AAV2/8-humanFOXP3 gene therapy shows robust anti-atherosclerosis efficacy in LDLR-KO mice on high cholesterol diet
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作者:
M Cao
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
M Cao
S A Theus
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
S A Theus
K D Straub
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
K D Straub
J A Figueroa
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
J A Figueroa
L Mirandola
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
L Mirandola
M Chiriva-Internati
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
M Chiriva-Internati
P L Hermonat
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机构:Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
P L Hermonat
机构:
[1] Central Arkansas Veterans Healthcare System,Division of Hematology and Oncology, Department of Internal Medicine
[2] Texas Tech University Health Sciences Center,undefined
[3] School of Medicine,undefined
[4] Kiromic LLC,undefined
来源:
Journal of Translational Medicine
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13卷
关键词:
Gene Delivery;
Cocoa Butter;
Normal Diet;
High Cholesterol Diet;
Tail Vein Injection;
D O I:
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摘要:
Inflammation is a key etiologic component in atherogenesis. Previously we demonstrated that adeno-associated virus (AAV) 2/8 gene delivery of Netrin1 inhibited atherosclerosis in the low density lipoprotein receptor knockout mice on high-cholesterol diet (LDLR-KO/HCD). One important finding from this study was that FOXP3 was strongly up-regulated in these Netrin1-treated animals, as FOXP3 is an anti-inflammatory gene, being the master transcription factor of regulatory T cells. These results suggested that the FOXP3 gene might potentially be used, itself, as an agent to limit atherosclerosis. To test this hypothesis AAV2/8 (AAV)/hFOXP3 or AAV/Neo (control) gene therapy virus were tail vein injected into the LDLR-KO/HCD animal model. It was found that hFOXP3 gene delivery was associated with significantly lower HCD-induced atherogenesis, as measured by larger aortic lumen cross sectional area, thinner aortic wall thickness, and lower aortic systolic blood velocity compared with Neo gene-HCD-treated controls. Moreover these measurements taken from the hFOXP3/HCD-treated animals very closely matched those measurements taken from the normal diet (ND) control animals. These data strongly suggest that AAV/hFOXP3 delivery gave a robust anti-atherosclerosis therapeutic effect and further suggest that FOXP3 be examined more stringently as a therapeutic gene for clinical use.