Bidirectional interactions between cancer cells and their microenvironment govern tumor progression. Among the stromal cells in this microenvironment, adipocytes have been reported to upregulate cancer cell migration and invasion by producing fatty acids. Conversely, cancer cells alter adipocyte phenotype notably via increased lipolysis. We aimed to identify the mechanisms through which cancer cells trigger adipocyte lipolysis and evaluate the functional consequences on cancer progression. Here, we show that cancer cell-induced acidification of the extracellular medium strongly promotes preadipocyte lipolysis through a mechanism that does not involve lipophagy but requires adipose triglyceride lipase (ATGL) activity. This increased lipolysi...
Obesity and excess accumulation of adipose tissue are known risk factors for several types of cancer...
Recent studies indicate that adipose tissue in obesity promotes breast cancer progression by secreti...
Background: Obesity and associated metabolic conditions impact adipocyte functionality with potentia...
Abstract Background Obesity is...
BACKGROUND: Obesity is associated with increased recurrence and reduced survival of breast cancer. A...
International audienceWhite adipose tissue interacts closely with breast cancers through the secreti...
Abstract Background To determine whether adipocyte-derived lipids could be transferred into breast c...
Acidosis, a common characteristic of the tumor microenvironment, is associated with alterations in m...
Cancer progression is strongly influenced by the physico-chemical properties of the tumor microenvir...
SummaryTumor cells display progressive changes in metabolism that correlate with malignancy, includi...
Acquisition of a lipid-laden phenotype by immune cells has been defined in infectious diseases and a...
Mammary adipose tissue (AT) is necessary for breast epithelium. However, in breast cancer (BC), cell...
Obesity is a prominent risk factor for certain types of tumor progression. Adipocytes within tumor s...
We sought to identify therapeutic targets for breast cancer by investigating the metabolic symbiosis...
International audienceBreast adiposity is correlated with body mass index, menopausal status and mam...
Obesity and excess accumulation of adipose tissue are known risk factors for several types of cancer...
Recent studies indicate that adipose tissue in obesity promotes breast cancer progression by secreti...
Background: Obesity and associated metabolic conditions impact adipocyte functionality with potentia...
Abstract Background Obesity is...
BACKGROUND: Obesity is associated with increased recurrence and reduced survival of breast cancer. A...
International audienceWhite adipose tissue interacts closely with breast cancers through the secreti...
Abstract Background To determine whether adipocyte-derived lipids could be transferred into breast c...
Acidosis, a common characteristic of the tumor microenvironment, is associated with alterations in m...
Cancer progression is strongly influenced by the physico-chemical properties of the tumor microenvir...
SummaryTumor cells display progressive changes in metabolism that correlate with malignancy, includi...
Acquisition of a lipid-laden phenotype by immune cells has been defined in infectious diseases and a...
Mammary adipose tissue (AT) is necessary for breast epithelium. However, in breast cancer (BC), cell...
Obesity is a prominent risk factor for certain types of tumor progression. Adipocytes within tumor s...
We sought to identify therapeutic targets for breast cancer by investigating the metabolic symbiosis...
International audienceBreast adiposity is correlated with body mass index, menopausal status and mam...
Obesity and excess accumulation of adipose tissue are known risk factors for several types of cancer...
Recent studies indicate that adipose tissue in obesity promotes breast cancer progression by secreti...
Background: Obesity and associated metabolic conditions impact adipocyte functionality with potentia...