Pages that link to "Q38274089"
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The following pages link to In vitro modelling of epithelial and stromal interactions in non-malignant and malignant prostates. (Q38274089):
Displaying 28 items.
- Prostate epithelial cell lines form spheroids with evidence of glandular differentiation in three-dimensional Matrigel cultures (Q28346048) (← links)
- Evaluating baculovirus as a vector for human prostate cancer gene therapy (Q28533692) (← links)
- Stroma Regulates Increased Epithelial Lateral Cell Adhesion in 3D Culture: A Role for Actin/Cadherin Dynamics (Q33886474) (← links)
- Human prostate sphere-forming cells represent a subset of basal epithelial cells capable of glandular regeneration in vivo (Q33914421) (← links)
- GLI1 Confers Profound Phenotypic Changes upon LNCaP Prostate Cancer Cells That Include the Acquisition of a Hormone Independent State (Q33919758) (← links)
- Cultured stromal cells: an in vitro model of prostatic mesenchymal biology (Q34057789) (← links)
- Effects of oxygen on the antigenic landscape of prostate cancer cells (Q35845496) (← links)
- The differential effects of prostate stromal cells derived from different zones on prostate cancer epithelial cells under the action of sex hormones (Q37085226) (← links)
- Bone marrow stromal cells enhance prostate cancer cell invasion through type I collagen in an MMP-12 dependent manner. (Q37347935) (← links)
- Methods for co-culturing tumour and endothelial cells: systems and their applications (Q37953533) (← links)
- Oxidative phosphorylation and mitochondrial function differ between human prostate tissue and cultured cells. (Q38779671) (← links)
- Stromal-epithelial interactions influence prostate cancer cell invasion by altering the balance of metallopeptidase expression (Q38798534) (← links)
- Nuclear targeting of dystroglycan promotes the expression of androgen regulated transcription factors in prostate cancer (Q39090168) (← links)
- Hypoxia on the Expression of Hepatoma Upregulated Protein in Prostate Cancer Cells (Q39631128) (← links)
- Isoforms of endothelin-converting enzyme-1 (ECE-1) have opposing effects on prostate cancer cell invasion (Q39941689) (← links)
- Host matrix metalloproteinase-9 contributes to tumor vascularization without affecting tumor growth in a model of prostate cancer bone metastasis (Q40202584) (← links)
- The use of Raman spectroscopy to differentiate between different prostatic adenocarcinoma cell lines (Q40414842) (← links)
- Citrate transport in the human prostate epithelial PNT2-C2 cell line: electrophysiological analyses (Q40535850) (← links)
- Phenotypic differences of proliferating fibroblasts in the stroma of lung adenocarcinoma and normal bronchus tissue (Q40579525) (← links)
- EPN: a novel epithelial cell line derived from human prostate tissue (Q40730255) (← links)
- Decrease in stromal androgen receptor associates with androgen-independent disease and promotes prostate cancer cell proliferation and invasion (Q41878722) (← links)
- Role of proteolytic enzymes in human prostate bone metastasis formation: in vivo and in vitro studies. (Q42084404) (← links)
- Effects and characterization of paracrine factors produced by human prostate stromal cells in bioassays using rat Sertoli cells, LNCaP tumor cells, and cultured prostate epithelial cells (Q43658903) (← links)
- Paracrine communication between malignant and non-malignant prostate epithelial cells in culture alters growth rate, matrix protease secretion and in vitro invasion. (Q53383187) (← links)
- Myofibroblast androgen receptor expression determines cell survival in co-cultures of myofibroblasts and prostate cancer cells in vitro. (Q55407443) (← links)
- [From tumor tissue via primary cultures to xenograft models: a functional approach in prostate cancer research] (Q84504532) (← links)
- CXCL1-LCN2 paracrine axis promotes progression of prostate cancer via the Src activation and epithelial-mesenchymal transition (Q89998130) (← links)
- Recent Advances in Cancer Plasticity: Cellular Mechanisms, Surveillance Strategies, and Therapeutic Optimization (Q94546963) (← links)