• 제목/요약/키워드: Tissue regeneration and healing

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성견 열개형 결손부에 DFDB이식과 Dura Mater막의 효과 (The Effects of DFDB combined with Dura mater on the Periodontal Wound Healing of Dehiscence Defects in Dogs)

  • 최성호;김일영;김영희;서종진;정현철;조규성;채중규
    • Journal of Periodontal and Implant Science
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    • 제28권2호
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    • pp.205-221
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    • 1998
  • The present study invetigates the effects of root planing only(control group), DFDBA alone(test group 1) and combined use of DFDB and Dura mater(test group 2) in dehiscence defects in dogs. The results of 8weeks post-surgery by histological comparison between the three groups are as follows. 1. The contol group showed minimum regeneration of new cementum and new bone with limited migration of epitheilal cells, and healed by connective tissue attachment. 2. The test group 1 showed minimum regeneration of new cementum and new bone with limited migration of epitheilal cells, and healed by connective tissue attachment. 3. The test group 2 showed significant amount of the new cementum and new bone. 4. Both control and test groups healed without any observable root resorption and ankylosis. The above the results suggest that the use of resorbable Dura mater only does not improve the regeneration of new bone and periodontal ligament due to difficulties of space making, but the combined use with DFDB may be more effective.

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수종의 재생 술식 시행이 매식체 근원심부의 골재생에 미치는 영향 (The Effects of various Regeneration techniques on Bone Regeneration around Dental Implant)

  • 이명자;임성빈;정진형;홍기석
    • Journal of Periodontal and Implant Science
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    • 제35권2호
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    • pp.383-399
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    • 2005
  • The successful implantation necessitate tissue regeneration m site of future implant placement, there being severe bone defect. Therapeutic approaches to tissue regeneration in the site have used bone grafts, root surface treatments, barrier membranes, and growth factors, the same way being applied to periodontal tissue regeneration. Great interest in periodontal tissue regeneration has lead to research in bone graft, guided-tissue regeneration, and the administration of growth factors as possible means of regenerating lost periodontal tissue. The blood component separated by centrifuging the blood is the platelet-rich plasma. There are growth factors, PDGF, $TGF{beta}1$, $TGF{beta}2$ and IGF in the platelet-rich plasma. The purpose of this study was to study the histopathological correlation between the use of platelet-rich plasma and the healing of bone defect around implant fixture site. Implant fixtures were inserted and graft materials were placed into the left femur of in the experimental group, while the control group received only implant fixtures. In the first experimental group, platelet-rich plasma and BBP xenograft were placed at the implant fixture site, and the second experimental group had platelet-rich plasma, BBP xenograft, and the e-PTFE membrane placed at the fixture site. The degree of bone regeneration adjacent to the implant fixture was observed and compared histopathologically at 2, 4, and 8 weeks after implant fixture insertion. The results of the experiment were as follows: 1. Bone remodeling in acid etched surface near the implant fixture of all experimental groups was found to be greater than new bone formation. 2. Bone remodeling in acid etched surface distant to the implant fixture of all experimental groups was decreased and new bone formation was not changed. 3. Significant new bone formation in machined surface near the implant fixture of bothl experimental groups was observed in 2 weeks. 4. New bone formation in machined surface distant to the implant fixture of both experimental groups was observed. Bone remodeling was significant in near the implant fixture and not in distant to the implant fixture. The results of the experiment suggested that the change of bone formation around implant. Remodeling in machined surface distant to the implant fixture of both experimental groups, and new bone formation and remodeling near the implant fixture were significant.

Studies on in vivo Wound Healing Activity of Cassia fistula Linn. Leaves (Leguminosae) in Rats

  • Bhakta, T.;Mukherjee, Pulok K.;Mukherjee, Kakali;Pal, M.;Saha, B.P.
    • Natural Product Sciences
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    • 제4권2호
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    • pp.84-87
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    • 1998
  • Cassia fistula commonly known as Sundali was selected to evaluate its wound healing potentials based on traditional use and literature references. Methanol extract of C. fistula leaves were examined for its wound healing property in the form of an ointment in two types of wound models in rats: i) Excision wound model and ii) Incision wound model. The ointment of the leaf extract of two different concentrations (5% and 10% w/w ointment of leaves extract in simple ointment base) responded significantly in both models of wounds tested. The results were also comparable to that of standard drug, nitrofurazone in terms of wound contraction ability, epithelisation period, tensile strength and regeneration of tissue at wound area.

