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Mulliken Charges and Electrostatic Potential of the carboxyl derivative of amygdalin and its hydrolytic forms in vivo
Tsanov, Vasil
figshare 2023
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Título:
Mulliken Charges and Electrostatic Potential of the carboxyl derivative of amygdalin and its hydrolytic forms in vivo
Autor:
Tsanov, Vasil
Assuntos:
Biochemistry and cell biology not elsewhere classified
;
Bioinformatics and computational biology not elsewhere classified
;
Biologically active molecules
;
Cancer cell biology
;
Cancer therapy (excl. chemotherapy and radiation therapy)
;
Cell metabolism
;
Computational chemistry
;
Glycoconjugates
;
Medicinal and biomolecular chemistry not elsewhere classified
;
Oncology and carcinogenesis not elsewhere classified
;
Other biological sciences not elsewhere classified
;
Other biomedical and clinical sciences not elsewhere classified
;
Physical chemistry not elsewhere classified
;
Theoretical and computational chemistry not elsewhere classified
Descrição:
article - DOI: 10.2174/1871520620999201103201008monograph - DOI: 10.5281/zenodo.7295357 | ISBN: 978-619-91534-4-4ATLAS - presentation of the finale information in the most applied and convenient form of application - DOI: 10.5281/zenodo.8009390 | ISBN: 978-619-91534-5-1...According to the analytical wording concludes that the hydrolytic equilibrium of the reaction is shifted from BF(C) to HF(C). The difference in ionic activity at pH = 6.5 and 7.4 is within less than 1% deviation (due to the presence of only one hydrolytic form), it is evident that the values are in the statistical error of the methods.Therefore, from the perspective of Electrostatical Potential and Mulliken Changes, the medium around the tumor cell tends to shift the hydrolytic equilibrium to HF(C). The influence of the dynamic relationships of the molecule is not essential for hydrolysis around healthy and tumor cells...
Editor:
figshare
Data de criação/publicação:
2023
Idioma:
Inglês
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