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© 1992 Nature Publishing Group
© 1992 Nature Publishing Group
© 1992 Nature Publishing Group
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Eosinophilia in transgenic mice expressing interleukin 5.
Inhibition of early atherogenesis in transgenic mice by human apolipoprotein AI.
Novel cell lines derived from transgenic mice expressing recombinant human proteins. Transgenic hepatoma-derived cell lines.
Neonatal bleeding in transgenic mice expressing urokinase-type plasminogen activator.
Hypotension in transgenic mice expressing atrial natriuretic factor fusion genes.
HIV-associated nephropathy in transgenic mice expressing HIV-1 genes.
Elevated corticosterone levels in transgenic mice expressing human or bovine growth hormone genes.
Allelic exclusion in transgenic mice expressing a heavy chain disease-like human mu protein.
Somatotropic and lactotropic receptors in transgenic mice expressing human or bovine growth hormone genes.
Precocious mammary gland development and milk protein synthesis in transgenic mice ubiquitously expressing human growth hormone.
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Transgenic mice expressing a human poliovirus receptor: a new model for poliomyelitis.
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Atherogenesis in transgenic mice expressing human apolipoprotein(a)
Elevated plasma levels of the lipoprotein Lp(a) are associated with increased risk for atherosclerosis and its manifestations, myocardial infarction, ...
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Recommend Documents
Eosinophilia in transgenic mice expressing interleukin 5.
Inhibition of early atherogenesis in transgenic mice by human apolipoprotein AI.
Novel cell lines derived from transgenic mice expressing recombinant human proteins. Transgenic hepatoma-derived cell lines.
Neonatal bleeding in transgenic mice expressing urokinase-type plasminogen activator.
Hypotension in transgenic mice expressing atrial natriuretic factor fusion genes.
HIV-associated nephropathy in transgenic mice expressing HIV-1 genes.
Elevated corticosterone levels in transgenic mice expressing human or bovine growth hormone genes.
Allelic exclusion in transgenic mice expressing a heavy chain disease-like human mu protein.
Somatotropic and lactotropic receptors in transgenic mice expressing human or bovine growth hormone genes.
Precocious mammary gland development and milk protein synthesis in transgenic mice ubiquitously expressing human growth hormone.
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