In vitro culture of isolated primary hepatocytes and stem cell-derived hepatocyte-like cells for liver regeneration

Chenxia Hu, Lanjuan Li

PDF(499 KB)
PDF(499 KB)
Protein Cell ›› 2015, Vol. 6 ›› Issue (8) : 562-574. DOI: 10.1007/s13238-015-0180-2
REVIEW
REVIEW

In vitro culture of isolated primary hepatocytes and stem cell-derived hepatocyte-like cells for liver regeneration

Author information +
History +

Abstract

Various liver diseases result in terminal hepatic failure, and liver transplantation, cell transplantation and artificial liver support systems are emerging as effective therapies for severe hepatic disease. However, all of these treatments are limited by organ or cell resources, so developing a sufficient number of functional hepatocytes for liver regeneration is a priority. Liver regeneration is a complex process regulated by growth factors (GFs), cytokines, transcription factors (TFs), hormones, oxidative stress products, metabolic networks, and microRNA. It is well-known that the function of isolated primary hepatocytes is hard to maintain; when cultured in vitro, these cells readily undergo dedifferentiation, causing them to lose hepatocyte function. For this reason, most studies focus on inducing stem cells, such as embryonic stem cells (ESCs), induced pluripotent stem cells (iPSCs), hepatic progenitor cells (HPCs), and mesenchymal stem cells (MSCs), to differentiate into hepatocyte-like cells (HLCs) in vitro. In this review, we mainly focus on the nature of the liver regeneration process and discuss how to maintain and enhance in vitro hepatic functionof isolated primary hepatocytes or stem cell-derived HLCs for liver regeneration. In this way, hepatocytes or HLCs may be applied for clinical use for the treatment of terminal liver diseases and may prolong the survival time of patients in the near future.

Keywords

liver regeneration / primary hepatocyte / stem cell / hepatocyte-like cell / in vitro culture

Cite this article

Download citation ▾
Chenxia Hu, Lanjuan Li. In vitro culture of isolated primary hepatocytes and stem cell-derived hepatocyte-like cells for liver regeneration. Protein Cell, 2015, 6(8): 562‒574 https://doi.org/10.1007/s13238-015-0180-2

