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2017 | 73 | 09 |

Tytuł artykułu

Wpływ bisfenolu A na kodowanie chemiczne włókien nerwowych koniuszka serca świni domowej

Warianty tytułu

EN
Influence of bisfenol A on chemical coding of the nerve fibers of the cardiac apex in the domestic pig

Języki publikacji

PL

Abstrakty

EN
The study was designed to determine the effects of bisphenol A (BPA) on chemical coding of intramural nerve fibers localized in the cardiac apex of domestic pigs. Investigations were performed on 10 immature gilts. The animals were divided into two groups: control (Group K) and experimental (Group B). Gilts from Group B received capsules containing bisphenol A (0.5 mg/kg m.c/day) for 28 days. After euthanasia, fragments of the cardiac apex were collected and subjected to the standard single immunofluorescence method, using primary antisera directed against neuropeptide Y (NPY), vesicular transporter acetylcholine (VAChT), tyrosine hydroxylase (TH), substance P (SP), transcript regulated cocaine and amphetamine peptide (CART) and gene calcitonin (CGRP), as well as secondary antibodies conjugated with fluorochromes: Alexa fluor 488 or Alexa fluor 546. The present studies demonstrated that orally administered bisphenol A causes a marked increase in the number of nerve fibers immunoreactive to NPY, VAChT, TH and SP. On the other hand, CART and CGRP immunoreactive fibers have not been detected during the present study either in healthy animals or in pigs after BPA administration. Bisphenol A affects the neurochemical profile of nerves located in the cardiac apex of domestic pigs. These fluctuations in the chemical coding of nerve fibers may be associated with neuroprotective and adaptive processes in the myocardium. However, as of yet the mechanisms of these changes are not fully explained. They may be connected with the direct action of BPA on the myocardium and/or general neurodegenerative effects of this substance on the nervous system.

Wydawca

-

Rocznik

Tom

73

Numer

09

Opis fizyczny

s.572-578,tab.,fot.,bibliogr.

Twórcy

autor
  • Katedra Fizjologii Klinicznej, Wydział Medycyny Weterynaryjnej, Uniwersytet Warmińsko-Mazurski w Olsztynie, ul.Oczapowskiego 13, 10-718 Olsztyn
autor
  • Katedra Fizjologii Klinicznej, Wydział Medycyny Weterynaryjnej, Uniwersytet Warmińsko-Mazurski w Olsztynie, ul.Oczapowskiego 13, 10-718 Olsztyn
autor
  • Katedra Fizjologii Klinicznej, Wydział Medycyny Weterynaryjnej, Uniwersytet Warmińsko-Mazurski w Olsztynie, ul.Oczapowskiego 13, 10-718 Olsztyn
autor
  • Katedra Fizjologii Klinicznej, Wydział Medycyny Weterynaryjnej, Uniwersytet Warmińsko-Mazurski w Olsztynie, ul.Oczapowskiego 13, 10-718 Olsztyn
autor
  • Katedra Fizjologii Klinicznej, Wydział Medycyny Weterynaryjnej, Uniwersytet Warmińsko-Mazurski w Olsztynie, ul.Oczapowskiego 13, 10-718 Olsztyn

