• Title/Summary/Keyword: Intimal Hyperplasia

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Three-Dimensional Flow Simulations of End-to-Side Vascular Anastomoses : Flow Dynamic Aspect on Preferential Development of Intimal Hyperplasia or Thrombosis

  • Kim, Young H.;Krishnan B.Chandran
    • Journal of Biomedical Engineering Research
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    • v.15 no.3
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    • pp.253-258
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    • 1994
  • Three-dimensional steady and pulsatile flows in an end-to-side anastomosis were investigated using a finite difference method in order to understand the flow dynamics in the preferential development of distal anastomotic intimal hyperplasia or thrombosis. Steady flow results revealed that a double helical vortex was formed in the host artery and flow recirculations near toe find heel regions were restricted due to the secondary flow. Oscillating wall shear stress with significant secondary flow might be flow dynamic reason of developing intimal hyperplasia or thrombosis near the anastomotic region.

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Hemodynamic Effects on Artery-Graft Anastomotic Intimal Hyperplasia (혈류의 유동이 혈관-인조혈관 접속부 혈관 내막 세포증식에 미치는 영향)

  • 이계한
    • Journal of Biomedical Engineering Research
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    • v.15 no.2
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    • pp.143-150
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    • 1994
  • Wall shear rate or stress is believed to be a major hemodynamic variable influencing atherosclerosis and artery-graft anastomic intimal hyperplasia. The purpose of this study is to verify the effects of radial wall motion, artery-graft compliance and diameter mismatch, and impedance phase angle on the wall shear rate distribution near an end-to-end artery-graft anastomosis model. The results show that radial wall motion of the elastic artery model lowers the mean wall shear rates under pulsatile flow condition by 15 to 20 % comparing to those under steady flow condition at the same mean flow rate. Impedance phase angle seems to have small effects on the mean and amplitude of the wall shear rate distribution. In order to study the effects of compliance and diameter mismatch on the wall shear rates, two models are studied-Model I has 6% and Model I has 6% and Model II has 11% smaller graft diameter. Divergent geometry caused by diameter mismatch near the distal sites reduces the mean wall shear rates significantly, and this low shear region is believed to be prone to intimal hyperplasia.

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The Effect of Epigallocatechin-3-Gallate on Intimal Hyperplasia after Vascular Grafting (혈관이식술 후 내막과다증식에 대한 Epigallocatechin-3-Gallate의 효과)

  • Park, Han-Ki;Song, Suk-Won;Lee, Mi-Hee;Park, Jong-Chul;Joo, Hyun-Chul;Chang, Byung-Chul;Park, Young-Hwan
    • Journal of Chest Surgery
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    • v.40 no.4 s.273
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    • pp.256-263
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    • 2007
  • Background: Intimal hyperpiasia is characterized by a proliferation of vascular smooth muscle cells in the intimal layer Epigallocatechin-3-gallate (EGCG) is known to suppress smooth muscle cell proliferation. We propose that EGCG may have a protective effect against the development of intimal hyperplasia through the suppression of smooth muscle cell proliferation. Material and Method: Human umbilical vein endothelial cells (HUVEC) and rat aortic smooth muscle cells (RASMC) were cultured with different concentrations of EGCG, and proliferation and migration speed were measured. In 20 dogs, the autologous jugular veins were interposed into the carotid arteries. For the study group (n=10), the graft was stored for 30 minutes in EGCG solution and 300mM EGCG was applied to the perivascular space after grafting. After 6 weeks, the intimal and medial thickness was measured. Result: The proliferation of RASMC and HUVEC was suppressed with EGCG. The migration of RASMC was suppressed with EGCG, but that of HUVEC was not affected. In the in vivo study, the intimal thickness was thinner in EGCG group than in the control group (p<0.05), but the medial thickness did not show any difference. The intimal/medial thickness ratio was lower in the EGCG group (p<0.05). Conclusion: EGCG suppresses intimal hyperplasia after vascular grafting, and this may be mediated by prevention of migration and proliferation of vascular smooth muscle cells. The use of EGCG may offer new therapeutic modality to prevent intimal hyperplasia.

The Wall Shear Rate Distribution Near an End-to-End Anastomosis : Effects of Graft Compliance and Size

  • Rhee, Kye-Han
    • International Journal of Vascular Biomedical Engineering
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    • v.1 no.1
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    • pp.41-47
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    • 2003
  • The patency rates of small diameter vascular grafts are disappointing because of the formation of thrombus and intimal hyperplasia. Among the various factors influencing the success of graft surgery, the compliance and the size of a graft are believed to be the most important physical properties of a vascular graft. Mismatch of compliance and size between an artery and a graft alters anastomotic flow characteristics, which may affect the formation of intimal hyperplasia. Among the hemodynamic factors influencing the development of intimal hyperplasia, the wall shear stress is suspected as the most important one. The wall shear stress distributions are experimentally measured near the end-to-end anastomosis models in order to clarify the effects of compliance and diameter mismatch on the hemodynamics near the anastomosis. The effects of radial wall motion, diameter mismatch and impedance phase angle on the wall shear rate distributions near the anastomosis are considered. Compliance mismatch generates both different radial wall motion and instantaneous diameter mismatch between the arterial portion and the graft portion during a flow cycle. Mismatch in diameter seems to be affecting the wall shear rate distribution more significantly compared to radial wall motion. The impedance phase angle also affects the wall shear rate distribution.

