Cite

Adlard PA, Bush AI. (2006). Metals and Alzheimer’s disease. J Alzheimers Dis10(2–3): 145–63.Search in Google Scholar

Anfinsen CB. (1973). Principles that govern the folding of protein chains. Science181: 223–30.Search in Google Scholar

Bai YN, Yang AM, Pu, HQ, He, J, Cheng N, Zheng TZ et al. (2014). Nickel-exposed workers in China: a cohort study. Biomed Environ Sci27(3): 208–11.Search in Google Scholar

Barbier O, Jacquillet G, Tauc M, Cougnon M, Poujeol. (2005). Effect of heavy metals on, and handling by, the kidney. Nephron Physiol99(4): 105–10.Search in Google Scholar

Beckerson P, Wilson MT, Svistunenko DA, Reeder BJ. (2015). Cytoglobin ligand regulated by changing haem-coordination in response to intramolecular disulfide bond formation and lipid interaction. Biochem J. 465(1): 127–37.Search in Google Scholar

Boggs JM. (1987). Lipid intermolecular hydrogen bonding: influence on structural organization and membrane function. Biochim Biophys Acta906(3): 353–404.Search in Google Scholar

Bostrom CE, Gerde P, Hanberg A, Jernstrom B, Johansson C, Kyrklund T et al. (2002). Cancer risk assessment, indicators, and guidelines for polycyclic aromatic hydrocarbons in the ambient air. Environ Health Perspect110(Suppl 3): 451–88.Search in Google Scholar

Bowman AB, Kwakye GF, Hernandez EH, Aschner M. (2011). Role of manganese in neurodegenerative disease. J Trace Elem Med Biol25(4): 191–203.Search in Google Scholar

Bushnik T, Haines D, Levallois P, Levesque P, Levesque J, Van Ostdam J, Viau C. (2010). Lead and bisphenol A concentrations in the Canadian population. Health Rep21(3): 7–14.Search in Google Scholar

Calderon-Garciduenas L, Solt AC, Henriquez-Roldan C, Torres-Jardon R, Nuse B, Herritt L, et al. (2008). Long-term air pollution exposure is associated with neuroinflammation, an altered innate immune response, disruption of the blood-brain barrier, ultrafine particulate deposition, and accumulation of amyloid beta-42 and alpha-synuclein in children and young adults. Toxicol Pathol36: 289–310.Search in Google Scholar

Chen YW, Yang CY, Huang CR, Hung DZ, Leung YM, Liu SH. (2009). Heavy metals, islet function and diabetes development. Islets1(3): 169–76.Search in Google Scholar

Chen P, Parmalee N, Aschner M. (2014). Genetic factors and manganese-induced neurotoxicity. Frontiers in Genet5: Article 265.Search in Google Scholar

Cornell BA, Separovic F. (1983). Membrane thickness and acyl chain length. Biochim Biophys Acta733(1): 189–93.Search in Google Scholar

deKroon AIPM, Rijken PJ, De Smet CH. (2013). Checks and balances in membrane phospholipid class and acyl chain homeostasis, the yeast perspective. Progress in Lipid Res52(2013): 374–94.Search in Google Scholar

Endo S, Eshcer BI, Goss KU. (2011). Capacities of membrane lipids to accumulate neutral organic chemicals. Environ Sci Technol45: 5912–21.Search in Google Scholar

Evans DR, Fackler NLP, Xie Z, Rickard CEF, Boyd PDW, Reed CA. (1999). piarene/cation structure and bonding. Solvation versus ligand binding in iron(III) tetraphenylporphyrin complexes of benzene, toluene, p-xylene and (60)Fullerene. J Am Chem Soc121: 8466–74.Search in Google Scholar

Fukushima T, Tan X, Luo Y, Wang P, Song J, Kanda H et al. (2014). Correlations among heavy metals in blood and urine and their relationships to depressive symptoms in Parkinson’s disease patients. Fukushima J Med Sci60(2): 1–8.Search in Google Scholar

Gauthier PT, Norwood WP, Prepas EE, Pyle GG. (2014). Metal-PAH mixtures in the aquatic environment: A review of co-toxic mechanisms leading to more-than-additive outcomes. Aquatic Toxicol154: 253–69.Search in Google Scholar

Gupta A. (1999). Functional impairment of blood-brain barrier following pesticide exposure during early development of rats. Human Experiment Toxicol18(3): 174–79.Search in Google Scholar