Bibliografia

  • Aboul Ezz H. S., Khadrawy Y. A., Mourad I. M.: The effect of bisphenol A on some oxidative stress parameters and acetylcholinesterase activity in the heart of male albino rats. Cytotechnology 2015, 67, 145-155.
  • Bae S., Hong Y. C.: Exposure to bisphenol A from drinking canned beverages increases blood pressure: randomised crossover trial. Hypertension 2015, 65, 313-319.
  • Bae S., Kim J. H., Lim Y. H., Park H. Y., Hong Y. C.: Associations of bisphenol A exposure with heart rate variability and blood pressure. Hypertension 2012, 60, 786-793.
  • Borodinsky L. N., Belgacem Y. H., Swapna I., Sequerra E. B.: Dynamic regulation of neurotransmitter specification: relevance to nervous system homeostasis. Neuropharmacology 2014, 78, 75-80.
  • Braniste V., Jouault A., Gaultier E., Polizzi A., Buisson-Brenac C., Leveque M., Martin P. G., Theodorou V., Fioramonti J., Houdeau E.: Impact of oral bisphenol A at reference doses on intestinal barrier function and sex differences after perinatal exposure in rats. Proc. Natl. Acad. Sci. USA 2010, 107, 448-453.
  • Carniglia L., Ramírez D., Durand D., Saba J., Turati J., Caruso C., Scimonelli T. N., Lasaga M.: Neuropeptides and microglial activation in inflammation, pain, and neurodegenerative diseases. Mediators Inflamm. 2017, 2017, 5048616.
  • Corrales J., Kristofco L. A., Steele W. B., Yates B. S., Breed C. S., Williams E. S., Brooks B. W.: Global assessment of bisphenol A in the environment, review and analysis of its occurrence and bioaccumulation. Dose Response 2015, 13, 1559325815598308.
  • Crick S. J., Anderson R. H., Ho S. Y., Sheppard M. N.: Localization and quantitation of autonomic innervation in the porcine heart II: endocardium, myocardium and epicardium. J. Anat. 1999, 195, 359-373.
  • Dehlin H. M., Levick S. P.: Substance P in heart failure: the good and the bad. Int. J. Cardiol. 2014, 170, 270-277.
  • Deng D., Jiao P., Ye X., Xia L.: An Image-Based Model of the Whole Human Heart with Detailed Anatomical Structure and Fiber Orientation. Comput. Math. Methods. Med. 2012, 2012, 891070.
  • Dvorakova M. C., Kruzliak P., Rabkin S. W.: Role of neuropeptides in cardiomyopathies. Peptides 2014, 61, 1-6.
  • Fang C., Ning B., Waqar A. B., Niimi M., Li S., Satoh K., Shiomi M., Ye T., Dong S., Fan J.: Bisphenol A exposure induces metabolic disoders and enhances atherosclerosis in hyperlipidemic rabbits. J. Appl. Toxicol. 2015, 35, 1058-1070.
  • Fukuda K., Kanazawa H., Aizawa Y., Ardell J. L., Shivkumar K.: Cardiac innervation and sudden cardiac death. Circ. Res. 2015, 116, 2005-2019.
  • Gao H., Yang B. J., Li N., Feng L. M., Shi X. Y., Zhao W. H., Liu S. J.: Bisphenol A and hormone-associated cancers: current progress and perspectives. Medicine (Baltimore) 2015, 94, e211.
  • Gao X., Liang Q., Chen Y., Wang H. S.: Molecular mechanisms underlying the rapid arrhythmogenic action of bisphenol A in female rat hearts. Endocrinology 2013, 154, 4607-4617.
  • Gao X., Wang H. S.: Impact of bisphenol a on the cardiovascular system – epidemiological and experimental evidence and molecular mechanisms. Int. J. Environ. Res. Public Health 2014, 11, 8399-8413.
  • Geens T., Aerts D., Berthot C., Bourguignon J. P., Goeyens L., Lecomte P., Maghuin-Rogister G., Pironnet A. M., Pussemier L., Scippo M. L., Van Loco J., Covaci A.: A review of dietary and non-dietary exposure to bisphenol A. Food Chem. Toxicol. 2012, 50, 3725-3740.
  • Gonkowski S., Kaminska B., Burlinski P., Kroll A., Calka J.: The influence of drug-resistant ulcerative colitis on the number of cocaine- and amphetamine-regulated transcript peptide-like immunoreactive (CART-LI) mucosal nerve fibres of the descending colon in children. Przegl. Gastroenterol. 2009, 4, 147-151.
  • Griesbach G. S., Hovda D. A.: Cellular and molecular neuronal plasticity. Handb. Clin. Neurol. 2015, 128, 681-690.
  • Han C., Hong Y. C.: Bisphenol A, hypertension, and cardiovascular diseases: epidemiological, laboratory, and clinical trial evidence. Curr. Hypertens. Rep. 2016, 18, 11.
  • Hongbao M., Yan Y., Shen C.: Gender-specific effects of calcitonin gene-related peptide and substance P on coronary blood flow in an experimental model. Angiology 2009, 60, 569-575.
  • Jiang Y., Xia W., Yang J., Zhu Y., Chang H., Liu J., Huo W., Xu B., Chen X., Li Y., Xu S.: BPA-induced DNA hypermethylation of the master mitochondrial gene PGC-1α contributes to cardiomyopathy in male rats. Toxicology 2015, 329, 21-31.
  • Kang H. Y., Jung E. M., Hong E. J., Hyun S. H., Hwang W. S., Jeung E. B.: Generation of transgenic fibroblasts expressing pancreas-specific and doxycycline-inducible ICER Iγ for the establishment of a porcine model of human diabetes mellitus. Mol. Med. Rep. 2014, 10, 1136-1142.
