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Citations to this article

Inhibition of phosphodiesterase type 9 reduces obesity and cardiometabolic syndrome in mice
Sumita Mishra, … , Sheila Collins, David A. Kass
Sumita Mishra, … , Sheila Collins, David A. Kass
Published October 7, 2021
Citation Information: J Clin Invest. 2021;131(21):e148798. https://doi.org/10.1172/JCI148798.
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Research Article Metabolism

Inhibition of phosphodiesterase type 9 reduces obesity and cardiometabolic syndrome in mice

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Abstract

Central obesity with cardiometabolic syndrome (CMS) is a major global contributor to human disease, and effective therapies are needed. Here, we show that cyclic GMP–selective phosphodiesterase 9A inhibition (PDE9-I) in both male and ovariectomized female mice suppresses preestablished severe diet-induced obesity/CMS with or without superimposed mild cardiac pressure load. PDE9-I reduces total body, inguinal, hepatic, and myocardial fat; stimulates mitochondrial activity in brown and white fat; and improves CMS, without significantly altering activity or food intake. PDE9 localized at mitochondria, and its inhibition in vitro stimulated lipolysis in a PPARα-dependent manner and increased mitochondrial respiration in both adipocytes and myocytes. PPARα upregulation was required to achieve the lipolytic, antiobesity, and metabolic effects of PDE9-I. All these PDE9-I–induced changes were not observed in obese/CMS nonovariectomized females, indicating a strong sexual dimorphism. We found that PPARα chromatin binding was reoriented away from fat metabolism–regulating genes when stimulated in the presence of coactivated estrogen receptor-α, and this may underlie the dimorphism. These findings have translational relevance given that PDE9-I is already being studied in humans for indications including heart failure, and efficacy against obesity/CMS would enhance its therapeutic utility.

Authors

Sumita Mishra, Nandhini Sadagopan, Brittany Dunkerly-Eyring, Susana Rodriguez, Dylan C. Sarver, Ryan P. Ceddia, Sean A. Murphy, Hildur Knutsdottir, Vivek P. Jani, Deepthi Ashok, Christian U. Oeing, Brian O’Rourke, Jon A. Gangoiti, Dorothy D. Sears, G. William Wong, Sheila Collins, David A. Kass

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Total citations by year

Year: 2025 2024 2023 2022 Total
Citations: 3 7 7 4 21
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2023 (7)

Title and authors Publication Year
Phosphodiesterase 4B inhibition: a potential novel strategy for treating pulmonary fibrosis
Kolb M, Crestani B, Maher TM
European Respiratory Review 2023
Perspectives of PDE inhibitor on treating idiopathic pulmonary fibrosis
Yang X, Xu Z, Hu S, Shen J
Frontiers in pharmacology 2023
Transient receptor potential canonical type 6 (TRPC6) O-GlcNAcylation at Threonine-221 plays potent role in channel regulation
Mishra S, Ma J, McKoy D, Sasaki M, Farinelli F, Page RC, Ranek MJ, Zachara N, Kass DA
iScience 2023
The 10th International Conference on cGMP 2022: recent trends in cGMP research and development-meeting report.
Friebe A, Kraehling JR, Russwurm M, Sandner P, Schmidtko A
Naunyn-Schmiedeberg's Archives of Pharmacology 2023
Dysregulated Cyclic Nucleotide Metabolism in Alcohol-Associated Steatohepatitis: Implications for Novel Targeted Therapies
Montoya-Durango D, Walter MN, Rodriguez W, Wang Y, Chariker JH, Rouchka EC, Maldonado C, Barve S, McClain CJ, Gobejishvili L
Biology 2023
Disrupted propionate metabolism evokes transcriptional changes in the heart by increasing histone acetylation and propionylation
Park KC, Crump NT, Louwman N, Krywawych S, Cheong YJ, Vendrell I, Gill EK, Gunadasa-Rohling M, Ford KL, Hauton D, Fournier M, Pires E, Watson L, Roseman G, Holder J, Koschinski A, Carnicer R, Curtis MK, Zaccolo M, Hulikova A, Fischer R, Kramer HB, McCullagh JS, Trefely S, Milne TA, Swietach P
2023
An improved reporter identifies ruxolitinib as a potent and cardioprotective CaMKII inhibitor
Gaido OE, Pavlaki N, Granger JM, Mesubi OO, Liu B, Lin BL, Long A, Walker D, Mayourian J, Schole KL, Terrillion CE, Nkashama LJ, Hulsurkar MM, Dorn LE, Ferrero KM, Huganir RL, Müller FU, Wehrens XH, Liu JO, Luczak ED, Bezzerides VJ, Anderson ME
Science Translational Medicine 2023

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