• Title/Summary/Keyword: adhesion model

Search Result 291, Processing Time 0.029 seconds

Flexor Tenorrhaphy Using Absorbable Suture Materials

  • Kang, Hyung Joo;Lee, Dong Chul;Kim, Jin Soo;Ki, Sae Hwi;Roh, Si Young;Yang, Jae Won
    • Archives of Plastic Surgery
    • /
    • 제39권4호
    • /
    • pp.397-403
    • /
    • 2012
  • Background Nonabsorbable sutures are favorable for repairing flexor tendons. However, absorbable sutures have performed favorably in an animal model. Methods Two-strand sutures using the interlocking modified Kessler method with polydioxanone absorbable sutures 4-0 were used to repair completely ruptured flexor tendons in 55 fingers from 41 consecutive patients. The medical records of average 42 follow up weeks were analyzed retrospectively. The data analyzed using the chi-squared test, and Fisher's exact test was used for postoperative complications. The results were compared with those of other studies. Results Among the index, middle, ring, and little fingers were injured in 9, 17, 16, and 13 fingers, respectively. The injury levels varied from zone 1 to 5. Of the 55 digits in our study, there were 26 (47%) isolated flexor digitorum profundus (FDP) injuries and 29 (53%) combined FDP and with flexor digitorum superficialis injuries. Pulley repair was also conducted. Concomitant injuries of blood vessels and nerves were found in 17 patients (23 fingers); nerve injuries occurred in 5 patients (10 fingers). Two patients had ruptures (3.6%), and one patient had two adhesions (3.6%). Using the original Strickland criteria, all the patients were assessed to be excellent or good. Also, fibrosis and long-term foreign body tissue reactions such as stitch granuloma were less likely occurred in our study. Compared to the Cullen's report that used nonabsorbable sutures, there was no significant difference in the rupture or adhesion rates. Conclusions Therefore, this study suggests that appropriate absorbable core sutures can be used safely for flexor tendon repairs.

단섬유 강화 에폭시 복합재료의 열적/기계적 특성 (Thermal and Mechanical Properties of Short Fiber-Reinforced Epoxy Composites)

  • 황광춘;이충희;이종근
    • 폴리머
    • /
    • 제33권6호
    • /
    • pp.530-536
    • /
    • 2009
  • 고리지방족 에폭시와 산무수물 경화제계에 탄소단섬유(SCF)와 유리단섬유(SGF)를 첨가하여 복합재를 제조한 다음 이들의 열적/기계적 특성을 조사하였다. 열기계분석법으로 측정된 열팽창계수(CTE)의 감소 효과를 보면 낮은 단섬유 함량에서는 두 섬유가 거의 비슷하나, 함량이 증가하면 SCF가 SGF에 비해 훨씬 효과적이었다. SCF 강화 복합재에 대한 CTE 실험값을 이론식에 적용해 본 결과 함량이 낮을 때는 혼합법칙(mixture rule)에 잘 맞으며, 함량이 높아지면 Craft-Christensen 식에 근접하였다. 또한, 유리상($30^{\circ}C$과 고무상($180^{\circ}C$)에서의 저장탄성률은 단섬유를 첨가하였을 때 크게 증가하였다. 전자주사현미경(SEM)으로 파단면을 관찰하여본 결과 이와 같은 결과는 단섬유와 에폭시 매트릭스간의 계면접착력과 밀접한 관계가 있음을 알 수 있었다.

고과당식이 랫드모델에서 복분자 투여에 의한 대사증후군 개선효과 (Beneficial Effect of Rubus Coreanus Miq in a Rat Model of High Fructose Diet-induced Metabolic Syndrome)

  • 고민철;이윤정;윤정주;강대길;이호섭
    • 동의생리병리학회지
    • /
    • 제29권1호
    • /
    • pp.11-17
    • /
    • 2015
  • Overconsumption of fructose results in dyslipidemia, hypertension, which have documented as a risk of cardiovascular diseases. This experimental study was designed to investigate the beneficial effects of Rubus coreanus Miq.(RCM) in high-fructose diet-induced metabolic syndrome. Animals were divided into three groups; Control group fed regular diet and tap water, fructose groups were fed the 65% high-fructose (HF) diet with/without RCM 100 mg/kg/day for 8 weeks, respectively. Chronic treatment with RCM significantly decreased body weight, fat weight and adipocyte size. Moreover, RCM significantly prevented the development of the metabolic disturbances such as hyperlipidemia and hypertension. RCM also led to increase in high density lipoprotein level in the HF group. In addition, RCM suppressed vascular cell adhesion molecule-1 (VCAM-1) expression and significantly recovered the levels of endothelial nitric oxide synthase (eNOS) expression in aorta. These results demonstrates that RCM may be a beneficial therapeutic for metabolic syndrome through the improvement of hyperlipidemia, obesity, and hypertension.