  • Kobayashi K., Ohtani K., Kubota H., Miyagawa M.: Dietary exposure to low doses of bisphenol A: effects on reproduction and development in two generations of C57BL/6J mice. Congenit. Anom. (Kyoto) 2010, 50, 159-170.
  • MacLusky N. J., Hajszan T., Leranth C.: The environmental estrogen bisphenol A inhibits estradiol-induced hippocampal synaptogenesis. Environ. Health Perspect. 2005, 113, 675-679.
  • Maffini M. V., Rubin B. S., Sonnenschein C., Soto A. M.: Endocrine disruptors and reproductive health: the case of bisphenol-A. Mol. Cell. Endocrinol. 2006, 254-255, 179-186.
  • Matyal R., Sakamuri S., Wang A., Mahmood E., Robich M. P., Khabbaz K., Hess P. E., Sellke F. W., Mahmood F.: Local infiltration of neuropeptide Y as a potential therapeutic agent against apoptosis and fibrosis in a swine model of hypercholesterolemia and chronic myocardial ischemia, Eur. J. Pharmacol. 2013, 718, 261-270.
  • McBride K. K., Roth B. J., Sidorov V. Y., Wikswo J. P., Baudenbacher F. J.: Measurements of transmembrane potential and magnetic field at the apex of the heart. Biophys. J. 2010, 99, 3113-3118.
  • Nakamura K., Itoh K., Dai H., Han L., Wang X., Kato S., Sugimoto T., Fushiki S.: Prenatal and lactational exposure to low-doses of bisphenol A alters adult mice behavior. Brain Dev. 2011, 34, 57-63.
  • Parsons R. L., Locknar S. A., Young B. A., Hoard J. L., Hoover D. B.: Presence and co-localization of vasoactive intestinal polypeptide with neuronal nitric oxide synthase in cells and nerve fibers within guinea pig intrinsic cardiac ganglia and cardiac tissue. Cell Tissue Res. 2006, 323, 197-209.
  • Pauziene N., Alaburda P., Rysevaite-Kyguoliene K., Pauza A. G., Inokaitis H., Masaityte A., Rudokaite G., Saburkina I., Plisiene J., Pauza D. H.: Innervation of the rabbit cardiac ventricles. J. Anat. 2016, 228, 26-46.
  • Petersen B., Carnwath J. W., Niemann H.: The perspectives for porcine-to-human xenografts. Comp. Immunol. Microbiol. Infect. Dis. 2009, 32, 91-105.
  • Pons J., Lee E. W., Li L., Kitlinska J.: Neuropeptide Y: multiple receptors and multiple roles in cardiovascular diseases, Curr. Opin. Investig. Drugs 2004, 5, 957-962.
  • Posnack N. G., Jaimes R. 3rd, Asfour H., Swift L. M., Wengrowski A. M., Sarvazyan N., Kay M. W.: Bisphenol A exposure and cardiac electrical conduction in excised rat hearts. Environ. Health Perspect. 2014, 122, 384-390.
  • Rysevaite K., Saburkina I., Pauziene N., Vaitkevicius R., Jalife J., Pauza D. H.: Immunohistochemical characterization of the intrinsic cardiac neural plexus in whole-mount mouse heart preparations. Heart Rhythm 2011, 8, 731-738.
  • Shimizu Y., Matsuyama H., Shiina T., Takewaki T., Furness J. B.: Tachykinins and their functions in the gastrointestinal tract. Cell. Mol. Life Sci. 2008, 65, 295-311.
  • Tsai W. T.: Human health risk on environmental exposure to Bisphenol-A: a review. J. Environ. Sci. Health. C Environ. Carcinog. Ecotoxicol. Rev. 2006, 24, 225-255.
  • Tsamis A., Bothe W., Kvitting J. P., Swanson J. C., Miller D. C., Kuhl E.: Active contraction of cardiac muscle: in vivo characterization of mechanical activation sequences in the beating heart. J. Mech. Behav. Biomed. Mater. 2011, 4, 1167-1176.
  • Vasina V., Barbara G., Talamonti L., Stanghellini V., Corinaldesi R., Tonini M., De Ponti F., De Giorgio R.: Enteric neuroplasticity evoked by inflammation. Auton. Neurosci. 2006, 126-127, 264-272.
  • Verma N., Rettenmeier A. W., Schmitz-Spanke S.: Recent advances in the use of Sus scrofa (pig) as a model system for proteomic studies. Proteomics 2011, 11, 776-793.
  • Voice J. K., Grinninger C., Kong Y., Bangale Y., Paul S., Goetzl E. J.: Role of vasoactive intestinal peptide (VIP) in the expression of different immune phenotypes by wild-type mice and T-cell targeted type II VIP receptor transgenic mice. J. Immunol. 2003, 170, 308-314.
  • Woolf C. J., Salter M. W.: Neuronal plasticity: increasing the gain in pain. Science 2000, 288, 1765-1769.
  • Yan S., Song W., Chen Y., Hong K., Rubinstein J., Wang H. S.: Low-dose bisphenol A and estrogen increase ventricular arrhythmias following ischemia-reperfusion in female rat hearts. Food Chem. Toxicol. 2013, 56, 75-80.
  • Yoo S. D., Shin B. S., Kwack S. J., Lee B. M., Park K. L., Han S. Y., Kim H. S.: Pharmacokinetic disposition and tissue distribution of bisphenol A in rats after intravenous administration. J. Toxicol. Environ. Health A. 2000, 61, 131-139.
  • Zhu W., Dey R. D.: Distribution of the neuropeptide galanin in the cat heart and coexistence with vasoactive intestinal peptide, substance P and neuropeptide Y. J. Mol. Cell. Cardiol. 1992, 24, 35-41.

Typ dokumentu

Bibliografia

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