• Title/Summary/Keyword: Lyophilized amniotic membrane

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A Comparison of Lyophilized Amniotic Membrane with Cryopreserved Amniotic Membrane for the Reconstruction of Rabbit Corneal Epithelium

  • Ahn Jae-Il;Jang In-Keun;Lee Doo-Hoon;Seo Young-Kwon;Yoon Hee-Hoon;Shin Youn-Ho;Kim Jae-Chan;Song Kye-Yong;Lee Hee-Gu;Yang Eun-Kyung;Kim Ki-Ho;Park Jung-Keung
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.10 no.3
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    • pp.262-269
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    • 2005
  • Many researchers have employed cryopreserved amniotic membrane (CAM) in the treatment of a severely damaged cornea, using corneal epithelial cells cultured on an amniotic membrane (AM). In this study, two Teflon rings were made for culturing the cells on the LAM and CAM, and were then used to support the AM, which is referred to in this paper as an Ahn's AM supporter. The primary corneal epithelial cells were obtained from the limbus, using an ex-plantation method. The corneal epithelium could be reconstructed by culturing the third­passage corneal epithelial cells on the AM. A lyophilized amniotic membrane (LAM) has a higher rate of graft take, a longer shelf life, is easier to store, and safer, due to gamma irradiation, than a (AM. The corneal epithelium reconstructed on the LAM and (AM, supported by the two­Teflon rings, was similar to normal corneal epithelium. However, the advantages of the LAM over that of the (AM make the former more useful. The reconstruction model of the corneal epithelium, using AM, is considered as a good in vitro model for transplantation of cornel epithelium into patients with a severely damaged cornea.

Reconstruction of Rabbit Corneal Epithelium using Lyophilized Amniotic Membrane and Dynamic Culture Method (동결건조 양막과 동적배양법을 이용한 토끼 각막 상피층의 재구성)

  • Ahn, Jae-Il;Jang, In-Keun;Shin, Youn-Ho;Seo, Young-Kwon;Yoon, Hee-Hun;Yoon, Mun-Young;Kim, Jae-Chang;Song, Kye-Yong;Lee, Hee-Gu;Yang, Eun-Kyung;Kim, Ki-Ho;Park, Jung-Keug
    • KSBB Journal
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    • v.20 no.4
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    • pp.305-310
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    • 2005
  • Reconstruction of rabbit corneal epithelium was performed through dynamic culture method using self-manufactured amniotic membrane supporter and lyophilized amniotic membrane. Rabbit corneal epithelial cells were cultured and cryopreserved after isolation from limbus, and the cells could be proliferated by passage number 10. The basal layer was well formed, and the epithelium layer was constructed tightly by the increase of cell proliferation and differentiation by dynamic culture method than static culture. Thus, the reconstruction of the corneal epithelium using lyophilized amniotic membrane is considered to be a good in vitro model for transplantation of corneal epithelium to patients with a severely damaged cornea.

Evaluation of Osteoinduction Efficacy of Human Amniotic Membrane (인체 양막의 골형성유도능 평가)

  • Han, Jung-Wook;Seo, Young-Kwon;Park, Jung-Keug;Song, Kye-Yong
    • KSBB Journal
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    • v.23 no.4
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    • pp.291-296
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    • 2008
  • Amniotic membrane (AM) has been used in various medical application such as biomaterials and it has a biocompatibility and wound healing effects. In this studies, we made AM sponge that was homogenized with AM and then lyophilized. And osteoinduction efficacy of AM sponge was evaluated with collagen sponge by mesenchymal stem cell culture and implantation in nude mouse. As a result of this study, adhesion and proliferation of MSC cells on AM sponge and collagen sponge were not different, but AM sponge was more superior to collagen sponge for induction of collagen secretion and calcium adhesion in matrix in vivo. Besides, AM sponges were more positive stained than collagen sponge about osteocalcin and osteonectin. As a results of this study, there is possibility of doing that AM could increase osteoinduction.

Process Development of a Virally-Safe Acellular Bovine Amniotic Membrane for Biological Dressing (바이러스 안전성이 보증된 무세포 소 양막 생물창상피복재 제조 공정 개발)

  • Bae, Jung-Eun;Kim, Chang-Kyong;Kim, Sung-Po;Yang, Eun-Kyung;Kim, In-Seop
    • Microbiology and Biotechnology Letters
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    • v.38 no.4
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    • pp.420-427
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    • 2010
  • A process for manufacturing virally-safe bovine amniotic membrane(BAM) has been developed for biological dressing. BAM was harvested from a healthy bovine placenta, and then the epithelium was removed. The remaining stromal layer was consecutively disinfected with 70% ethanol and 0.05% sodium hypochlorite. The stromal layer was incubated in a decellularization solution containing 0.25%(w/v) trypsin to remove the cellular components. The resulting acelluar BAM was lyophilized to preserve its biochemical and structural integrity. The BAM was packed and exposed to 25 kGy of gamma irradiation for sterilization purpose. Histological, electron microscopical, and biochemical observations showed that the acellualr BAM had intact structural integrity of three dimensional collagen fibers and contained several growth factors, accelerating wound healing, such as EGF (Epidermal growth factor), KGF (Keratinocyte growth factor), and FGF (Fibroblast growth factor). Bovine herpes virus (BHV), bovine viral diarrhoea virus (BVDV), bovine parainfluenza virus type 3 (BPIV-3), and bovine parvovirus (BPV) were chosen as the biological indicators for validation of viral safety of the acellular BAM. Samples from relevant stages of the production process were spiked with each virus and subjected to viral inactivation processes. Viruses were recovered from the samples and then titrated immediately. All the viruses tested were completely inactivated to undetectable levels within 1 h of 70% ethanol treatment. Enveloped viruses such as BHV, BVDV, and BPIV-3 were more effectively inactivated than BPV by 0.05% sodium hypochlorite treatment. BHV, BVDV, and BPIV-3 were completely inactivated to undetectable levels by 25 kGy of gamma irradiation. Also BPV was effectively inactivated by 25 kGy of gamma irradiation. The cumulative log reduction factors of BHV, BVDV, BPIV-3, and BPV were ${\geq}$13.30, ${\geq}$14.32, ${\geq}$15.22, and ${\geq}$7.57, respectively. These results indicate that the production process for acelluar BAM has a sufficient virus-reducing capacity to achieve a high margin of the virus safety.