Genetics
A new mouse model reaches Lp(a) levels of 700 mg/dL, over 20 times the human risk threshold, revealing oxidized phospholipids unique to Lp(a) (J Lipid Res 2005)
Original title: High-level lipoprotein [a] expression in transgenic mice: evidence for oxidized phospholipids in lipoprotein [a] but not in low density lipoproteins
This study created two lines of transgenic mice expressing human apolipoprotein(a) [apo(a)] in the liver, crossed with human apoB-100-expressing mice, to generate a high-level Lp(a) animal model, since prior models lacked sufficiently elevated Lp(a). One line reached Lp(a) levels of about 700 mg/dL, well above the 30 mg/dL human atherosclerosis risk threshold, while the other reached about 35 mg/dL; most LDL was covalently bound to apo(a) in the high-expressing line but mostly free in the low-expressing line. Using antibody EO6, the researchers found high levels of oxidized phospholipids specifically in Lp(a) from the high-expressing mice, but not in LDL from the low-expressing mice or from human apoB-100 transgenic mice, despite similar apoB-100 levels across all mice (P<0.00001). The findings suggest oxidized phospholipids specifically accumulating on Lp(a) could be a mechanism by which elevated Lp(a) contributes to atherogenesis.
Original abstract
Efforts to elucidate the role of lipoprotein [a] (Lp[a]) in atherogenesis have been hampered by the lack of an animal model with high plasma Lp[a] levels. We produced two lines of transgenic mice expressing apolipoprotein [a] (apo[a]) in the liver and crossed them with mice expressing human apolipoprotein B-100 (apoB-100), generating two lines of Lp[a] mice. One had Lp[a] levels of approximately 700 mg/dl, well above the 30 mg/dl threshold associated with increased risk of atherosclerosis in humans; the other had levels of approximately 35 mg/dl. Most of the LDL in mice with high-level apo[a] expression was covalently bound to apo[a], but most of the LDL in the low-expressing line was free. Using an enzyme-linked sandwich assay with monoclonal antibody EO6, we found high levels of oxidized phospholipids in Lp[a] from high-expressing mice but not in LDL from low-expressing mice or in LDL from human apoB-100 transgenic mice (P <0.00001), even though all mice had similar plasma levels of human apoB-100. The increase in oxidized lipids specific to Lp[a] in high-level apo[a]-expressing mice suggests a mechanism by which increased circulating levels of Lp[a] could contribute to atherogenesis.
Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.