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1.
Sci Adv ; 5(8): eaaw6171, 2019 08.
Artículo en Inglés | MEDLINE | ID: mdl-31457089

RESUMEN

In tissues, cells reside in confining microenvironments, which may mechanically restrict the ability of a cell to double in size as it prepares to divide. How confinement affects cell cycle progression remains unclear. We show that cells progressed through the cell cycle and proliferated when cultured in hydrogels exhibiting fast stress relaxation but were mostly arrested in the G0/G1 phase of the cell cycle when cultured in hydrogels that exhibit slow stress relaxation. In fast-relaxing gels, activity of stretch-activated channels (SACs), including TRPV4, promotes activation of the phosphatidylinositol 3-kinase (PI3K)/Akt pathway, which in turn drives cytoplasmic localization of the cell cycle inhibitor p27Kip1, thereby allowing S phase entry and proliferation. Cell growth during G1 activated the TRPV4-PI3K/Akt-p27Kip1 signaling axis, but growth is inhibited in the confining slow-relaxing hydrogels. Thus, in confining microenvironments, cells sense when growth is sufficient for division to proceed through a growth-responsive signaling axis mediated by SACs.


Asunto(s)
Proliferación Celular , Puntos de Control de la Fase G1 del Ciclo Celular , Fosfatidilinositol 3-Quinasas/metabolismo , Proteínas Proto-Oncogénicas c-akt/metabolismo , Canales Catiónicos TRPV/metabolismo , Alginatos/química , Animales , Técnicas de Cultivo de Célula/métodos , Línea Celular Tumoral , Módulo de Elasticidad , Humanos , Hidrogeles/química , Presión Osmótica , Fosfatidilinositol 3-Quinasas/química , Proteínas Proto-Oncogénicas c-akt/antagonistas & inhibidores , Interferencia de ARN , ARN Interferente Pequeño/metabolismo , Transducción de Señal , Esferoides Celulares/citología , Esferoides Celulares/metabolismo , Estrés Mecánico , Canales Catiónicos TRPV/antagonistas & inhibidores , Canales Catiónicos TRPV/genética
2.
J Vis Exp ; (149)2019 07 05.
Artículo en Inglés | MEDLINE | ID: mdl-31329171

RESUMEN

In this protocol, we outline the procedure for generation of tumor spheroids within 384-well hanging droplets to allow for high-throughput screening of anti-cancer therapeutics in a physiologically representative microenvironment. We outline the formation of patient derived cancer stem cell spheroids, as well as, the manipulation of these spheroids for thorough analysis following drug treatment. Specifically, we describe collection of spheroid morphology, proliferation, viability, drug toxicity, cell phenotype and cell localization data. This protocol focuses heavily on analysis techniques that are easily implemented using the 384-well hanging drop platform, making it ideal for high throughput drug screening. While we emphasize the importance of this model in ovarian cancer studies and cancer stem cell research, the 384-well platform is amenable to research of other cancer types and disease models, extending the utility of the platform to many fields. By improving the speed of personalized drug screening and the quality of screening results through easily implemented physiologically representative 3D cultures, this platform is predicted to aid in the development of new therapeutics and patient-specific treatment strategies, and thus have wide-reaching clinical impact.


Asunto(s)
Antineoplásicos/farmacología , Células Madre Neoplásicas/efectos de los fármacos , Esferoides Celulares/efectos de los fármacos , Evaluación Preclínica de Medicamentos , Femenino , Ensayos Analíticos de Alto Rendimiento , Humanos , Células Madre Neoplásicas/patología , Neoplasias Ováricas/patología , Esferoides Celulares/patología , Microambiente Tumoral/efectos de los fármacos
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