21.09.2013 Views

production of animal proteins by cell systems - New Harvest

production of animal proteins by cell systems - New Harvest

production of animal proteins by cell systems - New Harvest

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

31. Yu, J. et al. Induced pluripotent stem <strong>cell</strong> lines derived from human somatic <strong>cell</strong>s. Science<br />

318, 1917-20 (2007).<br />

32. Yu, J. et al. Human Induced Pluripotent Stem Cells Free <strong>of</strong> Vector and Transgene Sequences.<br />

Science 324, 797-801 (2009).<br />

33. Wu, Z. et al. Generation <strong>of</strong> Pig-Induced Pluripotent Stem Cells with a Drug-Inducible System.<br />

J Mol Cell Biol 1, 46-54 (2009).<br />

34. Esteban, M. A. et al. Generation <strong>of</strong> induced pluripotent stem <strong>cell</strong> lines from tibetan miniature<br />

pig. J Biol Chem 284, 17634-17640 (2009).<br />

35. Zhang, X. et al. Shaken helical track bioreactors: Providing oxygen to high-density cultures<br />

<strong>of</strong> mammalian <strong>cell</strong>s at volumes up to 1000 L <strong>by</strong> surface aeration with air. N Biotechnol 25,<br />

68-75 (2008).<br />

36. du Puy, L., Chuva de Sousa Lopes, S., Haagsman, H. & Roelen, B. Differentiation <strong>of</strong> porcine<br />

ICM <strong>cell</strong>s into proliferating neural <strong>cell</strong>s. Stem Cells Dev doi: 10.1089/scd.2009.0075 (2009).<br />

37. Doetschman, T., Williams, P. & Maeda, N. Establishment <strong>of</strong> hamster blastocyst-derived<br />

embryonic stem (ES) <strong>cell</strong>s. Dev Biol 127, 224-7 (1988).<br />

38. Sukoyan, M. A. et al. Embryonic stem <strong>cell</strong>s derived from morulae, inner <strong>cell</strong> mass, and<br />

blastocysts <strong>of</strong> mink: comparisons <strong>of</strong> their pluripotencies. Mol Reprod Dev 36, 148-58 (1993).<br />

39. Graves, K. H. & Moreadith, R. W. Derivation and characterization <strong>of</strong> putative pluripotential<br />

embryonic stem <strong>cell</strong>s from preimplantation rabbit embryos. Mol Reprod Dev 36, 424-33<br />

(1993).<br />

40. Piedrahita, J. A., Anderson, G. B. & Bondurant, R. H. Influence <strong>of</strong> feeder layer type on the<br />

efficiency <strong>of</strong> isolation <strong>of</strong> porcine embryo-derived <strong>cell</strong> lines. Theriogenology 34, 865-77<br />

(1990).<br />

41. Van Stekelenburg-Hamers, A. E. et al. Isolation and characterization <strong>of</strong> permanent <strong>cell</strong> lines<br />

from inner <strong>cell</strong> mass <strong>cell</strong>s <strong>of</strong> bovine blastocysts. Mol Reprod Dev 40, 444-54 (1995).<br />

42. Notarianni, E., Galli, C., Laurie, S., Moor, R. M. & Evans, M. J. Derivation <strong>of</strong> pluripotent,<br />

embryonic <strong>cell</strong> lines from the pig and sheep. J Reprod Fertil Suppl 43, 255-60 (1991).<br />

43. Tian, H. B. et al. Factors derived from mouse embryonic stem <strong>cell</strong>s promote self-renewal <strong>of</strong><br />

goat embryonic stem-like <strong>cell</strong>s. Cell Biol Int 30, 452-8 (2006).<br />

44. Jochems, C. E., van der Valk, J. B., Stafleu, F. R., Baumans, V. The use <strong>of</strong> fetal bovine<br />

serum: ethical or scientific problem? Altern Lab Anim 30, 219-27 (2002).<br />

51

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!