감국(甘菊)이 MDCK 세포의 Laminin 합성에 미치는 영향 (Effect of Chrysanthemum Morifolium Extracts on the Synthesis of Laminin of Madin-Darby Canine Kidney Cells)

  • 나호정;전소라;차동석;은재순;임종필;신태용;오찬호;양재헌;김대근;임재윤;채병숙;김성주;정연옥;정원환;전훈
    • 동의생리병리학회지
    • /
    • 제21권3호
    • /
    • pp.709-713
    • /
    • 2007
  • Basement membranes (BMs) are extracellular matrices associated with epithelia, endothelia, muscle, fat and peripheral nerve. They are involved in cell survival, migration, differentiation. BMs functions also include tissue formation and provide mechanical stability as a selective barriers. Laminins are heterotrimeric glycoproteins found in BMs and have a crucial role in cell adhesion and signalling. Madin-Darby canine kidney (MDCK) cells are the best established mammalian model for studying epithelial cell biology The cells form an epithelial monolayer, with tight junctions separating an apical surface from a basolateral membrane facing the filter support and neighboring cells. In this study, using MDCK cells, the synthesis of the BM protein such as laminin with or without methanol extract of Chrysanthemum morifolium (CM) stimulation was analyzed by immunoblotting and CM showed significant increased cell density and enhanced synthesis of laminin.

Chitosan/hydroxyapatite composite coatings on porous Ti6Al4V titanium implants: in vitro and in vivo studies

  • Zhang, Ting;Zhang, Xinwei;Mao, Mengyun;Li, Jiayi;Wei, Ting;Sun, Huiqiang
    • Journal of Periodontal and Implant Science
    • /
    • 제50권6호
    • /
    • pp.392-405
    • /
    • 2020
  • Purpose: Titanium implants are widely used in the treatment of dentition defects; however, due to problems such as osseointegration failure, peri-implant bone resorption, and periimplant inflammation, their application is subject to certain restrictions. The surface modification of titanium implants can improve the implant success rate and meet the needs of clinical applications. The goal of this study was to evaluate the effect of the use of porous titanium with a chitosan/hydroxyapatite coating on osseointegration. Methods: Titanium implants with a dense core and a porous outer structure were prepared using a computer-aided design model and selective laser sintering technology, with a fabricated chitosan/hydroxyapatite composite coating on their surfaces. In vivo and in vitro experiments were used to assess osteogenesis. Results: The quasi-elastic gradient and compressive strength of porous titanium implants were observed to decrease as the porosity increased. The in vitro experiments demonstrated that, the porous titanium implants had no biological toxicity; additionally, the porous structure was shown to be superior to dense titanium with regard to facilitating the adhesion and proliferation of osteoblast-like MC3T3-E1 cells. The in vivo experimental results also showed that the porous structure was beneficial, as bone tissue could grow into the pores, thereby exhibiting good osseointegration. Conclusions: Porous titanium with a chitosan/hydroxyapatite coating promoted MC3T3-E1 cell proliferation and differentiation, and also improved osseointegration in vitro. This study has meaningful implications for research into ways of improving the surface structures of implants and promoting implant osseointegration.

Flexural response of steel beams strengthened by fibre-reinforced plastic plate and fire retardant coating at elevated temperatures

  • Ahmed, Alim Al Ayub;Kharnoob, Majid M.;Akhmadeev, Ravil;Sevbitov, Andrei;Jalil, Abduladheem Turki;Kadhim, Mustafa M.;Hansh, Zahra J.;Mustafa, Yasser Fakri;Akhmadullina, Irina
    • Structural Engineering and Mechanics
    • /
    • 제83권4호
    • /
    • pp.551-561
    • /
    • 2022
  • In this paper, the effect of fire conditions according to ISO 834 standard on the behavior of carbon fibre-reinforced plastic (CFRP) reinforced steel beams coated with gypsum-based mortar has been investigated numerically. To study the efficiency of these beams, 3D coupled temperature-displacement finite element analyzes have been conducted. Mechanical and thermal characteristics of three different parts of composite beams, i.e., steel, CFRP plate, and fireproof coating, were considered as a function of temperature. The interaction between steel and CFRP plate has been simulated employing the adhesion model. The effect of temperature, CFRP plate reinforcement, and the fireproof coating thickness on the deformation of the beams have been analyzed. The results showed that within the first 120 min of fire exposure, increasing the thickness of the fireproof coating from 1 mm to 10 mm reduced the maximum temperature of the outer surface of the steel beam from 380℃ to 270℃. This increase in the thickness of the fireproof layer decreased the rate of growth in the temperature of the steel beam by approximately 30%. Besides excellent thermal resistance and gypsum-based mortar, the studied fireproof coating method could provide better fire resistance for steel structures and thus can be applied to building materials.

