1887
Volume 2017, Issue 3
  • E-ISSN: 2223-506X

ملخص

The steady increase in the number of patients with diseased aortic valves demands the development of effective aortic valve replacement procedures. Engineering and technology offer various manufactured alternatives, but none can exactly match the natural human valve. In addition to the experts of heart valve tissue engineering, many researchers focus on specific aspects of the manufacturing of artificial valves. The aim of this study was to benefit such manufacturing processes. From the contributor's perspective, it is vital to gain comprehensive knowledge before embarking on this project. The perfect/optimal shape of the valve is the fundamental aspect that needs to be considered by all participants. It is noteworthy that the geometry not only limits the functionality of the structure but also determines the choice of material and engineering methods. In this study, we attempt to determine if current knowledge is sufficient to reach consensus on the issue of the optimum shape of the valve. Here, we not only provide a brief overview of traditional literature but also include the opinions of experts. This innovative way of scientific communication is unprecedented in scientific literature, and we hope that both professionals and contributors will find this study useful.

Loading

جارٍ تحميل قياسات المقالة...

/content/journals/10.5339/connect.2017.1
٢٠١٧-١١-٠٢
٢٠٢٤-٠٩-٠١
Loading full text...

Full text loading...

/deliver/fulltext/connect/2017/3/connect.2017.1.html?itemId=/content/journals/10.5339/connect.2017.1&mimeType=html&fmt=ahah

