메뉴 건너뛰기




Volumn 37, Issue 12, 2013, Pages

Effects of Pulsatile Bioreactor Culture on Vascular Smooth Muscle Cells Seeded on Electrospun Poly (lactide-co-ε-caprolactone) Scaffold

Author keywords

Bioreactor; Cell matrix engineering; Dynamic culture system; Poly (lactide co caprolactone); Pulsatile pressure; Small diameter vascular graft; Smooth muscle cells

Indexed keywords

BIOCONVERSION; BIOREACTORS; CELL ENGINEERING; CYTOLOGY; DYNAMICS; GRAFTS; MUSCLE; PROTEINS; SCAFFOLDS (BIOLOGY); TENSILE STRENGTH;

EID: 84890137468     PISSN: 0160564X     EISSN: 15251594     Source Type: Journal    
DOI: 10.1111/aor.12108     Document Type: Article
Times cited : (18)

References (47)
  • 1
    • 33646117243 scopus 로고    scopus 로고
    • A novel culture system shows that stem cells can be grown in 3D and under physiologic pulsatile conditions for tissue engineering of vascular grafts
    • Abilez O, Benharash P, Mehrotra M, et al. A novel culture system shows that stem cells can be grown in 3D and under physiologic pulsatile conditions for tissue engineering of vascular grafts. J Surg Res 2006;132:170-178.
    • (2006) J Surg Res , vol.132 , pp. 170-178
    • Abilez, O.1    Benharash, P.2    Mehrotra, M.3
  • 2
    • 84890188142 scopus 로고    scopus 로고
    • Cardiovascular diseases
    • WHO
    • WHO. Cardiovascular diseases. Med Net 2006;12:22-23.
    • (2006) Med Net , vol.12 , pp. 22-23
  • 3
    • 51849160292 scopus 로고    scopus 로고
    • Pulsatile perfusion bioreactor for cardiac tissue engineering
    • Brown MA, Iyer RK, Radisic M. Pulsatile perfusion bioreactor for cardiac tissue engineering. Biotechnol Prog 2008;24:907-920.
    • (2008) Biotechnol Prog , vol.24 , pp. 907-920
    • Brown, M.A.1    Iyer, R.K.2    Radisic, M.3
  • 4
    • 67649944061 scopus 로고    scopus 로고
    • Tissue-engineered small-caliber vascular graft based on a novel biodegradable composite fibrin-polylactide scaffold
    • Tschoeke B, Flanagan TC, Koch S, et al. Tissue-engineered small-caliber vascular graft based on a novel biodegradable composite fibrin-polylactide scaffold. Tissue Eng Part A 2009;15:1909-1918.
    • (2009) Tissue Eng Part A , vol.15 , pp. 1909-1918
    • Tschoeke, B.1    Flanagan, T.C.2    Koch, S.3
  • 5
    • 54449092196 scopus 로고    scopus 로고
    • Bioengineered three-layered robust and elastic artery using hemodynamically-equivalent pulsatile bioreactor
    • Iwasaki K, Kojima K, Kodama S, et al. Bioengineered three-layered robust and elastic artery using hemodynamically-equivalent pulsatile bioreactor. Circulation 2008;118:S52-57.
    • (2008) Circulation , vol.118
    • Iwasaki, K.1    Kojima, K.2    Kodama, S.3
  • 7
    • 20044392151 scopus 로고    scopus 로고
    • [Tissue engineering for heart valves and vascular grafts]
    • Teebken OE, Wilhelmi M, Haverich A. [Tissue engineering for heart valves and vascular grafts]. Chirurg 2005;76:453-466.
    • (2005) Chirurg , vol.76 , pp. 453-466
    • Teebken, O.E.1    Wilhelmi, M.2    Haverich, A.3
  • 8
    • 33846297021 scopus 로고    scopus 로고
    • Physiologic pulsatile flow bioreactor conditioning of poly(ethylene glycol)-based tissue engineered vascular grafts
    • Hahn MS, McHale MK, Wang E, Schmedlen RH, West JL. Physiologic pulsatile flow bioreactor conditioning of poly(ethylene glycol)-based tissue engineered vascular grafts. Ann Biomed Eng 2007;35:190-200.
