https://www.researchgate.net/publication/329563722_EDEn_-_Electroceutical_Design_Environment_An_Ion_Channel_Database_with_Small_Molecule_Modulators_and_Tissue_Expression_Information
An attempt to wake up the medical community to accept research done in the last 100 years proving that electromagnetic energy can replace brutal chemotherapy. Photo taken by a professional photographer, of his own daughter being treated for Neuroblastoma. The power of the image encouraged Andy to share it with others in order to highlight the 'real' face of childhood cancer. She died. The average cost for such treatment is in the order of 500k+.
Friday, May 24, 2019
An Ion Channel Database with Small Molecule Modulators and Tissue Expression Information
The emerging field of bioelectricity has revealed numerous new roles for ion channels beyond the nervous system, which can be exploited for applications in regenerative medicine. Developing such biomedical interventions for birth defects, cancer, traumatic injury, and bioengineering first requires knowledge of ion channel targets expressed in tissues of interest. This information can then be used to select combinations of small molecule inhibitors and/or activators that manipulate the bioelectric state. Here, we provide an overview of electroceutical design environment (EDEn), the first bioinformatic platform that facilitates the design of such therapeutic strategies. This database includes information on ion channels and ion pumps, linked to known chemical modulators and their properties. The database also provides information about the expression levels of the ion channels in over 100 tissue types. The graphical interface allows the user to readily identify chemical entities that can alter the electrical properties of target cells and tissues.
https://www.researchgate.net/publication/329563722_EDEn_-_Electroceutical_Design_Environment_An_Ion_Channel_Database_with_Small_Molecule_Modulators_and_Tissue_Expression_Information
https://www.researchgate.net/publication/329563722_EDEn_-_Electroceutical_Design_Environment_An_Ion_Channel_Database_with_Small_Molecule_Modulators_and_Tissue_Expression_Information
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