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Tytuł :
Advances in Our Understanding of the Molecular Mechanisms of Action of Cisplatin in Cancer Therapy
Autorzy :
Tchounwou PB
Dasari S
Noubissi FK
Ray P
Kumar S
Pokaż więcej
Temat :
cisplatin
molecular mechanisms of action
combination therapy
cancer treatment
Therapeutics. Pharmacology
RM1-950
Źródło :
Journal of Experimental Pharmacology, Vol Volume 13, Pp 303-328 (2021)
Opis pliku :
electronic resource
Relacje :
https://www.dovepress.com/advances-in-our-understanding-of-the-molecular-mechanisms-of-action-of-peer-reviewed-fulltext-article-JEP; https://doaj.org/toc/1179-1454
Dostęp URL :
https://doaj.org/article/1cd64f73fc9b4269a02fcf294fb8ad04
Czasopismo naukowe
Tytuł :
A comparison of poly-ethylene-glycol-coated and uncoated gold nanoparticle-mediated hepatotoxicity and oxidative stress in Sprague Dawley rats
Autorzy :
Patlolla AK
Kumari SA
Tchounwou PB
Pokaż więcej
Temat :
serum aminotransferases
polyethylene glycol coated gold nanoparticles
uncoated gold nanoparticles
hepatotoxicity
oxidative stress.
Medicine (General)
R5-920
Źródło :
International Journal of Nanomedicine, Vol Volume 14, Pp 639-647 (2019)
Opis pliku :
electronic resource
Relacje :
https://www.dovepress.com/a-comparison-of-poly-ethylene-glycol-coated-and-uncoated-gold-nanopart-peer-reviewed-article-IJN; https://doaj.org/toc/1178-2013
Dostęp URL :
https://doaj.org/article/be19ffa33d2c4e43b90383a8a5439773
Czasopismo naukowe
Tytuł :
Effects of lipopolysaccharide, multiwalled carbon nanotubes, and the combination on lung alveolar epithelial cells
Autorzy :
Pacurari, M
May, I
Tchounwou, PB
Pokaż więcej
Temat :
Article
Relacje :
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4987265/; http://www.ncbi.nlm.nih.gov/pubmed/26880698; http://dx.doi.org/10.1002/tox.22248
Dostępność :
https://doi.org/10.1002/tox.22248
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4987265/
http://www.ncbi.nlm.nih.gov/pubmed/26880698
Czasopismo naukowe
Tytuł :
Induced mitogenic activity in AML-12 mouse hepatocytes exposed to low-dose ultra-wideband electromagnetic radiation.
Autorzy :
Dorsey, WC
Ford, BD
Roane, L
Haynie, DT
Tchounwou, PB
International journal of environmental research and public health
Pokaż więcej
Temat :
Cells
Cultured
Hepatocytes
Animals
Mice
Cyclin A
Cell Proliferation
Cell Survival
Electromagnetic Fields
Toxicology
Źródło :
International journal of environmental research and public health, vol 2, iss 1
Opis pliku :
application/pdf
Relacje :
qt3gx1q6zs; https://escholarship.org/uc/item/3gx1q6zs
Dostępność :
https://escholarship.org/uc/item/3gx1q6zs
Czasopismo naukowe
Tytuł :
Efectos en la función renal en población expuesta a mercurio: revisión de alcance ; Effects on renal function in population exposed to mercury: scoping review
Autorzy :
Restrepo Laverde, Lina Alexandra
Sarmiento Gamboa, Leidy Tatiana
reponame:Repositorio Institucional EdocUR ; instname:Universidad del Rosario ; Casas IC
Gómez E
Rodríguez LM
Girón SL
Mateus JC. Hacia un plan nacional para el control de los efectos en salud del mercurio en Colombia. Biomédica. 2015;35(0). ; Rafati-Rahimzadeh M
Rafati-Rahimzadeh M
Kazemi S
Moghadamnia AA. Current approaches of the management of mercury poisoning: Need of the hour. DARU J Pharm Sci. 2014;22(1):1–10. ; Sommar J
Svensson M
Björ B
Elmståhl S
Hallmans G
Lundh T
Schön T
Skerfving S BI. End-stage renal disease and low level exposure to lead
cadmium and mercury; a population-based