References

[1]
Amimoto N, Mizumoto H, Nakazawa K, Ijima H, Funatsu K, Kajiwara T (2011) Hepatic differentiation of mouse embryonic stem cells and induced pluripotent stem cells during organoid formation in hollow fibers. Tissue Eng Part A 17: 2071-2078
CrossRef Google scholar
[2]
Ayatollahi M, Soleimani M, Tabei SZ, Salmani MK (2011) Hepatogenic differentiation of mesenchymal stem cells induced by insulin like growth factor-I. World J Stem Cells 3: 113-121
CrossRef Google scholar
[3]
Berardis S, Lombard C, Evraerts J, El Taghdouini A, Rosseels V, Sancho-Bru P, Lozano JJ, van Grunsven L, Sokal E, Najimi M (2014) Gene expression profiling and secretome analysis differentiate adult-derived human liver stem/progenitor cells and human hepatic stellate cells. PLoS One 9: e86137
CrossRef Google scholar
[4]
Chan KM, Fu YH, Wu TJ, Hsu PY, Lee WC (2013) Hepatic stellate cells promote the differentiation of embryonic stem cell-derived definitive endodermal cells into hepatic progenitor cells. Hepatol Res 43: 648-657
CrossRef Google scholar
[5]
Chen Y, Dong XJ, Zhang GR, Shao JZ, Xiang LX (2007) In vitro differentiation of mouse bone marrow stromal stem cells into hepatocytes induced by conditioned culture medium of hepatocytes. J Cell Biochem 102: 52-63
CrossRef Google scholar
[6]
Chen YF, Tseng CY, Wang HW, Kuo HC, Yang VW, Lee OK (2012) Rapid generation of mature hepatocyte-like cells from human induced pluripotent stem cells by an efficient three-step protocol. Hepatology (Baltimore, Md.) 55: 1193-1203
CrossRef Google scholar
[7]
Chiang CH, Wu WW, Li HY, Chien Y, Sun CC, Peng CH, Lin AT, Huang CS, Lai YH, Chiou SH (2015) Enhanced antioxidant capacity of dental pulp-derived iPSC-differentiated hepatocytes and liver regeneration by injectable HGF-releasing hydrogel in fulminant hepatic failure. Cell Transplant 24: 541
CrossRef Google scholar
[8]
Chien Y, Chang YL, Li HY, Larsson M, Wu WW, Chien CS, Wang CY, Chu PY, Chen KH, Lo WL (2015) Synergistic effects of carboxymethyl-hexanoyl chitosan, cationic polyurethaneshort branch PEI in miR122 gene delivery: accelerated differentiation of iPSCs into mature hepatocyte-like cells and improved stem cell therapy in a hepatic failure model. Acta Biomater 13: 228-244
CrossRef Google scholar
[9]
Chivu M, Dima SO, Stancu CI, Dobrea C, Uscatescu V, Necula LG, Bleotu C, Tanase C, Albulescu R, Ardeleanu C (2009) In vitro hepatic differentiation of human bone marrow mesenchymal stem cells under differential exposure to liver-specific factors. Transl Res 154: 122-132
CrossRef Google scholar
[10]
Cho CH, Berthiaume F, Tilles AW, Yarmush ML (2008) A new technique for primary hepatocyte expansion in vitro. Biotechnol Bioeng 101: 345-356
CrossRef Google scholar
[11]
Christ B, Dollinger MM (2011) The generation of hepatocytes from mesenchymal stem cells and engraftment into the liver. Curr Opin Organ Transplant 16: 69-75
CrossRef Google scholar
[12]
Cornell RP, Liljequist BL, Bartizal KF (1990) Depressed liver regeneration after partial hepatectomy of germ-free, athymic and lipopolysaccharide-resistant mice. Hepatology (Baltimore, Md.) 11: 916-922
CrossRef Google scholar
[13]
Crosby HA, Hubscher S, Fabris L, Joplin R, Sell S, Kelly D, Strain AJ (1998) Immunolocalization of putative human liver progenitor cells in livers from patients with end-stage primary biliary cirrhosis and sclerosing cholangitis using the monoclonal antibody OV-6. Am J Pathol 152: 771-779
[14]
Czekaj P, Bryzek A, Czekaj TM, Koryciak-Komarska H, Wiaderkiewicz A, Plewka D, Sieron AL (2010) Cytochrome P450 mRNA expressions along with in vitro differentiation of hepatocyte precursor cells from fetal, young and old rats. Folia Histochem Cytobiol 48: 46-57
CrossRef Google scholar
[15]
da No Y, Lee SA, Choi YY, Park D, Jang JY, Kim DS, Lee SH (2012) Functional 3D human primary hepatocyte spheroids made by coculturing hepatocytes from partial hepatectomy specimens and human adipose-derived stem cells. PLoS One 7: e50723
CrossRef Google scholar
[16]
DeAngelis RA, Markiewski MM, Kourtzelis I, Rafail S, Syriga M, Sandor A, Maurya MR, Gupta S, Subramaniam S, Lambris JD (2012) A complement-IL-4 regulatory circuit controls liver regeneration. J Immunol 188: 641-648
