 microns thick) was positioned through a hole (6 mm in diameter) trephined in the central cornea. A 360 degrees peritomy was performed and conjunctiva was placed in front of the prosthesis, sutured and was opened 15 days post implantation. 14 rabbits were implanted and were allowed to heal for three months.
We are able to measure the intraocular pressure by Goldmann tonometer on an artificial chamber. We did not observed epithelialisation on the hydrophilic optical surface (14/14). Aseptic necrosis in direct contact between cornea and the soft optical system was observed when conjunctiva was not effective (4/14). As observed with the first generation devices, conjunctiva or buccal mucosa is needed to avoid local necrosis. In other cases no adverse reactions were observed after implantation.
The geometry and biomechanical properties of the BioKpro II is closed to that of the human cornea. The junction between the optical and the flange was bound by polymeric interpenetration and prosthesis dislocation was not seen under pressure over 1000 mmHg.
Second generation biointegrable keratoprostheses (BioKpro II) can be implanted successfully. Further tests will determine if surface modifications designed to promote epithelial cell attachment on the optical system could prevent ulceration at the junction between the fluorocarbon and the core.
我们的目标是评估第二代生物可整合人工角膜装置(BioKpro II)。
该装置由一个多孔透明聚四氟乙烯(直径12毫米)和一个用于光学系统的软质共聚物结构(直径7毫米)组成。在人工房上用Goldmann眼压计评估眼压。进行360度径向3毫米的板层剥离,形成一个口袋以容纳裙边。通过在中央角膜上钻的一个直径6毫米的孔将软性光学部件(42.5 D;500微米厚)放置进去。进行360度的结膜环切术,将结膜置于假体前方,缝合,并在植入后15天打开。14只兔子接受了植入,并使其愈合三个月。
我们能够在人工房上用Goldmann眼压计测量眼压。我们未观察到亲水性光学表面出现上皮化(14/14)。当结膜无效时,观察到角膜与软性光学系统直接接触处出现无菌性坏死(4/14)。如第一代装置所观察到的,需要结膜或颊黏膜来避免局部坏死。在其他情况下,植入后未观察到不良反应。
BioKpro II的几何形状和生物力学特性与人类角膜相近。光学部件和法兰之间的连接处通过聚合物互穿结合,在超过1000 mmHg的压力下未观察到假体脱位。
第二代生物可整合人工角膜(BioKpro II)能够成功植入。进一步的测试将确定旨在促进上皮细胞附着在光学系统上的表面改性是否可以防止氟碳化合物与核心之间连接处的溃疡形成。