References

  1. CardioPulse Articles. Eur Heart J. 2015 Feb 7; 36:6:325332.
    [Google الباحث العلمي]
  2. Hoerstrup SP, Weber B. Biological heart valves. Eur Heart J. 2015 Feb; 36:6:325326.
    [Google الباحث العلمي]
  3. DeWall RA, Qasim N, Carr L. Evolution of mechanical heart valves. Ann Thorac Surg. 2000 May; 69:5:16121621.
    [Google الباحث العلمي]
  4. Delmo Walter EM, de By TMMH, Meyer R, Hetzer R. The future of heart valve banking and of homografts: perspective from the Deutsches Herzzentrum Berlin. HSR Proc Intensive Care Cardiovasc Anesth. 2012; 4:2:97108.
    [Google الباحث العلمي]
  5. Kluin J, Talacua H, Smits AIPM, Emmert MY, Brugmans MCP, Fioretta ES, et al.  In situ heart valve tissue engineering using a bioresorbable elastomeric implant – From material design to 12 months follow-up in sheep. Biomaterials. 2017 May; 125::101117.
    [Google الباحث العلمي]
  6. Yacoub MH, Takkenberg JJM. Will heart valve tissue engineering change the world? Nat Clin Pract Cardiovasc Med. 2005 Feb; 2:2:6061.
    [Google الباحث العلمي]
  7. Cribier A. Development of transcatheter aortic valve implantation (TAVI): A 20-year odyssey. Arch Cardiovasc Dis. 2012 Mar; 105:3:146152.
    [Google الباحث العلمي]
  8. Paniagua D, Condado JA, Besso J, Vélez M, Burger B, Bibbo S, et al.  First human case of retrograde transcatheter implantation of an aortic valve prosthesis. Tex Heart Inst J. 2005; 32:3:393398.
    [Google الباحث العلمي]
  9. Webb JG, Chandavimol M, Thompson CR, Ricci DR, Carere RG, Munt BI, et al.  Percutaneous aortic valve implantation retrograde from the femoral artery. Circulation. 2006 Feb 14; 113:6:842850.
    [Google الباحث العلمي]
  10. Vesely I. Heart valve tissue engineering. Circ Res. 2005 Oct 14; 97:8:743755.
    [Google الباحث العلمي]
  11. Loerakker S, Argento G, Oomens CWJ, Baaijens FPT. Effects of valve geometry and tissue anisotropy on the radial stretch and coaptation area of tissue-engineered heart valves. J Biomech. 2013 Jul 26; 46:11:17921800.
    [Google الباحث العلمي]
  12. Liberski AR, Kot R. On the way to the optimal design of an aortic heart valve -or- discovering the obvious? Qatar Found Annu Res Conf Proc. 2016 Mar 1; 2016:1:HBPP3190.
    [Google الباحث العلمي]
  13. Hsu M-C, Kamensky D, Bazilevs Y, Sacks MS, Hughes TJR. Fluid–structure interaction analysis of bioprosthetic heart valves: Significance of arterial wall deformation. Comput Mech. 2014 Oct; 54:4:10551071.
    [Google الباحث العلمي]
  14. Griffith BE, Luo X, McQueen DM, Peskin CS. Simulating the fluid dynamics of natural and prosthetic heart valves using the immersed boundary method. Int J Appl Mech. 2009 Mar; 1:1:137177.
    [Google الباحث العلمي]
  15. Weinberg EJ, Kaazempur Mofrad MR. A multiscale computational comparison of the bicuspid and tricuspid aortic valves in relation to calcific aortic stenosis. J Biomech. 2008 Dec 5; 41:16:34823487.
    [Google الباحث العلمي]
  16. Leipsic J, Gurvitch R, LaBounty TM, Min JK, Wood D, Johnson M, et al.  Multidetector computed tomography in transcatheter aortic valve implantation. JACC Cardiovasc Imaging. 2011 Apr; 4:4:416429.
    [Google الباحث العلمي]
  17. Driessen NJ, Boerboom RA, Huyghe JM, Bouten CV, Baaijens FP. Computational analyses of mechanically induced collagen fiber remodeling in the aortic heart valve. J Biomech Eng. 2003 Aug; 125:4:549557.
    [Google الباحث العلمي]
  18. Liberski AR. 3D printing assisted prototyping of anatomically accurate aortic valve alginate scaffolds. Qatar Found Annu Res Conf Proc. 2016 Mar 1; 2016:1:HBPP1374.
    [Google الباحث العلمي]
  19. Goldmann H, Merckle C, Sievers H-H. Woven aortic sinus prosthesis having a bulb [Internet]. US20100094390 A1, 2010 [cited 2017 May 6]. Available from: http://www.google.tl/patents/US20100094390 .
  20. Liberski A, Latif N, Raynaud C, Bollensdorff C, Yacoub M. Alginate for cardiac regeneration: From seaweed to clinical trials. Glob Cardiol Sci Pract [Internet]. 2016 Jun 6 [cited 2017 May 7];2016(1). Available from: https://globalcardiologyscienceandpractice.com/index.php/gcsp/article/view/6 .
  21. Yacoub MH. In search of living valve substitutes. J Am Coll Cardiol. 2015 Aug 25; 66:8:889891.
    [Google الباحث العلمي]
  22. Hasan A, Ragaert K, Swieszkowski W, Selimović S, Paul A, Camci-Unal G, et al., Biomechanical properties of native and tissue engineered heart valve constructs. J Biomech. 2014 Jun 27; 47:9:19491963.
    [Google الباحث العلمي]
  23. Mallone A, Weber B, Hoerstrup SP. Approaches and recent advances in heart valve tissue engineering. In: Hasan A, ed. Tissue Engineering for Artificial Organs [Internet]. Wiley-VCH Verlag GmbH & Co. KGaA 2017;:445463. [cited 2017 May 6]. Available from: http://onlinelibrary.wiley.com/doi/10.1002/9783527689934.ch14/summary .
    [Google الباحث العلمي]
  24. Hinton RB. Advances in the treatment of aortic valve disease: Is it time for companion diagnostics? Curr Opin Pediatr. 2014 Oct; 26:5:546552.
    [Google الباحث العلمي]
  25. Cox MAJ, Kortsmit J, Driessen N, Bouten CVC, Baaijens FPT. Tissue-engineered heart valves develop native-like collagen fiber architecture. Tissue Eng Part A. 2010 May; 16:5:15271537.
    [Google الباحث العلمي]