Holthuis JCM, Menon AK. (2014). Lipid landscapes and pipelines in membrane homeostasis. Nature510: 48–57.Search in Google Scholar

Hsu PC, Liu CC, Chen LY, Guo YL. (1997). Lead exposure causes generation of reactive oxygen species and functional impairment in rat sperm. Toxicology122(1–2): 133–43.Search in Google Scholar

Jarup L. (2003). Hazards of heavy metal contamination. Br Med Bull68: 167–82.Search in Google Scholar

KitagawaS, Li H, Sato S. (1997). Skin permeation of parabens in excised guinea pig dorsal skin, its modification by penetration enhancers and their relationship with n-octanol/water partition coefficients. Chem Pharm Bull (Tokyo)45(8): 1354–57.Search in Google Scholar

Korchowiec B, Corvis Y, Viitala T, Feidt C, Guiavarch Y, Corbier D, Rogalska E. (2008). Interfacial aproach to polyaromatic hydrocarbon toxicity: phosphoglyceride and cholesteral monolayer response to phenanthrene, anthracene, pyrene, chrysene and benzo(a)(yrene. J Phys Chem112: 13518–31.Search in Google Scholar

Kumudini N, Uma A, Devi YP, Naushad S, Mridula R, Borgohain R, Kutala, VK. (2014). Association of Parkinson’s disease with altered serum levels of lead and transition metals among South Indian subjects. Indian J Biochem Biophys51(2): 121–26.Search in Google Scholar

Kuo CC, Moon K, Thayer KA, Navas-Acien A. (2013). Environmental chemicals and type 2 diabetes: an updated systematic review of epidemiologic evidence. Curr Diab Rep13(6): 831–49.Search in Google Scholar

Lee, AG. (2003). Lipid-protein interactions in biological membranes: a structural perspective. Biochim Biophys Acta1612(1): 1–40.Search in Google Scholar

Lee, AG. (2004). How lipids affect the activities of integral membrane proteins. Biochim Biophys Acta1666(1–2): 62–87.Search in Google Scholar

Librando V, Sarpietro MG, Castelli F. (2003). Role of lipophilic medium in the absorption of polycyclic aromatic compounds by biomembranes. Environ Toxicol Pharmacol14(1–2): 25–32.Search in Google Scholar

Liland NS, Simonsen AC, Duelund L, Torstensen BE, Berntssen MHG, Mouritsen OG. (2014). Polyaromatic hydrocarbons do not disturb liquid-liquid phase coexistence, but increase the fluidity of model membranes. Chem Phys Lip184C: 18–24.Search in Google Scholar

Lipinski B. (2010). Prostate cancer vaccines, fibrin and selenium: a conceptual review. Open Prost Cancer J3: 69–73.Search in Google Scholar

Lipinski B. (2011). Hydroxyl radical and its scavengers in health and disease. Oxid Med Cell Longev2011: Article ID 809696, 9 p.Search in Google Scholar

Lipinski B, Pretorieus E. (2012). Novel pathway of iron-induced blood coagulation: implications for diabetes mellitus and its complications. Pols Arch Med Wewn122(3): 115–22.Search in Google Scholar

Lipinski B, Pretorius E. (2013). Iron-induced fibrin in cardiovascular disease. Curr Neurovasc Res10: 269–74.Search in Google Scholar

Lipinski B, Pretorius E. (2013a). The role of iron-induced fibrin in the pathogenesis of Alzheimer’s disease and the protective role of magnesium. Frontiers Human Neurosci7(Article 735): 1–11.10.3389/fnhum.2013.00735381065024194714Search in Google Scholar

Lipinski B. (2014). Cancer wars: significance of protein unfolding in cancer and its inhibition with natural amphiphilic substances. Frontiers in Oncology4: 183.Search in Google Scholar

Lipinski B. (2014a). Can selenite be an ultimate inhibitor of Ebola and other viral infections? Br. J Med and Medical Res6(3): 319–24.10.9734/BJMMR/2015/14858Search in Google Scholar

Lodish H, Berk A, Kaiser CA, Krieger M. (2007). Molecular cell biology, New York: W.H. Freeman.Search in Google Scholar

Manganaro AM. (1997). Review of transmucosal drug delivery. Mil Med162: 27–30.Search in Google Scholar

