The Tension Mounts: Mechanics Meets Morphogenesis and Malignancy
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Summary
It will be critical to identify the key molecular elements regulating tensional-homeostasis of the mammary gland and thereafter to characterize their associated mechanotransduction pathways.
- Type
- review
- Published
- 2004-10-01
- Cited by
- 489
- References
- 141
- OpenAlex
- https://openalex.org/W1971386805
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33877970
Keywords
Morphogenesis, Mechanotransduction, Mammary gland, Extracellular matrix, Biology
References
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- Mammographic screening and mammographic patterns
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- Regulation of mammary gland branching morphogenesis by the extracellular matrix and its remodeling enzymes
Cited by
- Paradoxical roles for lysyl oxidases in cancer—A prospect
- Isoform-Specific Upregulation of Palladin in Human and Murine Pancreas Tumors
- Compression stiffening of brain and its effect on mechanosensing by glioma cells
- Assessing the accuracy and reproducibility of modality independent elastography in a murine model of breast cancer
- A versatile 3D tissue matrix scaffold system for tumor modeling and drug screening
- Development of a 3D culture system to study the skeletal metastasis of prostate cancer
- Exploring the link between human embryonic stem cell organization and fate using tension-calibrated extracellular matrix functionalized polyacrylamide gels.
- Regulation of tumor dormancy and role of microenvironment: a mathematical model.
- Influence Of Mechanical Cues And The Extracellular Matrix On Cell Migration Patterns And The Proliferation Rates Of Cells
- Impact des contraintes mécaniques sur la division cellulaire : analyse dans modèle tumoral multicellulaire en 3 dimensions : le sphéroïde
- Demystifying the effects of a three-dimensional microenvironment in tissue morphogenesis.
- Cellular Mechanobiology of Glioblastoma Multiforme
- Characterization of the Interface between the Mouse Mammary Epithelium and its Microenvironment during Morphogenesis
- Wound healing signals mediated by Rho/ROCK activation in response to radiotherapy and consequences fot treatmeny of late damage within normal tissues
- Physical forces and mechanical waves during tissue growth
- Nanomechanical characterization of living mammary tissues by atomic force microscopy.
- Integrative Utilization of Microenvironments, Biomaterials and Computational Techniques for Advanced Tissue Engineering.
- Chemotherapeutic Targeting of Fibulin-5 to Suppress Breast Cancer Invasion and Metastasis Stimulated by Transforming Growth Factor-Beta
- Mechanotransduction in fibroblasts
- Tissue engineering scaffolds for cell substrate mechanical interaction studies
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