Page 38 - 84_02
P. 38

Discovery and handling of Genes. Connetions with Biology and Medicine

88. a) Liang P, Xu Y, Zhang X, Ding Ch, et al.
     CRISPR/Cas9-mediated editing in human
     triplonoclear zygotes. Protein & Cell 2015; 6: 1-10. b)
     Ver la noticia en Nature News, 22 de abril 2015:
     Cyranoski D, Reaedon S. “Chinese scientists
     genetically modify human embryos”.

89. Kang X, He W, Huang Y, Yu Q, et al. Introducing
     precise genetic modifications into human 3PN
     embryos by CRISPR/Cas-mediated genome editing.
     Journal of Assisted Reproduction and Genetics 2016;
     33: 581-8.

90. Ma H, Marti-Gutierrez N, Park S-W, Wu J, et al.
     Correction of a pathogenic gene mutation in human
     embryos. Nature 2017; 548: 413-9.

91. Cordeiro JL, Wood DW. “La muerte de la muerte”.
     Editorial Deusto 2017.

92. Hammond A, Galizi R, Kyrou K, Simoni A, et al. A
     CRISPR-Cas9 gene drive system targeting female
     reproduction in the malaria mosquito vector
     Anopheles gambia. Nature Biotechnology 2016; 34:
     78-83.

93. Leitschuh CM, Kanavy D, Backus GA, Valdez RX,
     Serr M, Pitts EA, Threadgill D, Godwin J. Developing
     Gene Drive Technologies to Eradicate Invasive
     Rodents From Islands, 2018; Journal of Responsible
     Innovation 5 (S1): S13–S39.

94. Oye KA, Esvelt K, Appleton E, Catterucci F, et al.
     Regulating gene drives. Science 2014; 345: 626-8.

95. Esvelt KM, Gemmell NJ. Conservation demands safe
     gene drive. PLOS Biology 2017;
     https://doi.org/10.1371/journal.pbio.2003850.

96. Baltimore D, Berg P, Botchan M, Carroll D, et al. A
     prudent path forward for genomic engineering and
     germline gene modification. Science 2015; 348: 36-8.

97. Collins FS. “The Language of God”. Free Press, New
     York, London, Toronto Sydney, 2006.

@Real Academia Nacional de Farmacia. Spain                             153
   33   34   35   36   37   38   39   40   41   42   43