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혈소판 농축 혈장이 치근이개부 병변에 미치는 효과 (The Effect of Platelet Rich Plasma Combined with Bovine Bone on the Treatment of Grade II Furcation Defects in Beagle Dogs)

  • 정민섭;임성빈;정진형
    • Journal of Periodontal and Implant Science
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    • 제30권4호
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    • pp.803-814
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    • 2000
  • Current acceptable methods of promoting periodontal regeneration are basis of removal of diseased soft tissue, root treatment, guided tissue regeneration, graft materials, biological mediators. Platelet Rich Plasma have been reported as a biological mediator which regulate activities of wound healing progress including cell proliferation, migration, and metabolism. The purpose of this study is to evaluate the possibility of using the Platelet Rich Plasma as a regeneration promoting agent for furcation involvement defect. Five adult beagle dogs were used in this experiment. With intrasulcular and crestal incision, mucoperiosteal flap was elevated. Following decortication with 1/2 high speed round bur, degree II furcation defect was made on mandibular third(P3), forth(P4) and fifth(P5) premolar. 2 month later experimental group were PRP plus bovine bone and bovine bone only. After 4, 8 weeks, the animals were sacrificed by perfusion technique. Tissue block was excised including the tooth and prepared for light microscope with Gomori's trichrome staining. At 4 weeks after surgery, there were rapid osteogenesis phenomenon on the defected area of the Platelet Rich Plasma plus bovine bone group and early trabeculation pattern was made with new osteoid tissue produced by activated osteoblast. Bone formation was almost completed to the fornix of furcation by 4 weeks after surgery. In conclusion, Platelet Rich Plasma can promote rapid osteogenesis during early stage of periodontal tissue regeneration.

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Periodontal regeneration with nano-hyroxyapatite-coated silk scaffolds in dogs

  • Yang, Cheryl;Lee, Jung-Seok;Jung, Ui-Won;Seo, Young-Kwon;Park, Jung-Keug;Choi, Seong-Ho
    • Journal of Periodontal and Implant Science
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    • 제43권6호
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    • pp.315-322
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    • 2013
  • Purpose: In this study, we investigated the effect of silk scaffolds on one-wall periodontal intrabony defects. We conjugated nano-hydroxyapatite (nHA) onto a silk scaffold and then seeded periodontal ligament cells (PDLCs) or dental pulp cells (DPCs) onto the scaffold. Methods: Five dogs were used in this study. Bilateral 4 mm${\times}$2 mm (depth${\times}$mesiodistal width), one-wall intrabony periodontal defects were surgically created on the distal side of the mandibular second premolar and the mesial side of the mandibular fourth premolar. In each dog, four of the defects were separately and randomly assigned to the following groups: the PDLCcultured scaffold transplantation group (PDLC group), the DPC-cultured scaffold transplantation group (DPC group), the normal saline-soaked scaffold transplantation group, and the control group. The animals were euthanized following an 8-week healing interval for clinical, scanning electron microscopy (SEM), and histologic evaluations. Results: There was no sign of inflammation or other clinical signs of postoperative complications. The examination of cellseeded constructs by SEM provided visual confirmation of the favorable characteristics of nHA-coated silk scaffolds for tissue engineering. The scaffolds exhibited a firm connective porous structure in cross section, and after PDLCs and DPCs were seeded onto the scaffolds and cultured for 3 weeks, the attachment of well-spread cells and the formation of extracellular matrix (ECM) were observed. The histologic analysis revealed that a well-maintained grafted volume was present at all experimental sites for 8 weeks. Small amounts of inflammatory cells were seen within the scaffolds. The PDLC and DPC groups did not have remarkably different histologic appearances. Conclusions: These observations indicate that nHA-coated silk scaffolds can be considered to be potentially useful biomaterials for periodontal regeneration.

