The metabolic and toxic acute effects of phloretin in the rat liver

被引:5
作者
Da Silva, Fernanda Sayuri Itou [1 ,2 ]
Bizerra, Paulo Francisco Veiga [1 ,2 ]
Mito, Marcio Shigueaki [1 ,2 ]
Constantin, Renato Polimeni
Klosowski, Eduardo Makiyama [1 ,2 ]
De Souza, Byanca Thais Lima [1 ,2 ]
Menezes, Paulo Vinicius Moreira Da Costa [1 ,2 ]
Bueno, Paulo Sergio Alves [3 ]
Nanami, Leticia Fernanda [1 ,2 ]
Marchiosi, Rogerio
Dos Santos, Wanderley Dantas
Ferrarese-Filho, Osvaldo
Ishii-Iwamoto, Emy Luiza [1 ,2 ]
Constantin, Rodrigo Polimeni [1 ,2 ]
机构
[1] Univ Estadual Maringa, Dept Biochem, Lab Biol Oxidat, BR-87020900 Maringa, Parana, Brazil
[2] Univ Estadual Maringa, Dept Biochem, Lab Plant Biochem, BR-87020900 Maringa, Parana, Brazil
[3] Univ Estadual Maringa, Dept Biochem, BR-87020900 Maringa, Parana, Brazil
关键词
Antihyperglycemic agents; Gluconeogenesis; Glycogenolysis; Glycolysis; Energy metabolism; Toxicological potential; INDUCED DIABETIC-RATS; DIET-INDUCED OBESITY; ADIPOCYTE DIFFERENTIATION; OXIDATIVE-PHOSPHORYLATION; ANTIOXIDANT ACTIVITY; GLUCOSE-METABOLISM; RESPIRATORY-CHAIN; ENERGY-METABOLISM; IN-VITRO; GLUCONEOGENESIS;
D O I
10.1016/j.cbi.2022.110054
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The current study sought to evaluate the acute effects of phloretin (PH) on metabolic pathways involved in the maintenance of glycemia, specifically gluconeogenesis and glycogenolysis, in the perfused rat liver. The acute effects of PH on energy metabolism and toxicity parameters in isolated hepatocytes and mitochondria, as well as its effects on the activity of a few key enzymes, were also evaluated. PH inhibited gluconeogenesis from different substrates, stimulated glycogenolysis and glycolysis, and altered oxygen consumption. The citric acid cycle activity was inhibited by PH under gluconeogenic conditions. Similarly, PH reduced the cellular ATP/ADP and ATP/AMP ratios under gluconeogenic and glycogenolytic conditions. In isolated mitochondria, PH inhibited the electron transport chain and the F0F1-ATP synthase complex as well as acted as an uncoupler of oxidative phosphorylation, inhibiting the synthesis of ATP. PH also decreased the activities of malate dehydrogenase, glutamate dehydrogenase, glucose 6-phosphatase, and glucose 6-phosphate dehydrogenase. Part of the bio-energetic effects observed in isolated mitochondria was shown in isolated hepatocytes, in which PH inhibited mitochondrial respiration and decreased ATP levels. An aggravating aspect might be the finding that PH promotes the net oxidation of NADH, which contradicts the conventional belief that the compound operates as an antioxidant. Although trypan blue hepatocyte viability tests revealed substantial losses in cell viability over 120 min of incubation, PH did not promote extensive enzyme leakage from injured cells. In line with this effect, only after a lengthy period of infusion did PH considerably stimulate the release of enzymes into the effluent perfusate of livers. In conclusion, the increased glucose release caused by enhanced glycogenolysis, along with suppression of gluconeogenesis, is the opposite of what is predicted for antihyperglycemic agents. These effects were caused in part by disruption of mitochondrial bioenergetics, a result that should be considered when using PH for therapeutic purposes, particularly over long periods and in large doses.
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页数:16
相关论文
共 103 条
  • [1] Acco A, 2004, BASIC CLIN PHARMACOL, V95, P166
  • [2] Phloretin Prevents High-Fat Diet-Induced Obesity and Improves Metabolic Homeostasis
    Alsanea, Sary
    Gao, Mingming
    Liu, Dexi
    [J]. AAPS JOURNAL, 2017, 19 (03): : 797 - 805
  • [3] Biochemical and antimicrobial activity of phloretin and its glycosilated derivatives present in apple and kumquat
    Barreca, Davide
    Bellocco, Ersilia
    Lagana, Giuseppina
    Ginestra, Giovanna
    Bisignano, Carlo
    [J]. FOOD CHEMISTRY, 2014, 160 : 292 - 297
  • [4] Obesity and type 2 diabetes impair insulin-induced suppression of glycogenolysis as well as gluconeogenesis
    Basu, R
    Chandramouli, V
    Dicke, B
    Landau, B
    Rizza, R
    [J]. DIABETES, 2005, 54 (07) : 1942 - 1948
  • [5] Drug-induced toxicity on mitochondria and lipid metabolism: Mechanistic diversity and deleterious consequences for the liver
    Begriche, Karima
    Massart, Julie
    Robin, Marie-Anne
    Borgne-Sanchez, Annie
    Fromenty, Bernard
    [J]. JOURNAL OF HEPATOLOGY, 2011, 54 (04) : 773 - 794
  • [6] Health effects of phloretin: from chemistry to medicine
    Behzad, Sahar
    Sureda, Antoni
    Barreca, Davide
    Nabavi, Seyed Fazel
    Rastrelli, Luca
    Nabavi, Seyed Mohammad
    [J]. PHYTOCHEMISTRY REVIEWS, 2017, 16 (03) : 527 - 533
  • [7] Bergmeyer H.U., 1974, METHODS ENZYMATIC AN, V1
  • [8] Enhanced cytotoxicity of imidacloprid by biotransformation in isolated hepatocytes and perfused rat liver
    Bizerra, Paulo F., V
    Guimaraes, Anilda R. J. S.
    Miranda, Camila A.
    Constantin, Rodrigo P.
    Utsunomiya, Karina S.
    Gilglioni, Eduardo H.
    Constantin, Jorgete
    Ishii-Iwamoto, Emy L.
    Maioli, Marcos A.
    Mingatto, Fabio E.
    [J]. PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 2020, 164 : 183 - 190
  • [9] Bracht A., 2003, Metodos de Laboratorio em Bioquimica, Vfirst, P275
  • [10] Cytosolic phosphoenolpyruvate carboxykinase does not solely control the rate of hepatic gluconeogenesis in the intact mouse liver
    Burgess, Shawn C.
    He, TianTeng
    Yan, Zheng
    Lindner, Jill
    Sherry, A. Dean
    Malloy, Craig R.
    Browning, Jeffrey D.
    Magnuson, Mark A.
    [J]. CELL METABOLISM, 2007, 5 (04) : 313 - 320