For: | Oldhafer F, Bock M, Falk CS, Vondran FWR. Immunological aspects of liver cell transplantation. World J Transplant 2016; 6(1): 42-53 [PMID: 27011904 DOI: 10.5500/wjt.v6.i1.42] |
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URL: | https://www.wjgnet.com/2220-3230/full/v6/i1/42.htm |
Number | Citing Articles |
1 |
Yu-Chen Hsu, I-Shing Yu, Yu-Fei Tsai, Yao-Ming Wu, You-Tzung Chen, Jin-Chuan Sheu, Shu-Wha Lin. A Preconditioning Strategy to Augment Retention and Engraftment Rate of Donor Cells During Hepatocyte Transplantation. Transplantation 2021; 105(4): 785 doi: 10.1097/TP.0000000000003461
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2 |
Run-Tong Lian, An-Qi Zhuang, Jing Yue, Yan Chen, Kui-Fen Ma, Yi-Hang Wu. Availability, Functionality, and Safety as well as Quality Control of
Hepatocytes as Seeding Cells in Liver Regenerative Medicine: State of the
Art and Challenges. Current Stem Cell Research & Therapy 2023; 18(8): 1090 doi: 10.2174/1574888X18666230125113254
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3 |
Daphne E. DeTemple, Felix Oldhafer, Christine S. Falk, Chen Chen‐Wacker, Constanca Figueiredo, Moritz Kleine, Wolf Ramackers, Kai Timrott, Frank Lehner, Juergen Klempnauer, Michael Bock, Florian W. R. Vondran. Hepatocyte‐induced CD4+ T cell alloresponse is associated with major histocompatibility complex class II up‐regulation on hepatocytes and suppressible by regulatory T cells. Liver Transplantation 2018; 24(3): 407 doi: 10.1002/lt.25019
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4 |
Erfani M. Naeem, Daneshi Sajad, Tahereh Talaei‐Khozani, Sahar Khajeh, Negar Azarpira, Sanaz Alaei, Nader Tanideh, Tabandeh M. Reza, Vahid Razban. Decellularized liver transplant could be recellularized in rat partial hepatectomy model. Journal of Biomedical Materials Research Part A 2019; 107(11): 2576 doi: 10.1002/jbm.a.36763
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5 |
V Iansante, R R Mitry, C Filippi, E Fitzpatrick, A Dhawan. Human hepatocyte transplantation for liver disease: current status and future perspectives. Pediatric Research 2018; 83(1-2): 232 doi: 10.1038/pr.2017.284
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6 |
Lan Deng, Shi-Gang Tang. Effect of ultraviolet irradiation on immunogenicity and biological activity of primary adult human hepatocytes. World Chinese Journal of Digestology 2020; 28(15): 683 doi: 10.11569/wcjd.v28.i15.683
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7 |
James E. Squires, Kyle A. Soltys, Patrick McKiernan, Robert H. Squires, Stephen C. Strom, Ira J. Fox, Alejandro Soto-Gutierrez. Clinical Hepatocyte Transplantation: What Is Next?. Current Transplantation Reports 2017; 4(4): 280 doi: 10.1007/s40472-017-0165-6
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8 |
Nasir Abbas, Kai You, Anteneh Getachew, Feima Wu, Muzammal Hussain, Xinping Huang, Yan Chen, Tingcai Pan, Yinxiong Li. Kupffer cells abrogate homing and repopulation of allogeneic hepatic progenitors in injured liver site. Stem Cell Research & Therapy 2024; 15(1) doi: 10.1186/s13287-024-03656-w
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9 |
Takayuki Miyoshi, Masaaki Hidaka, Daisuke Miyamoto, Yusuke Sakai, Shunsuke Murakami, Yu Huang, Takanobu Hara, Akihiko Soyama, Kengo Kanetaka, Takahiro Ochiya, Susumu Eguchi. Successful induction of human chemically induced liver progenitors with small molecules from damaged liver. Journal of Gastroenterology 2022; 57(6): 441 doi: 10.1007/s00535-022-01869-5
