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Heterogeneous perivascular cell coverage affects breast cancer metastasis and response to chemotherapy
Jiha Kim, Pedro Correa de Sampaio, Donna Marie Lundy, Qian Peng, Kurt W. Evans, Hikaru Sugimoto, Mihai Gagea, Yvonne Kienast, Nayra Soares do Amaral, Rafael Malagoli Rocha, Hans Petter Eikesdal, Per Eystein Lønning, Funda Meric-Bernstam, Valerie S. LeBleu
Jiha Kim, Pedro Correa de Sampaio, Donna Marie Lundy, Qian Peng, Kurt W. Evans, Hikaru Sugimoto, Mihai Gagea, Yvonne Kienast, Nayra Soares do Amaral, Rafael Malagoli Rocha, Hans Petter Eikesdal, Per Eystein Lønning, Funda Meric-Bernstam, Valerie S. LeBleu
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Research Article Angiogenesis Vascular biology

Heterogeneous perivascular cell coverage affects breast cancer metastasis and response to chemotherapy

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Abstract

Angiogenesis and co-optive vascular remodeling are prerequisites of solid tumor growth. Vascular heterogeneity, notably perivascular composition, may play a critical role in determining the rate of cancer progression. The contribution of vascular pericyte heterogeneity to cancer progression and therapy response is unknown. Here, we show that angiopoietin-2 (Ang2) orchestrates pericyte heterogeneity in breast cancer with an effect on metastatic disease and response to chemotherapy. Using multispectral imaging of human breast tumor specimens, we report that perivascular composition, as defined by the ratio of PDGFRβ– and desmin+ pericytes, provides information about the response to epirubicin but not paclitaxel. Using 17 distinct patient-derived breast cancer xenografts, we demonstrate a cancer cell–derived influence on stromal Ang2 production and a cancer cell–defined control over tumor vasculature and perivascular heterogeneity. The aggressive features of tumors and their distinct response to therapies may thus emerge by the cancer cell–defined engagement of distinct and heterogeneous angiogenic programs.

Authors

Jiha Kim, Pedro Correa de Sampaio, Donna Marie Lundy, Qian Peng, Kurt W. Evans, Hikaru Sugimoto, Mihai Gagea, Yvonne Kienast, Nayra Soares do Amaral, Rafael Malagoli Rocha, Hans Petter Eikesdal, Per Eystein Lønning, Funda Meric-Bernstam, Valerie S. LeBleu

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Figure 2

Specific perivascular composition correlates with the outcome of epirubicin-treated breast cancer patients.

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Specific perivascular composition correlates with the outcome of epirubi...
(A) Representative multispectral images of multiplex stained tissue microarray sections, displaying differential pericyte coverage levels. Enlarged images are provided for each core. Scale bars: 100 μm. Images on the bottom row are higher-magnification images of boxed areas shown in the top row. (B and C) Disease-specific survival (B) and relapse-free survival (C) analysis of all breast cancer patients in cohort 2, stratified based on the pericyte PDGFRβ– desmin+/PDGFRβ+ desmin– ratio. (D and E) Disease-specific survival (D) and relapse-free survival (E) analysis of patients who received epirubicin monotherapy, stratified on the same ratio of PDGFRβ–desmin+/PDGFRβ+desmin– pericyte coverage. (F and G) Disease-specific survival (F) and relapse-free survival (G) analysis of patients who received paclitaxel monotherapy, stratified on the same ratio of PDGFRβ–desmin+/PDGFRβ+desmin– pericyte coverage. For disease-specific survival analysis, total number of patients, n = 144; epirubicin monotherapy, n = 51; paclitaxel monotherapy, n = 42. For relapse-free survival analysis, total number of patients, n = 129; epirubicin monotherapy, n = 48; paclitaxel monotherapy, n = 36. Log-rank test was used to determine statistical significance.

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