    • (2007) Ann Biomed Eng , vol.35 , pp. 190-200
    • Hahn, M.S.1    McHale, M.K.2    Wang, E.3    Schmedlen, R.H.4    West, J.L.5
  • 9
    • 29244492301 scopus 로고    scopus 로고
    • Biological characterisation of vascular grafts cultured in a bioreactor
    • Engbers-Buijtenhuijs P, Buttafoco L, Poot AA, et al. Biological characterisation of vascular grafts cultured in a bioreactor. Biomaterials 2006;27:2390-2397.
    • (2006) Biomaterials , vol.27 , pp. 2390-2397
    • Engbers-Buijtenhuijs, P.1    Buttafoco, L.2    Poot, A.A.3
  • 11
    • 0038578007 scopus 로고    scopus 로고
    • Dynamic rotational seeding and cell culture system for vascular tube formation
    • Nasseri BA, Pomerantseva I, Kaazempur-Mofrad MR, et al. Dynamic rotational seeding and cell culture system for vascular tube formation. Tissue Eng 2003;9:291-299.
    • (2003) Tissue Eng , vol.9 , pp. 291-299
    • Nasseri, B.A.1    Pomerantseva, I.2    Kaazempur-Mofrad, M.R.3
  • 12
    • 77149177065 scopus 로고    scopus 로고
    • New pulsatile hydrostatic pressure bioreactor for vascular tissue-engineered constructs
    • Shaikh FM, O'Brien TP, Callanan A, et al. New pulsatile hydrostatic pressure bioreactor for vascular tissue-engineered constructs. Artif Organs 2010;34:153-158.
    • (2010) Artif Organs , vol.34 , pp. 153-158
    • Shaikh, F.M.1    O'Brien, T.P.2    Callanan, A.3
  • 13
    • 79955785243 scopus 로고    scopus 로고
    • Functional characterization of human coronary artery smooth muscle cells under cyclic mechanical strain in a degradable polyurethane scaffold
    • Sharifpoor S, Simmons CA, Labow RS, Paul Santerre J. Functional characterization of human coronary artery smooth muscle cells under cyclic mechanical strain in a degradable polyurethane scaffold. Biomaterials 2011;32:4816-4829.
    • (2011) Biomaterials , vol.32 , pp. 4816-4829
    • Sharifpoor, S.1    Simmons, C.A.2    Labow, R.S.3    Paul Santerre, J.4
  • 14
    • 0036772517 scopus 로고    scopus 로고
    • Tissue-engineering bioreactors: a new combined cell-seeding and perfusion system for vascular tissue engineering
    • Sodian R, Lemke T, Fritsche C, et al. Tissue-engineering bioreactors: a new combined cell-seeding and perfusion system for vascular tissue engineering. Tissue Eng 2002;8:863-870.
    • (2002) Tissue Eng , vol.8 , pp. 863-870
    • Sodian, R.1    Lemke, T.2    Fritsche, C.3
  • 16
    • 70350501260 scopus 로고    scopus 로고
    • Transmural flow bioreactor for vascular tissue engineering
    • Bjork JW, Tranquillo RT. Transmural flow bioreactor for vascular tissue engineering. Biotechnol Bioeng 2009;104:1197-1206.
    • (2009) Biotechnol Bioeng , vol.104 , pp. 1197-1206
    • Bjork, J.W.1    Tranquillo, R.T.2
  • 17
    • 70149110028 scopus 로고    scopus 로고
    • Identification of key factors in deep O2 cell perfusion for vascular tissue engineering
    • Cheema U, Hadjipanayi E, Tammi N, Alp B, Mudera V, Brown RA. Identification of key factors in deep O2 cell perfusion for vascular tissue engineering. Int J Artif Organs 2009;32:318-328.
