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Amyloid beta 42 alters cardiac metabolism and impairs cardiac function in obesity

Hall, L. G.; Czeczor, J. K.; Connor, T.; Botella, J.; De Jong, K. A.; Renton, M. C.; Genders, A. J.; Venardos, K.; Martin, S. D.; Bond, S. T.; Aston-Mourney, K.; Howlett, K. F.; Campbell, J. A.; Collier, G. R.; Walder, K. R.; McKenzie, M.; Ziemann, M.; McGee, S.

2022-10-05 physiology
10.1101/2022.10.02.510555 bioRxiv
Show abstract

There are epidemiological associations between obesity and type 2 diabetes, cardiovascular disease and Alzheimers disease. While some common aetiological mechanisms are known, the role of amyloid beta 42 (A{beta}42) in these diverse chronic diseases is obscure. Here we show that adipose tissue releases A{beta}42, which is increased from adipose tissue of obese mice and is associated with higher plasma A{beta}42. Increasing circulating A{beta}42 levels in non-obese mice had no effect on systemic glucose homeostasis but had obesity-like effects on the heart, including reduced cardiac glucose clearance and impaired cardiac function. These effects on cardiac function were not observed when circulating levels of the closely related A{beta}40 isoform were increased. Administration of an A{beta} neutralising antibody prevented obesity-induced cardiac dysfunction and hypertrophy. Furthermore, A{beta} neutralising antibody administration in established obesity prevented further deterioration of cardiac function. Multi-contrast transcriptomic analyses revealed that A{beta}42 impacted pathways of mitochondrial metabolism and exposure of cardiomyocytes to A{beta}42 inhibited mitochondrial function. These data reveal a role for systemic A{beta}42 in the development of cardiac disease in obesity and suggest that therapeutics designed for Alzheimers disease could be effective in combating obesity-induced heart failure.

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