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10 |
Hassan Rashidi, Nguyet-Thin Luu, Salamah M. Alwahsh, Maaria Ginai, Sharmin Alhaque, Hua Dong, Rute A. Tomaz, Bertrand Vernay, Vasanthy Vigneswara, John M. Hallett, Anil Chandrashekran, Anil Dhawan, Ludovic Vallier, Mark Bradley, Anthony Callanan, Stuart J. Forbes, Philip N. Newsome, David C. Hay. 3D human liver tissue from pluripotent stem cells displays stable phenotype in vitro and supports compromised liver function in vivo. Archives of Toxicology 2018; 92(10): 3117 doi: 10.1007/s00204-018-2280-2
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11 |
Stacey S. Huppert, Kathleen M. Campbell. Emerging advancements in liver regeneration and organogenesis as tools for liver replacement. Current Opinion in Organ Transplantation 2016; 21(6): 581 doi: 10.1097/MOT.0000000000000365
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12 |
Constança Figueiredo, Felix Oldhafer, Eva‐Maria Wittauer, Marco Carvalho‐Oliveira, Ali Akhdar, Oliver Beetz, Chen Chen‐Wacker, Yuliia Yuzefovych, Christine S. Falk, Rainer Blasczyk, Florian W.R. Vondran. Silencing of HLA class I on primary human hepatocytes as a novel strategy for reduction in alloreactivity. Journal of Cellular and Molecular Medicine 2019; 23(8): 5705 doi: 10.1111/jcmm.14484
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13 |
Sajeesh Kumar Madhurakkat Perikamana, Nailah Seale, Jiaul Hoque, Ji Hyun Ryu, Vardhman Kumar, Yuru Vernon Shih, Shyni Varghese. Molecularly Tailored Interface for Long‐Term Xenogeneic Cell Transplantation. Advanced Functional Materials 2022; 32(4) doi: 10.1002/adfm.202108221
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14 |
Lorenzo Iovino, Riccardo Taddei, Maria Lucia Bindi, Riccardo Morganti, Davide Ghinolfi, Mario Petrini, Gianni Biancofiore. Clinical use of an immune monitoring panel in liver transplant recipients: A prospective, observational study. Transplant Immunology 2019; 52: 45 doi: 10.1016/j.trim.2018.11.001
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15 |
Da Zou, Haolu Wang, Xin Liu, Zhi Ping Xu, Michael S. Roberts, Chun-Xia Zhao. Artificial cells for the treatment of liver diseases. Acta Biomaterialia 2021; 130: 98 doi: 10.1016/j.actbio.2021.06.012
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16 |
Weng Chuan Peng, Lianne J. Kraaier, Thomas A. Kluiver. Hepatocyte organoids and cell transplantation: What the future holds. Experimental & Molecular Medicine 2021; 53(10): 1512 doi: 10.1038/s12276-021-00579-x
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17 |
Tiffany N. Anderson, Ali Zarrinpar. Hepatocyte transplantation: past efforts, current technology, and future expansion of therapeutic potential. Journal of Surgical Research 2018; 226: 48 doi: 10.1016/j.jss.2018.01.031
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18 |
Marco Romano, Raul Elgueta, Daniel McCluskey, Ana Maria Ortega-Prieto, Emilie Stolarczyk, Francesco Dazzi, Baltasar Lucendo-Villarin, Jose Meseguer-Ripolles, James Williams, Giorgia Fanelli, David C. Hay, Fiona M. Watt, Giovanna Lombardi. Pluripotent Stem Cell-Derived Hepatocytes Inhibit T Cell Proliferation In Vitro through Tryptophan Starvation. Cells 2021; 11(1): 24 doi: 10.3390/cells11010024
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19 |
Zhen Sun, Xiang Yuan, Jingqi Wu, Chenhua Wang, Kun Zhang, Ludi Zhang, Lijian Hui. Hepatocyte transplantation: The progress and the challenges. Hepatology Communications 2023; 7(10) doi: 10.1097/HC9.0000000000000266
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