Key result
Systemic lack of APOA1 in mice primes bone marrow stem cells for T cell lymphopoiesis, resulting in marked lymphocytosis but similar atherosclerotic lesion sizes compared to wild-type.
Why the study?
To evaluate whether a change in bone marrow functionality underlies the increased atherosclerosis susceptibility associated with HDL deficiency.
Does apolipoprotein A1 deficiency alter bone marrow stem cell functionality and increase atherosclerosis susceptibility in mice?
Does apolipoprotein A1 deficiency alter bone marrow stem cell functionality and increase atherosclerosis susceptibility in mice?
Systemic lack of APOA1 primes bone marrow stem cells for T cell lymphopoiesis, providing novel evidence for a regulatory role of HDL in bone marrow functioning, although it did not alter atherosclerotic lesion size in this model.
APOA1 deficiency alters murine hematopoiesis without changing lesions; leaves open any role for HDL in human bone marrow function or atherosclerosis.
The bone marrow has emerged as a potentially important target in cardiovascular disease as it generates all leukocytes involved in atherogenesis. In the current study, we evaluated whether a change in bone marrow functionality underlies the increased atherosclerosis susceptibility associated with high-density lipoprotein (HDL) deficiency. We found that HDL deficiency in mice due to the genetic lack of hepatocyte-derived apolipoprotein A1 (APOA1) was associated with an increase in the Lin-Sca-1+Kit+ (LSK) bone marrow stem cell population and lymphoid-primed multipotent progenitor numbers, which translated into a higher production and systemic flux of T cell subsets. In accordance with APOA1 deficiency-associated priming of stem cells to increase T lymphocyte production, atherogenic diet-fed low-density lipoprotein receptor knockout mice transplanted with bone marrow from APOA1-knockout mice displayed marked lymphocytosis as compared to wild-type bone marrow recipients. However, atherosclerotic lesion sizes and collagen contents were similar in the two groups of bone marrow recipients. In conclusion, systemic lack of APOA1 primes bone marrow stem cells for T cell lymphopoiesis. Our data provide novel evidence for a regulatory role of HDL in bone marrow functioning in normolipidemic mice.
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Ouweneel et al. (2021) studied Atherosclerosis susceptibility / HDL deficiency. APOA1 deficiency vs. Wild-type was evaluated on Bone marrow stem cell population, T cell subsets, and atherosclerotic lesion sizes. Systemic lack of APOA1 in mice primes bone marrow stem cells for T cell lymphopoiesis, resulting in marked lymphocytosis but similar atherosclerotic lesion sizes compared to wild-type.
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