Amniotic membrane as novel scaffold for human iPSC-derived cardiomyogenesis

被引:14
作者
Parveen, Shagufta [1 ]
Singh, Shishu Pal [2 ]
Panicker, M. M. [2 ]
Gupta, Pawan Kumar [3 ]
机构
[1] Manipal Acad Higher Educ, Sch Regenerat Med, GKVK Post,Bellary Rd, Bengaluru 560065, Karnataka, India
[2] TIFR, Natl Ctr Biol Sci, Bangalore, Karnataka, India
[3] Stempeut Res Pvt Ltd, Bangalore, Karnataka, India
关键词
Placental induced pluripotent stem cells; Human amniotic membrane; hiPSC-derived cardiomyocytes; Improved cardiomyogenesis; hAM cardiac sheets; HEART FUNCTION; CELL SHEETS; CARDIOMYOCYTES; MATURATION; SURVIVAL; THERAPY; MODEL;
D O I
10.1007/s11626-019-00321-y
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Recent approaches of using decellularized organ matrices for cardiac tissue engineering prompted us to culture human-induced pluripotent stem cell (hiPSC)-derived cardiomyocytes (CMs) on the human amniotic membrane (hAM). Since hAM has been used lately to patch diseased hearts in patients and has shown anti-inflammatory and anti-fibrotic benefits, it qualifies as a cardiac compatible and clinically relevant heart tissue scaffold. The aim of this study was to test the ability of the hAM to support attachment, differentiation, and maturation of hiPSC-derived CMs in vitro. hAMs were prepared from term placenta. An in-house generated hiPSC line was used for CM derivation. hiPSC-derived cardiac progenitors were cultured on the surface of cryopreserved hAMs and in the presence of cytokines promoting cardiac differentiation. CMs grown on hAM and popular basement membrane matrix (BMM) Matrigel were compared for the following aspects of cardiac development: the morphology of cardiomyocytes with respect to shape and cellular alignments, levels of cardiac-related gene transcript expression, functionality in terms of spontaneous calcium fluxes and mitochondrial densities and distributions. hAM is biocompatible with hiPSC-derived CMs. hAM increased cardiac transcription regulator and myofibril protein transcript expression, accelerated intracellular calcium transients, and enhanced cellular mitochondrial complexity of its cardiomyocytes in comparison to cardiomyocytes differentiated on Matrigel. Our data suggests that hAM supports differentiation and improves cardiomyogenesis in comparison to Matrigel. hAMs are natural, easily and largely available. The method of preparing hAM cardiac sheets described here is simple with potential for clinical transplantation.
引用
收藏
页码:272 / 284
页数:13
相关论文
共 56 条
[21]   Mechanistic basis of excitation-contraction coupling in human pluripotent stem cell-derived ventricular cardiomyocytes revealed by Ca2+ spark characteristics: Direct evidence of functional Ca2+ -induced Ca2+ release [J].
Li, Sen ;
Cheng, Heping ;
Tomaselli, Gordon F. ;
Li, Ronald A. .
HEART RHYTHM, 2014, 11 (01) :133-140
[22]  
Lim J.J., 2017, J CARDIOL CARDIOVASC, V2, P2
[23]   The tumourigenicity of iPS cells and their differentiated derivates [J].
Liu, Zhiqiang ;
Tang, Yu ;
Lu, Shuanghong ;
Zhou, Jin ;
Du, Zhiyan ;
Duan, Cuimi ;
Li, Zhiyan ;
Wang, Changyong .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2013, 17 (06) :782-791
[24]   Repopulation of decellularized mouse heart with human induced pluripotent stem cell-derived cardiovascular progenitor cells [J].
Lu, Tung-Ying ;
Lin, Bo ;
Kim, Jong ;
Sullivan, Mara ;
Tobita, Kimimasa ;
Salama, Guy ;
Yang, Lei .
NATURE COMMUNICATIONS, 2013, 4
[25]   Anti-inflammatory properties of amniotic membrane patch following pericardiectomy for constrictive pericarditis [J].
Marsh, Katherine M. ;
Ferng, Alice S. ;
Pilikian, Tia ;
Desai, Ankit A. ;
Avery, Ryan ;
Friedman, Mark ;
Oliva, Isabel ;
Jokerst, Clint ;
Schipper, David ;
Khalpey, Zain .
JOURNAL OF CARDIOTHORACIC SURGERY, 2017, 12
[26]   Human iPS cell-engineered cardiac tissue sheets with cardiomyocytes and vascular cells for cardiac regeneration [J].
Masumoto, Hidetoshi ;
Ikuno, Takeshi ;
Takeda, Masafumi ;
Fukushima, Hiroyuki ;
Marui, Akira ;
Katayama, Shiori ;
Shimizu, Tatsuya ;
Ikeda, Tadashi ;
Okano, Teruo ;
Sakata, Ryuzo ;
Yamashita, Jun K. .
SCIENTIFIC REPORTS, 2014, 4
[27]   Pluripotent Stem Cell-Engineered Cell Sheets Reassembled with Defined Cardiovascular Populations Ameliorate Reduction in Infarct Heart Function Through Cardiomyocyte-Mediated Neovascularization [J].
Masumoto, Hidetoshi ;
Matsuo, Takehiko ;
Yamamizu, Kohei ;
Uosaki, Hideki ;
Narazaki, Genta ;
Katayama, Shiori ;
Marui, Akira ;
Shimizu, Tatsuya ;
Ikeda, Tadashi ;
Okano, Teruo ;
Sakata, Ryuzo ;
Yamashita, Jun K. .
STEM CELLS, 2012, 30 (06) :1196-1205
[28]   Phase I Clinical Trial of Autologous Stem Cell-Sheet Transplantation Therapy for Treating Cardiomyopathy [J].
Miyagawa, Shigeru ;
Domae, Keitaro ;
Yoshikawa, Yasushi ;
Fukushima, Satsuki ;
Nakamura, Teruya ;
Saito, Atsuhiro ;
Sakata, Yasushi ;
Hamada, Seiki ;
Toda, Koichi ;
Pak, Kyongsun ;
Takeuchi, Masahiro ;
Sawa, Yoshiki .
JOURNAL OF THE AMERICAN HEART ASSOCIATION, 2017, 6 (04)
[29]  
Mohseni R., 2014, J STEM CELL RES THER, V04, DOI 10.4172/2157-7633.1000212
[30]   Amniotic membrane is a potential regenerative option for chronic non-healing wounds: a report of five cases receiving dehydrated human amnion/chorion membrane allograft [J].
Mrugala, Andrew ;
Sui, Audrey ;
Plummer, Malgorzata ;
Altman, Igor ;
Papineau, Elaine ;
Frandsen, Devn ;
Hill, Danielle ;
Ennis, William J. .
INTERNATIONAL WOUND JOURNAL, 2016, 13 (04) :485-492