The future of heart valve replacement: recent developments and translational challenges for heart valve tissue engineering

被引:62
|
作者
Fioretta, Emanuela S. [1 ]
Dijkman, Petra E. [1 ]
Emmert, Maximilian Y. [1 ,2 ,3 ]
Hoerstrup, Simon P. [1 ,3 ,4 ]
机构
[1] Univ Zurich, Inst Regenerat Med IREM, Moussonstr 13, CH-8044 Zurich, Switzerland
[2] Univ Hosp Zurich, Heart Ctr Zurich, Zurich, Switzerland
[3] Wyss Translat Ctr Zurich, Zurich, Switzerland
[4] Eindhoven Univ Technol, Dept Biomed Engn, Eindhoven, Netherlands
关键词
heart valve tissue engineering; biomaterials; scaffold; minimally invasive transcatheter implantation; transcatheter aortic valve implantation; in situ; immune response; valve replacements; DECELLULARIZED PULMONARY HOMOGRAFT; VENTRICULAR OUTFLOW TRACT; CRYOPRESERVED AORTIC HOMOGRAFT; EXTRACELLULAR-MATRIX CORMATRIX; VASCULAR GRAFTS; IN-VITRO; TRANSCATHETER IMPLANTATION; ASSIST DEVICE; STEM-CELLS; CLINICAL-EXPERIENCE;
D O I
10.1002/term.2326
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Heart valve replacement is often the only solution for patients suffering from valvular heart disease. However, currently available valve replacements require either life-long anticoagulation or are associated with valve degeneration and calcification. Moreover, they are suboptimal for young patients, because they do not adapt to the somatic growth. Tissue-engineering has been proposed as a promising approach to fulfil the urgent need for heart valve replacements with regenerative and growth capacity. This review will start with an overview on the currently available valve substitutes and the techniques for heart valve replacement. The main focus will be on the evolution of and different approaches for heart valve tissue engineering, namely the in vitro, in vivo and in situ approaches. More specifically, several heart valve tissue-engineering studies will be discussed with regard to their shortcomings or successes and their possible suitability for novel minimally invasive implantation techniques. As in situ heart valve tissue engineering based on cell-free functionalized starter materials is considered to be a promising approach for clinical translation, this review will also analyse the techniques used to tune the inflammatory response and cell recruitment upon implantation in order to stir a favourable outcome: controlling the blood-material interface, regulating the cytokine release, and influencing cell adhesion and differentiation. In the last section, the authors provide their opinion about the future developments and the challenges towards clinical translation and adaptation of heart valve tissue engineering for valve replacement. Copyright (c) 2016 John Wiley & Sons, Ltd.
引用
下载
收藏
页码:E323 / E335
页数:13
相关论文
共 50 条
  • [21] HEART VALVE REPLACEMENT
    LOOGEN, F
    ZEITSCHRIFT FUR KREISLAUFFORSCHUNG, 1970, 59 (07): : 646 - &
  • [22] Tissue engineering heart valves: Valve leaflet replacement study in a lamb model
    Shinoka, T
    Breuer, CK
    Tanel, RE
    Zund, G
    Miura, T
    Ma, PX
    Langer, R
    Vacanti, JP
    Mayer, JE
    ANNALS OF THORACIC SURGERY, 1995, 60 (06): : S513 - S516
  • [23] Micro and nanotechnologies in heart valve tissue engineering
    Hasan, Anwarul
    Saliba, John
    Modarres, Hassan Pezeshgi
    Bakhaty, Ahmed
    Nasajpour, Amir
    Mofrad, Mohammad R. K.
    Sanati-Nezhad, Amir
    BIOMATERIALS, 2016, 103 : 278 - 292
  • [24] Current Status of Tissue Engineering Heart Valve
    Shinoka, Toshiharu
    Miyachi, Hideki
    WORLD JOURNAL FOR PEDIATRIC AND CONGENITAL HEART SURGERY, 2016, 7 (06) : 677 - 684
  • [25] Will heart valve tissue engineering change the world?
    M H Yacoub
    J J M Takkenberg
    Nature Clinical Practice Cardiovascular Medicine, 2005, 2 : 60 - 61
  • [26] Tissue engineering lamb heart valve leaflets
    Breuer, CK
    Shinoka, T
    Tanel, RE
    Zund, G
    Mooney, DJ
    Ma, PX
    Miura, T
    Colan, S
    Langer, R
    Mayer, JE
    Vacanti, JP
    BIOTECHNOLOGY AND BIOENGINEERING, 1996, 50 (05) : 562 - 567
  • [27] Heart valve tissue engineering: quo vadis?
    Schoen, Frederick J.
    CURRENT OPINION IN BIOTECHNOLOGY, 2011, 22 (05) : 698 - 705
  • [28] Will heart valve tissue engineering change the world?
    Yacoub, N
    Takkenberg, J
    NATURE CLINICAL PRACTICE CARDIOVASCULAR MEDICINE, 2005, 2 (02): : 60 - 61
  • [29] A new approach to heart valve tissue engineering
    Flameng, W
    INTERNATIONAL JOURNAL OF CARDIOLOGY, 2004, 95 : S55 - S56
  • [30] Bioreactors for heart valve tissue engineering: a review
    Amrollahi, Pouya
    Tayebi, Lobat
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2016, 91 (04) : 847 - 856