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Analysis of Cancer Cell Invasion and Anti-metastatic Drug Screening Using Hydrogel Micro-chamber Array HMCA-based Plates
Published on: October 25, 2018
Hydrogel microstructure live-cell array for multiplexed analyses of cancer stem cells, tumor heterogeneity and
E Afrimzon1, G Botchkina, N Zurgil
1Physics Department, The Biophysical Interdisciplinary Schottenstein Center for the Research and Technology of the Cellome, Bar Ilan University, Bldg 214, 5290002, Ramat Gan, Israel. motti.jsc@gmail.com.
Abstract:
Specific phenotypic subpopulations of cancer stem cells (CSCs) are responsible for tumor development, production of heterogeneous differentiated tumor mass, metastasis, and resistance to therapies. The development of therapeutic approaches based on targeting rare CSCs has been limited partially due to the lack of appropriate experimental models and measurement approaches. The current study presents new tools and methodologies based on a hydrogel microstructure array (HMA) for identification and multiplex analyses of CSCs. Low-melt agarose integrated with type I collagen, a major component of the extracellular matrix (ECM), was used to form a solid hydrogel array with natural non-adhesive characteristics and high optical quality. The array contained thousands of individual pyramidal shaped, nanoliter-volume micro-chambers (MCs), allowing concomitant generation and measurement of large populations of free-floating CSC spheroids from single cells, each in an individual micro-chamber (MC). The optical live cell platform, based on an imaging plate patterned with HMA, was validated using CSC-enriched prostate and colon cancer cell lines. The HMA methodology and quantitative image analysis at single-element resolution clearly demonstrates several levels of tumor cell heterogeneity, including morphological and phenotypic variability, differences in proliferation capacity and in drug response. Moreover, the system facilitates real-time examination of single stem cell (SC) fate, as well as drug-induced alteration in expression of stemness markers. The technology may be applicable in personalized cancer treatment, including multiplex ex vivo analysis of heterogeneous patient-derived tumor specimens, precise detection and characterization of potentially dangerous cell phenotypes, and for representative evaluation of drug sensitivity of CSCs and other types of tumor cells.
Insights
New hydrogel microstructure arrays (HMAs) enable precise, multiplex analysis of cancer stem cells (CSCs). This technology reveals tumor heterogeneity and aids in evaluating drug sensitivity for personalized cancer therapy.
Area of Science:
- Biotechnology and Biomedical Engineering
- Cancer Research and Therapeutics
- Cell Biology and Stem Cell Science
Background:
- Cancer stem cells (CSCs) drive tumor development, metastasis, and therapy resistance.
- Effective targeting of rare CSCs is hindered by a lack of suitable experimental models and measurement tools.
- Understanding CSC heterogeneity is crucial for developing advanced cancer treatments.
Purpose of the Study:
- To introduce novel tools and methodologies for the identification and multiplex analysis of cancer stem cells (CSCs).
- To develop an experimental model for characterizing CSC heterogeneity and drug responses.
- To enable personalized cancer treatment through advanced ex vivo analysis of patient-derived tumor specimens.
Main Methods:
- Development of a hydrogel microstructure array (HMA) using low-melt agarose and type I collagen.
- Fabrication of thousands of individual, nanoliter-volume micro-chambers (MCs) within the HMA for free-floating CSC spheroid generation.
- Validation using CSC-enriched prostate and colon cancer cell lines on an optical live cell platform with quantitative image analysis.
Main Results:
- The HMA platform successfully generated and measured large populations of CSC spheroids from single cells.
- Quantitative image analysis revealed significant tumor cell heterogeneity, including morphological, phenotypic, and proliferation variability.
- The system demonstrated real-time monitoring of single stem cell fate and drug-induced changes in stemness markers.
Conclusions:
- The hydrogel microstructure array (HMA) provides a powerful tool for analyzing CSCs and their heterogeneity.
- This technology facilitates precise characterization of dangerous cell phenotypes and evaluation of drug sensitivity.
- The HMA methodology holds significant potential for personalized cancer treatment strategies and drug development.
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