Publications by authors named "P Lopez-Chicon"

Article Synopsis
  • This study focuses on creating a biocompatible, acellular graft from human pericardium for tissue engineering by using a decellularization process to mimic the natural extracellular matrix.
  • The decellularization was achieved through enzymatic and hypertonic methods, with histological analyses confirming the absence of cells while maintaining ECM structural integrity.
  • The results showed that the acellular graft retained key biomolecules and mechanical properties, indicating its potential for various clinical applications.
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Background: The activities of tissue establishments are constantly and rapidly evolving. The development of a new type of allograft, full-thickness acellular dermal matrix, with high mechanical properties to be used in tendon repair surgeries and abdominal wall reconstruction, has determined the need for quality by design process in order to assess evidence of quality, safety and efficacy. The EuroGTPII methodologies were specifically tailored to perform the risk assessment, identify and suggest tests in order to mitigate the potential risk consequences of a novel tissue preparation implementation.

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Background And Objectives: Peripheral nerve injuries resulting in a nerve defect require surgical repair. The gold standard of autograft (AG) has several limitations, and therefore, new alternatives must be developed. The main objective of this study was to assess nerve regeneration through a long gap nerve injury (50 mm) in the peroneal nerve of sheep with a decellularized nerve allograft (DCA).

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The processing and initial testing of a new human tissue preparation is described. Full-thickness Acellular Dermal Matrix (ftADM) is the extracellular matrix (ECM) obtained by decellularization of full-thickness human skin from cadaveric donors. The safety, stability and usability of the graft are discussed with respect to the results of the residual cellular content, maintenance of ECM components, and biomechanical properties.

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