    • (2009) Int J Artif Organs , vol.32 , pp. 318-328
    • Cheema, U.1    Hadjipanayi, E.2    Tammi, N.3    Alp, B.4    Mudera, V.5    Brown, R.A.6
  • 18
    • 28444440656 scopus 로고    scopus 로고
    • Mechanical responses of a compliant electrospun poly(L-lactide-co-epsilon-caprolactone) small-diameter vascular graft
    • Inoguchi H, Kwon IK, Inoue E, Takamizawa K, Maehara Y, Matsuda T. Mechanical responses of a compliant electrospun poly(L-lactide-co-epsilon-caprolactone) small-diameter vascular graft. Biomaterials 2006;27:1470-1478.
    • (2006) Biomaterials , vol.27 , pp. 1470-1478
    • Inoguchi, H.1    Kwon, I.K.2    Inoue, E.3    Takamizawa, K.4    Maehara, Y.5    Matsuda, T.6
  • 19
    • 20344404461 scopus 로고    scopus 로고
    • Applications of polymer nanofibers in biomedicine and biotechnology
    • Venugopal J, Ramakrishna S. Applications of polymer nanofibers in biomedicine and biotechnology. Appl Biochem Biotechnol 2005;125:147-158.
    • (2005) Appl Biochem Biotechnol , vol.125 , pp. 147-158
    • Venugopal, J.1    Ramakrishna, S.2
  • 20
    • 36849013076 scopus 로고    scopus 로고
    • In vitro evaluation of electrospun nanofiber scaffolds for vascular graft application
    • Lee SJ, Yoo JJ, Lim GJ, Atala A, Stitzel J. In vitro evaluation of electrospun nanofiber scaffolds for vascular graft application. J Biomed Mater Res A 2007;83:999-1008.
    • (2007) J Biomed Mater Res A , vol.83 , pp. 999-1008
    • Lee, S.J.1    Yoo, J.J.2    Lim, G.J.3    Atala, A.4    Stitzel, J.5
  • 21
    • 33845508675 scopus 로고    scopus 로고
    • Engineering of vascular grafts with genetically modified bone marrow mesenchymal stem cells on poly (propylene carbonate) graft
    • Zhang J, Qi H, Wang H, et al. Engineering of vascular grafts with genetically modified bone marrow mesenchymal stem cells on poly (propylene carbonate) graft. Artif Organs 2006;30:898-905.
    • (2006) Artif Organs , vol.30 , pp. 898-905
    • Zhang, J.1    Qi, H.2    Wang, H.3
  • 22
    • 33751306802 scopus 로고    scopus 로고
    • Tissue-engineered vascular grafts composed of marine collagen and PLGA fibers using pulsatile perfusion bioreactors
    • Jeong SI, Kim SY, Cho SK, et al. Tissue-engineered vascular grafts composed of marine collagen and PLGA fibers using pulsatile perfusion bioreactors. Biomaterials 2007;28:1115-1122.
    • (2007) Biomaterials , vol.28 , pp. 1115-1122
    • Jeong, S.I.1    Kim, S.Y.2    Cho, S.K.3
  • 23
    • 77950270417 scopus 로고    scopus 로고
    • Electrospun polyurethane vascular grafts: in vitro mechanical behavior and endothelial adhesion molecule expression
    • Grasl C, Bergmeister H, Stoiber M, Schima H, Weigel G. Electrospun polyurethane vascular grafts: in vitro mechanical behavior and endothelial adhesion molecule expression. J Biomed Mater Res A 2010;93:716-723.
    • (2010) J Biomed Mater Res A , vol.93 , pp. 716-723
    • Grasl, C.1    Bergmeister, H.2    Stoiber, M.3    Schima, H.4    Weigel, G.5
  • 24
    • 77955888028 scopus 로고    scopus 로고
    • A three-layered electrospun matrix to mimic native arterial architecture using polycaprolactone, elastin, and collagen: a preliminary study
    • McClure MJ, Sell SA, Simpson DG, Walpoth BH, Bowlin GL. A three-layered electrospun matrix to mimic native arterial architecture using polycaprolactone, elastin, and collagen: a preliminary study. Acta Biomater 2010;6:2422-2433.
