Differential Gene Expression of fresh tissue and patient-derived explants’ matricellular proteins augment inflammatory breast cancer metastasis: the possible role of IL-6 and MCP-1

Author:

Tarek Alshaimaa1ORCID,Mohamed Hossam Taha12ORCID,El-Sharkawy Aya Ali1ORCID,El-Sayed Shrouk Khalaf1ORCID,Hirshon Jon Mark3ORCID,Woodward Wendy A4ORCID,El-Shinawi Mohamed56ORCID,Mohamed Mona Mostafa1ORCID

Affiliation:

1. Department of Zoology, Faculty of Science, Cairo University From the , Giza 12613, Egypt

2. Faculty of Biotechnology, October University for Modern Sciences and Arts , Giza 12451, Egypt

3. School of Medicine, University of Maryland , Baltimore, MD 21201, USA

4. Morgan Welch Inflammatory Breast Cancer Research Program and Clinic, Department of Radiation Oncology, The University of Texas MD Anderson Cancer Center , Houston, TX 77030, USA

5. Faculty of Medicine, Galala University, Suez 43511 , Egypt

6. Department of General Surgery, Faculty of Medicine, Ain Shams University, Cairo 11566 , Egypt

Abstract

Summary Background Matricellular proteins comprising matrisome and adhesome are responsible for structure integrity and interactions between cells in the tumour microenvironment of breast cancer. Changes in the gene expression of matrisome and adhesome augment metastasis. Since inflammatory breast cancer (IBC) is characterized by high metastatic behaviour. Herein, we compared the gene expression profile of matrisome and adhesome in non-IBC and IBC in fresh tissue and ex vivo patient-derived explants (PDEs) and we also compared the secretory inflammatory mediators of PDEs in non-IBC and IBC to identify secretory cytokines participate in cross-talk between cells via interactions with matrisome and adhisome. Methods Fifty patients (31 non-IBC and 19 IBC) were enrolled in the present study. To test their validation in clinical studies, PDEs were cultured as an ex vivo model. Gene expression and cytokine array were used to identify candidate genes and cytokines contributing to metastasis in the examined fresh tissues and PDEs. Bioinformatics analysis was applied on identified differentially expressed genes using GeneMANIA and Metascape gene annotation and analysis resource to identify pathways involved in IBC metastasis. Results Normal and cancer fresh tissues and PDEs of IBC were characterized by overexpression of CDH1 and MMP14 and downregulation of CTNNA1 and TIMP1 compared with non-IBC. The secretome of IBC cancer PDEs is characterized by significantly high expression of interleukin 6 and monocyte chemoattractant protein-1 (CCL2) compared with non-IBC. Conclusion Genes expressed by adhisome and matrisome play a significant role in IBC metastasis and should be considered novel target therapy.

Funder

Fogarty International Center

National Institutes of Health

NIH

Academy of Scientific Research and Technology

Cairo University Scientific Research Sector

Publisher

Oxford University Press (OUP)

Subject

General Medicine

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