Construction of a complete rabbit cornea substitute using a fibrin-agarose scaffold

被引:195
作者
Alaminos, Miguel
Del Carmen Sanchez-Quevdo, Maria
Munoz-Avila, Jose Ignacio
Serrano, Daniel
Medialdea, Santiago
Carreras, Ignacio
Campos, Antonio
机构
[1] Univ Granada, Dept Histol, E-18012 Granada, Spain
[2] Univ Granada, Dept Surg, E-18012 Granada, Spain
[3] Fdn Hosp Clin, Granada, Spain
[4] Univ Hosp San Cecilio, Div Ophthalmol, Granada, Spain
[5] Univ Hosp Virgen Nieves, Div Ophthalmol, Granada, Spain
关键词
D O I
10.1167/iovs.05-1647
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
PURPOSE. To construct a full-thickness biological substitute of the rabbit cornea by tissue engineering. METHODS. Ten rabbit corneas were surgically excised, and the three main cell types of the cornea (epithelial, stromal, and endothelial cells) were cultured. Genetic profiling of the cultured cells was performed by RT-PCR for the genes COL8 and KRT12. To develop an organotypic rabbit cornea equivalent, we used a sequential culture technique on porous culture inserts. First, endothelial cells were seeded on the base of the inserts. Then, a stroma substitute made of cultured keratocytes entrapped in a gel of human fibrin and 0.1% agarose was developed. Finally, cultured corneal epithelial cells were grown on the surface of the scaffold. Stratification of the epithelial cell layer was promoted by using an air-liquid culture technique. Corneal substitutes were analyzed by light and electron microscopy. RESULTS. All three types of corneal cells were efficiently cultured in the laboratory, expanded, and used to construct a full-thickness cornea substitute. Gene expression analyses confirmed that cultured endothelial cells expressed the COL8 gene, whereas epithelial cells expressed KRT12. Microscopic evaluation of the cornea substitutes demonstrated that epithelial cells tended to form a normal stratified layer and that stromal keratocytes proliferated rapidly in the stromal substitute. The endothelial monolayer exhibited a pattern similar to a normal corneal endothelium. CONCLUSIONS. These findings suggest that development of a full-thickness rabbit cornea model is possible in the laboratory and may open new avenues for research.
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页码:3311 / 3317
页数:7
相关论文
共 51 条
  • [1] Tissue engineering of artificial organs
    Atala, A
    [J]. JOURNAL OF ENDOUROLOGY, 2000, 14 (01) : 49 - 57
  • [2] Comparison of scaffolds and culture conditions for tissue engineering of the knee meniscus
    Aufderheide, AC
    Athanasiou, KA
    [J]. TISSUE ENGINEERING, 2005, 11 (7-8): : 1095 - 1104
  • [3] Missense mutations in COL8A2, the gene encoding the α2 chain of type VIII collagen, cause two forms of corneal endothelial dystrophy
    Biswas, S
    Munier, FL
    Yardley, J
    Hart-Holden, N
    Perveen, R
    Cousin, P
    Sutphin, JE
    Noble, B
    Batterbury, M
    Kielty, C
    Hackett, A
    Bonshek, R
    Ridgway, A
    McLeod, D
    Sheffield, VC
    Stone, EM
    Schorderet, DF
    Black, GCM
    [J]. HUMAN MOLECULAR GENETICS, 2001, 10 (21) : 2415 - 2423
  • [4] BLECKMANN H, 2005, GRAEFES ARCH CLIN EX, V17, P1
  • [5] Mechanical and cellular changes during compaction of a collagen-sponge-based corneal stromal equivalent
    Borene, ML
    Barocas, VH
    Hubel, A
    [J]. ANNALS OF BIOMEDICAL ENGINEERING, 2004, 32 (02) : 274 - 283
  • [6] NEW COLLAGENS, NEW CONCEPTS
    BURGESON, RE
    [J]. ANNUAL REVIEW OF CELL BIOLOGY, 1988, 4 : 551 - 577
  • [7] Air-interface condition promotes the formation of tight corneal epithelial cell layers for drug transport studies
    Chang, JE
    Basu, SK
    Lee, VHL
    [J]. PHARMACEUTICAL RESEARCH, 2000, 17 (06) : 670 - 676
  • [8] Chen CC, 2002, INVEST OPHTH VIS SCI, V43, P2593
  • [9] Study on biocompatibility of complexes of collagen-chitosan-sodium hyaluronate and cornea
    Chen, JS
    Li, QH
    Xu, JT
    Huang, YX
    Ding, Y
    Deng, HW
    Zhao, SB
    Chen, R
    [J]. ARTIFICIAL ORGANS, 2005, 29 (02) : 104 - 113
  • [10] Daniels JT, 2000, INVEST OPHTH VIS SCI, V41, P3754