BioChange ltd
foam scaffold, tissue repair, regenerative medicine
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Loading section...0-100 chain-logic scale · 15 dimensions · scored on public evidence
foam scaffold, tissue repair, regenerative medicine
0-100 chain-logic scale · 15 dimensions · scored on public evidence
BioChange states that technology can make tissue restoration possible and says its ultimate goal is to solve the unmet need for functional scaffolds, which it presents as a critical element in the formation and regeneration of tissues. It describes its CellFoam technology as an injectable tissue scaffold intended to renovate aged or damaged tissue.
SourceBioChange presents the belief that human healthy lifespan can be increased by regenerative science, specifically by restoring body functions and tissues lost with age. Its stated position is that tissue regeneration can be driven with an injectable scaffold designed to stimulate repair and remodeling directly at the treatment site.
SourceBioChange states that aging-related loss of body functions and tissues can be addressed through regenerative biomaterial scaffolds. The company presents its patented injectable scaffold platform as a way to stimulate tissue repair and remodeling, using natural biomaterials that mimic the extracellular matrix, support cell growth, and biodegrade in step with formation of new tissue and healthy ECM.
SourceBioChange presents the view that age- and degeneration-related tissue loss can be treated by regenerative scaffolds that mimic healthy extracellular matrix, stimulate the body’s own repair and remodeling processes, and then biodegrade, leaving regenerated healthy tissue. The company frames its platform as a way to restore body functions and tissues lost with age, with applications across multiple tissues and organs.
SourceBioChange states that tissue repair and regeneration can be stimulated by injecting a natural biomaterial scaffold that mimics healthy extracellular matrix, solidifies at the target site, and promotes the body’s own tissue self-growth, repair, remodeling, and functional graft formation through a minimally invasive procedure.
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