    • (2010) Acta Biomater , vol.6 , pp. 2422-2433
    • McClure, M.J.1    Sell, S.A.2    Simpson, D.G.3    Walpoth, B.H.4    Bowlin, G.L.5
  • 25
    • 80755128478 scopus 로고    scopus 로고
    • Vascular wall engineering via femtosecond laser ablation: scaffolds with self-containing smooth muscle cell populations
    • Lee CH, Lim YC, Farson DF, Powell HM, Lannutti JJ. Vascular wall engineering via femtosecond laser ablation: scaffolds with self-containing smooth muscle cell populations. Ann Biomed Eng 2011;39:3031-3041.
    • (2011) Ann Biomed Eng , vol.39 , pp. 3031-3041
    • Lee, C.H.1    Lim, Y.C.2    Farson, D.F.3    Powell, H.M.4    Lannutti, J.J.5
  • 26
    • 0030111848 scopus 로고    scopus 로고
    • Small caliber vascular grafts. Part I: state of the art
    • Zdrahala RJ. Small caliber vascular grafts. Part I: state of the art. J Biomater Appl 1996;10:309-329.
    • (1996) J Biomater Appl , vol.10 , pp. 309-329
    • Zdrahala, R.J.1
  • 27
    • 14844314493 scopus 로고    scopus 로고
    • Artificial blood vessel: the Holy Grail of peripheral vascular surgery
    • Kakisis JD, Liapis CD, Breuer C, Sumpio BE. Artificial blood vessel: the Holy Grail of peripheral vascular surgery. J Vasc Surg 2005;41:349-354.
    • (2005) J Vasc Surg , vol.41 , pp. 349-354
    • Kakisis, J.D.1    Liapis, C.D.2    Breuer, C.3    Sumpio, B.E.4
  • 28
    • 0242363804 scopus 로고    scopus 로고
    • Functionalization of poly-(L-lactic-co-epsilon-caprolactone): effects of surface modification on endothelial cell proliferation and hemocompatibility [corrected]
    • Perego G, Preda P, Pasquinelli G, Curti T, Freyrie A, Cenni E. Functionalization of poly-(L-lactic-co-epsilon-caprolactone): effects of surface modification on endothelial cell proliferation and hemocompatibility [corrected]. J Biomater Sci Polym Ed 2003;14:1057-1075.
    • (2003) J Biomater Sci Polym Ed , vol.14 , pp. 1057-1075
    • Perego, G.1    Preda, P.2    Pasquinelli, G.3    Curti, T.4    Freyrie, A.5    Cenni, E.6
  • 29
    • 84865207552 scopus 로고    scopus 로고
    • Three-dimensional electrospun poly(Lactide-Co-ε-Caprolactone) for small-diameter vascular grafts
    • Cho Hay M, Youngmee J, Sang-Heon K, et al. Three-dimensional electrospun poly(Lactide-Co-ε-Caprolactone) for small-diameter vascular grafts. Tissue Eng 2012;18:1608-1616.
    • (2012) Tissue Eng , vol.18 , pp. 1608-1616
    • Cho Hay, M.1    Youngmee, J.2    Sang-Heon, K.3
  • 30
    • 84871056079 scopus 로고    scopus 로고
    • Fibroblast culture on poly(L-lactide-co-ε-caprolactone) an electrospun nanofiber sheet
    • Bong SJ, Youngmee J, Il Keun K, Cho Hay M, Soo Hyun K. Fibroblast culture on poly(L-lactide-co-ε-caprolactone) an electrospun nanofiber sheet. Macromol Res 2012;12:1234-1242.
    • (2012) Macromol Res , vol.12 , pp. 1234-1242
    • Bong, S.J.1    Youngmee, J.2    Il Keun, K.3    Cho Hay, M.4    Soo Hyun, K.5
  • 31
    • 75549092041 scopus 로고    scopus 로고
    • A small diameter elastic blood vessel wall prepared under pulsatile conditions from polyglycolic acid mesh and smooth muscle cells differentiated from adipose-derived stem cells
    • Wang C, Cen L, Yin S, et al. A small diameter elastic blood vessel wall prepared under pulsatile conditions from polyglycolic acid mesh and smooth muscle cells differentiated from adipose-derived stem cells. Biomaterials 2010;31:621-630.