A biodegradable magnesium alloy sample induced rat osteochondral defect repair through Wnt/β-catenin signaling pathway

  • Zhao, Kexin;Chen, Yingqi;Yu, Fei;Jian, Weng;Zheng, Ming;Zeng, Hui
    • Advances in nano research
    • /
    • 제12권3호
    • /
    • pp.301-317
    • /
    • 2022
  • Many studies have shown that Mg-Nd-Zn-Zr (abbreviated as JDBM) alloy has good biocompatibility and biodegradability as well as promotion of cell adhesion, proliferation and differentiation, and Wnt/β-catenin signaling pathway may play a unique role in joint tissue by controlling the function of chondrocytes, osteoblasts and synoviocytes. However, it is not clear whether the JDBM alloy induces osteochondral repair through Wnt/β-catenin signaling pathway. This study aims to verify that JDBM alloy can repair osteochondral defects in rats, which is realized by Wnt/β-catenin signaling pathway. In this study, the osteochondral defect model of the right femoral condyle non-weight-bearing area in rats was established and randomly divided into three groups: Control group, JDBM alloy implantation group and JDBM alloy implantation combined with signaling pathway inhibitor drug ICRT3 injection. It was found that after JDBM alloy implantation, the bone volume fraction (BVF) became larger, the bone trabeculae were increased, the relative expression of osteogenesis gene Runx2, Bmp2, Opn, Ocn and chondrogenesis gene Collagen II, Aggrecan were increased, and the tissue repair was obvious by HE and Masson staining, which could be inhibited by ICRT3.

Efficacy of recombinant enolase as a candidate vaccine against Haemaphysalis longicornis tick infestation in mice

  • Md. Samiul Haque;Mohammad Saiful Islam;Myung-Jo You
    • Parasites, Hosts and Diseases
    • /
    • 제61권4호
    • /
    • pp.439-448
    • /
    • 2023
  • Tick infestation causes a significant threat to human and animal health, requiring effective immunological control methods. This study aimed to investigate the potential of recombinant Haemaphysalis longicornis enolase protein for tick vaccine development. The exact mechanism of the recently identified enolase protein from the H. longicornis Jeju strain remains poorly understood. Enolase plays a crucial role in glycolysis, the metabolic process that converts glucose into energy, and is essential for the motility, adhesion, invasion, growth, and differentiation of ticks. In this study, mice were immunized with recombinant enolase, and polyclonal antibodies were generated. Western blot analysis confirmed the specific recognition of enolase by the antiserum. The effects of immunization on tick feeding and attachment were assessed. Adult ticks attached to the recombinant enolase-immunized mice demonstrated longer attachment time, increased bloodsucking abilities, and lower engorgement weight than the controls. The nymphs and larvae had a reduced attachment rate and low engorgement rate compared to the controls. Mice immunized with recombinant enolase expressed in Escherichia coli displayed 90% efficacy in preventing tick infestation. The glycolytic nature of enolase and its involvement in crucial physiological processes makes it an attractive target for disrupting tick survival and disease transmission. Polyclonal antibodies recognize enolase and significantly reduce attachment rates, tick feeding, and engorgement. Our findings indicate that recombinant enolase may be a valuable vaccine candidate for H. longicornis infection in experimental murine model.

Lewis 폐암 마우스 모델에서 Interleukin-12가 E-selectin 발현에 미치는 영향 (Effect of Interleukin-12 on the Expression of E-selectin in Mouse Model of Lewis Lung Carcinoma)