CrossRef Google scholar
[17]
Delgado I, Fresnedo O, Iglesias A, Rueda Y, Syn WK, Zubiaga AM, Ochoa B (2011) A role for transcription factor E2F2 in hepatocyte proliferation and timely liver regeneration. Am J Physiol Gastrointest Liver Physiol 301: G20-31
CrossRef Google scholar
[18]
Deng X, Chen YX, Zhang X, Zhang JP, Yin C, Yue HY, Lin Y, Han ZG, Xie WF (2008) Hepatic stellate cells modulate the differentiation of bone marrow mesenchymal stem cells into hepatocytelike cells. J Cell Physiol 217: 138-144
CrossRef Google scholar
[19]
Deng X, Li W, Chen N, Sun Y, Wei H, Jiang Y, He F (2009) Exploring the priming mechanism of liver regeneration: proteins and protein complexes. Proteomics 9: 2202-2216
CrossRef Google scholar
[20]
Du C, Narayanan K, Leong MF, Wan AC (2014) Induced pluripotent stem cell-derived hepatocytes and endothelial cells in multicomponent hydrogel fibers for liver tissue engineering. Biomaterials 35: 6006-6014
CrossRef Google scholar
[21]
Duan BW, Lu SC, Wang ML, Liu JN, Chi P, Lai W, Wu JS, Guo QL, Lin DD, Liu Y (2013) Liver transplantation in acute-onchronic liver failure patients with high model for end-stage liver disease (MELD) scores: a single center experience of 100 consecutive cases. J Surg Res 183: 936-943
CrossRef Google scholar
[22]
Farber E (1956) Similarities in the sequence of early histological changes induced in the liver of the rat by ethionine, 2-acetylamino- fluorene, and 3’-methyl-4-dimethylaminoazobenzene. Cancer Res 16: 142-148
[23]
Farzaneh Z, Pakzad M, Vosough M, Pournasr B, Baharvand H (2014) Differentiation of human embryonic stem cells to hepatocyte-like cells on a new developed xeno-free extracellular matrix. Histochem Cell Biol 142: 217-226
CrossRef Google scholar
[24]
Fujiyoshi M, Ozaki M (2011) Molecular mechanisms of liver regeneration and protection for treatment of liver dysfunction and diseases. J Hepato-Biliary-Pancreatic Sci 18: 13-22
CrossRef Google scholar
[25]
Funakoshi N, Duret C, Pascussi JM, Blanc P, Maurel P, Daujat-Chavanieu M, Gerbal-Chaloin S (2011) Comparison of hepaticlike cell production from human embryonic stem cells and adult liver progenitor cells: CAR transduction activates a battery of detoxification genes. Stem Cell Rev 7: 518-531
CrossRef Google scholar
[26]
Gao L, Utsumi T, Tashiro K, Liu B, Zhang D, Swenson ES, Iwakiri Y (2013) Reticulon 4B (Nogo-B) facilitates hepatocyte proliferation and liver regeneration in mice. Hepatology (Baltimore, Md.) 57: 1992-2003
CrossRef Google scholar
[27]
Ghaedi M, Lotfi AS, Soleimani M (2010) Establishment of lentiviralvector-mediated model of human alpha-1 antitrypsin delivery into hepatocyte-like cells differentiated from mesenchymal stem cells. Tissue Cell 42: 181-189
CrossRef Google scholar
[28]
Ghaedi M, Tuleuova N, Zern MA, Wu J, Revzin A (2011) Bottom-up signaling from HGF-containing surfaces promotes hepatic differentiation of mesenchymal stem cells. Biochem Biophys Res Commun 407: 295-300
CrossRef Google scholar
[29]
Ghodsizadeh A, Taei A, Totonchi M, Seifinejad A, Gourabi H, Pournasr B, Aghdami N, Malekzadeh R, Almadani N, Salekdeh GH (2010) Generation of liver disease-specific induced pluripotent stem cells along with efficient differentiation to functional hepatocyte-like cells. Stem Cell Rev 6: 622-632
CrossRef Google scholar
[30]
Gong P, Wang Y, Zhang J, Wang Z (2013) Differential hepatic stem cell proliferation and differentiation after partial hepatectomy in rats. Mol Med Rep 8: 1005-1010
CrossRef Google scholar
[31]
Gu J, Shi X, Zhang Y, Chu X, Hang H, Ding Y (2009) Establishment of a three-dimensional co-culture system by porcine hepatocytes and bone marrow mesenchymal stem cells in vitro. Hepatol Res 39: 398-407
CrossRef Google scholar
[32]
Hannan NR, Segeritz CP, Touboul T, Vallier L (2013) Production of hepatocyte-like cells from human pluripotent stem cells. Nat Protoc 8: 430-437
CrossRef Google scholar
[33]
Haque A, Hexig B, Meng Q, Hossain S, Nagaoka M, Akaike T (2011) The effect of recombinant E-cadherin substratum on the differentiation of endoderm-derived hepatocyte-like cells from embryonic stem cells. Biomaterials 32: 2032-2042
