JVR_2024v14n3

Journal of Vaccine Research 2024, Vol.14, No.3, 120-134 http://medscipublisher.com/index.php/jvr 133 Kemter E., Schnieke A., Fischer K., Cowan P., and Wolf E., 2020, Xeno-organ donor pigs with multiple genetic modifications-the more the better, Current Opinion in Genetics and Development, 64: 60-65. https://doi.org/10.1016/j.gde.2020.05.034 PMid:32619817 Lei T., Chen L., Wang K., Du S., Gonelle-Gispert C., Wang Y., and Buhler L., 2022, Genetic engineering of pigs for xenotransplantation to overcome immune rejection and physiological incompatibilities: the first clinical steps, Frontiers in Immunology, 13: 1031185. https://doi.org/10.3389/fimmu.2022.1031185 PMid:36561750 PMCid:PMC9766364 Li P., Walsh J., Lopez K., Isidan A., Zhang W., Chen A., Goggins W., Higgins N., Liu J., Brutkiewicz R., Smith L., Hara H., Cooper D., and Ekser B., 2021, Genetic engineering of porcine endothelial cell lines for evaluation of human-to-pig xenoreactive immune responses, Scientific Reports, 11: 13131. https://doi.org/10.1038/s41598-021-92543-y PMid:34162938 PMCid:PMC8222275 Llore N., Bruestle K., and Griesemer A., 2018, Xenotransplantation tolerance: applications for recent advances in modified swine, Current Opinion in Organ Transplantation, 23: 642-648. https://doi.org/10.1097/MOT.0000000000000585 PMid:30379724 PMCid:PMC7010353 Mohiuddin M., DiChiacchio L., Singh A., and Griffith B., 2019, Xenotransplantation: a step closer to clinical reality, Transplantation, 103(3): 453-454. https://doi.org/10.1097/TP.0000000000002608 PMid:30801425 Mohiuddin M., Singh A., Corcoran P., Iii M., Clark T., Lewis B., Hoyt R., Eckhaus M., III R., Belli A., Wolf E., Klymiuk N., Phelps C., Reimann K., Ayares D., and Horvath K., 2016, Chimeric 2C10R4 anti-CD40 antibody therapy is critical for long-term survival of GTKO.hCD46.hTBM pig-to-primate cardiac xenograft, Nature Communications, 7: 11138. https://doi.org/10.1038/ncomms11138 PMid:27045379 PMCid:PMC4822024 Montgomery R., Stern J., Lonze B., Tatapudi V., Mangiola M., Wu M., Weldon E., Lawson N., Deterville C., Dieter R., Sullivan B., Boulton G., Parent B., Piper G., Sommer P., Cawthon S., Duggan E., Ayares D., Dandro A., Fazio-Kroll A., Kokkinaki M., Burdorf L., Lorber M., Boeke J., Pass H., Keating B., Griesemer A., Ali N., Mehta S., and Stewart Z., 2022, Results of two cases of pig-to-Human kidney xenotransplantation, The New England journal of medicine, 386(20): 1889-1898. https://doi.org/10.1056/NEJMoa2120238 PMid:35584156 Martinez-Llordella M, and Lechler R., 2015, Tracking donor-reactive T cells: perspectives for the development of tolerance protocols, Transplantation, 99(12): 2436-2437. https://doi.org/10.1097/TP.0000000000000999 PMid:26627670 Petersen B., Frenzel A., Lucas-Hahn A., Herrmann D., Hassel P., Klein S., Ziegler M., Hadeler K., and Niemann H., 2016, Efficient production of biallelic GGTA1 knockout pigs by cytoplasmic microinjection of CRISPR/Cas9 into zygotes, Xenotransplantation, 23: 338-346. https://doi.org/10.1111/xen.12258 PMid:27610605 Pan D., Liu T., Lei T., Zhu H., Wang Y., and Deng S., 2019, Progress in multiple genetically modified minipigs for xenotransplantation in China, Xenotransplantation, 26(1): e12492. https://doi.org/10.1111/xen.12492 PMid:30775816 Petersen B., Frenzel A., Lucas-Hahn A., Herrmann D., Hassel P., Klein S., Ziegler M., Hadeler K., and Niemann H., 2016, Efficient production of biallelic GGTA1 knockout pigs by cytoplasmic microinjection of CRISPR/Cas9 into zygotes, Xenotransplantation, 23: 338-346. https://doi.org/10.1111/xen.12258 PMid:27610605 Polcz S., and Lewis A., 2018, A menagerie of moral hazards: regulating genetically modified animals, The Journal of Law Medicine and Ethics, 46: 180-184. https://doi.org/10.1177/1073110518766031 Rosales I., and Colvin R., 2019, The pathology of solid organ xenotransplantation, Current Opinion in Organ Transplantation, 24(5): 535-542. https://doi.org/10.1097/MOT.0000000000000681 PMid:31348015 Roedder S., Li L., Alonso M., Hsieh S., Vu M., Dai H., Sigdel T., Bostock I., Macedo C., Metes D., Zeevi A., Shapiro, R., Salvatierra O., Scandling J., Alberú J., Engleman E., and Sarwal M., 2015, A Three-gene assay for monitoring immune quiescence in kidney transplantation, Journal of the American Society of Nephrology, 26(8): 2042-2053. https://doi.org/10.1681/ASN.2013111239 PMid:25429124 PMCid:PMC4520154

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