• 제목/요약/키워드: regeneration cellulose

검색결과 24건 처리시간 0.01초

멍게와 미더덕 피부의 천연 셀룰로오스 각질을 이용한 골재생 효능을 가진 생활성막의 개발 - 예비 연구 (DEVELOPMENT OF A BIOACTIVE CELLULOSE MEMBRANE FROM SEA SQUIRT SKIN FOR BONE REGENERATION - A PRELIMINARY RESEARCH)

  • 김성민;이종호;조정애;이승철;이석근
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제31권5호
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    • pp.440-453
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    • 2005
  • Objectives : To develop a bioactive membrane for guided bone regeneration (GBR), the biocompatibility and bone regenerating capacity of the cellulose membrane obtained from the Ascidians squirt skin were evaluated. Materials and methods : After processing the pure cellulose membrane from the squirt skin, the morphological study, amino acid analysis and the immunoreactivity of the cellulose membrane were tested. Total eighteen male Spraque-Dawley rats (12 weeks, weighing 250 to 300g) were divided into two control (n=8) and another two experimental groups (n=10). In the first experimental group (n=5), the cellulose membrane was applicated to the 8.0 mm sized calvarial bone defect and the same sized defect was left without cellulose membrane in the first control group (n=4). In the another experimental group (n=5), the cellulose membrane was applicated to the same sized calvarial bone defect after femoral bone graft and the same sized defect with bone graft was left without cellulose membrane in the another control group (n=4). Each group was sacrificed after 6 weeks, the histological study with H&E and Masson trichrome stain was done, and immunohistochemical stainings of angiogenin and VEGF were also carried out. Results : The squirt skin cellulose showed the bio-inductive effect on the bone and mesenchymal tissues in the periosteum of rat calvarial bone. This phenomenon was found only in the inner surface of the cellulose membrane after 6 weeks contrast to the outer surface. Bone defect covered with the bioactive cellulose membrane showed significantly greater bone formation compared with control groups. Mesenchymal cells beneath the inner surface of the bioactive cellulose membrane were positive to the angiogenin and VEGF antibodies. Conclusion : We suppose that there still remains extremely little amount of peptide fragment derived from the basement membrane matrix proteins of squirt skin, which is a kind of anchoring protein composed of glycocalyx. This composition could prevent the adverse immunological hypersensitivity and also induce bioactive properties of cellulose membrane. These properties induced the effective angiogenesis with rapid osteogenesis beneath the inner surface of cellulose membrane, and so the possibilities of clinical application in dental field as a GBR material will be able to be suggested.

Chitosan과 chitosan-cellulose를 이용한 차폐막의 골조직 재생유도능력에 관한 연구 (Guided bone regenerative effect of chitosan and chitosan-cellulose membranes)

  • 계승범;손성희;최상묵
    • Journal of Periodontal and Implant Science
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    • 제28권4호
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    • pp.611-632
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    • 1998
  • Chitosan has been known as a wound healing agent. The purpose of this study was to evaluate the biocompatibility and guided bone regenerative effect of chitosan and chitosan-cellulose membranes. The effects of chitosan and chitosan-cellulose membranes on the growth and survival of human periodontal ligament cells were examined by rapid colorimetric MTT(tetrazolium) assay, and the tissue response and resorption pattern were observed by implanting the membranes into the subcutaneous tissue of the back of rats for 6 weeks. To evaluate the guided bone regenerative potential of membranes, the amount of newly formed bone in the rat calvarial defects(8mm in diameter) was measured by histomorphometry and radiomorphometry 1,2 and 4 weeks after implantation of membranes. Chitosan and chitosan-cellulose membranes showed no adverse effect on the growth and survival of human periodontal ligament cells. When membranes were subcutaneously implanted, inflammatory reaction was observed at 1 week and which gradually subsided 2weeks after implantation. Membranes remained intact throughout the experimental period of 6 weeks. Radiomorphometric analysis of the craniotomy sites revealed that chitosan and chitosan-cellulose membrane implanted sites showed increased radiopacity over control. Statistically significant differences with control were found in chitosan-cellulose membrane implanted group at 2 and 4 weeks, and chitosan membrane implanted group at 4 weeks(P<0.05). Histomorphometric data indicated a pattern of osseous healing similar to radiomorphometric analysis. There was a statistically significant difference between control and chitosan-cellulose membrane implanted group at 4 weeks(P<0.05). These results implicate that chitosan and chitosan-cellulose membrane might be useful for guided bone regeneration.