CrossRef Google scholar
[34]
He Z, Feng M (2011) Activation, isolation, identification and culture of hepatic stem cells from porcine liver tissues. Cell Prolif 44: 558-566
CrossRef Google scholar
[35]
He ZP, Tan WQ, Tang YF, Zhang HJ, Feng MF (2004) Activation, isolation, identification and in vitro proliferation of oval cells from adult rat livers. Cell Prolif 37: 177-187
CrossRef Google scholar
[36]
Hirata M, Amano K, Miyashita A, Yasunaga M, Nakanishi T, Sato K (2009) Establishment and characterization of hepatic stem-like cell lines from normal adult rat liver. J Biochem 145: 51-58
CrossRef Google scholar
[37]
Hughes RD, Mitry RR, Dhawan A (2012) Current status of hepatocyte transplantation. Transplantation 93: 342-347
CrossRef Google scholar
[38]
Ichinohe N, Tanimizu N, Ooe H, Nakamura Y, Mizuguchi T, Kon J, Hirata K, Mitaka T (2013) Differentiation capacity of hepatic stem/progenitor cells isolated from D-galactosamine-treated rat livers. Hepatology (Baltimore, Md.) 57: 1192-1202
CrossRef Google scholar
[39]
Ishii T, Yasuchika K, Fukumitsu K, Kawamoto T, Kawamura-Saitoh M, Amagai Y, Ikai I, Uemoto S, Kawase E, Suemori H (2010) In vitro hepatic maturation of human embryonic stem cells by using a mesenchymal cell line derived from murine fetal livers. Cell Tissue Res 339: 505-512
CrossRef Google scholar
[40]
Javed MS, Yaqoob N, Iwamuro M, Kobayashi N, Fujiwara T (2014) Generation of hepatocyte-like cells from human induced pluripotent stem (iPS) cells by co-culturing embryoid body cells with liver non-parenchymal cell line TWNT-1. J Coll Phys Surg-Pak 24: 91-96
[41]
Jia F, Wilson KD, Sun N, Gupta DM, Huang M, Li Z, Panetta NJ, Chen ZY, Robbins RC, Kay MA (2010) A nonviral minicircle vector for deriving human iPS cells. Nat Methods 7: 197-199
CrossRef Google scholar
[42]
Kajiwara M, Aoi T, Okita K, Takahashi R, Inoue H, Takayama N, Endo H, Eto K, Toguchida J, Uemoto S (2012) Donor-dependent variations in hepatic differentiation from human-induced pluripotent stem cells. Proc Natl Acad Sci USA 109: 12538-12543
CrossRef Google scholar
[43]
Kim Y, Rajagopalan P (2010) 3D hepatic cultures simultaneously maintain primary hepatocyte and liver sinusoidal endothelial cell phenotypes. PLoS One 5: e15456
CrossRef Google scholar
[44]
Kim WR, Therneau TM, Benson JT, Kremers WK, Rosen CB, Gores GJ, Dickson ER (2006) Deaths on the liver transplant waiting list: an analysis of competing risks. Hepatology (Baltimore, Md.) 43: 345-351
CrossRef Google scholar
[45]
Kim SE, An SY, Woo DH, Han J, Kim JH, Jang YJ, Son JS, Yang H, Cheon YP (2013) Engraftment potential of spheroid-forming hepatic endoderm derived from human embryonic stem cells. Stem Cells Dev 22: 1818-1829
CrossRef Google scholar
[46]
Kim SJ, Park MH, Moon HJ, Park JH, du Ko Y, Jeong B (2014) Polypeptide thermogels as a three dimensional culture scaffold for hepatogenic differentiation of human tonsil-derived mesenchymal stem cells. ACS Appl Mater Interfaces 6: 17034-17043
CrossRef Google scholar
[47]
Kondo Y, Iwao T, Yoshihashi S, Mimori K, Ogihara R, Nagata K, Kurose K, Saito M, Niwa T, Suzuki T (2014) Histone deacetylase inhibitor valproic acid promotes the differentiation of human induced pluripotent stem cells into hepatocyte-like cells. PLoS One 9: e104010
CrossRef Google scholar
[48]
Kwon HJ, Won YS, Yoon YD, Yoon WK, Nam KH, Choi IP, Kim DY, Kim HC (2011) Vitamin D3 up-regulated protein 1 deficiency accelerates liver regeneration after partial hepatectomy in mice. J Hepatol 54: 1168-1176
CrossRef Google scholar
[49]
Lau TT, Ho LW, Wang DA (2013) Hepatogenesis of murine induced pluripotent stem cells in 3D micro-cavitary hydrogel system for liver regeneration. Biomaterials 34: 6659-6669
CrossRef Google scholar
[50]
Lazaro CA, Rhim JA, Yamada Y, Fausto N (1998) Generation of hepatocytes from oval cell precursors in culture. Cancer Res 58: 5514-5522
[51]
Lee JY, Tuleuova N, Jones CN, Ramanculov E, Zern MA, Revzin A (2009) Directing hepatic differentiation of embryonic stem cells with protein microarray-based co-cultures. Integr Biol 1: 460-468
CrossRef Google scholar
[52]
