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Substituted Piperazines as Novel Potential Radioprotective Agents
by
Havelek, Radim
, Cizkova, Jana
, Tichy, Ales
, Rezacova, Martina
, Koutova, Darja
, Zivna, Natalie
, Marek, Jan
, Muckova, Lubica
, Jelicova, Marcela
, Majorosova, Martina
, Filipova, Alzbeta
, Sinkorova, Zuzana
, Pejchal, Jaroslav
, Prchal, Lukas
, Psotka, Miroslav
, Kucera, Tomas
in
Apoptosis
/ Cancer
/ Cytotoxicity
/ Experiments
/ Hydrogen bonds
/ Mass spectrometry
/ maximum tolerated dose
/ NMR
/ Nuclear magnetic resonance
/ piperazine
/ Proteins
/ radiation-protective agents
/ Scientific imaging
/ synthesis de novo
2020
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Substituted Piperazines as Novel Potential Radioprotective Agents
by
Havelek, Radim
, Cizkova, Jana
, Tichy, Ales
, Rezacova, Martina
, Koutova, Darja
, Zivna, Natalie
, Marek, Jan
, Muckova, Lubica
, Jelicova, Marcela
, Majorosova, Martina
, Filipova, Alzbeta
, Sinkorova, Zuzana
, Pejchal, Jaroslav
, Prchal, Lukas
, Psotka, Miroslav
, Kucera, Tomas
in
Apoptosis
/ Cancer
/ Cytotoxicity
/ Experiments
/ Hydrogen bonds
/ Mass spectrometry
/ maximum tolerated dose
/ NMR
/ Nuclear magnetic resonance
/ piperazine
/ Proteins
/ radiation-protective agents
/ Scientific imaging
/ synthesis de novo
2020
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Substituted Piperazines as Novel Potential Radioprotective Agents
by
Havelek, Radim
, Cizkova, Jana
, Tichy, Ales
, Rezacova, Martina
, Koutova, Darja
, Zivna, Natalie
, Marek, Jan
, Muckova, Lubica
, Jelicova, Marcela
, Majorosova, Martina
, Filipova, Alzbeta
, Sinkorova, Zuzana
, Pejchal, Jaroslav
, Prchal, Lukas
, Psotka, Miroslav
, Kucera, Tomas
in
Apoptosis
/ Cancer
/ Cytotoxicity
/ Experiments
/ Hydrogen bonds
/ Mass spectrometry
/ maximum tolerated dose
/ NMR
/ Nuclear magnetic resonance
/ piperazine
/ Proteins
/ radiation-protective agents
/ Scientific imaging
/ synthesis de novo
2020
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Substituted Piperazines as Novel Potential Radioprotective Agents
Journal Article
Substituted Piperazines as Novel Potential Radioprotective Agents
2020
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Overview
The increasing risk of radiation exposure underlines the need for novel radioprotective agents. Hence, a series of novel 1-(2-hydroxyethyl)piperazine derivatives were designed and synthesized. Some of the compounds protected human cells against radiation-induced apoptosis and exhibited low cytotoxicity. Compared to the previous series of piperazine derivatives, compound 8 exhibited a radioprotective effect on cell survival in vitro and low toxicity in vivo. It also enhanced the survival of mice 30 days after whole-body irradiation (although this increase was not statistically significant). Taken together, our in vitro and in vivo data indicate that some of our compounds are valuable for further research as potential radioprotectors.
Publisher
MDPI AG,MDPI
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