FP7Реинтеграция2011–2015

CAF and inflammation · Defining the molecular mechanisms of fibroblast-mediated inflammation and its role in cancer progression and metastasis

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2011-03-01 → 2015-02-28
Финансиране от ЕС
100 000 €
Участници
1
Схема
MC-IRG

Линиите свързват координатора с партньорите.

Накратко на български

Протеинът остеопонтин, отделян от рака на гърдата, превръща нормалните фибробласти в клетки, които поддържат възпалението и растежа на тумора. Разбирането на този механизъм помага да се разбере как се развива болестта и как се стимулират метастазите.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Defining the molecular mechanisms of fibroblast-mediated inflammation and its role in cancer progression and metastasis

Breast cancer continues to be one of the leading causes of cancer related mortality in women in the western world and inflammation is correlated with bad prognosis in breast cancer. Breast tumors are characterized by an extensive desmoplastic stroma, abundantly populated by fibroblasts. Cancer-Associated Fibroblasts (CAFs) are an activated sub-population of stromal fibroblasts, which have different characteristics in different tumor types and tissue locales. CAFs were shown to facilitate tumor growth by supporting tumor cell growth, enhancing angiogenesis and remodeling the extracellular matrix (ECM). We previously demonstrated that CAFs support tumorigenesis also by mediating inflammation in mouse and in human tumors. However, the role of CAFs in mediating tumor promoting inflammation in breast cancer is largely unknown and uncovering this role is a major aim of this project. We show that mammary fibroblasts can be educated by breast cancer cells to become activated to a pro-inflammatory state that supports malignant progression. Proteomic analysis of breast cancer cell–secreted factors identified the secreted pro inflammatory mediator osteopontin, which has been implicated in inflammation, tumor progression, and metastasis. Osteopontin was highly secreted by mouse and human breast cancer cells, and tumor cell–secreted Osteopontin activated CAF phenotypes in normal mammary fibroblasts in vitro and in vivo. Strikingly, silencing Osteopontin in tumor cells attenuated stromal activation, immune cell recruitment and inhibited tumor growth in vivo. Our findings establish a critical functional role for paracrine signaling by tumor-derived Osteopontin in reprograming normal fibroblasts into tumor-promoting CAFs. Moreover, by profiling the dynamic changes in CAFs isolated from distinct stages of mammary carcinogenesis, we have identified a novel pathway in mammary CAFs that links tissue damage with tumor-promoting inflammation called the NLRP3 inflammasome. The NLRP3 inflammasome is a multi-protein complex involved in sensing tissue damage and promoting the secretion of inflammatory cytokines. By utilizing a spontaneous model of murine breast carcinoma we study the role of CAF-derived NLRP3 inflammasome as a driver of tumor-promoting inflammation. In addition, we studied the role of CAFs in facilitating lung metastasis of breast tumors. Mortality from breast cancer is almost exclusively a result of tumor metastasis, and therefore, understanding the mechanisms that facilitate the formation of a hospitable metastatic niche is a central challenge in cancer research. Very little is known about the role of CAF-mediated inflammation in facilitating lung metastasis and uncovering this role is a major focus of our research. We show that fibroblasts at the metastatic microenvironment are gradually activated even before the detection of lung metastases. This activation included elevated expression of αSMA and pro-inflammatory genes and activation of pro-fibrotic signaling which included collagen deposition. Notably, our data suggest a link between enhanced deposition of collagen and pulmonary metastasis. Moreover, we show that a subpopulation of lung CAFs are specifically recruited from the bone marrow, and that this subpopulation of CAFs has a distinct pro-inflammatory signature as compared with resident fibroblasts. Thus, fibroblasts at the metastatic site co-evolve with tumor progression and facilitate pulmonary metastasis of breast cancer.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Breast cancer is one of the leading causes of cancer related mortality in women in the western world and inflammation is correlated with bad prognosis in breast cancer. Breast tumors are characterized by an extensive desmoplastic stroma, abundantly populated by fibroblasts. Cancer Associated Fibroblasts (CAFs) have been shown to promote the growth of mammary tumors by directly stimulating tumor cell proliferation and by enhancing angiogenesis, but their role in mediating inflammation in breast tumorigenesis is unknown. Despite the fact that most of cancer-related mortality is a result of tumor metastasis, and not of the primary tumor, very little is known to date about the role of the metastatic stroma in allowing disseminated tumor cells from the primary tumor to propagate and colonize the metastatic organ. Even less is known about the role of fibroblasts in this critical stage of the metastatic cascade. Using a genetically engineered mouse model of mammary carcinoma we will investigate pro-inflammatory signaling by CAFs during different stages of mammary tumorigenesis, starting at early hyperplastic lesions, elucidate its functional importance and define the molecular pathways that underlie inflammatory signaling by mammary CAFs in tumor progression and metastasis.

Оригинален текст от CORDIS (на английски).

Участници

  • TEL AVIV UNIVERSITY · Tel AvivКоординаторИзраел

Връзки

Данни: CORDIS, © Европейски съюз