prospective nested case-referent study in Sweden. Environ Health [Internet]. 2013;12:9. Available from: http://ovidsp.ovid.com/ovidweb.cgi?T=JS&PAGE=reference&D=emed14&NEWS=N&AN=369394450 ; Lopera-Medina MM. La enfermedad renal crónica en Colombia: Necesidades en salud y respuesta del Sistema General de Seguridad Social en Salud. Rev Gerenc y Polit Salud. 2016;15(30):212–33. ; Orr SE
Bridges CC. Chronic kidney disease and exposure to nephrotoxic metals. Int J Mol Sci. 2017;18(5). ; Roels H
Lauwerys R
Buchet JP
Bernard A
Barthels A
Oversteyns M
et al. Comparison of renal function and psychomotor performance in workers exposed to elemental mercury. Int Arch Occup Environ Health. 1982;50(1):77–93. ; Khalid K
Ibrahim M
Fattah M
Qureshi S
Karar T. Evaluation of Serum Mercury and Microalbuminuria in Sudanese Traditional Gold Miners in Northern State. Curr J Appl Sci Technol. 2018;27(1):1–8. ; Afrifa J
Essien-Baidoo S
Ephraim RKD
Nkrumah D
Dankyira DO. Reduced egfr
elevated urine protein and low level of personal protective equipment compliance among artisanal small scale gold miners at Bibiani-Ghana: A cross-sectional study. BMC Public Health. 2017;17(1):1–9. ; Ekawanti A
Krisnayanti BD. Effect of Mercury Exposure on Renal Function and Hematological Parameters among Artisanal and Small-scale Gold Miners at Sekotong
West Lombok
Indonesia. J Heal Pollut. 2016;6(10):104–104. ; Li SJ
Zhang SH
Chen HP
Zeng CH
Zheng CX
Li LS
et al. Mercury-induced membranous nephropathy: Clinical and pathological features. Clin J Am Soc Nephrol. 2010;5(3):439–44. ; Díaz García JD
Arceo E. Daño renal asociado a metales pesados: trabajo de revisión. Rev Colomb Nefrol. 2018;5(1):43. ; Organización para la Cooperación y el Desarrollo Económicos. OCDE Environmental Performance Reviews: Colombia 2014 [Internet]. OCDE Environmental Performance Reviews. 2014. 41–73 p. Available from: http://www.oecd-ilibrary.org.proxy.bib.uottawa.ca/environment/oecd-environmental-performance-reviews-colombia-2014/policy-making-environment_9789264208292-6-en ; Doria Mesquidaz E
Marrugo Negrete J
Pinedo Hernández J. Exposición a mercurio en trabajadores de una mina de oro en el norte de Colombia Exposure. Salud UNINORTE [Internet]. 2013;29(3):534–41. Available from: http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S0120-55522013000300013 ; Do SY
Lee CG
Kim JY
Moon YH
Kim MS
Bae IH
et al. Cases of acute mercury poisoning by mercury vapor exposure during the demolition of a fluorescent lamp factory. Ann Occup Environ Med [Internet]. 2017;29(1):1–8. Available from: ya ; Rodríguez LHS
Rodríguez-Villamizar LA
Flórez-Vargas O
Fiallo YV
Ordoñez Á
Gutiérrez MDC. No effect of mercury exposure on kidney function during ongoing artisanal gold mining activities in Colombia: A cross-sectional study. Toxicol Ind Health. 2016;33(1):67–78. ; Ministerio de Salud y Protección Social. Exposición ocupacional y ambiental a mercurio en el departamento de Chocó
Colombia
2015-2016: informe preliminar. Inf Quinc Epidemiológico Nac [Internet]. 2016;21(295–307):2015–6. Available from: https://www.ins.gov.co/buscador-eventos/IQEN/IQEN vol 21 2016 num 11.pdf ; Urrutia G
Bonfill X. Declaración PRISMA: una propuesta para mejorar la publicación de revisiones sistemáticas y metaanálisis [Internet]. Vol. 135
Medicina Clínica. 2010. p. 507–11. Available from: http://es.cochrane.org/sites/es.cochrane.org/files/public/uploads/PRISMA_Spanish.pdf ; Jin R
Zhu X
Shrubsole MJ
Yu C
Xia Z
