Literature DB >> 33424829

Physical Characterization of Colorectal Cancer Spheroids and Evaluation of NK Cell Infiltration Through a Flow-Based Analysis.

Azzurra Sargenti1, Francesco Musmeci1, Francesco Bacchi1, Cecilia Delprete2, Domenico Andrea Cristaldi1, Federica Cannas1, Simone Bonetti1, Simone Pasqua1, Daniele Gazzola1, Delfina Costa3, Federico Villa3, Maria Raffaella Zocchi4, Alessandro Poggi3.   

Abstract

To improve pathogenetic studies in cancer development and reliable preclinical testing of anti-<span class="Disease">cancer treatments, three-dimensional (3D) cultures, including spheroids, have been widely recognized as more physiologically relevant in vitro models of in vivo tumor behavior. Currently, the generation of uniformly sized spheroids is still challenging: different 3D cell culture methods produce heterogeneous populations in dimensions and morphology, that may strongly influence readouts reliability correlated to tumor growth rate or antitumor natural killer (NK) cell-mediated cytotoxicity. In this context, an increasing consensus claims the integration of microfluidic technologies within 3D cell culture, as the physical characterization of tumor spheroids is unavoidably demanded to standardize protocols and assays for in vitro testing. In this paper, we employed a flow-based method specifically conceived to measure weight, size and focused onto mass density values of tumor spheroids. These measurements are combined with confocal and digital imaging of such samples. We tested the spheroids of four colorectal cancer (CRC) cell lines that exhibit statistically relevant differences in their physical characteristics, even though starting from the same cell seeding density. These variations are seemingly cell line-dependent and associated with the number of growing cells and the degree of spheroid compaction as well, supported by different adenosine-triphosphate contents. We also showed that this technology can estimate the NK cell killing efficacy by measuring the weight loss and diameter shrinkage of tumor spheroids, alongside with the commonly used cell viability in vitro test. As the activity of NK cells relies on their infiltration rate, the in vitro sensitivity of CRC spheroids proved to be exposure time- and cell line-dependent with direct correlation to the cell viability reduction. All these functional aspects can be measured by the system and are documented by digital image analysis. In conclusion, this flow-based method potentially paves the way towards standardization of 3D cell cultures and its early adoption in cancer research to test antitumor immune response and set up new immunotherapy strategies.
Copyright © 2020 Sargenti, Musmeci, Bacchi, Delprete, Cristaldi, Cannas, Bonetti, Pasqua, Gazzola, Costa, Villa, Zocchi and Poggi.

Entities:  

Keywords:  3D cell culture; colorectal cancer; mass density; microfluidics; natural killer cells; spheroid; weight

Mesh:

Year:  2020        PMID: 33424829      PMCID: PMC7786051          DOI: 10.3389/fimmu.2020.564887

Source DB:  PubMed          Journal:  Front Immunol        ISSN: 1664-3224            Impact factor:   7.561


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Review 2.  NK cells and cancer: you can teach innate cells new tricks.

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Review 3.  Emerging tumor spheroids technologies for 3D in vitro cancer modeling.

Authors:  Tânia Rodrigues; Banani Kundu; Joana Silva-Correia; S C Kundu; Joaquim M Oliveira; Rui L Reis; Vitor M Correlo
Journal:  Pharmacol Ther       Date:  2017-10-31       Impact factor: 12.310

4.  Spheroid-based 3-dimensional culture models: Gene expression and functionality in head and neck cancer.

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Review 6.  Microfluidic 3D cell culture: potential application for tissue-based bioassays.

Authors:  Xiujun James Li; Alejandra V Valadez; Peng Zuo; Zhihong Nie
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Journal:  Sci Rep       Date:  2018-06-08       Impact factor: 4.379

8.  A Reliable Flow-Based Method for the Accurate Measure of Mass Density, Size and Weight of Live 3D Tumor Spheroids.

Authors:  Domenico Andrea Cristaldi; Azzurra Sargenti; Simone Bonetti; Francesco Musmeci; Cecilia Delprete; Francesco Bacchi; Simone Pasqua; Carola Cavallo; Laura Bonsi; Francesco Alviano; Daniele Gazzola; Spartaco Santi
Journal:  Micromachines (Basel)       Date:  2020-04-28       Impact factor: 2.891

9.  The flaws and human harms of animal experimentation.

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10.  Oxygen Partial Pressure Is a Rate-Limiting Parameter for Cell Proliferation in 3D Spheroids Grown in Physioxic Culture Condition.

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Journal:  Front Immunol       Date:  2022-06-07       Impact factor: 8.786

3.  A new method for the study of biophysical and morphological parameters in 3D cell cultures: Evaluation in LoVo spheroids treated with crizotinib.

Authors:  Azzurra Sargenti; Francesco Musmeci; Carola Cavallo; Martina Mazzeschi; Simone Bonetti; Simone Pasqua; Francesco Bacchi; Giuseppe Filardo; Daniele Gazzola; Mattia Lauriola; Spartaco Santi
Journal:  PLoS One       Date:  2021-06-08       Impact factor: 3.240

Review 4.  3D Models as a Tool to Assess the Anti-Tumor Efficacy of Therapeutic Antibodies: Advantages and Limitations.

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5.  HAMP as a Prognostic Biomarker for Colorectal Cancer Based on Tumor Microenvironment Analysis.

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6.  A multi-organ-on-chip to recapitulate the infiltration and the cytotoxic activity of circulating NK cells in 3D matrix-based tumor model.

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Review 7.  Pediatric Tumors-Mediated Inhibitory Effect on NK Cells: The Case of Neuroblastoma and Wilms' Tumors.

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