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1.
Pharmacol Ther ; 239: 108276, 2022 11.
Artigo em Inglês | MEDLINE | ID: mdl-36055421

RESUMO

Digestive system cancers account for nearly half of all cancers around the world and have a high mortality rate. Cell culture and animal models represent cornerstones of digestive cancer research. However, their ability to enable cancer precision medicine is limited. Cell culture models cannot retain the genetic and phenotypic heterogeneity of tumors and lack tumor microenvironment (TME). Patient-derived xenograft mouse models are not suitable for immune-oncology research. While humanized mouse models are time- and cost-consuming. Suitable preclinical models, which can facilitate the understanding of mechanisms of tumor progression and develop new therapeutic strategies, are in high demand. This review article summarizes the recent progress on the establishment of TME by using tumor organoid models and microfluidic systems. The main challenges regarding the translation of organoid models from bench to bedside are discussed. The integration of organoids and a microfluidic platform is the emerging trend in drug screening and precision medicine. A future prospective on this field is also provided.


Assuntos
Neoplasias do Sistema Digestório , Neoplasias Gastrointestinais , Humanos , Animais , Camundongos , Medicina de Precisão , Organoides/patologia , Microambiente Tumoral , Neoplasias Gastrointestinais/patologia , Neoplasias do Sistema Digestório/patologia
2.
PLoS One ; 11(1): e0148062, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-26815535

RESUMO

The biologic studies of human neural crest stem cells (hNCSCs) are extremely challenging due to the limited source of hNCSCs as well as ethical and technical issues surrounding isolation of early human embryonic tissues. On the other hand, vast majority of studies on MycN have been conducted in human tumor cells, thus, the role of MycN in normal human neural crest development is completely unknown. In the present study, we determined the role of MycN in hNCSCs isolated from in vitro-differentiating human embryonic stem cells (hESCs). For the first time, we show that suppression of MycN in hNCSCs inhibits cell growth and cell cycle progression. Knockdown of MycN in hNCSCs increases the expression of Cdkn1a, Cdkn2a and Cdkn2b, which encodes the cyclin-dependent kinases p21CIP1, p16 INK4a and p15INK4b. In addition, MycN is involved in the regulation of human sympathetic neurogenesis, as knockdown of MycN enhances the expression of key transcription factors involved in sympathetic neuron differentiation, including Phox2a, Phox2b, Mash1, Hand2 and Gata3. We propose that unlimited source of hNCSCs provides an invaluable platform for the studies of human neural crest development and diseases.


Assuntos
Proliferação de Células , Células-Tronco Embrionárias Humanas/citologia , Crista Neural/citologia , Células-Tronco Neurais/citologia , Neurogênese , Proteínas Nucleares/genética , Proteínas Oncogênicas/genética , Ciclo Celular , Linhagem Celular , Células Cultivadas , Regulação da Expressão Gênica no Desenvolvimento , Técnicas de Silenciamento de Genes , Células-Tronco Embrionárias Humanas/metabolismo , Humanos , Proteína Proto-Oncogênica N-Myc , Crista Neural/metabolismo , Células-Tronco Neurais/metabolismo , Proteínas Nucleares/metabolismo , Proteínas Oncogênicas/metabolismo
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