Li W, Liang X, Leu JI, Kovalovich K, Ciliberto G, Taub R (2001) Global changes in interleukin-6-dependent gene expression patterns in mouse livers after partial hepatectomy. Hepatology (Baltimore, Md.) 33: 1377-1386
CrossRef Google scholar
[53]
Li W, Wei W, Zhu S, Zhu J, Shi Y, Lin T, Hao E, Hayek A, Deng H, Ding S (2009) Generation of rat and human induced pluripotent stem cells by combining genetic reprogramming and chemical inhibitors. Cell Stem Cell 4: 16-19
CrossRef Google scholar
[54]
Li J, Tao R, Wu W, Cao H, Xin J, Guo J, Jiang L, Hong X, Demetriou AA, Farkas D (2010a) Transcriptional profiling and hepatogenic potential of acute hepatic failure-derived bone marrow mesenchymal stem cells. Differentiation 80: 166-174
CrossRef Google scholar
[55]
Li W, Wang D, Qin J, Liu C, Zhang Q, Zhang X, Yu X, Lahn BT, Mao FF, Xiang AP (2010b) Generation of functional hepatocytes from mouse induced pluripotent stem cells. J Cell Physiol 222: 492-501
[56]
Li F, He Z, Li Y, Liu P, Chen F, Wang M, Zhu H, Ding X, Wangensteen KJ, Hu Y (2011a) Combined activin A/LiCl/Noggin treatment improves production of mouse embryonic stem cell-derived definitive endoderm cells. J Cell Biochem 112: 1022-1034
CrossRef Google scholar
[57]
Li HY, Chien Y, Chen YJ, Chen SF, Chang YL, Chiang CH, Jeng SY, Chang CM, Wang ML, Chen LK (2011b) Reprogramming induced pluripotent stem cells in the absence of c-Myc for differentiation into hepatocyte-like cells. Biomaterials 32: 5994-6005
CrossRef Google scholar
[58]
Libbrecht L, De Vos R, Cassiman D, Desmet V, Aerts R, Roskams T (2001) Hepatic progenitor cells in hepatocellular adenomas. Am J Surg Pathol 25: 1388-1396
CrossRef Google scholar
[59]
Lin N, Lin J, Bo L, Weidong P, Chen S, Xu R (2010) Differentiation of bone marrow-derived mesenchymal stem cells into hepatocytelike cells in an alginate scaffold. Cell Prolif 43: 427-434
CrossRef Google scholar
[60]
Liu H, Ye Z, Kim Y, Sharkis S, Jang YY (2010a) Generation of endoderm-derived human induced pluripotent stem cells from primary hepatocytes. Hepatology (Baltimore, Md.) 51: 1810-1819
CrossRef Google scholar
[61]
Liu T, Zhang S, Chen X, Li G, Wang Y (2010b) Hepatic differentiation of mouse embryonic stem cells in three-dimensional polymer scaffolds. Tissue Eng Part A 16: 1115-1122
CrossRef Google scholar
[62]
Liu T, Zhang S, Xiang D, Wang Y (2013) Induction of hepatocyte-like cells from mouse embryonic stem cells by lentivirus-mediated constitutive expression of Foxa2/Hnf4a. J Cell Biochem 114: 2531-2541
CrossRef Google scholar
[63]
Luebke-Wheeler JL, Nedredal G, Yee L, Amiot BP, Nyberg SL (2009) E-cadherin protects primary hepatocyte spheroids from cell death by a caspase-independent mechanism. Cell Transplant 18: 1281-1287
CrossRef Google scholar
[64]
Mao SA, Glorioso JM, Nyberg SL (2014) Liver regeneration. Transl Res 163: 352-362
CrossRef Google scholar
[65]
Marekova D, Lesny P, Jendelova P, Michalek J, Kostecka P, Pradny M, Martinova L, Pantoflicek T, Ryska M, Sykova E (2013) Hepatocyte growth on polycapronolactone and 2-hydroxyethylmethacrylate nanofiber sheets enhanced by bone marrowderived mesenchymal stromal cells. Hepato-gastroenterology 60: 1156-1163
[66]
Michalopoulos GK (2010) Liver regeneration after partial hepatectomy: critical analysis of mechanistic dilemmas. Am J Pathol 176: 2-13
CrossRef Google scholar
[67]
Miki T, Ring A, Gerlach J (2011) Hepatic differentiation of human embryonic stem cells is promoted by three-dimensional dynamic perfusion culture conditions. Tissue Eng 17: 557-568
CrossRef Google scholar
[68]
Mizutani T, Yokoyama Y, Kokuryo T, Kawai K, Miyake T, Nagino M (2013) Calcitonin gene-related peptide regulates the early phase of liver regeneration. J Surg Res 183: 138-145
CrossRef Google scholar
[69]
Mobarra N, Soleimani M, Kouhkan F, Hesari Z, Lahmy R, Mossahebi-Mohammadi M, Arefian E, Jaafarpour Z, Nasiri H, Pakzad R (2014) Efficient differentiation of human induced pluripotent stem cell (hiPSC) derived hepatocyte-like cells on hMSCs Feeder. Int J Hematol-Oncol Stem Cell Res 8: 20-29
[70]
Mohsin S, Shams S, Ali Nasir G, Khan M, Javaid Awan S, Khan SN, Riazuddin S (2011) Enhanced hepatic differentiation of mesenchymal stem cells after pretreatment with injured liver tissue. Differentiation 81: 42-48