흡수성 차폐막으로 조직 유도 재생술시 골이식재가 성견 치주조직 재생에 미치는 영향 (The Effect of Calcium-Phosphate Bovine Bone Powder on Guided Tissue Regeneration Using Biodegradable Membrane in Dogs)

  • 박종범;임성빈;정진형;김종여
    • Journal of Periodontal and Implant Science
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    • 제30권1호
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    • pp.167-180
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    • 2000
  • The present study evaluated the effects of guided tissue regeneration using biodegradable membrane, with and without calcium-phosphate thin film coated deproteinated bone powder in beagle dogs. Contralateral fenestration defects(6 × 4 mm) were created 4 mm apical to the buccal alveolar crest on maxillary canine teeth in 5 beagle dogs. Ca-P thin film coated deproteinated bone powder was implanted into one randomly selected fenestration defect(experimental group). Biodegradable membranes were used to provide bilateral GTR. Tissue blocks including defects with overlying membranes and soft tissues were harvested following a four- & eight-week healing interval and prepared for histologic analysis. The results of this study were as follows. 1.......The regeneration of new bone, new periodontal ligament, and new cementum was occurred in experimental group more than control group. 2.......The collapse of biodegradable membranes into defects were showed in control group and the space for regeneration was diminished. In experimental group, the space was maintained without collapse by graft materials. 3........In experimental group, the graft materials were resorbed at 4 weeks after surgery and regeneration of bone surrounding graft materials was occurred at 8 weeks after surgery. 4.......Biodegradable membranes were not resorbed at 4 weeks and partial resorption was occurred at 8 weeks but the framework and the shape of membranes were maintained. No inflammation was showed at resorption. In conclusion, the results of the present study suggest that Ca-P thin film coated deproteinated bone powder has adjunctive effect to GTR in periodontal fenestration defects. Because it has osteoconductive property and prohibit collapse of membrane into defect, can promote regeneration of much new attachment apparatus.

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골재생유도술에 의한 골재생과정에서의 골기질 유전자 발현 양상 (LOCALIZATION OF BONE MATRIX GENE mRNA IN REGENERATING BONE TISSUE DURING THE GUIDED BONE REGENERATION)

  • 이창곤;류현모;신홍인
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제21권3호
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    • pp.240-248
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    • 1999
  • 골재생유도술에 의한 골재생 과정에서의 생물학적 현상을 보다 구체적으로 이해하고자 인위적으로 골결손부를 형성하고, 비흡수성 비공유성 차폐막을 이용하여 골성회복 시 주위 연조직의 유입을 차단한 다음 골수강 및 골면으로부터 유래되는 세포들에 의한 골성회복 양상과 이때 이들 세포의 조골세포로의 분화정도를 판정하기 위하여 비교원성 골기질 단백질인 OSN, OPN 그리고 OSC mRNA의 발현 양상을 비교 검토하여 다음과 같은 결과를 얻었다. 실험 전기간에 걸쳐 골재생유도술을 시행한 군에서 보다 신속하고 양호한 골성회복을 보였다. 차폐막을 처리한 실험군에서는 인접골의 주변부로부터 신생골이 형성되어 조골세포의 분화가 조기에 골결손부에 국한되어 유도된 반면, 대조군에서는 주변연조직의 개입으로 인하여 실험군 보다는 약 1주정도 신생골의 형성이 지연되었으며, 따라서 골수강 내의 기질세포의 조골세포로의 분화 역시 지연되었다. 이상의 사실에서 골창상부에서 차폐막에 의해 형성된 차폐공간은 기질 세포들의 보다 신속한 조골세포로의 분화 증식과 이들에 의해 신생된 골주들의 빠른 골 개조를 조장하였음을 시사한다.