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비관형 천연 셀룰로오스막 도관을 이용한 말초신경 재생에 대한 실험적 연구 (EXPERIMENTAL STUDY OF PERIPHERAL NERVE REGENERATION BY USING NON-TUBULAR NATURAL CELLULOSE MEMBRANE NERVE CONDUIT)

  • 김성민;이종호;이석근
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제32권4호
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    • pp.295-307
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    • 2006
  • Styela clava, called non-native tunicate or sea squirt, is habitat which include bays and harbors in Korea and several sites in the sea faced world. We fabricate cellulose membrane nerve conduit (CMNC) from this native sea squirt skin, and evaluate the capacity of promoting peripheral nerve regeneration in the rat sciatic nerve defect model. After processing the pure cellulose membrane from the sea squirt skin as we already published before, CMNC was designed as a non-tubular sheet with 14 mm length and 4 mm width. Total eleven male Spraque-Dawley rats (12 weeks, weighing 250 to 300g) were divided into sham group (n=2), silicone tube grafted control group (n=3) and experimental group (n=6). Each CMNC grafted nerve was evaluated after 4, 8 and 12 weeks in the experimental group, and after 12 weeks, sciatic function was evaluated with sciatic function index (SFI) and gait analysis, and histomorphology of nerve conduit and the innervated tissues of sciatic nerve were all examined using image analyzer and electromicroscopic methods in the all groups. The regenerated axon and nerve sheath were found only in the inner surface of the CMNC after 4 weeks and became more thicker after 8 and 12 weeks. In the TEM study, CMNC grafted group showed more abundant organized myelinated nerve fibers with thickened extracellular matrix than silicone conduit grafted group after 12 weeks. The sciatic function index (SFI) and ankle stance angle (ASA) in the functional evaluation were $-47.2{\pm}3.9$, $35.5^{\circ}{\pm}4.9^{\circ}$ in CMNC grafted group (n=2) and $-80.4{\pm}7.4$, $29.2^{\circ}{\pm}5.3^{\circ}$ in silicone conduit grafted group (n=3), respectively. And the myelinated axon was 41.59% in CMNC group and 9.51% in silicone conduit group to the sham group. The development of a bioactive CMNC to replace autogenous nerve grafts offers a potential and available approach to improved peripheral nerve regeneration. As we already published before, small peptide fragment derived from the basement membrane matrix proteins of squirt skin, which is a kind of anchoring protein composed of glycocalyx, induced the effective axonal regeneration with rapid growth of Schwann cells beneath the inner surface of CMNC. So the possibilities of clinical application as a peripheral nerve regeneration will be able to be suggested.

The effect of bacterial cellulose membrane compared with collagen membrane on guided bone regeneration

  • Lee, So-Hyoun;Lim, Youn-Mook;Jeong, Sung In;An, Sung-Jun;Kang, Seong-Soo;Jeong, Chang-Mo;Huh, Jung-Bo
    • The Journal of Advanced Prosthodontics
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    • 제7권6호
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    • pp.484-495
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    • 2015
  • PURPOSE. This study was to evaluate the effects of bacterial cellulose (BC) membranes as a barrier membrane on guided bone regeneration (GBR) in comparison with those of the resorbable collagen membranes. MATERIALS AND METHODS. BC membranes were fabricated using biomimetic technology. Surface properties were analyzed, Mechanical properties were measured, in vitro cell proliferation test were performed with NIH3T3 cells and in vivo study were performed with rat calvarial defect and histomorphometric analysis was done. The Mann-Whitney U test and the Wilcoxon signed rank test was used (${\alpha}<.05$). RESULTS. BC membrane showed significantly higher mechanical properties such as wet tensile strength than collagen membrane and represented a three-dimensional multilayered structure cross-linked by nano-fibers with 60 % porosity. In vitro study, cell adhesion and proliferation were observed on BC membrane. However, morphology of the cells was found to be less differentiated, and the cell proliferation rate was lower than those of the cells on collagen membrane. In vivo study, the grafted BC membrane did not induce inflammatory response, and maintained adequate space for bone regeneration. An amount of new bone formation in defect region loaded with BC membrane was significantly similar to that of collagen membrane application. CONCLUSION. BC membrane has potential to be used as a barrier membrane, and efficacy of the membrane on GBR is comparable to that of collagen membrane.

Cellulomonas속 원형질체 재생과 종간 융합조건 (Protoplast Regeneration and Interspecific Fusion of the Genus Cellulomonas)

  • 배무;조보연
    • 한국미생물·생명공학회지
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    • 제16권4호
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    • pp.303-309
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    • 1988
  • Cellulose를 이용할 수 있는 Cellulomonas속 균주의 종간 세포의 융합방법을 확립하기 위해 원형질체 재생 및 융합조건에 대해 검토하였다. Cellulomonas속 균주의 원형질체는 osmotic stabilizer를 포함하는 재생배지에서 유동성 한천배지로 중층하여 재생시켰고 재생 확인은 주사전자현미경으로 하였다. 원형질체 융합은 항생물질 내성과 영양요구성 돌연변이주의 유전자 표지에 확인하였다. Lysozyme을 처리하여 형성된 C. flavigena 원형 질체의 세포벽 재생은 osmotic stabilizer로 0.4M sorbitol을 포함하는 재생배지에서 약 15% 수준이었으며 여기에 Polyvinyl Pyrrolidone(PVP) 3% 첨가로 재생율을 약 3배정도 증가시킬 수 있었다. Cellulomonas속 균주의 변이주간의 원형질체 융합은 융합유도제로 PEG 6000을 취하여 최적농도 40% (w/v), 치적 처리시간 15분, Ca농도 25mM에서 약 2.0$\times$$10^{-4}$ - 4.0$\times$$10^{-4}$의 융합빈도를 얻을 수 있었다.