    • (2010) Biomaterials , vol.31 , pp. 621-630
    • Wang, C.1    Cen, L.2    Yin, S.3
  • 32
    • 66849091760 scopus 로고    scopus 로고
    • Tubular nanofiber scaffolds for tissue engineered small-diameter vascular grafts
    • He W, Ma Z, Teo WE, et al. Tubular nanofiber scaffolds for tissue engineered small-diameter vascular grafts. J Biomed Mater Res A 2009;90:205-216.
    • (2009) J Biomed Mater Res A , vol.90 , pp. 205-216
    • He, W.1    Ma, Z.2    Teo, W.E.3
  • 33
    • 77956783166 scopus 로고    scopus 로고
    • How to optimize maturation in a bioreactor for vascular tissue engineering: focus on a decision algorithm for experimental planning
    • Couet F, Mantovani D. How to optimize maturation in a bioreactor for vascular tissue engineering: focus on a decision algorithm for experimental planning. Ann Biomed Eng 2010;38:2877-2884.
    • (2010) Ann Biomed Eng , vol.38 , pp. 2877-2884
    • Couet, F.1    Mantovani, D.2
  • 34
    • 62849120362 scopus 로고    scopus 로고
    • Bioreactor technology in cardiovascular tissue engineering
    • Mertsching H, Hansmann J. Bioreactor technology in cardiovascular tissue engineering. Adv Biochem Eng Biotechnol 2009;112:29-37.
    • (2009) Adv Biochem Eng Biotechnol , vol.112 , pp. 29-37
    • Mertsching, H.1    Hansmann, J.2
  • 35
    • 38349119961 scopus 로고    scopus 로고
    • Engineering of an elastic large muscular vessel wall with pulsatile stimulation in bioreactor
    • Xu ZC, Zhang WJ, Li H, et al. Engineering of an elastic large muscular vessel wall with pulsatile stimulation in bioreactor. Biomaterials 2008;29:1464-1472.
    • (2008) Biomaterials , vol.29 , pp. 1464-1472
    • Xu, Z.C.1    Zhang, W.J.2    Li, H.3
  • 36
    • 62849120362 scopus 로고    scopus 로고
    • Bioreactor technology in cardiovascular tissue engineering
    • Mertsching H, Hansmann J. Bioreactor technology in cardiovascular tissue engineering. Adv Biochem Eng Biotechnol 2008;12:29-37.
    • (2008) Adv Biochem Eng Biotechnol , vol.12 , pp. 29-37
    • Mertsching, H.1    Hansmann, J.2
  • 37
    • 67549142966 scopus 로고    scopus 로고
    • [Achievement and progress of dynamic culture conditions on the construction of engineered blood vessel substitutes]
    • Han Z, Kong H, Xu H. [Achievement and progress of dynamic culture conditions on the construction of engineered blood vessel substitutes]. Sheng Wu Yi Xue Gong Cheng Xue Za Zhi 2008;25:716-719.
    • (2008) Sheng Wu Yi Xue Gong Cheng Xue Za Zhi , vol.25 , pp. 716-719
    • Han, Z.1    Kong, H.2    Xu, H.3
  • 38
    • 33745043317 scopus 로고    scopus 로고
    • Cardiovascular tissue engineering I. Perfusion bioreactors: a review
    • Mironov V, Kasyanov VA, Yost MJ, et al. Cardiovascular tissue engineering I. Perfusion bioreactors: a review. J Long Term Eff Med Implants 2006;16:111-130.
    • (2006) J Long Term Eff Med Implants , vol.16 , pp. 111-130
    • Mironov, V.1    Kasyanov, V.A.2    Yost, M.J.3
  • 39
    • 33845918916 scopus 로고    scopus 로고
    • Advanced tools for tissue engineering: scaffolds, bioreactors, and signaling
    • Freed LE, Guilak F, Guo XE, et al. Advanced tools for tissue engineering: scaffolds, bioreactors, and signaling. Tissue Eng 2006;12:3285-3305.