Dai Q. Associations of renal function with urinary excretion of metals: Evidence from NHANES 2003–2012. Environ Int [Internet]. 2018;121(August):1355–62. Available from: https://doi.org/10.1016/j.envint.2018.11.002 ; Laamech J
Dumont X
Benazzouz B
Lyoussi B. Blood lead
cadmium and mercury among children from urban
industrial and rural areas of Fez Boulemane Region (Morocco): Relevant factors and early renal effects. Int J Occup Med Environ Health. 2014;27(4):641–59. ; Yokoyama K
Araki S
Sato H
Aono H. Circadian rhythms of seven heavy metals plasma
erythrocytes and urine in men: Observation in metal workers. Ind Health. 2000;38(2):205–12. ; Alison P. Sanders
Matthew J. Mazzella
Ashley J. Malin
Gleicy Hair SA
Busgang
Jeffrey M. Saland PC. Combined exposure to lead
cadmium
mercury
and arsenic and kidney health in adolescents age 12-19 in NHANES 2009-2014. Physiol Behav. 2017;176(5):139–48. ; Frumkin H
Manning CC
Williams PL
Sanders A
Taylor BB
Pierce M
et al. Diagnostic chelation challenge with DMSA: A biomarker of long-term mercury exposure? Environ Health Perspect. 2001;109(2):167–71. ; Jerome P. Trzeciakowski
Lesley Gardiner ARP. Effects of environmental levels of cadmium
lead and mercury on human renal function evaluated by structural equation modeling. Bone. 2013;228(1):34–41. ; Choi W
Kim S
Baek YW
Choi K
Lee K
et al. Exposure to environmental chemicals among Korean adults-updates from the second Korean National Environmental Health Survey (2012–2014). Int J Hyg Environ Health [Internet]. 2017;220(2):29–35. Available from: http://dx.doi.org/10.1016/j.ijheh.2016.10.002 ; Woods.
James S. Michael D. Martinb
Brian G. Lerouxc
d
Timothy A. DeRouenc
Mario F. Bernardoe
Henrique S. Luise
Jorge G. Leitãoe
John V. Kushleikaa
Tessa C. Ruec
d and AMK. BIOMARKERS OF KIDNEY INTEGRITY IN CHILDREN AND ADOLESCENTS WITH DENTAL AMALGAM MERCURY EXPOSURE: FINDINGS FROM THE CASA PIA CHILDREN’S AMALGAM TRIAL. 2011;108(3):393–9. ; Maserejian NN
Trachtenberg FL
Assmann SF
Barregard L. Dental amalgam exposure and urinary mercury levels in children: The New England Children’s Amalgam Trial. Environ Health Perspect. 2008;116(2):256–62. ; Kim NH
Hyun YY
Lee KB
Chang Y
Rhu S
Oh KH
et al. Environmental heavy metal exposure and chronic kidney disease in the general population. J Korean Med Sci. 2015;30(3):272–7. ; Sutton DJ
Tchounwou PB. Mercury induces the externalization of phosphatidyl-serine in human renal proximal tubule (HK-2) cells. Int J Environ Res Public Health. 2007;4(2):138–44. ; Efskind J
Ellingsen DG
Hartman A
Thomassen Y
Scient C
Ulvik RJ
et al. Renal function of chloralkali workers after the cessation of exposure to mercury vapor. Scand J Work Environ Heal. 2006;32(3):241–9. ; de Burbure C
Leroyer A
Nisse C
Haguenoer JM
Mutti A
et al. Renal and neurologic effects of cadmium
lead
and arsenic in children: Evidence of early effects and multiple interactions at environmental exposure levels. Environ Health Perspect. 2006;114(4):584–90. ; Barregard L
Trachtenberg F
McKinlay S. Renal effects of dental amalgam in children: The New England children’s amalgam trial. Environ Health Perspect. 2008;116(3):394–9. ; Woods JS
Martin MD
Leroux BG
DeRouen TA
Leitäo JG
Bernardo MF
et al. The contribution of dental amalgam to urinary mercury excretion in children. Environ Health Perspect. 2007;115(10):1527–31. ; Drake PL
Rojas M
Reh CM
Mueller CA
Jenkins FM. Occupational exposure to airborne mercury during gold mining operations near El Callao
Venezuela. Int Arch Occup Environ Health. 2001;74(3):206–12. ; Franko A
Budihna M V.
