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第42卷第7期             李美双,赵丽华,李荣凤. 猪SALL1蛋白分子信息分析及基因敲除细胞系制备[J].
                  2022年7月                     南京医科大学学报(自然科学版),2022,42(7):941-947                        ·947 ·


                    number for advocacy and communication⁃worldwide more  and B4GALNT2[J]. Xenotransplantation,2020,27(1):
                    than 850 million individuals have kidney diseases[J].  e12560
                    Nephrol Dial Transplant,2019,34(11):1803-1805  [14] MATSUNARI H,NAGASHIMA H,WATANABE M,et
               [2] LUYCKX V A,AL⁃ALY Z,BELLO A K,et al. Sustain⁃       al. Blastocyst complementation generates exogenic pan⁃
                    able development goals relevant to kidney health:an up⁃  creas in vivo in apancreatic cloned pigs[J]. PNAS,2013,
                    date on progress[J]. Nat Rev Nephrol,2021,17(1):15-  110(12):4557-4562
                    32                                           [15] MATSUNARI H,WATANABE M,HASEGAWA K,et al.
               [3] LI Y H,HUANG K. Human⁃animal inter species chime⁃   Compensation of disabled organogeneses in genetically
                    rism via blastocyst complementation:advances,challeng⁃  modified pig fetuses by blastocyst complementation[J].
                    es and perspectives:a narrative review[J]. Stem Cell In⁃  Stem Cell Rep,2020,14(1):21-33
                    vestig,2021,8:20                             [16] WU J,PLATERO⁃LUENGO A,SAKURAI M,et al. Inter
               [4] CHEN J,LANSFORD R,STEWART V,et al. RAG⁃2⁃de⁃        species chimerism with mammalian pluripotent stem cells
                    ficient blastocyst complementation:an assay of gene func⁃  [J]. Cell,2017,168(3):473-486
                    tion in lymphocyte development[J]. PNAS,1993,90  [17] DAS S,KOYANO ⁃ NAKAGAWA N,GAFNI O,et al.
                    (10):4528-4532                                     Generation of human endothelium in pig embryos defi⁃
               [5] YAMAZAKI K,KUBARA K,ISHII S,et al. In vitro and     cient in ETV2[J]. Nat Biotechnol,2020,38(3):297-
                    in vivo functions of T cells produced in complemented  302
                    thymi of chimeric mice generated by blastocyst comple⁃  [18] NISHINAKAMURA R,OSAFUNE K. Essential roles of
                    mentation[J]. Sci Rep,2022,12(1):3242              Sall family genes in kidney development[J]. J Physiol
               [6] WEN B Q,LI E H,USTIYAN V,et al. In vivo generation  Sci,2006,56(2):131-136
                    of lung and thyroid tissues from embryonic stem cells  [19] GOTO T,HARA H,SANBO M,et al. Generation of plu⁃
                    using blastocyst complementation[J]. Am J Respir Crit  ripotent stem cell⁃derived mouse kidneys in Sall1⁃target⁃
                    Care Med,2021,203(4):471-483                       ed anephric rats[J]. Nat Commun,2019,10(1):451
               [7] MORI M,FURUHASHI K,DANIELSSON J A,et al. Gen⁃  [20] WATANABE M,NAKANO K,UCHIKURA A,et al.
                    eration of functional lungs via conditional blastocyst com⁃  Anephrogenic phenotype induced by SALL1 gene knock⁃
                    plementation using pluripotent stem cells[J]. Nat Med,  out in pigs[J]. Sci Rep,2019,9(1):8016

                    2019,25(11):1691-1698                        [21] BEAUDOUX O,LEBRE A S,DOCO FENZY M,et al.
               [8] KOBAYASHI T,YAMAGUCHI T,HAMANAKA S,et al.           Adult diagnosis of Townes ⁃ Brocks syndrome with renal
                    Generation of rat pancreas in mouse by interspecific blas⁃  failure:two related cases and review of literature[J]. Am
                    tocyst injection of pluripotent stem cells[J]. Cell,2010,  J Med Genet A,2021,185(3):937-944
                    142(5):787-799                               [22] TAKASATO M,OSAFUNE K,MATSUMOTO Y,et al.
               [9] COOPER D K C,GASTON R,ECKHOFF D,et al. Xeno⁃        Identification of kidney mesenchymal genes by a combi⁃
                    transplantation ⁃ the current status and prospects[J]. Br  nation of microarray analysis and Sall1⁃GFP knockin mice
                    Med Bull,2018,125(1):5-14                         [J]. Mech Dev,2004,121(6):547-557
               [10] ZHANG C,QUAN R F,WANG J F. Development and ap⁃  [23] LU T Y,YANG B C,WANG R L,et al. Xenotransplanta⁃
                    plication of CRISPR/Cas9 technologies in genomic editing  tion:current status in preclinical research[J]. Front Im⁃
                    [J]. Hum Mol Genet,2018,27(R2):R79-R88             munol,2019,10:3060
               [11] GAO M Y,ZHU X L,YANG G,et al. CRISPR/Cas9⁃medi⁃  [24] RATNER L D,LA MOTTA G E,BRISKI O,et al. Practi⁃
                    ated gene editing in porcine models for medical research  cal approaches for knock ⁃ out gene editing in pigs[J].
                    [J]. DNA Cell Biol,2021,40(12):1462-1475           Front Genet,2020,11:617850
               [12] ZHANG W,WANG G,WANG Y,et al. Generation of   [25] WANG J,LIU M,ZHAO L,et al. Disabling of nephrogen⁃
                    complement protein C3 deficient pigs by CRISPR/Cas9⁃  esis in porcine embryos via CRISPR/Cas9⁃mediated SIX1
                    mediated gene targeting[J]. Sci Rep,2017,7(1):5009  and SIX4 gene targeting[J]. Xenotransplantation,2019,
               [13] FISCHER K,RIEBLINGER B,HEIN R,et al. Viable        26(3):e12484
                     pigs after simultaneous inactivation of porcine MHC class              [收稿日期] 2002-04-15
                     I and three xenoreactive antigen genes GGTA1,CMAH                          (责任编辑:蒋 莉)
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