  26. Thubrikar MJ. The Aortic Valve. 1st Ed. Boca Raton, FL: CRC Press 1989:p.232.
    [Google الباحث العلمي]
  27. Hamid MS, Sabbah HN, Stein PD. Influence of stent height upon stresses on the cusps of closed bioprosthetic valves. J Biomech. 1986 Jan 1; 19:9:759769.
    [Google الباحث العلمي]
  28. Fan R, Bayoumi AS, Chen P, Hobson CM, Wagner WR, Mayer JE, et al.  Optimal elastomeric scaffold leaflet shape for pulmonary heart valve leaflet replacement. J Biomech. 2013 Feb 22; 46:4:662669.
    [Google الباحث العلمي]
  29. Mavrilas D, Apostolakis E, Koutsoukos P. Prosthetic Aortic Valves: A Surgical and Bioengineering Approach 2011 [cited 2017 May 7]. Available from: http://www.intechopen.com/books/aortic-valve-surgery/prosthetic-aortic-valves-a-surgical-and-bioengineering-approach .
  30. Liberski AR, Raynaud CM, Ayad N, Wojciechowska D, Sathappan A. Valve tissue engineering with living absorbable threads. Macromol Biosci. 2017; 17:5:1600196.
    [Google الباحث العلمي]
  31. Liberski A, Ayad N, Wojciechowska D, Zielinska D, Struszczyk MH, Latif N, et al. Knitting for heart valve tissue engineering, Glob Cardiol Sci Pract [Internet]. 2016 Dec 7 [cited 2017 May 7];2016(3). Available from: https://globalcardiologyscienceandpractice.com/index.php/gcsp/article/view/33 .
  32. Swanson M, Clark RE. Dimensions and geometric relationships of the human aortic valve as a function of pressure. Circ Res. 1974 Dec; 35:6:871882.
    [Google الباحث العلمي]
  33. Robicsek F. Leonardo da Vinci and the sinuses of Valsalva. Ann Thorac Surg. 1991 Aug; 52:2:328335.
    [Google الباحث العلمي]
  34. Khelil N, Sleilaty G, Palladino M, Fouda M, Escande R, Debauchez M, et al.  Surgical anatomy of the aortic annulus: landmarks for external annuloplasty in aortic valve repair. Ann Thorac Surg. 2015 Apr; 99:4:12201226.
    [Google الباحث العلمي]
  35. Marom G, Halevi R, Haj-Ali R, Rosenfeld M, Schäfers H-J, Raanani E. Numerical model of the aortic root and valve: Optimization of graft size and sinotubular junction to annulus ratio. J Thorac Cardiovasc Surg. 2013 Nov; 146:5:12271231.
    [Google الباحث العلمي]
  36. Schäfers H-J, Bierbach B, Aicher D. A new approach to the assessment of aortic cusp geometry. J Thorac Cardiovasc Surg. 2006 Aug; 132:2:436438.
    [Google الباحث العلمي]
  37. Marom G, Haj-Ali R, Rosenfeld M, Schäfers HJ, Raanani E. Aortic root numeric model: Annulus diameter prediction of effective height and coaptation in post-aortic valve repair. J Thorac Cardiovasc Surg. 2013 Feb 1; 145:2:406411.e1.
    [Google الباحث العلمي]
  38. van Geemen D, Soares ALF, Oomen PJA, Driessen-Mol A, Janssen-van den Broek MWJT, van den Bogaerdt AJ, et al.  Age-dependent changes in geometry, tissue composition and mechanical properties of fetal to adult cryopreserved human heart valves. PloS One. 2016; 11:2:e0149020.
    [Google الباحث العلمي]
  39. Tops LF, Wood DA, Delgado V, Schuijf JD, Mayo JR, Pasupati S, et al.  Noninvasive evaluation of the aortic root with multislice computed tomography implications for transcatheter aortic valve replacement. JACC Cardiovasc Imaging. 2008 May; 1:3:321330.
    [Google الباحث العلمي]
  40. Ng ACT, Delgado V, van der Kley F, Shanks M, van de Veire NRL, Bertini M, et al.  Comparison of aortic root dimensions and geometries before and after transcatheter aortic valve implantation by 2- and 3-dimensional transesophageal echocardiography and multislice computed tomography. Circ Cardiovasc Imaging. 2010 Jan; 3:1:94102.
    [Google الباحث العلمي]
  41. Dawidowska K. Aortic valve geometry modeling – review. Adv Mater Sci. 2016; 16:4:2937.
    [Google الباحث العلمي]
  42. Chester AH, El-Hamamsy I, Butcher JT, Latif N, Bertazzo S, Yacoub MH. The living aortic valve: From molecules to function. Glob Cardiol Sci Pract. 2014 Jan 29; 2014:1:5277.
    [Google الباحث العلمي]
  43. Thapliyal HV. Personalized aortic valve prosthesis [Internet]. US20140330367 A1, 2014 [cited 2017 May 6]. Available from: http://www.google.ch/patents/US20140330367 .
  44. Treasure T. A ‘compare and contrast’ exercise: Wrapping versus personalised external aortic root support (PEARS). J Cardiothorac Surg. 2016 Jul 12; 11:1:104.
    [Google الباحث العلمي]
  45. Treasure T. Personalized external aortic root support. Tex Heart Inst J. 2013; 40:5:549552.
    [Google الباحث العلمي]
  46. Liberski AR, Sathappan A, Somasundaram SJJ, Jarocinski W. A knitted/non-woven composite polycaprolactone scaffold for tissue engineering of the aortic valve. Qatar Found Annu Res Conf Proc. 2016 Mar 1; 2016:1:HBPP1473.
    [Google الباحث العلمي]
  47. Liberski A, Wojciechowska D. Engineering of highly resemblent heart valve leaflet structures fabricated from PET fibres, using 3D knitting method. 2016 [cited 2017 May 6]. Available from: https://doi.org/10.13140/RG.2.2.35359.56488 .
/content/journals/10.5339/connect.2017.1
Loading
/content/journals/10.5339/connect.2017.1
Loading

جارٍ تحميل البيانات والوسائط...

  • نوع المستند: Research Article
الموضوعات الرئيسية Optimal heart valve geometrysmart scaffoldstissue engineering and valve prosthesis
هذه الخانة مطلوبة
يُرجى إدخال عنوان بريد إلكتروني صالح
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error