2018
DOI: 10.1016/j.jtemb.2018.02.002
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The effect of cisplatin administration on certain trace elements homeostasis in rats and the protective effect of silver birch (Betula pendula) sap

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Cited by 7 publications
(4 citation statements)
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“…Cisplatin is one of the most potent clinically effective compounds with anticancer properties that are still in use copper, magnesium, iron, manganese, and zinc are some of the elements that become unbalanced after being exposed to cisplatin. When birch sap was applied following the administration of cisplatin, zinc, magnesium, copper, iron, and manganese levels were either normalized or raised, indicating that the treatment with birch sap restored the organism's natural homeostatic condition (Muselin et al, 2018). Birch bark has become the subject of numerous studies due to its high content of betulinic acid, which selectively inhibits tumor growth and induces cell apoptosis.…”
Section: Antimutagenic and Antitumor Activitymentioning
confidence: 99%
“…Cisplatin is one of the most potent clinically effective compounds with anticancer properties that are still in use copper, magnesium, iron, manganese, and zinc are some of the elements that become unbalanced after being exposed to cisplatin. When birch sap was applied following the administration of cisplatin, zinc, magnesium, copper, iron, and manganese levels were either normalized or raised, indicating that the treatment with birch sap restored the organism's natural homeostatic condition (Muselin et al, 2018). Birch bark has become the subject of numerous studies due to its high content of betulinic acid, which selectively inhibits tumor growth and induces cell apoptosis.…”
Section: Antimutagenic and Antitumor Activitymentioning
confidence: 99%
“…Дополнительную пользу приносит супероксиддисмутаза -антиоксидант, снижающий риск хронических заболеваний, рака. [5,6,7,8,9]…”
Section: поддерживает здоровье печени и помогает выводить токсиныunclassified
“…Многочисленные соединения платины широко используются в качестве химиотерапевтических средств, одним из которых является цисплатин, который чаще всего используется для лечения опухолей, включая рак яичек, яичников, лёгких и мочевого пузыря (Dilruba S and Kalayda GV, 2016;Fuertes MA et al, 2003). Есть много исследований, которые указывают на способность цисплатина вызывать окислительный стресс по различным механизмам (Smigic J et al, 2018;Muselin F et al, 2018).…”
Section: Introductionunclassified
“…Известно, что алюминий и цисплатин обладают способностью вызывать окислительный стресс, нарушая активность многочисленных антиоксидантных ферментов (Muselin F et al, 2018;Yousef MI, 2004;Muselin F et al, 2014) и тем самым влияя на нормальное состояние некоторых биоэлементов в организме.…”
Section: Introductionunclassified