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Biological Activity of Spirocyclic Hydroxamic Acids
by
Serkova, T. P.
, Mishchenko, D. V.
, Neganova, M. E.
, Shevtsova, E. F.
, Vystorop, I. V.
in
Acids
/ Amino acids
/ Animals
/ Animals, Newborn
/ Animals, Outbred Strains
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ Cations, Divalent
/ Cell Biology
/ Cell Survival - drug effects
/ Cerebral Cortex - cytology
/ Cerebral Cortex - drug effects
/ Cerebral Cortex - metabolism
/ Ferrozine - chemistry
/ Hydroxamic Acids - chemical synthesis
/ Hydroxamic Acids - pharmacology
/ Internal Medicine
/ Iron
/ Iron - metabolism
/ Iron Chelating Agents - chemical synthesis
/ Iron Chelating Agents - pharmacology
/ Laboratory Medicine
/ Male
/ Membrane Potential, Mitochondrial - drug effects
/ Metalloenzymes
/ Microbial drug resistance
/ Mitochondria
/ Mitochondria, Liver - drug effects
/ Mitochondria, Liver - metabolism
/ Mitochondrial Swelling - drug effects
/ Neurons - drug effects
/ Neurons - metabolism
/ Pathology
/ Piperidine
/ Primary Cell Culture
/ Rats
/ Rodents
/ Spiro Compounds - chemical synthesis
/ Spiro Compounds - pharmacology
/ Structure-Activity Relationship
/ Toxicity
2016
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Biological Activity of Spirocyclic Hydroxamic Acids
by
Serkova, T. P.
, Mishchenko, D. V.
, Neganova, M. E.
, Shevtsova, E. F.
, Vystorop, I. V.
in
Acids
/ Amino acids
/ Animals
/ Animals, Newborn
/ Animals, Outbred Strains
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ Cations, Divalent
/ Cell Biology
/ Cell Survival - drug effects
/ Cerebral Cortex - cytology
/ Cerebral Cortex - drug effects
/ Cerebral Cortex - metabolism
/ Ferrozine - chemistry
/ Hydroxamic Acids - chemical synthesis
/ Hydroxamic Acids - pharmacology
/ Internal Medicine
/ Iron
/ Iron - metabolism
/ Iron Chelating Agents - chemical synthesis
/ Iron Chelating Agents - pharmacology
/ Laboratory Medicine
/ Male
/ Membrane Potential, Mitochondrial - drug effects
/ Metalloenzymes
/ Microbial drug resistance
/ Mitochondria
/ Mitochondria, Liver - drug effects
/ Mitochondria, Liver - metabolism
/ Mitochondrial Swelling - drug effects
/ Neurons - drug effects
/ Neurons - metabolism
/ Pathology
/ Piperidine
/ Primary Cell Culture
/ Rats
/ Rodents
/ Spiro Compounds - chemical synthesis
/ Spiro Compounds - pharmacology
/ Structure-Activity Relationship
/ Toxicity
2016
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Biological Activity of Spirocyclic Hydroxamic Acids
by
Serkova, T. P.
, Mishchenko, D. V.
, Neganova, M. E.
, Shevtsova, E. F.
, Vystorop, I. V.
in
Acids
/ Amino acids
/ Animals
/ Animals, Newborn
/ Animals, Outbred Strains
/ Biological activity
/ Biomedical and Life Sciences
/ Biomedicine
/ Cations, Divalent
/ Cell Biology
/ Cell Survival - drug effects
/ Cerebral Cortex - cytology
/ Cerebral Cortex - drug effects
/ Cerebral Cortex - metabolism
/ Ferrozine - chemistry
/ Hydroxamic Acids - chemical synthesis
/ Hydroxamic Acids - pharmacology
/ Internal Medicine
/ Iron
/ Iron - metabolism
/ Iron Chelating Agents - chemical synthesis
/ Iron Chelating Agents - pharmacology
/ Laboratory Medicine
/ Male
/ Membrane Potential, Mitochondrial - drug effects
/ Metalloenzymes
/ Microbial drug resistance
/ Mitochondria
/ Mitochondria, Liver - drug effects
/ Mitochondria, Liver - metabolism
/ Mitochondrial Swelling - drug effects
/ Neurons - drug effects
/ Neurons - metabolism
/ Pathology
/ Piperidine
/ Primary Cell Culture
/ Rats
/ Rodents
/ Spiro Compounds - chemical synthesis
/ Spiro Compounds - pharmacology
/ Structure-Activity Relationship
/ Toxicity
2016
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Journal Article
Biological Activity of Spirocyclic Hydroxamic Acids
2016
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Overview
Iron-chelating activity of synthesized spirocyclic hydroxamic acids, their toxicity, and effects on mitochondrial function were studied using primary culture of cerebral cortical neurons from newborn rats. All tested compounds effectively chelated Fe(II) ions. Activity of spirocyclic hydroxamic acids more strictly depended on the structure their piperidine, but not imidazolidine fragment. All compounds were non-toxic for normal neuronal culture.
Publisher
Springer US,Springer,Springer Nature B.V
Subject
/ Animals
/ Biomedical and Life Sciences
/ Cell Survival - drug effects
/ Cerebral Cortex - drug effects
/ Cerebral Cortex - metabolism
/ Hydroxamic Acids - chemical synthesis
/ Hydroxamic Acids - pharmacology
/ Iron
/ Iron Chelating Agents - chemical synthesis
/ Iron Chelating Agents - pharmacology
/ Male
/ Membrane Potential, Mitochondrial - drug effects
/ Mitochondria, Liver - drug effects
/ Mitochondria, Liver - metabolism
/ Mitochondrial Swelling - drug effects
/ Rats
/ Rodents
/ Spiro Compounds - chemical synthesis
/ Spiro Compounds - pharmacology
/ Structure-Activity Relationship
/ Toxicity
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