Martinez-Finley EJ, Gavin CE, Aschner M, Gunter TE. (2013). Manganese neurotoxicity and the role of reactive oxygen species. Free Radic Biol Med62: 65–75.Search in Google Scholar

Mates JM, Segura JA, Alonso FJ, Marquez J. (2010). Roles of dioxins and heavy metals in cancer and neurological diseases using ROS-mediated mechanisms. Free Rad Biol Med49(9): 1328–41.Search in Google Scholar

McIntosh TJ, Simon SA, MacDonald RC. (1980). The organization of n-alkanes in lipid bilayers. Biochim Biosphys Acta597(3): 445–63.Search in Google Scholar

Murray CJL, Vos T, Lozano R, Naghavi M, Flaxman AD et al. (2012). Disability-adjusted life years (DALYs) for 291 diseases and injuries in 21 regions, 1990–2010: a systematic analysis for the Global Burden of Disease Study 2010. Lancet380(7): 2197–2223.Search in Google Scholar

OSHA. (2006). United States Department of Labor, Occupational Safety and Health Administration, Washington, DC. OSHA 1910.100, table Z-1 and OSHA 1910.1028. www.osha.gov/law-regs.html (Accessed October 9, 2014).Search in Google Scholar

Padilla MA, Elobeid M, Ruden DM, Allison DB. (2010). An examination of the association of selected toxic metals with total and central obesity indices: NHANES 99-02. Int J Environ Res Public Health7: 3332–47.Search in Google Scholar

Pardridge WM. (2012). Drug transport across the blood-brain barrier. J Cereb Blood Flow Metab32(11): 1959–72.Search in Google Scholar

Park HJ, Kim JY, Kim J, Lee JH, Hahn JS, Gu MB, Yoon J. (2009). Silver-ion mediated reactive oxygen species generation affecting bactericidal activity. Water Res43(4): 1027–32.Search in Google Scholar

Patel MM, Goyal BR, Bhadada SV, Bhatt JS, Amin AF. (2009). Getting into the brain: approaches to enhance brain drug delivery. CNS Drugs23(1): 35–58.Search in Google Scholar

Perbellini L, Brugnone F, Caretta D, Maranelli G. (1985). Partition coefficients of some industrial aliphatic hydrocarbons (C5–C7) in blood and human tissues. Br J Ind Med42: 162–67.Search in Google Scholar

Pretorius E, Lipinski B. (2013). Differences in morphology of fibrin clot induced with thrombin and ferric ions and its pathophysiological consequences. Heart Lung Circulation22: 447–4910.1016/j.hlc.2012.10.01023219312Search in Google Scholar

Qiu C, Cheng S, Xia Y, Peng B, Tang Q, Tu B. Effects of subchronic benzo(a) pyrene exposure on neurotransmitter receptor gene expression in the rat hippocampus related with spatial learning and memory change. Toxicology289(2–3): 83–90.10.1016/j.tox.2011.07.01221839799Search in Google Scholar

Rana SV. (2014). Perspectives in endocrine toxicity of heavy metals--a review. Biol Trace Elem Res160(1): 1–14.Search in Google Scholar

Rani A, Kumar A, Lal A, Pant M. (2014). Cellular mechanisms of cadmium-induced toxicity: a review. Int J Environ Health Res24(4): 378–99.Search in Google Scholar

Retzinger GS, DeAngelis AP, Patuto SJ. (1998). Adsorption of fibrinogen to droplets of liquid hydrophobic phases. Arterioscler Thromb Vasc Biol18: 1948–57.Search in Google Scholar

Rossignol DA, Genuis SJ, Frye RE. (2014). Environmental toxicants and autism spectrum disorders: a systematic review. Transl Psychiatry4: e360.Search in Google Scholar

Sato A, Nakajima T. (1987). Pharmacokinetics of organic solvent vapors in relation to their toxicity. Scand J Work Environ Health13: 81–93.Search in Google Scholar

Schwingshacki L, Hoffmann G. (2014). Adherence to Mediterranean diet and risk of cancer: a systematic review and meta-analysis of observational studies. Int J Cancer135(8): 1884–97.Search in Google Scholar

Scinicariello F, Buser MC. (2014). Urinary polycyclic aromatic hydrocarbons and childhood obesity: NHANES (2001–2006). Environ Health Perspect122(3): 299–303.Search in Google Scholar

