In Vitro Models of Ovarian Cancer: Bridging the Gap between Pathophysiology and Mechanistic Models

被引:11
作者
Lopez, Elliot [1 ]
Kamboj, Sahil [2 ]
Chen, Changchong [1 ]
Wang, Zixu [1 ]
Kellouche, Sabrina [2 ]
Leroy-Dudal, Johanne [2 ]
Carreiras, Franck [2 ]
Lambert, Ambroise [2 ]
Aime, Carole [1 ]
机构
[1] PSL Univ, Sorbonne Univ, Ecole Normale Super, Dept Chim,PASTEUR,CNRS, F-75005 Paris, France
[2] CY Cergy Paris Univ, Inst Mat, Equipe Rech Relat Matrice Extracellulaire Cellules, ERRMECe,EA1391,Grp Matrice Extracelluaire & Mat,I, F-95031 Neuville Sur Oise, France
关键词
ovarian cancer; epithelial-to-mesenchymal transition; ascites; biological engineering; mechanotransduction; extracellular matrix; shear stress; microfluidics; in vitro models; EPITHELIAL-MESENCHYMAL TRANSITION; CELL-CYCLE ARREST; EXTRACELLULAR-MATRIX; MESOTHELIAL CELLS; TUMOR MICROENVIRONMENT; ANOIKIS RESISTANCE; MOLECULAR-FEATURES; INITIATING CELLS; DRUG-RESISTANCE; SHEAR-STRESS;
D O I
10.3390/biom13010103
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Ovarian cancer (OC) is a disease of major concern with a survival rate of about 40% at five years. This is attributed to the lack of visible and reliable symptoms during the onset of the disease, which leads over 80% of patients to be diagnosed at advanced stages. This implies that metastatic activity has advanced to the peritoneal cavity. It is associated with both genetic and phenotypic heterogeneity, which considerably increase the risks of relapse and reduce the survival rate. To understand ovarian cancer pathophysiology and strengthen the ability for drug screening, further development of relevant in vitro models that recapitulate the complexity of OC microenvironment and dynamics of OC cell population is required. In this line, the recent advances of tridimensional (3D) cell culture and microfluidics have allowed the development of highly innovative models that could bridge the gap between pathophysiology and mechanistic models for clinical research. This review first describes the pathophysiology of OC before detailing the engineering strategies developed to recapitulate those main biological features.
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页数:28
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共 161 条
[31]   New models of hematogenous ovarian cancer metastasis demonstrate preferential spread to the ovary and a requirement for the ovary for abdominal dissemination [J].
Coffman, Lan G. ;
Burgos-Ojeda, Daniela ;
Wu, Rong ;
Cho, Kathleen ;
Bai, Shoumei ;
Buckanovich, Ronald J. .
TRANSLATIONAL RESEARCH, 2016, 175 :92-102
[32]   Advances in ovarian cancer therapy [J].
Cortez, Alexander J. ;
Tudrej, Patrycja ;
Kujawa, Katarzyna A. ;
Lisowska, Katarzyna M. .
CANCER CHEMOTHERAPY AND PHARMACOLOGY, 2018, 81 (01) :17-38
[33]   A microfluidic platform for cultivating ovarian cancer spheroids and testing their responses to chemotherapies [J].
Dadgar, Neda ;
Gonzalez-Suarez, Alan M. ;
Fattahi, Pouria ;
Hou, Xiaonan ;
Weroha, John S. ;
Gaspar-Maia, Alexandre ;
Stybayeva, Gulnaz ;
Revzin, Alexander .
MICROSYSTEMS & NANOENGINEERING, 2020, 6 (01)
[34]   Activation of SphK1 by adipocytes mediates epithelial ovarian cancer cell proliferation [J].
Dai, Lan ;
Wang, Chen ;
Song, Keqi ;
Wang, Wenjing ;
Di, Wen .
JOURNAL OF OVARIAN RESEARCH, 2021, 14 (01)
[35]   Empirical chemosensitivity testing in a spheroid model of ovarian cancer using a microfluidics-based multiplex platform [J].
Das, Tamal ;
Meunier, Liliane ;
Barbe, Laurent ;
Provencher, Diane ;
Guenat, Olivier ;
Gervais, Thomas ;
Mes-Masson, Anne-Marie .
BIOMICROFLUIDICS, 2013, 7 (01)
[36]   Modelling TGFβR and Hh pathway regulation of prognostic matrisome molecules in ovarian cancer [J].
Delaine-Smith, Robin M. ;
Maniati, Eleni ;
Malacrida, Beatrice ;
Nichols, Sam ;
Roozitalab, Reza ;
Jones, Roanne R. ;
Lecker, Laura S. M. ;
Pearce, Oliver M. T. ;
Knight, Martin M. ;
Balkwill, Frances R. .
ISCIENCE, 2021, 24 (06)
[37]   Native Collagen: Electrospinning of Pure, Cross-Linker-Free, SelfSupported Membrane [J].
Dems, Dounia ;
da Silva, Julien Rodrigues ;
Helary, Christophe ;
Wien, Frank ;
Marchand, Marion ;
Debons, Nicolas ;
Muller, Laurent ;
Chen, Yong ;
Schanne-Klein, Marie-Claire ;
Laberty-Robert, Christel ;
Krins, Natacha ;
Aime, Carole .
ACS APPLIED BIO MATERIALS, 2020, 3 (05) :2948-2957
[38]   Defining the role of matrix compliance and proteolysis in three-dimensional cell spreading and remodeling [J].
Dikovsky, Daniel ;
Bianco-Peled, Havazelet ;
Seliktar, Dror .
BIOPHYSICAL JOURNAL, 2008, 94 (07) :2914-2925
[39]   Cancer-Associated Fibroblasts Are Activated in Incipient Neoplasia to Orchestrate Tumor-Promoting Inflammation in an NF-κB-Dependent Manner [J].
Erez, Neta ;
Truitt, Morgan ;
Olson, Peter ;
Hanahan, Douglas .
CANCER CELL, 2010, 17 (02) :135-147
[40]   Patient-derived and artificial ascites have minor effects on MeT-5A mesothelial cells and do not facilitate ovarian cancer cell adhesion [J].
Estermann, Manuela ;
Huang, Yen-Lin ;
Septiadi, Dedy ;
Ritz, Danilo ;
Liang, Ching-Yeu ;
Jacob, Francis ;
Drasler, Barbara ;
Petri-Fink, Alke ;
Heinzelmann-Schwarz, Viola ;
Rothen-Rutishauser, Barbara .
PLOS ONE, 2020, 15 (12)