• Title/Summary/Keyword: 혈관평활근세포

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Inhibitory Effects of A-8 on Abnormal Rat Aortic Vascular Smooth Muscle Cell Proliferation (동맥혈관 평활근세포 증식에 대한 오보바톨 유도체(A-8)의 억제효과)

  • Lim, Yong;Lee, Mi-Yea;Tudev, Munkhtsetseg;Park, Eun-Seok;Jung, Jae-Kyung;Yun, Yeo-Pyo
    • YAKHAK HOEJI
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    • v.55 no.2
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    • pp.116-120
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    • 2011
  • Abnormal proliferation of vascular smooth muscle cells (VSMCs) plays an important role in the development and progression of proliferative cardiovascular diseases, including hypertension and atherosclerosis. To find antiproliferative agent (A)-8 had inhibitory effect on VSMCs proliferation. Therefore, we examined the antiproliferative effect of A-8, a newly synthesized obovatol derivative. To investigate the antiproliferative effect of A-8, we examined cell counting and [$^3H$]-thymidine incorporation assays. The pre-incubation of A-8 (1~4 ${\mu}M$) significantly inhibited proliferation and DNA synthesis of 5% fetal bovine serum (FBS)-stimulated rat aortic VSMCs in concentration-dependent manner. Whereas, A-8 did not show any cytotoxicity in rat aortic VSMCs in this experimental condition by WST-1 assay. In addition, A-8 significantly inhibited 5% FBS-induced cell cycle progression in rat aortic VSMCs. These results show that A-8 may be developed as a potential antiproliferative agent for treatment of angioplasty restenosis and atherosclerosis. Furthermore, A-8 should be examined for further clinical application either as a single agent or in combination with other angioplasty restenosis or atherosclerosis agents.

The function of zinc in the primary vascular smooth muscle cell proliferation in rats (아연의 1차혈관평활근세포 증식에 대한 기능)

  • Cho, Young-Eun;Kwun, In-Sook
    • Journal of Nutrition and Health
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    • v.53 no.6
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    • pp.563-569
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    • 2020
  • Purpose: The vascular smooth muscle cells (VSMCs) in mature animals have implicated to play a major role in the progression of cardiovascular diseases such as atherosclerosis. This study aimed at optimizing the protocol in culturing primary VSMCs (pVSMCs) from rat thoracic aorta and investigating the effect of cellular zinc (Zn) deficiency on cell proliferation of the isolated pVSMCs. Methods: The thoracic aorta from 7-month-old Sprague Dawley rats was isolated, minced and digested by the enzymatic process of collagenase I and elastase, and then inoculated with the culture Dulbecco Modified Eagle Medium (DMEM) at 37℃ in an incubator. The primary cell culture morphology was observed using phase-contrast microscopy and cellular Zn was depleted using Chelex-100 resin (extracellular zinc depletion only) or 3 µM N,N,N',N'-tetrakis(2-pyridinylmethyl)-1,2-ethanediamine (TPEN) (extracellular and intracellular zinc depletion). Western blot analysis was used for the detection of SM22α and calponin as smooth muscle cell marker proteins and von Willebrand factor as endothelial cell marker protein to detect the culture purity. Cell proliferation by Zn depletion (1 day) was measured by MTT assay. Results: A primary culture protocol for pVSMCs from rat thoracic aorta was developed and optimized. Isolated cultures exhibited hill and valley morphology as the major characteristics of pVSMCs and expressed the smooth muscle cell protein markers, SM22α and calponin, while the endothelial marker von Willebrand factor was hardly detected. Zn deprivation for 1 day culture decreased rat primary vascular smooth muscle cell proliferation and this pattern was more prominent under severe Zn depletion (3 µM TPEN), while less prominent under mild Zn depletion (Chelexing). Conclusion: Our results suggest that cellular Zn deprivation decreased pVSMC proliferation and this may be involved in phenotypic modulation of pVSMC in the aorta.

Study on the Clonality of Endothelial Cell Proliferation in Plexiform Lesions in Patients with Pulmonary Hypertension Associated with CREST Syndrome (CREST 증후군에 동반된 폐고혈압 환자에서 총상병변내 내피세포 증식의 클론성에 관한 연구)

  • Lee, Sang-Do;Jeon, Yong-Gam;Lee, Ji-Hyun;Shim, Tae-Sun;Lim, Chae-Man;Koh, Yun-Suck;Kim, Woo-Sung;Kim, Dong-Soon;Kim, Won-Dong;Tuder, Rubin M.
    • Tuberculosis and Respiratory Diseases
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    • v.47 no.2
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    • pp.150-160
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    • 1999
  • Background: The CREST syndrome is an indolent form of progressive systemic sclerosis. Although its clinical progress is indolent, pulmonary hypertension(PH) associated with CREST syndrome have grave prognosis with over 40 percent mortality rate at 2 year follow-up. But the pathogenesis of pulmonary hypertension in this disease is not known, and classified as either primary or secondary PH. Clonality of endothelial cell proliferation in plexiform lesion is a molecular marker which allows distinction between primary and secondary PH. We performed this study to know whether the PH associated with CREST syndrome is a variant of primary PH or is a secondary PH. Methods: We assessed the X-chromosome inactivation based on the methylation pattern of the human androgen-receptor gene by PCR(HUMARA). Endothelial cells in plexiform lesions from female patients(n=3) with PH associated with CREST syndrome were microdissected from paraffin blocks. Vascular smooth muscle cells and lung parenchyma were also microdissected for clonality studies. Results: The proliferating endothelial cells in 14 plexiform lesions were all polyclonal. Similarly proliferated smooth muscle cells from 5 vessels with medial hypertrophy were also polyclonal. Conclusion: These results suggest that the pulmonary hypertension associated with CREST syndrome has different pathogenesis from primary PH and to be classified as secondary PH.