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인삼 캘러스 원형질체의 세포분열과 세포벽 재생에 미치는 Dimethylsulfoxide의 효과 (Effects of Dimethylsulfoxide on the Cell Wall Regeneration and Cell Division of Protoplasts Isolated from Panax ginseng Callus)

  • 이석찬;이규배;박종범
    • 식물조직배양학회지
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    • 제27권6호
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    • pp.429-434
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    • 2000
  • 인삼 (Panax ginseng C. A. Meyer) 캘러스 조직으로부터 분리한 원형질체를 DMSO가 O%에서 8%까지 여러 가지 농도로 첨가된 원형질체 배양배지 (1 mg/L 2,4-D, 4 mg/L NAA, 1 mg/L BAP, 0.4 M mannitol 및 0.8% agar가 첨가된 MS배지)에서 배양하였다. DMSO가 첨가되지 않은 배지에서 배양된 원형질체의 세포벽 재생률은 약 62%이고 세포분열빈도는 약 7%이었다. 반면에, 1% DMSO가 첨가된 배지에서 배양된 원형질체의 세포벽 재생률과 세포분열빈도는 각각 약 83%와 약 27%로 높게 나타났다. 그러나 배양된 원형질체의 세포활성은 배지에 첨가된 DMSO의 유무나 농도와는 관계없이 모든 배지에서 83∼88%로 차이를 보이지 않았다. 1% DMSO가 첨가된 배지에서 3일 동안 배양된 원형질체를 투과전자현미경으로 관찰하면 원형질막 근처에 평행으로 배열하고 있는 미소관들이 관찰되었다. 또한 원형질막 표면에는 세포벽 성분인 cellulose fibril들이 연결되어 다발을 형성하고 있는 것이 주사전자현미경으로 관찰되었다. DMSO가 첨가되지 않은 배지에서 배양된 원형질체에서는 이러한 전자현미경적 구조들이 관찰되지 않았다. 원형질체 배양배지에 첨가된 DMSO는 미소관편제센타 (MTOC)의 형성에 의하여 세포벽 재생과 세포분열을 유도하는 것으로 생각된다.

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알칼리 용제를 이용하여 제조한 셀룰로오스 겔의 카드뮴 흡착특성 (Cadmium Adsorption Characteristic of Cellulose-gel Manufacture using Alkali Solvent)

  • 황교정;권구중;양지욱;황원중;황재현;김대영
    • 펄프종이기술
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    • 제47권6호
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    • pp.113-122
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    • 2015
  • This study was carried out to investigate the characterization of cadmium adsorption by cellulose hydrogel and aerogel. Hydrogel and aerogel were made from ashless pulp dissolved in alkali hydroxide-urea aqueous solution and manufactured in film and bead types. After regeneration of cellulose, hydrogel went through the process of substitution of organic solvent and freeze-dry in order to make aerogel. SEM was used to analyze the microstructure of hydrogel and aerogel. Experiment was conducted in various concentrations and pH conditions to find out the characteristic of cadmium adsorption. After that, EDS was used to identify existence and distribution of cadmium in hydrogel and aerogel. The result from comparisons of cadmium adsorption shows that bead type aerogel has the maximum cadmium adsorption and film type hydrogel has the minimum cadmium adsorption.

생체 생장에 관한 세포 생물학적 연구 - 당근 세포의D-glucose-6-phosphate cyclohydrolase 활성에 미치는 polyamine의 영향 - (Cell Biological Studies on Growth and Dovelopment - Effect of polyamines on D-glucose-6-phoshate cyclohydrolase antivity in carrot cells-)

  • 조영동
    • Journal of Plant Biology
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    • 제29권4호
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    • pp.263-284
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    • 1986
  • Effects of putrescine, spermidine and spermine on the activity of D-glucose-6-phosphate cyclohydrolase in the Daucus carota L. protoplast cultured for 4 days and effects of polyamines on the incorporation of D-[u-14C]-glucose treated to protoplasts in culture-medium were investigated. The activity of D-glucose-6-phosphate cyclohydrolase was increased by polyamines and among them spermine was the most effective. Polyamiens increased protein synthesis and this due to the increasing effect of the polyamines on the synthesis of glycoprotein which is one of cell wall components. The synthesis of cell polysaccharides, such sa pectic substances, hemicelluloses and cellulose was increased by polyamines, which stimulated synthesis of pectin substances, and hemicellulose more greatly than that of cellulose, and spermidine was the most effective. In the light of the above results it seems that the polyamines increase cell wall regeneration by the stimulation of enzyme activities which synthesize cell wall components.

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