Seelbach M, Chen L, Powell A, Choi YJ, Zhang B, Hennig B, Toborek M. (2010). Polychlorinate biphenyls disrupt blood-brain barrier integrity and promote brain metastasis formation. Environ Health Perspect118(4): 479–84.Search in Google Scholar

Sharma B, Singh S, Siddiqi NJ. (2014). Biomedical implications of heavy metals induced imbalances in redox systems. Biomed Res Int2014: Article ID 640754, 26 p.Search in Google Scholar

Sikkema J, de Bont JAM, Poolman B. (1994). Interactions of cyclic hydrocarbons with biological membranes. J Biol Chem269(11): 8022–28.Search in Google Scholar

Sikkema J, de Bont JAM, Poolman B. (1995). Mechanisms of membrane toxicity of hydrocarbons. Microbiol Rev59(2): 201–22.Search in Google Scholar

Smith AQ, Campbell JL, Keys DA, Fisher JW. (2005). Rat tissue and blood partition coefficients for n-alkanes (C8–C12). Int J Toxicol24(1): 35–41.Search in Google Scholar

Sprague BL, Trentham-Dietz A, Hedman CJ, Wang J, Hemming JD, Hampton JM et al. (2013). Circulating serum xenoestrogens and mammographic breast density. Breast Cancer Res15(3): R45.Search in Google Scholar

Tchounwou PB, Yedjou CG, Patlolla AK, Sutton DJ. (2012). HEavy metal toxicity and the environment. EXS101: 133–64.Search in Google Scholar

Valko M, Morris H, Cronin MT. (2005). Metals, toxicity and oxidative stress. Curr Med Chem12(10): 1161–1208.Search in Google Scholar

Vizcaya D, Rivera M, Lavoue J, Siemaitycki J. (2014). Lung cancer and exposure to benzene, toluene and xylene: results from two case-control studies in Montreal. Occup Environ Med71(Suppl 1): A91.Search in Google Scholar

Wang BJ, Sheu HM, Guo YL, Lee YH, Lai CS Pan MH, Wang YJ. (2010). Hexavalent chromium induced ROS formation, Akt, NF-kappaB, and Mapk activation, and TNF-alpha and IL-1 production in keratinocytes. Toxicol Lett198(2): 216–24.Search in Google Scholar

Wang W, Lampi MA, Huang XD, Gerhardt K, Dixon DG, Greenberg BM. (2009). Assessment of mixture toxicity of copper, cadmium, and phenathrenequinone to the marine bacterium Vibrio fishcheri. Environ Toxicol24(2): 166–7.Search in Google Scholar

Xu H, Finkelstein DI, Adlard PA. (2014). Interactions of metals and Apolipoprotein E in Alzheimer’s disease. Front Aging Neurosci6: 121.Search in Google Scholar

Xu J, Zhou Q, Liu G, Tan Y, Cai L. (2013). Analysis of serum and urinal copper and zinc in Chinese northeast population with the prediabetes or diabetes with and without complications. Oxid Med Cell Longev2013: 635214.Search in Google Scholar

Zeliger HI. (2003). Toxic effects of chemical mixtures. Arch Environ Health58(1): 23–29.Search in Google Scholar

Zeliger HI. (2011). Human toxicology of chemical mixtures, 2nd ed. Elsevier, London.Search in Google Scholar

Zeliger HI, Pan Y, Rea WJ. (2012). Predicting co-morbidities in chemically sensitive individuals from exhaled breath analysis. Interdiscip Toxicol5(3): 123–126.Search in Google Scholar

Zeliger HI. (2013). Lipophilic chemical exposure as a cause of type 2 diabetes (T2D). Rev Environ Health28(1): 9–20.Search in Google Scholar

Zeliger HI. (2013a). Lipophilic chemical exposure as a cause of cardiovascular disease. Interdiscip Toxicol6(2): 55–62.10.2478/intox-2013-0010379885624179429Search in Google Scholar

Zeliger HI. (2013b). Lipophilic chemical exposure as a cause of neurological impairments, neurodevelopmental disorders and neurodegenerative diseases. Interdiscip Toxicol6(3): 103–10.10.2478/intox-2013-0018396743624678247Search in Google Scholar

Zeliger HI. (2014). Co-morbidities of environmental diseases: a common cause. Interdiscip Toxicol7(3): 171–22.Search in Google Scholar

eISSN:
1337-9569
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Clinical Medicine, Pharmacology, Toxicology