Stem Cells Translational Medicine 2015-01-01

Ocular surface reconstruction with a tissue-engineered nasal mucosal epithelial cell sheet for the treatment of severe ocular surface diseases.

Masakazu Kobayashi, Takahiro Nakamura, Makoto Yasuda, Yuiko Hata, Shoki Okura, Miyu Iwamoto, Maho Nagata, Nigel J Fullwood, Noriko Koizumi, Yasuo Hisa, Shigeru Kinoshita

文献索引:Stem Cells Transl. Med. 4(1) , 99-109, (2014)

全文:HTML全文

摘要

Severe ocular surface diseases (OSDs) with severe dry eye can be devastating and are currently some of the most challenging eye disorders to treat. To investigate the feasibility of using an autologous tissue-engineered cultivated nasal mucosal epithelial cell sheet (CNMES) for ocular surface reconstruction, we developed a novel technique for the culture of nasal mucosal epithelial cells expanded ex vivo from biopsy-derived human nasal mucosal tissues. After the protocol, the CNMESs had 4-5 layers of stratified, well-differentiated cells, and we successfully generated cultured epithelial sheets, including numerous goblet cells. Immunohistochemistry confirmed the presence of keratins 3, 4, and 13; mucins 1, 16, and 5AC; cell junction and basement membrane assembly proteins; and stem/progenitor cell marker p75 in the CNMESs. We then transplanted the CNMESs onto the ocular surfaces of rabbits and confirmed the survival of this tissue, including the goblet cells, up to 2 weeks. The present report describes an attempt to overcome the problems of treating severe OSDs with the most severe dry eye by treating them using tissue-engineered CNMESs to supply functional goblet cells and to stabilize and reconstruct the ocular surface. The present study is a first step toward assessing the use of tissue-engineered goblet-cell transplantation of nonocular surface origin for ocular surface reconstruction. ©AlphaMed Press.


相关化合物

  • 甘油
  • 硫酸
  • 2,2-双-(4-甘胺氧苯...
  • 氢化可的松
  • 乙二胺四乙酸
  • 碘化丙啶
  • 4-(4-甲基哌嗪-1-基...

相关文献:

Salicylic acid signaling controls the maturation and localization of the arabidopsis defense protein ACCELERATED CELL DEATH6.

2014-08-01

[Mol. Plant 7(8) , 1365-83, (2014)]

Transcriptional regulation of Munc13-4 expression in cytotoxic lymphocytes is disrupted by an intronic mutation associated with a primary immunodeficiency.

2014-06-02

[J. Exp. Med. 211(6) , 1079-91, (2014)]

Irisin stimulates muscle growth-related genes and regulates adipocyte differentiation and metabolism in humans.

2012-07-01

[Int. J. Obes. 38(12) , 1538-44, (2014)]

Epigenetic reprogramming of the type III interferon response potentiates antiviral activity and suppresses tumor growth.

2014-01-01

[PLoS Biol. 12(1) , e1001758, (2014)]

Mechanism of human PTEN localization revealed by heterologous expression in Dictyostelium.

2014-12-11

[Oncogene 33(50) , 5688-96, (2014)]

更多文献...