Antisense Oligonucleotide Targeting Sortilin Reduces Vascular Calcification in Mice in a Sex-Dependent Manner
Adrien Lupieri1, Dakota Becker-Greene1, Thanh-Dat Le1
1Division of Cardiovascular Medicine, Center for Excellence in Vascular Biology (A.L., D.B.-G., T.-D.L., M.M.R., P.K.J., A.R.S., M.A., E.A.), Brigham and Women's Hospital, Harvard Medical School, Boston, MA.
Background:
Atherosclerotic calcification is a complex pathological process associated with an increased risk of cardiovascular events. Despite extensive research, this disorder has no effective therapeutic strategies. In this study, we evaluated the therapeutic potential of silencing Sort (sortilin) expression in vivo using antisense oligonucleotide (ASO-Sort1) to reduce the development of atherosclerosis and associated calcification.
Methods:
Male and female Ldlr-/- (low-density lipoprotein receptor knock-out) mice were fed a high-fat diet and treated with ASO-Sort1 for 15 weeks. After ASO-Sort1 treatment, we evaluated atherosclerotic lesion formation and calcification through molecular imaging and histological techniques. The levels of plasma lipid and inflammatory molecules were determined. Unbiased liquid chromatography-mass spectrometry-based proteomics of aortic arches was conducted to investigate the sex-specific regulation in ASO-Sort1-treated mice. To validate our in vivo findings, we conducted in vitro experiments to examine whether β-estradiol treatment of mouse smooth muscle cells promotes calcification independently of Sort.
Results:
ASO targeted primarily arterial smooth muscle cells, leading to a comparable reduction of aortic Sort1 expression by ≈57% in males and 52% in females. Although ASO-Sort1 did not affect the size of atherosclerotic lesions, it significantly reduced necrotic core development by 60% in male and 40% in female mice. In addition, it prevented aortic calcification by >50% only in male mice. Furthermore, proteome analysis revealed that while this treatment reduced vesicular trafficking, immune system, and extracellular matrix organization pathways in both male and female mice, it reduced autophagy-related processes specifically in males. In vitro results indicated that β-estradiol promotes calcification in smooth muscle cells treated with ASO-Sort1 by altering autophagy.
Conclusions:
Targeting Sort using antisense technology is effective in preventing vascular calcification in male mice. This unexpected outcome highlighted a novel sex-dependent discrepancy of the calcification pathway implicating the alteration of autophagy by β-estradiol and Sort.
Insights
Silencing sortilin expression with antisense oligonucleotide (ASO-Sort1) reduced vascular calcification in male mice by altering autophagy. This study reveals a novel sex-dependent mechanism in atherosclerotic calcification.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Pharmacology
Background:
- Atherosclerotic calcification is a complex pathological process increasing cardiovascular event risk.
- Current therapeutic strategies for atherosclerotic calcification are limited.
- Sortilin (Sort) is a potential therapeutic target for atherosclerosis and calcification.
Purpose of the Study:
- To evaluate the therapeutic potential of silencing sortilin expression using antisense oligonucleotide (ASO-Sort1) in vivo.
- To investigate the effect of ASO-Sort1 on atherosclerosis and associated calcification.
- To explore sex-specific regulation in ASO-Sort1-treated mice.
Main Methods:
- Male and female Ldlr-/- mice were fed a high-fat diet and treated with ASO-Sort1 for 15 weeks.
- Atherosclerotic lesion formation and calcification were assessed using molecular imaging and histology.
- Proteomics and in vitro experiments were conducted to investigate sex-specific regulation and the role of β-estradiol.
Main Results:
- ASO-Sort1 reduced aortic Sort1 expression comparably in males and females.
- While lesion size was unaffected, necrotic core development and aortic calcification were significantly reduced, particularly in males.
- Proteome analysis revealed sex-specific alterations in autophagy-related processes, modulated by β-estradiol in vitro.
Conclusions:
- Targeting sortilin with antisense technology effectively prevents vascular calcification in male mice.
- A novel sex-dependent discrepancy in the calcification pathway was identified, involving autophagy alteration by β-estradiol and sortilin.
- These findings suggest a potential therapeutic strategy for vascular calcification with sex-specific implications.
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