CrossRef Google scholar
[71]
Moore RN, Moghe PV (2009) Expedited growth factor-mediated specification of human embryonic stem cells toward the hepatic lineage. Stem Cell Res 3: 51-62
CrossRef Google scholar
[72]
Murry CE, Keller G (2008) Differentiation of embryonic stem cells to clinically relevant populations: lessons from embryonic development. Cell 132: 661-680
CrossRef Google scholar
[73]
Nagamoto Y, Tashiro K, Takayama K, Ohashi K, Kawabata K, Sakurai F, Tachibana M, Hayakawa T, Furue MK, Mizuguchi H (2012) The promotion of hepatic maturation of human pluripotent stem cells in 3D co-culture using type I collagen and Swiss 3T3 cell sheets. Biomaterials 33: 4526-4534
CrossRef Google scholar
[74]
Nagaoka M, Hagiwara Y, Takemura K, Murakami Y, Li J, Duncan SA, Akaike T (2008) Design of the artificial acellular feeder layer for the efficient propagation of mouse embryonic stem cells. J Biol Chem 283: 26468-26476
CrossRef Google scholar
[75]
Nejak-Bowen KN, Orr AV, Bowen WC Jr, Michalopoulos GK (2013) Gliotoxin-induced changes in rat liver regeneration after partial hepatectomy. Liver Int 33: 1044-1055
CrossRef Google scholar
[76]
No da Y, Lee SA, Choi YY, Park D, Jang JY, Kim DS, Lee SH (2012) Functional 3D human primary hepatocyte spheroids made by coculturing hepatocytes from partial hepatectomy specimens and human adipose-derived stem cells. PloS one 7: e50723
CrossRef Google scholar
[77]
Noto FK, Determan MR, Cai J, Cayo MA, Mallanna SK, Duncan SA (2014) Aneuploidy is permissive for hepatocyte-like cell differentiation from human induced pluripotent stem cells. BMC Res Notes 7: 437
CrossRef Google scholar
[78]
Nygard IE, Mortensen KE, Hedegaard J, Conley LN, Kalstad T, Bendixen C, Revhaug A (2012) The genetic regulation of the terminating phase of liver regeneration. Comp Hepatol 11: 3
CrossRef Google scholar
[79]
Okano J, Shiota G, Matsumoto K, Yasui S, Kurimasa A, Hisatome I, Steinberg P, Murawaki Y (2003) Hepatocyte growth factor exerts a proliferative effect on oval cells through the PI3K/AKT signaling pathway. Biochem Biophys Res Commun 309: 298-304
CrossRef Google scholar
[80]
Okura H, Komoda H, Saga A, Kakuta-Yamamoto A, Hamada Y, Fumimoto Y, Lee CM, Ichinose A, Sawa Y, Matsuyama A (2010) Properties of hepatocyte-like cell clusters from human adipose tissue-derived mesenchymal stem cells. Tissue Eng 16: 761-770
CrossRef Google scholar
[81]
Olazabal IM, Munoz JA, Rodriguez-Navas C, Alvarez L, Delgado-Baeza E, Garcia-Ruiz JP (2009) Prolactin’s role in the early stages of liver regeneration in rats. J Cell Physiol 219: 626-633
CrossRef Google scholar
[82]
Paracchini V, Carbone A, Colombo F, Castellani S, Mazzucchelli S, Gioia SD, Degiorgio D, Seia M, Porretti L, Colombo C (2012) Amniotic mesenchymal stem cells: a new source for hepatocyte-like cells and induction of CFTR expression by coculture with cystic fibrosis airway epithelial cells. J Biomed Biotechnol 2012: 575471
CrossRef Google scholar
[83]
Piryaei A, Valojerdi MR, Shahsavani M, Baharvand H (2011) Differentiation of bone marrow-derived mesenchymal stem cells into hepatocyte-like cells on nanofibers and their transplantation into a carbon tetrachloride-induced liver fibrosis model. Stem cell Rev 7: 103-118
CrossRef Google scholar
[84]
Rizzo F, Hashim A, Marchese G, Ravo M, Tarallo R, Nassa G, Giurato G, Rinaldi A, Cordella A, Persico M (2014) Timed regulation of P-element-induced wimpy testis-interacting RNA expression during rat liver regeneration. Hepatology (Baltimore, Md.) 60: 798-806
CrossRef Google scholar
[85]
Samuel D, Colombo M, El-Serag H, Sobesky R, Heaton N (2011) Toward optimizing the indications for orthotopic liver transplantation in hepatocellular carcinoma. Liver Transplant 17(Suppl 2): S6-13
CrossRef Google scholar
[86]
Sancho-Bru P, Najimi M, Caruso M, Pauwelyn K, Cantz T, Forbes S, Roskams T, Ott M, Gehling U, Sokal E (2009) Stem and progenitor cells for liver repopulation: can we standardise the process from bench to bedside? Gut 58: 594-603
CrossRef Google scholar
[87]
Sellaro TL, Ranade A, Faulk DM, McCabe GP, Dorko K, Badylak SF, Strom SC (2010) Maintenance of human hepatocyte function in vitro by liver-derived extracellular matrix gels. Tissue Eng 16: 1075-1082
