Publications by authors named "Jose Antonio Sanz-Herrera"

Article Synopsis
  • - The study investigates how cellular interactions, driven by force, contribute to cancer cell invasion, particularly in the context of cerebral cavernous malformations (CCM), which are characterized by abnormal blood vessels.
  • - Researchers used an in-vitro model to demonstrate that endothelial cells lacking the CCM2 protein help recruit normal (wild-type) endothelial cells through mechanical forces and changes in the surrounding extracellular matrix, facilitating lesion growth.
  • - The findings reveal that CCM2 mutant cells manipulate neighboring wild-type cells into proliferating and altering their functions, providing new insights into the mechanisms behind vascular abnormalities and tools for studying cell behavior in disease contexts.
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Collagen-based hydrogels are commonly used in mechanobiology to mimic the extracellular matrix. A quantitative analysis of the influence of collagen concentration and properties on the structure and mechanics of the hydrogels is essential for tailored design adjustments for specific in vitro conditions. We combined focused ion beam scanning electron microscopy and rheology to provide a detailed quantitative atlas of the mechanical and nanoscale three-dimensional structural alterations that occur when manipulating different hydrogel's physicochemistry.

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Tissue engineering has recently gained popularity as an alternative to autografts to stimulate bone tissue regeneration through structures called scaffolds. Most of the in vivo experiments on long-bony defects use internally-stabilized generic scaffolds. Despite the wide variety of computational methods, a standardized protocol is required to optimize ceramic scaffolds for load-bearing bony defects stabilized with flexible fixations.

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In silico models and computer simulation are invaluable tools to better understand complex biological processes such as cancer evolution. However, the complexity of the biological environment, with many cell mechanisms in response to changing physical and chemical external stimuli, makes the associated mathematical models highly non-linear and multiparametric. One of the main problems of these models is the determination of the parameters' values, which are usually fitted for specific conditions, making the conclusions drawn difficult to generalise.

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Bone lengthening is a bone regeneration technique with multiple clinical applications. One of the most common complications of this treatment is the lack of adaptation of the surrounding soft tissue to their extension. A better understanding of the mechanobiology of the tissues involved in distraction osteogenesis would allow better control of the clinical cases.

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