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Histological Characteristics of Right Gastroepiploic Artery for Coronary Artery Bypass Graft (관상동맥우회 이식편으로서의 우위대망동맥의 조직학적 특징)

  • Lee, Hyun-Woo;Song, Hyun;Yoo, Dong-Gon;Lim, Han-Jung;Lee, Jae-Won;Song, Meong-Gun
    • Journal of Chest Surgery
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    • v.32 no.10
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    • pp.883-890
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    • 1999
  • Long term patency of arterial graft has been better than venous graft and redo coronary artery bypass grafting has been increasing, therefore, there has been an increasing need for alternative arterial grafts except internal thoracic artery(ITA). Material and Method: Right gastroepiploic arteries(RGEA) were harvested from 100 patients who had received gastrectomy for gastric cancer or ulcer. ITAs were obtained from 10 patients undergoing coronary artery bypass grafting. The length of RGEA was measured from the pyloric ring. Items of the morphometric and histologic study at the pyloric ring and sites of the 10cm and 20cm RGEA from the pyloric ring were luminal diameter, intimal thickness, medial thickness, wall thickness, degree of intimal hyperplasia, intimal thickness, medial thickness, wall thickness, degree of intimal hyperplasia, intimal thickness index, medial thickness index, and the number of discontinuities of the internal elastic lamina. Similar items were applied to the proximal site of ITAs. Result: The length of RGEA was 23${\pm}$2.7cm(range 17∼31cm). Comparing the 20cm RGEA with ITA, intimal thickness, medial thickness, wall thickness, and degree of intimal hyperplasia did not show any difference(p>0.05). However, 20cm RGEA was greater than ITA at the luminal diameter, intimal thickness index, and the number thickness and wall thickness in each site of the RGEA(pyloric ring, 10cm, 20cm) decreased from the pyloric ring to the distal sites(p<0.05). The degree of intimal hyperplasia and the number of discontinuities of the internal elastic lamina did not show any difference between the pyloric ring and 10cm, however, those of 20cm were smaller than these sites(p<0.05). RGEA had more number of discontinuities of the internal elastic lamina and rich smooth muscle cells in the media than ITA. Conclusion: The length and diameter of RGEA is good enough to reach most of the coronary arteries. Moreover, long term patency of RGEA may be improved, if anastomosed in the distal site.

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Three-Dimensional Flow in an End-to-Side Vascular Anastomosis: Steady and Pulsatile Flow (End-to-Side 혈관문합에서의 삼차원유동: 정상유동 및 맥류유동)

  • Kim, Young-H.
    • Proceedings of the KOSOMBE Conference
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    • v.1994 no.05
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    • pp.115-118
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    • 1994
  • Three-dimensional steady and pulsatile flows in an end-to-side anastomosis were investigated using a finite difference method in order to understand the flow dynamics in the preferential development of distal anastomotic intimal hyperplasia or thrombosis. Steady flow results revealed that a double helical vortex was formed in the host artery and flow recirculations near tow and heel regions were limited due to the secondary flow. Oscillating wall shear stress with significant secondary flow might be the flow dynamic reason of developing intimal hyperplasia or thrombosis.

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The Effects of Flow Wave form on the Flow Characteristics in Tapered Vascular Grafts (유량 파형이 데이퍼형 인조혈관 유동에 미치는 영향)

  • Lee, H. C.;Seok, K. W.;Jon, C. W.;Lee, J.;Lee, Y. S.;Kim, S. H.
    • Journal of Biomedical Engineering Research
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    • v.17 no.3
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    • pp.337-346
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    • 1996
  • The patency of small size vascular grafts is poor, and the blood flow characteristics in the artery graft anastomosis are suspected as one of the important factors influencing intimal hyperplasia. Disturbed flow patterns caused by sixte and compliance mismatch generate unfavorable flow environment which promotes intimal thickening. Tapered vascular yuts are suggested in order to reduce sudden expansion near the anastomosis. The photochromic flow visualization method is used to measure the flout fields in the end-to-end anastomosis model under the carotid and femoral artery flow wave form. The results show that flow disturbance near the anastomosis is diminished in the tapered grafts comparing to the tubular graft. As the divergent ang1e decreases, we can reduce the low and oscillatory wall shear stress zone which is prone to intimal hyperplasia. The flow wave form effects the wall shear rate dis- tribution significantly. The steep deceleration and back flow in the femoral flow wAve form cause low mean wall shear rate and high oscillatory shear index.

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Alkoxybenzylcyanoguanidine Analogs as a Novel Class of Inhibitors for Restenosis

  • Lee, Sun-Kyung;Yi, Kyu-Yang;Hwang, Sun-Kyung;Suh, Jee-Hee;Lee, Byung-Ho;Yoo, Sung-Eun
    • Bulletin of the Korean Chemical Society
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    • v.25 no.7
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    • pp.1003-1008
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    • 2004
  • A novel class of alkoxybenzylcyanoguanidine analogs as the inhibitors of restenosis was discovered, which showed the inhibitory effects on angiotensin II-induced cell proliferation, determined by $[^3H]$thymidine incorporation method. The compound, N'-(4-nitrophenyl)guanidine analog 19, showed 62% inhibition of $[^3H]$thymidine incorporation at 1 ${\mu}M$ concentration. In addition, the compound 19 inhibited intimal thickening dose-dependently after balloon injury, which suggests the therapeutic potential for restenosis.