Sterilized, freeze-dried amniotic membrane : a useful substrate for ocular surface reconstruction.

Nakamura, Takahiro and Yoshitani, Makoto and Rigby, Helen and Fullwood, Nigel J. and Ito, Wakana and Inatomi, Tsutomu and Sotozono, Chie and Nakamura, Tatsuo and Shimizu, Yasuhiko and Kinoshita, Shigeru (2004) Sterilized, freeze-dried amniotic membrane : a useful substrate for ocular surface reconstruction. Investigative Ophthalmology and Visual Science, 45 (1). pp. 93-99. ISSN 1552-5783

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Abstract

PURPOSE. To examine the feasibility of using sterilized, freeze-dried amniotic membrane (FD-AM) as a substrate for cultivating autologous corneal epithelial cells for ocular surface reconstruction. METHODS. Human AM deprived of amniotic epithelial cells by incubation with EDTA was freeze dried, vacuum packed, and sterilized with -irradiation. The resultant FD-AM was characterized for its physical, biological, and morphologic properties by stretch stress tests, immunohistochemistry, electron microscopy, and cell culture. In addition, 3 weeks after an ocular surface injury, the conjunctivalized corneal surfaces of eyes in eight rabbits were surgically reconstructed by transplantation of autologous cultivated corneal epithelial cells on FD-AM. RESULTS. A stretch stress test revealed no significant differences between sterilized FD-AM and cryopreserved AM. Immunohistochemistry for several extracellular matrix molecules and electron microscopic analysis of FD-AM revealed that the process of drying and irradiation did not affect its biological and morphologic properties. The corneal epithelial cells cultivated on FD-AM had four to five stratified, well-differentiated cell layers. Corneas that were grafted with the cultivated corneal epithelial cells on FD-AM were clear and were all epithelialized at 10 days after surgery. CONCLUSIONS. The sterilized, freeze-dried AM retained most of the physical, biological, and morphologic characteristics of cryopreserved AM; consequently, it is a useful biomaterial for ocular surface reconstruction.

Item Type:
Journal Article
Journal or Publication Title:
Investigative Ophthalmology and Visual Science
Uncontrolled Keywords:
/dk/atira/pure/researchoutput/libraryofcongress/qh301
Subjects:
?? OPHTHALMOLOGYSENSORY SYSTEMSCELLULAR AND MOLECULAR NEUROSCIENCEQH301 BIOLOGY ??
ID Code:
9080
Deposited By:
Deposited On:
23 May 2008 12:53
Refereed?:
Yes
Published?:
Published
Last Modified:
20 Sep 2023 00:10