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Expressions of Matrix Metalloproteinase-9 and Tissue Inhibitor of Metalloproteinase-2 with Changes of Interleukin-6 and Interleukin-18 in Atherosclerotic Lesions of Hypercholesterolemic Rabbits (고콜레스테롤혈증 가토의 죽상경화성 병변에서 Interleukin-6와 Interleukin-18의 변화 및 Matrix Metalloproteinase-9과 Tissue Inhibitor of Metalloproteinase-2의 발현)

  • 권영무;김성숙;장봉현
    • Journal of Chest Surgery
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    • v.35 no.6
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    • pp.407-419
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    • 2002
  • Atherosclerosis is a chronic inflammatory disease of the arterial wall characterized by progressive accumulation of lipids, cells, and extracellular matrix. Matrix metalloproteinases(MMPs) and tissue inhibitor of metalloproteinases(TIMPS) contribute to vascular matrix remodeling in atherosclerosis, and some cytokines may play role in the synthesis or activation of MMPs or TIMPs. Material and Method: We produced experimental atherosclerotic plaques in 9 rabbits by atherogenic hypercholesterol diet for 12 weeks, and 10 other rabbits were used as control group with standard laboratory chow, At that time, 19 rabbits were sacrificed and aorta, coronary arteries and blood specimens were prepared. The expressions of MMP-9, TIMP-2 and interleukin(IL)-18, and the bioactivity of IL-6 were investigated with H&E stain, immunohistochemical stain, immunoblotting(Western blot analysis), and bioassay. Result: Serum cholesterol in the experimental group increased up to 1258$\pm$262 mg/dL(control group: 41$\pm$7 mg/dL). All experimental group showed well-developed atherosclerotic plaques in aorta and coronary artery. The expression of MMP-9 in aorta and coronary artery of the experimental group showed significant increase than that of the control group by immunohistochemistry. Among the experimental group, complicated lesions with intimal rupture or complete luminal occlusion, demonstrated stronger expression of MMP-9. Interestingly, there was no difference in expression of TIMP-2 between the experimental and the control group. These findings were confirmed by Western blot analysis. The bioassay revealed significant up-regulation of serum bioactivity of IL-6 in the experimental group(4819.60$\pm$2021.25 IU/$m\ell$) compared to that of IL-6 in the control group(27.20 $\pm$ 12.19 IU/$m\ell$). IL-18 was expressed in all atherosclerotic plaques, whereas little or no expression was detected in the control group. Conclusion: The increased MMP-9 expression along with the unchanged TIMP-2 expression seem to be contributory factors in extracellular matrix degradation in atherosclerosis. Focal overexpression of MMP-9 may promote plaque destabilization and cause complications of atherosclerotic plaques such as thrombosis with/without acute coronary syndrome. Elevation of IL-6 and IL-18 may be more than just markers of atherosclerosis but actual participants in lesion development. Identification of critical regulatory pathway is important to improve the understanding of the cellular and molecular basis of atherosclerosis and may open the way for novel therapeutic strategies.

Transforming growth factor-β promoted vascular endothelial growth factor release by human lung fibroblasts (인간 폐섬유아세포에서 TGF-β 자극에 의한 VEGF 분비)

  • Park, Sang-Uk;Shin, Joo-Hwa;Shim, Jae-Won;Kim, Deok-Soo;Jung, Hye-Lim;Park, Moon-Soo;Shim, Jung-Yeon
    • Clinical and Experimental Pediatrics
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    • v.51 no.8
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    • pp.879-885
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    • 2008
  • Purpose : The human lung fibroblast may act as an immunomodulatory cell by providing pro-inflammatory cytokines and chemokines, which are important in airway remodeling. Vascular endothelial growth factor (VEGF) induces mucosal edema and angiogenesis. Thymus and activation regulated chemokine (TARC) induces selective migration of T helper 2 cells. We investigated whether human lung fibroblasts produced VEGF and TARC, and the effects were augmented with the co-culture of fibroblasts and human bronchial smooth muscle cells (HBSMC), and whether dexamethasone can inhibit the proliferation and the release of VEGF in lung fibroblasts. Methods : Human lung fibroblasts were cultured with and without HBSMC, growth-arrested in serum-deprived medium, and pretreated with dexamethasone for 16 hours. After 24-hour stimulation with platelet derived growth factor-BB (PDGF-BB) and/or transforming growth factor-${\beta}$ (TGF-${\beta}$), culture supernatant was harvested for assays of VEGF and TARC. Cell proliferation was assayed using BrdU cell proliferation ELISA kit. Results : 1) The release of VEGF was significantly increased after stimulation with TGF-${\beta}$, and its release was augmented when co-stimulated with PDGF and TGF-${\beta}$. 2) VEGF release induced by PDGF or TGF-${\beta}$ was inhibited by dexamethasone. 3) There was no synergistic effect on the release of VEGF when human lung fibroblasts were co-cultured with HBSMC. 4) Dexamethasone did not suppress human lung fibroblasts proliferations. 5) Neither TGF-${\beta}$ nor PDGF induced TARC release from lung fibroblasts. Conclusion : Human lung fibroblasts may modulate airway remodeling by release of VEGF, but they have no synergistic effects when co-cultured with HBSMC. Dexamethasone suppresses VEGF release, not proliferation of lung fibroblast.