Cancer-associated fibroblasts promote non-small cell lung cancer cell invasion by upregulation of glucose-regulated protein 78 (GRP78) expression in an integrated bionic microfluidic device
暂无分享,去创建一个
Qi Wang | Zhancheng Gao | Zhancheng Gao | Qi Wang | Ting Yu | Zhe Guo | Hui Fan | Jing Song | Yuanbin Liu | Jing Song | Hui Fan | Yuanbin Liu | Zhenjia Guo | Ting Yu
[1] Kunwei Shen,et al. Stromal cells in tumor microenvironment and breast cancer , 2012, Cancer and Metastasis Reviews.
[2] M. D. Chang,et al. GRP78 and Raf‐1 cooperatively confer resistance to endoplasmic reticulum stress‐induced apoptosis , 2008, Journal of cellular physiology.
[3] Sanjeev Gupta,et al. Targeting the endoplasmic reticulum-stress response as an anticancer strategy. , 2009, European journal of pharmacology.
[4] Eithne Costello,et al. The unfolded protein response regulator GRP78 is a novel predictive biomarker in colorectal cancer , 2013, International journal of cancer.
[5] Hua-Chuan Zheng,et al. Overexpression of GRP78 and GRP94 are markers for aggressive behavior and poor prognosis in gastric carcinomas. , 2008, Human pathology.
[6] M J Bissell,et al. Cellular changes involved in conversion of normal to malignant breast: importance of the stromal reaction. , 1996, Physiological reviews.
[7] Z. Werb,et al. Coevolution of cancer and stromal cellular responses. , 2005, Cancer cell.
[8] M. Toner,et al. Effects of oxygenation and flow on the viability and function of rat hepatocytes cocultured in a microchannel flat-plate bioreactor. , 2001, Biotechnology and bioengineering.
[9] Elise C. Kohn,et al. The microenvironment of the tumour–host interface , 2001, Nature.
[10] R. Xiang,et al. Cancer Associated Fibroblasts Promote Tumor Growth and Metastasis by Modulating the Tumor Immune Microenvironment in a 4T1 Murine Breast Cancer Model , 2009, PloS one.
[11] A. Ostman,et al. Cancer-associated fibroblasts and tumor growth--bystanders turning into key players. , 2009, Current opinion in genetics & development.
[12] S. Groshen,et al. Critical role of the stress chaperone GRP78/BiP in tumor proliferation, survival, and tumor angiogenesis in transgene-induced mammary tumor development. , 2008, Cancer research.
[13] A. Dobriyan,et al. Cancer‐associated fibroblasts and epithelial‐mesenchymal transition in metastatic oral tongue squamous cell carcinoma , 2010, International journal of cancer.
[14] E. Sahai,et al. Fibroblast-led collective invasion of carcinoma cells with differing roles for RhoGTPases in leading and following cells , 2007, Nature Cell Biology.
[15] Zongwei Li,et al. Glucose regulated protein 78: a critical link between tumor microenvironment and cancer hallmarks. , 2012, Biochimica et biophysica acta.
[16] A. Jemal,et al. Cancer statistics, 2014 , 2014, CA: a cancer journal for clinicians.
[17] David J Beebe,et al. 3D microchannel co-culture: method and biological validation. , 2010, Integrative biology : quantitative biosciences from nano to macro.
[18] R. Kalluri. Basement membranes: structure, assembly and role in tumour angiogenesis , 2003, Nature reviews. Cancer.
[19] D. Ingber,et al. Reconstituting Organ-Level Lung Functions on a Chip , 2010, Science.
[20] S. Pizzo,et al. Prostate cancer cell proliferation in vitro is modulated by antibodies against glucose-regulated protein 78 isolated from patient serum. , 2006, Cancer research.
[21] P. Wei,et al. Glucose-regulated protein 78 (GRP78) regulates colon cancer metastasis through EMT biomarkers and the NRF-2/HO-1 pathway , 2015, Tumor Biology.
[22] Hui Zhao,et al. Macrophages promote benzopyrene-induced tumor transformation of human bronchial epithelial cells by activation of NF-κB and STAT3 signaling in a bionic airway chip culture and in animal models , 2015, Oncotarget.
[23] Huang,et al. Tumor-associated macrophages promote the metastatic potential of thyroid papillary cancer by releasing CXCL8. , 2014, Carcinogenesis.
[24] Fei Xing,et al. Cancer associated fibroblasts (CAFs) in tumor microenvironment. , 2010, Frontiers in bioscience.
[25] Raghu Kalluri,et al. Fibroblasts in cancer , 2006, Nature Reviews Cancer.
[26] J. Liu,et al. Glucose-regulated protein 78 as a novel effector of BRCA1 for inhibiting stress-induced apoptosis , 2008, Oncogene.
[27] S. Fang,et al. Association of elevated GRP78 expression with increased lymph node metastasis and poor prognosis in patients with gastric cancer , 2007, Clinical & Experimental Metastasis.
[28] Jean-Louis Viovy,et al. Axon diodes for the reconstruction of oriented neuronal networks in microfluidic chambers. , 2011, Lab on a chip.
[29] Amy S. Lee,et al. The glucose-regulated proteins: stress induction and clinical applications. , 2001, Trends in biochemical sciences.
[30] Weiqing Wang,et al. Tumor-associated macrophages promote the metastatic potential of thyroid papillary cancer by releasing CXCL8. , 2014, Carcinogenesis.
[31] N. Dubrawsky. Cancer statistics , 1989, CA: a cancer journal for clinicians.
[32] C. Mathers,et al. Estimates of worldwide burden of cancer in 2008: GLOBOCAN 2008 , 2010, International journal of cancer.
[33] Kristian Pietras,et al. Hallmarks of cancer: interactions with the tumor stroma. , 2010, Experimental cell research.
[34] An integrated microfluidic chip for the detection of bacteria - A proof of concept. , 2015, Molecular and cellular probes.
[35] M. Lai,et al. Overexpression of glucose-regulated protein 78 in colon cancer. , 2006, Clinica chimica acta; international journal of clinical chemistry.
[36] G. Whitesides,et al. Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane). , 1998, Analytical chemistry.
[37] Wenxin Wang,et al. Application of a microfluidic chip-based 3D co-culture to test drug sensitivity for individualized treatment of lung cancer. , 2013, Biomaterials.