Regeneration Biomedical
autologous stem cells, Wnt activation, intracerebral delivery
Loading
Loading section...0-100 chain-logic scale · 15 dimensions · scored on public evidence
autologous stem cells, Wnt activation, intracerebral delivery
0-100 chain-logic scale · 15 dimensions · scored on public evidence
Regeneration Biomedical, Inc. states that a patient's own stem cells have the power to heal and that neurodegenerative diseases are best treated by injecting autologous, non-GMO, adipose-derived stem cells directly into the brain, placing the cells where the company believes they need to be to achieve the greatest efficacy.
SourceRegeneration Biomedical states that a patient’s own autologous stem cells can heal neurodegenerative brain conditions and that these diseases are best treated by injecting stem cells directly into the brain, placing them where the company believes they are needed most to achieve maximum efficacy. The company presents its adipose-derived, non-genetically modified, patient-specific stem cell approach as preferable to umbilical, fetal, embryonic, and other donor-derived stem cell technologies.
SourceRegeneration Biomedical, Inc. presents itself as developing innovative autologous stem cell therapies for neurological and neurodegenerative disorders, with the belief that a patient's own Wnt-activated stem cells, delivered directly into the brain, may help treat conditions such as Alzheimer's disease, ALS, multiple sclerosis, Parkinson's disease, stroke, and traumatic brain injury. The company frames this approach as a way to maximize therapeutic activity in the brain, support regenerative brain regions, and reduce inflammation associated with neurodegenerative disease.
SourceRegeneration Biomedical, Inc. states that it is developing an innovative autologous stem cell therapy for neurodegenerative diseases, based on the belief that highly purified, Wnt-activated stem cells taken from a patient's own body and injected directly into the brain can bypass the blood-brain barrier, maximize therapeutic activity, support regenerative stem cell function in the brain, and reduce inflammation associated with these disorders.
Source