    • (2006) Tissue Eng , vol.12 , pp. 3285-3305
    • Freed, L.E.1    Guilak, F.2    Guo, X.E.3
  • 40
    • 33644799626 scopus 로고    scopus 로고
    • Design of a perfusion bioreactor specific to the regeneration of vascular tissues under mechanical stresses
    • Bilodeau K, Couet F, Boccafoschi F, Mantovani D. Design of a perfusion bioreactor specific to the regeneration of vascular tissues under mechanical stresses. Artif Organs 2005;29:906-912.
    • (2005) Artif Organs , vol.29 , pp. 906-912
    • Bilodeau, K.1    Couet, F.2    Boccafoschi, F.3    Mantovani, D.4
  • 42
    • 62649152755 scopus 로고    scopus 로고
    • A new bioreactor for the development of tissue-engineered heart valves
    • Ruel J, Lachance G. A new bioreactor for the development of tissue-engineered heart valves. Ann Biomed Eng 2009;37:674-681.
    • (2009) Ann Biomed Eng , vol.37 , pp. 674-681
    • Ruel, J.1    Lachance, G.2
  • 43
    • 33750937779 scopus 로고    scopus 로고
    • Bioreactors for tissue engineering: focus on mechanical constraints. A comparative review
    • Bilodeau K, Mantovani D. Bioreactors for tissue engineering: focus on mechanical constraints. A comparative review. Tissue Eng 2006;12:2367-2383.
    • (2006) Tissue Eng , vol.12 , pp. 2367-2383
    • Bilodeau, K.1    Mantovani, D.2
  • 44
    • 81155150287 scopus 로고    scopus 로고
    • Gradient nanofibrous chitosan/poly varepsilon-caprolactone scaffolds as extracellular microenvironments for vascular tissue engineering
    • Du F, Wang H, Zhao W, et al. Gradient nanofibrous chitosan/poly varepsilon-caprolactone scaffolds as extracellular microenvironments for vascular tissue engineering. Biomaterials 2012;33:762-770.
    • (2012) Biomaterials , vol.33 , pp. 762-770
    • Du, F.1    Wang, H.2    Zhao, W.3
  • 45
    • 84855992820 scopus 로고    scopus 로고
    • Electrospun small-diameter polyurethane vascular grafts: ingrowth and differentiation of vascular-specific host cells
    • Bergmeister H, Grasl C, Walter I, et al. Electrospun small-diameter polyurethane vascular grafts: ingrowth and differentiation of vascular-specific host cells. Artif Organs 2011;36:54-61.
    • (2011) Artif Organs , vol.36 , pp. 54-61
    • Bergmeister, H.1    Grasl, C.2    Walter, I.3
  • 46
    • 79551509709 scopus 로고    scopus 로고
    • Dynamic culturing of smooth muscle cells in tubular poly(trimethylene carbonate) scaffolds for vascular tissue engineering
    • Song Y, Wennink JW, Kamphuis MM, et al. Dynamic culturing of smooth muscle cells in tubular poly(trimethylene carbonate) scaffolds for vascular tissue engineering. Tissue Eng Part A 2011;17:381-387.
    • (2011) Tissue Eng Part A , vol.17 , pp. 381-387
    • Song, Y.1    Wennink, J.W.2    Kamphuis, M.M.3
  • 47
    • 78651393093 scopus 로고    scopus 로고
    • Effects of shear forces and pressure on blood vessel function and metabolism in a perfusion bioreactor
    • Hoenicka M, Wiedemann L, Puehler T, Hirt S, Birnbaum DE, Schmid C. Effects of shear forces and pressure on blood vessel function and metabolism in a perfusion bioreactor. Ann Biomed Eng 2010;38:3706-3723.
    • (2010) Ann Biomed Eng , vol.38 , pp. 3706-3723
    • Hoenicka, M.1    Wiedemann, L.2    Puehler, T.3    Hirt, S.4    Birnbaum, D.E.5    Schmid, C.6


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.