Dodic-Fikfak M. Long-term effects of elemental mercury on renal function in miners of the Idrija Mercury Mine. Ann Occup Hyg. 2005;49(6):521–7. ; Trachtenberg F. BL& MS. The Influence of Urinary Flow Rate on Mercury Excretion in Children. J Trace Elem Med Biol [Internet]. 2010;24(1):1–7. Available from: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3624763/pdf/nihms412728.pdf ; Voitzuk A
Greco V
Caputo D
Alvarez E. Toxic nephropathy secondary to occupational exposure to metallic mercury. Medicina (B Aires) [Internet]. 2014;74(5):397–9. Available from: http://www.ncbi.nlm.nih.gov/pubmed/25347904 ; Sallon S
Dory Y
Barghouthy Y
Tamdin T
Sangmo R
Tashi J
et al. Is mercury in Tibetan Medicine toxic? Clinical
neurocognitive and biochemical results of an initial cross-sectional study. Exp Biol Med. 2017;242(3):316–32. ; Yard EE
Horton J
Schier JG
Caldwell K
Sanchez C
Lewis L
et al. Mercury Exposure Among Artisanal Gold Miners in Madre de Dios
Peru: A Cross-sectional Study. J Med Toxicol. 2012;8(4):441–8. ; Decharat S. Mercury exposure among garbage workers in Southern Thailand. Saf Health Work. 2012;3(4):268–77. ; Gibb H
Leary KGO. Mercury Exposure and Health Impacts among Individuals in the Artisanal and Small-Scale Gold Mining Community: A Comprehensive Review. 2014;122(7):667–72. ; Zheng L.
Sanders A.
Saland J. et al. Environmental exposures and pediatric kidney function and disease: A systematic review Laura. 2017;158:625–48. ; Sun Y
Zhou Q
Zheng J. Nephrotoxic metals of cadmium
mercury and arsenic and the odds of kidney stones in adults: An exposure-response analysis of NHANES 2007–2016. Environ Int [Internet]. 2019;132(June):105115. Available from: https://doi.org/10.1016/j.envint.2019.105115 ; Bustamante-Montes LP
Flores-Polanco JA
Isaac-Olivé K
Hernández-Téllez M
Campuzano-González ME
Ramírez-Durán N. Exploratory study on the association of heavy metals and nephropathy of unknown etiology in the western state of Mexico. Rev Int Contam Ambient. 2018;34(4):555–64. ; Hodgson S
Nieuwenhuijsen MJ
Elliott P
Pokaż więcej
Temat :
Correlación Insuficiencia renal exposición a mercurio
Enfermedad renal por envenenamiento con mercurio
Nefrotoxicidad
Riesgo químico laboral
Riesgo laboral en la industria minera
Niveles de Hg elemental en mineros
Incidencia & prevención de la enfermedad
Correlation renal insufficiency exposure to mercury
Kidney disease from mercury poisoning
Nephrotoxicity
Chemical occupational hazard
Occupational risk in the mining industry
Elemental Hg levels in miners
Źródło :
reponame:Repositorio Institucional EdocUR ; instname:Universidad del Rosario ; Casas IC, Gómez E, Rodríguez LM, Girón SL, Mateus JC. Hacia un plan nacional para el control de los efectos en salud del mercurio en Colombia. Biomédica. 2015;35(0). ; Rafati-Rahimzadeh M, Rafati-Rahimzadeh M, Kazemi S, Moghadamnia AA. Current approaches of the management of mercury poisoning: Need of the hour. DARU J Pharm Sci. 2014;22(1):1–10. ; Sommar J, Svensson M, Björ B, Elmståhl S, Hallmans G, Lundh T, Schön T, Skerfving S BI. End-stage renal disease and low level exposure to lead, cadmium and mercury; a population-based, prospective nested case-referent study in ....
Opis pliku :
application/pdf
Relacje :
https://repository.urosario.edu.co/handle/10336/30833
Dostępność :
https://doi.org/10.1016/j.envint.2018.11.002
https://doi.org/10.1016/j.ijheh.2016.10.002
https://doi.org/10.1016/j.envint.2019.105115
https://repository.urosario.edu.co/handle/10336/30833
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