CrossRef Google scholar
[88]
Seo MJ, Suh SY, Bae YC, Jung JS (2005) Differentiation of human adipose stromal cells into hepatic lineage in vitro and in vivo. Biochem Biophys Res Commun 328: 258-264
CrossRef Google scholar
[89]
Shin M, Alev C, Wu Y, Nagai H, Sheng G (2011) Activin/TGF-beta signaling regulates Nanog expression in the epiblast during gastrulation. Mech Dev 128: 268-278
CrossRef Google scholar
[90]
Shiraki N, Yamazoe T, Qin Z, Ohgomori K, Mochitate K, Kume K, Kume S (2011) Efficient differentiation of embryonic stem cells into hepatic cells in vitro using a feeder-free basement membrane substratum. PLoS One 6: e24228
CrossRef Google scholar
[91]
Si-Tayeb K, Noto FK, Nagaoka M, Li J, Battle MA, Duris C, North PE, Dalton S, Duncan SA (2010) Highly efficient generation of human hepatocyte-like cells from induced pluripotent stem cells. Hepatology (Baltimore, Md.) 51: 297-305
CrossRef Google scholar
[92]
Sivertsson L, Synnergren J, Jensen J, Bjorquist P, Ingelman-Sundberg M (2013) Hepatic differentiation and maturation of human embryonic stem cells cultured in a perfused threedimensional bioreactor. Stem Cells Dev 22: 581-594
CrossRef Google scholar
[93]
Skardal A, Smith L, Bharadwaj S, Atala A, Soker S, Zhang Y (2012) Tissue specific synthetic ECM hydrogels for 3-D in vitro maintenance of hepatocyte function. Biomaterials 33: 4565-4575
CrossRef Google scholar
[94]
Strey CW, Markiewski M, Mastellos D, Tudoran R, Spruce LA, Greenbaum LE, Lambris JD (2003) The proinflammatory mediators C3a and C5a are essential for liver regeneration. J Exp Med 198: 913-923
CrossRef Google scholar
[95]
Subramanian K, Owens DJ, Raju R, Firpo M, O’Brien TD, Verfaillie CM, Hu WS (2014) Spheroid culture for enhanced differentiation of human embryonic stem cells to hepatocyte-like cells. Stem Cells Dev 23: 124-131
CrossRef Google scholar
[96]
Takata A, Otsuka M, Kogiso T, Kojima K, Yoshikawa T, Tateishi R, Kato N, Shiina S, Yoshida H, Omata M (2011) Direct differentiation of hepatic cells from human induced pluripotent stem cells using a limited number of cytokines. Hepatol Int 5: 890
CrossRef Google scholar
[97]
Takebe T, Sekine K, Enomura M, Koike H, Kimura M, Ogaeri T, Zhang RR, Ueno Y, Zheng YW, Koike N (2013) Vascularized and functional human liver from an iPSC-derived organ bud transplant. Nature 499: 481-484
CrossRef Google scholar
[98]
Tamai M, Yamashita A, Tagawa Y (2011) Mitochondrial development of the in vitro hepatic organogenesis model with simultaneous cardiac mesoderm differentiation from murine induced pluripotent stem cells. J Biosci Bioeng 112: 495-500
CrossRef Google scholar
[99]
Tatsumi K, Ohashi K, Taminishi S, Sakurai Y, Ogiwara K, Yoshioka A, Okano T, Shima M (2011) Regulation of coagulation factors during liver regeneration in mice: mechanism of factor VIII elevation in plasma. Thromb Res 128: 54-61
CrossRef Google scholar
[100]
Tomizawa M, Shinozaki F, Sugiyama T, Yamamoto S, Sueishi M, Yoshida T (2013) Single-step protocol for the differentiation of human-induced pluripotent stem cells into hepatic progenitor-like cells. Biomed Rep 1: 18-22
[101]
Tuleuova N, Lee JY, Lee J, Ramanculov E, Zern MA, Revzin A (2010) Using growth factor arrays and micropatterned co-cultures to induce hepatic differentiation of embryonic stem cells. Biomaterials 31: 9221-9231
CrossRef Google scholar
[102]
Ulvestad M, Nordell P, Asplund A, Rehnstrom M, Jacobsson S, Holmgren G, Davidson L, Brolen G, Edsbagge J, Bjorquist P (2013) Drug metabolizing enzyme and transporter protein profiles of hepatocytes derived from human embryonic and induced pluripotent stem cells. Biochem Pharmacol 86: 691-702
CrossRef Google scholar
[103]
Umeda K, Suzuki K, Yamazoe T, Shiraki N, Higuchi Y, Tokieda K, Kume K, Mitani K, Kume S (2013) Albumin gene targeting in human embryonic stem cells and induced pluripotent stem cells with helper-dependent adenoviral vector to monitor hepatic differentiation. Stem Cell Res 10: 179-194
CrossRef Google scholar
[104]
