4.6 Article

Cell adhesion molecules E-cadherin and CADM1 are differently expressed in canine inflammatory mammary cancer

期刊

RESEARCH IN VETERINARY SCIENCE
卷 152, 期 -, 页码 307-313

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ELSEVIER SCI LTD
DOI: 10.1016/j.rvsc.2022.08.027

关键词

Inflammatory breast cancer; E-cadherin; CADM1; COX-2; VEGF-A; VEGF-D

资金

  1. Spanish Ministry of Science, Innovation and Technology [SAF 2009-10572, PGC2018094516-B-I00]
  2. ECVP specialization residency in Veterinary Pathology grant from Complutense University [69/2018]
  3. Complutense Del Amo research grant

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This study found that the expression of E-cadherin and CADM1 was higher in canine inflammatory mammary cancer (IMC) cases, and their expression was associated with exacerbated angiogenesis and lymphangiogenesis factors. The upregulation of CADM1 suggests its potential role in the pathogenesis of IMC. The study highlights the importance of adhesion molecules in the metastatic process and angiogenesis in human inflammatory breast cancer (IBC) and IMC.
Human inflammatory breast cancer (IBC) and canine inflammatory mammary cancer (IMC) are the most aggressive and lethal types of mammary tumors with specific characteristics such as exacerbated angiogenesis, lymphangiogenesis and lymphangiotropism. E-cadherin expression is another specific feature of IBC not previously studied in canine IMC. In this study, the expression of E-cadherin and CADM1 (Cell Adhesion molecule 1) and their possible role as key molecules involved in the pathogenesis of IMC were immunohistochemically analyzed in 19 canine IMC and 15 grade III non-IMC cases. E-cadherin and CADM1 expression was higher in IMC cases (p = 0.002, p = 0.008, respectively). In the IMC group, E-cadherin cytoplasmic immunolabeling was more frequent (p = 0.035) and it was associated to the expression of the angiogenic and lymphangiogenic factors COX-2 (p = 0.009), VEGF-A (p = 0.031) and VEGF-D (p = 0.008). The differential mRNA expression between IMC and non-IMC was studied by microarray analysis in 6 cases. E-cadherin gene (CDH1) was not up-regulated in IMC cases at a transcriptional level; interestingly CADM1 was 7-fold upregulated. The differential expression of E-cadherin protein in IMC suggests a possible role of E-cadherin in the characteristic exacerbated angiogenesis and lymphangiogenesis and further support IMC as a natural model for the study of human IBC. Future studies in IBC and IMC including a broad panel of adhesion molecules are necessary to elucidate their role in the metastatic process and angiogenesis.

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