Literature DB >> 26599258

Enhanced Metastatic Potential in a 3D Tissue Scaffold toward a Comprehensive in Vitro Model for Breast Cancer Metastasis.

Gowri Manohari Balachander1, Sai A Balaji1, Annapoorni Rangarajan1, Kaushik Chatterjee1.   

Abstract

Metastasis is clinically the most challenging and lethal aspect of breast cancer. While animal-based xenograft models are expensive and time-consuming, conventional two-dimensional (2D) cell culture systems fail to mimic in vivo signaling. In this study we have developed a three-dimensional (3D) scaffold system that better mimics the topography and mechanical properties of the breast tumor, thus recreating the tumor microenvironment in vitro to study breast cancer metastasis. Porous poly(ε-caprolactone) (PCL) scaffolds of modulus 7.0 ± 0.5 kPa, comparable to that of breast tumor tissue were fabricated, on which MDA-MB-231 cells proliferated forming tumoroids. A comparative gene expression analysis revealed that cells growing in the scaffolds expressed increased levels of genes implicated in the three major events of metastasis, viz., initiation, progression, and the site-specific colonization compared to cells grown in conventional 2D tissue culture polystyrene (TCPS) dishes. The cells cultured in scaffolds showed increased invasiveness and sphere formation efficiency in vitro and increased lung metastasis in vivo. A global gene expression analysis revealed a significant increase in the expression of genes involved in cell-cell and cell-matrix interactions and tissue remodeling, cancer inflammation, and the PI3K/Akt, Wnt, NF-kappaB, and HIF1 signaling pathways-all of which are implicated in metastasis. Thus, culturing breast cancer cells in 3D scaffolds that mimic the in vivo tumor-like microenvironment enhances their metastatic potential. This system could serve as a comprehensive in vitro model to investigate the manifold mechanisms of breast cancer metastasis.

Entities:  

Keywords:  breast cancer; cancer; mechanotransduction; metastasis; tissue scaffolds

Mesh:

Substances:

Year:  2015        PMID: 26599258     DOI: 10.1021/acsami.5b09064

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  15 in total

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2.  3d Tissue Engineered In Vitro Models Of Cancer In Bone.

Authors:  Anna M Sitarski; Heather Fairfield; Carolyne Falank; Michaela R Reagan
Journal:  ACS Biomater Sci Eng       Date:  2017-06-09

3.  Applying phasor approach analysis of multiphoton FLIM measurements to probe the metabolic activity of three-dimensional in vitro cell culture models.

Authors:  Pirmin H Lakner; Michael G Monaghan; Yvonne Möller; Monilola A Olayioye; Katja Schenke-Layland
Journal:  Sci Rep       Date:  2017-02-13       Impact factor: 4.379

Review 4.  Alternative therapies for metastatic breast cancer: multimodal approach targeting tumor cell heterogeneity.

Authors:  Manpreet Sambi; Sabah Haq; Vanessa Samuel; Bessi Qorri; Fiona Haxho; Kelli Hill; William Harless; Myron R Szewczuk
Journal:  Breast Cancer (Dove Med Press)       Date:  2017-02-28

Review 5.  Biomimetic Designer Scaffolds Made of D,L-Lactide-ɛ-Caprolactone Polymers by 2-Photon Polymerization.

Authors:  Nicole Hauptmann; Qilin Lian; Johanna Ludolph; Holger Rothe; Gerhard Hildebrand; Klaus Liefeith
Journal:  Tissue Eng Part B Rev       Date:  2019-05-02       Impact factor: 6.389

Review 6.  In Vitro 3D Cultures to Reproduce the Bone Marrow Niche.

Authors:  Justin Ham; Lauren Lever; Maura Fox; Michaela R Reagan
Journal:  JBMR Plus       Date:  2019-10-01

7.  Extracellular matrix mediators of metastatic cell colonization characterized using scaffold mimics of the pre-metastatic niche.

Authors:  Brian A Aguado; Jordan R Caffe; Dhaval Nanavati; Shreyas S Rao; Grace G Bushnell; Samira M Azarin; Lonnie D Shea
Journal:  Acta Biomater       Date:  2016-02-01       Impact factor: 8.947

Review 8.  Signaling pathways in cancer-associated fibroblasts and targeted therapy for cancer.

Authors:  Fanglong Wu; Jin Yang; Junjiang Liu; Ye Wang; Jingtian Mu; Qingxiang Zeng; Shuzhi Deng; Hongmei Zhou
Journal:  Signal Transduct Target Ther       Date:  2021-06-10

9.  3D hydrogel breast cancer models for studying the effects of hypoxia on epithelial to mesenchymal transition.

Authors:  Ying Wang; Sameer Mirza; Shaohua Wu; Jiping Zeng; Wen Shi; Hamid Band; Vimla Band; Bin Duan
Journal:  Oncotarget       Date:  2018-08-14

10.  A Novel Ex Vivo System Using 3D Polymer Scaffold to Culture Circulating Tumor Cells from Breast Cancer Patients Exhibits Dynamic E-M Phenotypes.

Authors:  Tamasa De; Shina Goyal; Gowri Balachander; Kaushik Chatterjee; Prashant Kumar; Govind Babu K; Annapoorni Rangarajan
Journal:  J Clin Med       Date:  2019-09-16       Impact factor: 4.241

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