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Metabolic and transcriptional effects of bazedoxifene/conjugated estrogens in a model of obesity-associated breast cancer risk
Erin D. Giles, Katherine L. Cook, Ramsey M. Jenschke, Karen A. Corleto, Danilo Landrock, Tara N. Mahmood, Katherine E. Sanchez, Alina Levin, Stephen D. Hursting, Bruce F. Kimler, Barry S. Komm, Carol J. Fabian
Erin D. Giles, Katherine L. Cook, Ramsey M. Jenschke, Karen A. Corleto, Danilo Landrock, Tara N. Mahmood, Katherine E. Sanchez, Alina Levin, Stephen D. Hursting, Bruce F. Kimler, Barry S. Komm, Carol J. Fabian
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Research Article Metabolism Oncology

Metabolic and transcriptional effects of bazedoxifene/conjugated estrogens in a model of obesity-associated breast cancer risk

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Abstract

Many risk-eligible women refuse tamoxifen for primary prevention of breast cancer due to concerns about common side effects such as vasomotor symptoms. Tamoxifen may also induce or worsen insulin resistance and hypertriglyceridemia, especially in women with obesity. The combination of bazedoxifene and conjugated estrogens (BZA/CE) reduces vasomotor symptoms and is currently undergoing evaluation for breast cancer risk reduction. However, the impact of BZA/CE on insulin resistance and metabolic health, particularly in those with excess adiposity, is understudied. Here, we examined the effects of obesity on response to BZA/CE in a rat model of breast cancer risk using older ovary-intact rats. Female Wistar rats received carcinogen to increase mammary cancer risk and were fed a high-fat diet to promote obesity. Lean and obese rats were selected based on adiposity, and then randomized to BZA/CE or vehicle for 8 weeks. BZA/CE reduced adiposity, enriched small (insulin-sensitive) mammary adipocytes, increased the abundance of beneficial metabolic gut microbes (Faecalbaculum rodentium and Odoribacter laneus), and reversed obesity-associated changes in lipids and adipokines. BZA/CE also reversed obesity-induced mammary enrichment of cell proliferation pathways, consistent with risk-reducing effects. Together, these data support the use of BZA/CE to improve metabolic health and reduce breast cancer risk in individuals with obesity.

Authors

Erin D. Giles, Katherine L. Cook, Ramsey M. Jenschke, Karen A. Corleto, Danilo Landrock, Tara N. Mahmood, Katherine E. Sanchez, Alina Levin, Stephen D. Hursting, Bruce F. Kimler, Barry S. Komm, Carol J. Fabian

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Figure 4

Impact of BZA/CE on the gut microbiome.

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Impact of BZA/CE on the gut microbiome.
(A) Principal coordinate analysi...
(A) Principal coordinate analysis (PCoA) of β-diversity (Bray-Curtis dissimilarity index) showing no difference between BZA/CE-treated versus control rats. (B) Proportional abundance of each microbiome phylum in control and BZA/CE-treated rats. Bar graph indicates mean ± SEM. (C) Relative proportional abundance of bacterial species in control and BZA/CE-treated rats. Each colored box in the bar graph represents a bacterial taxon and the height of the box represents the relative abundance of that bacteria within the sample. “Other” represents lower abundance taxa. (D) Proportional abundance of key bacterial species known to be linked to obesity/metabolic health that were also altered with BZA/CE treatment. Box-and-whisker plots indicate mean ± interquartile range, and were analyzed by Mann-Whitney test. *P < 0.05, **P < 0.01. (E) Correlation between the proportional abundance of Faecalbaculum rodentium and end-of-study plasma leptin and percentage body fat; Spearman’s correlation coefficients are shown. All analyses represent n = 13–14 control and 16 BZA/CE-treated rats.

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