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   <ref-type name="Journal Article">17</ref-type>
   <contributors>
    <authors>
     <author>Shi, Y.</author>
     <author>Bikkuzin, T.</author>
     <author>Song, Z.</author>
     <author>Jin, X.</author>
     <author>Jin, H.</author>
     <author>Li, X.</author>
     <author>Zhang, H.</author>
    </authors>
   </contributors>
   <titles>
    <title></title>
   </titles>
   <dates>
    <year>2017</year>
    <pub-dates>
     <date>2018-02-06</date>
    </pub-dates>
   </dates>
   <doi>10.1111/xen.12338</doi>
   <abstract>Corneal disease is the second most common blinding disease in the world. The shortage&#13;
of cornea donors has become the greatest challenge in curing corneal disease.&#13;
Decellularized porcine corneas have the potential to be clinically applied as a substitute&#13;
for human cornea in lamellar keratoplasty. Porcine corneas will help relieve the&#13;
cornea donor shortage. To comprehensively evaluate the characteristics of the grafts&#13;
and the effect of the decellularized porcine cornea on the host cornea after clinical&#13;
transplantation, we assessed the microstructure of the transplanted decellularized&#13;
porcine corneal tissues. Through the analysis of the microstructure of the tissues by&#13;
H&amp;E staining, TEM and immunofluorescence of anti-human vimentin, anti-pig&#13;
vimentin,IL-1, IL-2, IL-3, IL-6, IL-8, INF-γ, and TNF-α immunofluorescence staining, we&#13;
found that despite the slight rejection that occurred, the porcine cornea has good&#13;
biocompatibility and can provide a scaffold for cell growth. Genetic analysis using&#13;
Solexa sequencing of the samples showed that decellularized porcine corneas cannot&#13;
affect genes in patients’ corneas. Decellularized porcine corneas are effective biological&#13;
materials for use in corneal transplantation</abstract>
   <urls>
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     <url>https://repo.bashgmu.ru/publication/1001</url>
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    <pdf-urls>
     <url>https://repo.bashgmu.ru/files/1133</url>
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