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Published on: February 20, 2017
Healthy longevity-associated protein improves cardiac function in murine models of cardiomyopathy with preserved
Valeria Vincenza Alvino1, Sadie Slater1, Yan Qiu1
1Bristol Medical School, Translational Health Sciences, University of Bristol, Upper Maudlin St, Bristol, BS2 8HW, UK.
Insights
Oral administration of longevity-associated variant (LAV) BPIFB4 protein improved heart function in aging and diabetic mice. This protein therapy offers potential for preventing heart dysfunction, though efficacy varied by sex in diabetic models.
Area of Science:
- Cardiovascular Biology
- Aging Research
- Metabolic Disease
Background:
- Aging and diabetes are risk factors for heart failure with preserved ejection fraction.
- No current therapies prevent heart dysfunction in aging and diabetic individuals.
- Previous studies showed a single dose of LAV-BPIFB4 gene halted heart decline in mice.
Purpose of the Study:
- To determine if orally administered LAV-BPIFB4 protein replicates benefits seen with gene therapy.
- To assess the efficacy of LAV-BPIFB4 protein in aging and diabetic mouse models.
Main Methods:
- Two randomized controlled studies were conducted in aging C57BL/6J mice and diabetic C57BLKS/J-Leprdb/Leprdb mice.
- Animals received oral LAV-BPIFB4 protein (3 µg/animal every three days) or vehicle for 30 days.
- Echocardiography assessed cardiac function at baseline and after treatment; hearts were analyzed histologically.
Main Results:
- LAV-BPIFB4 protein improved heart contractility, capillarity, and reduced fibrosis and senescence in aging mice.
- In male diabetic mice, therapy enhanced systolic function, microvascular density, and reduced senescence.
- Treatment benefits were limited to systolic function in female diabetic mice; no effect on body weight or glycosuria was observed.
Conclusions:
- Orally administered LAV-BPIFB4 protein is feasible and effective in mitigating heart dysfunction risk factors in animal models.
- Sex influences the therapeutic efficacy of LAV-BPIFB4 protein in diabetic mice.
- This protein variant holds promise for preventing age- and diabetes-related heart dysfunction.
Aims:
Aging is influenced by genetic determinants and comorbidities, among which diabetes increases the risk for heart failure with preserved ejection fraction. There is no therapy to prevent heart dysfunction in aging and diabetic individuals. In previous studies, a single administration of the longevity-associated variant (LAV) of the human BPIFB4 gene halted heart decline in older and type 2 diabetic mice. Here, we asked whether orally administered LAV-BPIFB4 protein replicates these benefits.
Materials And Methods:
In two controlled, randomized studies, 18-month-old male C57BL/6 J mice and 9-week-old C57BLKS/J-Leprdb/Leprdb/Dock7 + [db/db] mice of both sexes underwent baseline echocardiography. They then received a recombinant purified LAV-BPIFB4 protein (3 µg/animal, every three days) or vehicle by gavage. After 30 days, the animals underwent echocardiography, and the hearts were collected post-termination for histology.
Results:
All the animals completed the study except one female diabetic mouse, which was culled prematurely because tooth malocclusion caused eating problems. There was no effect of the LAV-BPIFB4 protein on body weight in the two studies or glycosuria in the diabetic study. In aging mice, LAV-BPIFB4 increased myocardial Bpifb4 expression, improving heart contractility and capillarity while reducing perivascular fibrosis and senesce. In male diabetic mice, LAV-BPIFB4 therapy improved systolic function, microvascular density, and senescence, whereas the benefit was limited to systolic function in females.
Conclusions:
This study shows the feasibility and efficacy of a variant protein associated with human longevity in contrasting pivotal risk factors for heart failure in animal models. The diabetic study revealed that sex influences the treatment efficacy.
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