Uriarte I, Fernandez-Barrena MG, Monte MJ, Latasa MU, Chang HC, Carotti S, Vespasiani-Gentilucci U, Morini S, Vicente E, Concepcion AR (2013) Identification of fibroblast growth factor 15 as a novel mediator of liver regeneration and its application in the prevention of post-resection liver failure in mice. Gut 62: 899-910
CrossRef Google scholar
[105]
Vessey CJ, de la Hall PM (2001) Hepatic stem cells: a review. Pathology 33: 130-141
[106]
Wang S, Nagrath D, Chen PC, Berthiaume F, Yarmush ML (2008) Three-dimensional primary hepatocyte culture in synthetic selfassembling peptide hydrogel. Tissue Eng 14: 227-236
CrossRef Google scholar
[107]
Wang P, Cong M, Liu TH, Yang AT, Cong R, Wu P, Tang SZ, Xu Y, Wang H, Wang BE (2010) Primary isolated hepatic oval cells maintain progenitor cell phenotypes after two-year prolonged cultivation. J Hepatol 53: 863-871
CrossRef Google scholar
[108]
Wang Y, Cui CB, Yamauchi M, Miguez P, Roach M, Malavarca R, Costello MJ, Cardinale V, Wauthier E, Barbier C (2011) Lineage restriction of human hepatic stem cells to mature fates is made efficient by tissue-specific biomatrix scaffolds. Hepatology (Baltimore, Md.) 53: 293-305
CrossRef Google scholar
[109]
Wang Y, Zhang Y, Zhang S, Peng G, Liu T, Li Y, Xiang D, Wassler MJ, Shelat HS, Geng Y (2012) Rotating microgravity-bioreactor cultivation enhances the hepatic differentiation of mouse embryonic stem cells on biodegradable polymer scaffolds. Tissue Eng 18: 2376-2385
CrossRef Google scholar
[110]
Wolf JH, Bhatti TR, Fouraschen S, Chakravorty S, Wang L, Kurian S, Salomon D, Olthoff KM, Hancock WW, Levine MH (2014) Heat shock protein 70 is required for optimal liver regeneration after partial hepatectomy in mice. Liver Transplant 20: 376-385
CrossRef Google scholar
[111]
Wuestefeld T, Pesic M, Rudalska R, Dauch D, Longerich T, Kang TW, Yevsa T, Heinzmann F, Hoenicke L, Hohmeyer A (2013) A Direct in vivo RNAi screen identifies MKK4 as a key regulator of liver regeneration. Cell 153: 389-401
CrossRef Google scholar
[112]
Yamanaka S, Blau HM (2010) Nuclear reprogramming to a pluripotent state by three approaches. Nature 465: 704-712
CrossRef Google scholar
[113]
Yang Y, Li J, Pan X, Zhou P, Yu X, Cao H, Wang Y, Li L (2013) Coculture with mesenchymal stem cells enhances metabolic functions of liver cells in bioartificial liver system. Biotechnol Bioeng 110: 958-968
CrossRef Google scholar
[114]
Yanger K, Zong Y, Maggs LR, Shapira SN, Maddipati R, Aiello NM, Thung SN, Wells RG, Greenbaum LE, Stanger BZ (2013) Robust cellular reprogramming occurs spontaneously during liver regeneration. Genes Dev 27: 719-724
CrossRef Google scholar
[115]
Yao R, Wang J, Li X, Jung Jung D, Qi H, Kee KK, Du Y (2014) Hepatic differentiation of human embryonic stem cells as microscaled multilayered colonies leading to enhanced homogeneity and maturation. Small 10: 4311-4323
CrossRef Google scholar
[116]
Zerrad-Saadi A, Lambert-Blot M, Mitchell C, Bretes H, Collin de l’Hortet A, Baud V, Chereau F, Sotiropoulos A, Kopchick JJ, Liao L (2011) GH receptor plays a major role in liver regeneration through the control of EGFR and ERK1/2 activation. Endocrinology 152: 2731-2741
CrossRef Google scholar
[117]
Zhang S, Zhang Y, Chen L, Liu T, Li Y, Wang Y, Geng Y (2013a) Efficient large-scale generation of functional hepatocytes from mouse embryonic stem cells grown in a rotating bioreactor with exogenous growth factors and hormones. Stem Cell Res Ther 4: 145
CrossRef Google scholar
[118]
Zhang Z, Liu J, Liu Y, Li Z, Gao WQ, He Z (2013b) Generation, characterization and potential therapeutic applications of mature and functional hepatocytes from stem cells. J Cell Physiol 228: 298-305
CrossRef Google scholar
[119]
Zhang R, Takebe T, Sekine K, Koike H, Zheng Y, Taniguchi H (2014) Identification of proliferating human hepatic cells from human induced pluripotent stem cells. Transplant Proc 46: 1201-1204
CrossRef Google scholar
[120]
Zhao D, Chen S, Cai J, Guo Y, Song Z, Che J, Liu C, Wu C, Ding M, Deng H (2009) Derivation and characterization of hepatic progenitor cells from human embryonic stem cells. PLoS One 4: e6468
CrossRef Google scholar

RIGHTS & PERMISSIONS

2014 This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
AI Summary AI Mindmap
PDF(499 KB)

Accesses

Citations

Detail

Sections
Recommended

/