  • 이상학;신윤;윤형규;이숙영;김석찬;권순석;김영균;김관형;문화식;송정섭;박성학
    • Tuberculosis and Respiratory Diseases
    • /
    • 제47권2호
    • /
    • pp.161-171
    • /
    • 1999
  • 연구배경: Interleukin-12 (IL-12) 는 자연살해세포와 T 림프구 활성을 증가시킬 뿐 아니라 증식을 촉진시키고 mterferon-$\gamma$와 granulocyte-macrophage colony stimulating factor 그리고 tumor necrosis factor-$\alpha$ (TNF-$\alpha$)의 생성을 유도한다고 알려져 있으며 여러 동물실험에서 악성종양의 치료에 상당한 효과가 있음이 알려져 있다. 이런 결과는 종양내 염증세포의 침윤이 증가함과 밀접한 관련이 있다고 밝혀져 있지만 이들 염증세포가 종양내로 이동하는 단계에 IL-12가 미치는 영향에 대해서는 잘 알려진 바가 없다. 본 연구에서는 IL-12가 종양의 성장 및 전이에 미치는 영향과 활성화된 내피세포에 발현되는 것으로 알려진 E-selectin의 발현에 미치는 영향을 관찰하고자 하였고 또한 E-selectin의 발현이 IL-12에 의해 생산이 증가되고 여러 유착분자의 발현을 유도하는 작용이 있는 것으로 알려진 TNF-$\alpha$와 연관이 있는지 알아보고자 하였다. 방법: C57BL/6 마우스를 대상으로 Lewis 폐암세포주를 피하주사하여 암세포를 이식한 후 각 군마다 각각 IL-12 또는 TNF-$\alpha$ 생리식염수를 복강내 투여하였다. 암세포이식 28일째 마우스를 도살하여 폐전이 결절의 수를 측정하였으며 피하종양에 대해 CD4, CD8, CD16, E-selectin에 대한 면역화학조직염색을 시행 하였다. 결과: IL-12를 투여한 군에서 대조군에 비해 암세포 이식부위의 종양 크기가 감소하였으며 폐전이 결절의 수도 감소하였다. IL-12를 투여한 군에서 대조군에 비해 CD4+ 및 CD8+ 그리고 CD16+ 세포의 종양내 침윤이 증가하였다. IL-12를 투여하지 않은 대조군에서 E-selectin은 발현되지 않았으나 IL-12 투여군에서 종양내 혈관내피세포에서의 E-selectin 발현이 증가되었다. TNF-$\alpha$ 투여시 종양내 혈관내피세포에서의 E-selectin 발현 증가가 관찰되었으며 또한 종양내 CD4+ 및 CD8+ 그리고 CD16+ 세포의 침윤이 증가되었다. 결론: 이상의 결과로 보아 IL-12는 Lewis 폐암모델에서 종양내 염증세포의 침윤을 일으켜 종양의 성장과 전이를 억제하는 작용을 나타내며 염증세포의 침윤에는 E-selectin이 관여할 것으로 생각된다. 또한 E-selectin의 발현증가에는 IL-12 에 의해 생성이 유도되는 TNF-$\alpha$가 작용할 가능성을 추정할 수 있겠다.

  • PDF

Experimental and numerical disbond localization analyses of a notched plate repaired with a CFRP patch

  • Abderahmane, Sahli;Mokhtar, Bouziane M.;Smail, Benbarek;Wayne, Steven F.;Zhang, Liang;Belabbes, Bachir Bouiadjra;Boualem, Serier
    • Structural Engineering and Mechanics
    • /
    • 제63권3호
    • /
    • pp.361-370
    • /
    • 2017
  • Through the use of finite element analysis and acoustic emission techniques we have evaluated the interfacial failure of a carbon fiber reinforced polymer (CFRP) repair patch on a notched aluminum substrate. The repair of cracks is a very common and widely used practice in the aeronautics field to extend the life of cracked sheet metal panels. The process consists of adhesively bonding a patch that encompasses the notched site to provide additional strength, thereby increasing life and avoiding costly replacements. The mechanical strength of the bonded joint relies mainly on the bonding of the adhesive to the plate and patch stiffness. Stress concentrations at crack tips promote disbonding of the composite patch from the substrate, consequently reducing the bonded area, which makes this a critical aspect of repair effectiveness. In this paper we examine patch disbonding by calculating the influence of notch tip stress on disbond area and verify computational results with acoustic emission (AE) measurements obtained from specimens subjected to uniaxial tension. The FE results showed that disbonding first occurs between the patch and the substrate close to free edge of the patch followed by failure around the tip of the notch, both highest stress regions. Experimental results revealed that cement adhesion at the aluminum interface was the limiting factor in patch performance. The patch did not appear to strengthen the aluminum substrate when measured by stress-strain due to early stage disbonding. Analysis of the AE signals provided insight to the disbond locations and progression at the metal-adhesive interface. Crack growth from the notch in the aluminum was not observed until the stress reached a critical level, an instant before final fracture, which was unaffected by the patch due to early stage disbonding. The FE model was further utilized to study the effects of patch fiber orientation and increased adhesive strength. The model revealed that the effectiveness of patch repairs is strongly dependent upon the combined interactions of adhesive bond strength and fiber orientation.