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August 30, 2021Nature Communications97 citationsOpen Access

Phospholamban antisense oligonucleotides improve cardiac function in murine cardiomyopathy

NBNiels Grote BeverborgDSDaniela SpäterRKRalph Knöll

Structured PICO

Does phospholamban antisense oligonucleotide treatment improve cardiac function and survival in murine models of heart failure?

P
Population
Murine models of heart failure including PLN R14del mice (genetic dilated cardiomyopathy), Cspr3/Mlp -/- mice, rats with myocardial infarction, as well as healthy C57BL/6 mice and primary cardiomyocytes.
I
Intervention
Phospholamban antisense oligonucleotides (PLN-ASO, specifically ASO#26_C and ASO#27) administered subcutaneously (e.g., 50 mg/kg or 100 mg/kg).
C
Comparator
PBS or untreated controls.
O
Outcome
Cardiac function, survival rate, and PLN protein aggregation.surrogate

Antisense oligonucleotide-mediated downregulation of phospholamban improves cardiac function and survival in preclinical murine models of genetic and ischemia-driven heart failure.

Abstract

Abstract Heart failure (HF) is a major cause of morbidity and mortality worldwide, highlighting an urgent need for novel treatment options, despite recent improvements. Aberrant Ca 2+ handling is a key feature of HF pathophysiology. Restoring the Ca 2+ regulating machinery is an attractive therapeutic strategy supported by genetic and pharmacological proof of concept studies. Here, we study antisense oligonucleotides (ASOs) as a therapeutic modality, interfering with the PLN/SERCA2a interaction by targeting Pln mRNA for downregulation in the heart of murine HF models. Mice harboring the PLN R14del pathogenic variant recapitulate the human dilated cardiomyopathy (DCM) phenotype; subcutaneous administration of PLN-ASO prevents PLN protein aggregation, cardiac dysfunction, and leads to a 3-fold increase in survival rate. In another genetic DCM mouse model, unrelated to PLN ( Cspr3/Mlp −/− ), PLN-ASO also reverses the HF phenotype. Finally, in rats with myocardial infarction, PLN-ASO treatment prevents progression of left ventricular dilatation and improves left ventricular contractility. Thus, our data establish that antisense inhibition of PLN is an effective strategy in preclinical models of genetic cardiomyopathy as well as ischemia driven HF.

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Cite This Study

Beverborg et al. (2021) studied this question.

synapsesocial.com/papers/6a1b81f96a7f159d19e8d3ebhttps://doi.org/10.1038/s41467-021-25439-0
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