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Poly(l-lactide) membranes with biomimetic nanolayer for bone induction for tissue regeneration

  • Chung , Ji-Eun;Lee, Jue-Yeon;Kim, Kyung-Hwa;Baek, Hyun-Jin;Ku , Young;Chung, Chong-Pyung;Lee, Seung-Jin
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2-2
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    • pp.226.2-226.2
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    • 2003
  • .The healing of a bone defect is complex, and involves a wide range of cellular, molecular, physiological, and biological processes. The main effect of bone substitute is to promote wound healing by induce cell proliferation. Bone defect sites usually are localized below the original bone surface; therefore, space production and maintenance between the membrane and the original bone surface is essential. As a result, membranes must have proper mechanical strength to prevent the collapse of the soft tissue and maintain wound space that permits membranes of poly (L-lactide) (PLLA) were fabricated to provide and maintain sufficient space for bone growth. (omitted)

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치조제 증강을 위한 $HTR^{TM}$ 중합체 이식후 치유과정;증례보고 (RIDGE AUGMENTATION USING OF HARD TISSUE $REPLACEMENT(HTP^{TM})$;A CASE REPORT)

  • 김수관;임성철
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제22권1호
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    • pp.83-85
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    • 2000
  • The purpose of this study is to evaluate the effect of $HTR^{TM}$ (hard tissue replacement, Bioplant Inc, U.S.A) polymer on short-term healing as a grafting material for alveolar ridge augmentation. A 48-year-old female presented insufficient bone height and width for the placement of implants. $HTR^{TM}$ polymer was used for ridge augmentation. Bone biopsy was harvested 8 months after the ridge augmentation procedure. $HTR^{TM}$ polymer displayed rapid bone regeneration and mature lamellar and trabecular bone redevelopment. Clinical and histologic observation from the treatment of the patient presented suggest that $HTR^{TM}$ polymer seems to be a appropriate material for alveolar ridge augmentation.

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Porous Resorbable Calcium Carbonate와 Porous Replamireform Hydroxyapatite가 성견치주질환 이환 발치와내 이식된 치근과 발치와 치조골 재생에 미치는 영향 (The Effects of Porous Resorbable Calcium Carbonate and Porous Replamineform Hydroxyapatite on the regeneration of the alveolar bone in the Periodontally involved extraction sockets in dogs.)

  • 김종환;최성호
    • Journal of Periodontal and Implant Science
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    • 제26권2호
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    • pp.334-349
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    • 1996
  • Regeneration of the periodontal tissue destroyed by periodontal disease is one of the final goals of periodontal therapy. In the past few years, periodontists have used various alloplastic grafting materials in an attempt to regenerate bone lost from periodontal disease. These materials have used widely because they have shown to be nontoxic, biologically compatible with surrounding host tissue and chemically similar to bone. The purpose of this study was to investigate the effect of Porous Resorbable Calcium Carbonate and Porous Replamineform Hydroxyapatite on the regeneration of the alveolar bone and the healing of roots transplanted into the periodontally diseased extraction sockets of dogs. The experimental chronic periodontitis was induced by elastic ligatures on the 2nd and 3rd mandibular premolars of 2 adult dogs for 8weeks after surgically creating periodontal defect. The extracted root were split in half along the long-axis, and the extend of plaque exposure was marked on the root surfaces with burs. The roots were inserted in extraction sockets with Porous Resorbable Calcium Carbonate(PRCC) in left side and with Porous Replaminefrom Hydroxyapatite(PRH) in right side. The flaps were sutured to cover the sockets completely. The animals were sacrificed after 12 weeks of healing, and the specimens were examined histologically. The results were as follows: 1. No inflammatory reactions were observed in either groups. 2. Hoot resorption was observed in both groups while the general outline of the roots were maintained. 3. PRCC was almost completely resorbed and replaced with new bone, while R.H.A. was not resorbed & remained encased in newly-formed C-T and alveolar bone. 4. PRH was encapsulated with alveolar bone which has been deposited from apical & lateral area of the sockets, while the coronal portion of the sockets were filled with C-T. 5. In both groups, the resorbed portions of the roots were replaced with new bone. These results suggest that either PRCC or PRH may not interfere with bone formation or healing in extraction sockets, and in some degree, retard the root resorption. Because the roots maintained in anatomy, we think that graft materials prevent the root resorption.

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