Mercury: Cardiovascular Adverse Effects

Brake, J; et al. Mercury Induced Cardiovascular Abnormalities in the Chicken. Arch Environ Contam Toxicol., 6:269-77, 1977.

Carmignani, M; et al. Mechanisms in Cardiovascular Regulation Following Chronic Exposure of Male Rats to Inorganic Mercury. Toxicol Appl Pharmacol., 69:442-50, 1983.

Carmignani, M; Boscolo, P. Cardiovascular Homeostasis in Rats Chronically Exposed to Mercuric Chloride. Arch Toxicol., S7:383-8, 1984.

Carmignani, M; et al. Renal Ultrastructural Alterations and Cardiovascular Functional Changes in Rats Exposed to Mercuric Chloride. Arch Toxicol., S13:353-6, 1989.

Cheek, DB; Wu, F. Effect of Calomel on Plasma Epinephrine in Rat and Relationship to Mechanisms in Pink Disease. Arch Dis Childhood, 34:502-4, 1959.

Cheek, DB; et al. Effect of Mercurous Chloride (Calomel) and Epinephrine (Sympathetic Stimulation) on Rats: Importance of Findings to Mechanisms in Infantile Acrodynia (Pink Disease). Pediatrics, 23:302-13, 1959.

Cutright, DE; et al. Systemic Mercury Levels Caused by Inhaling Mist During High-Speed Amalgam Grinding. J Oral Med., 28(4):100-4, Oct-Dec 1973.

Dahhan, SS; Orfaly, H. Electrocardiographic Changes in Mercury Poisoning. Amer J Cardiol, 14:178-83, 1964.

De Bruin, A (Ed). Biochemical Toxicology of Environmental Agents [Atherogenic action of mercury]:575-6, 702-3, Elsevier, 1976.

Fellinger, K; Schweitzer, F. Gefasserkrnkungen nach Quecsilbervergiftungen [Vascular damage by mercury]. Arch Gewerbepath Dewerbehyg., 9:269-75, 1938.

Fredin, B. The Distribution of Mercury in Various Tissues of Guinea Pigs After Application of Dental Amalgam Fillings. Sci Total Environ., 66:263-8, 1987.

Frustaci, A; et al. Marked Elevation of Myocardial Trace Elements in Idiopathic Dilated Cardiomyopathy Compared With Secondary Cardiac Dysfunction. J Am Coll Cardiol., 33(6):1578-83, May 1999.

Gale, TF. Cardiac and Non-Cardiac Malformations Produced by Mercury in Hamsters. Bull Environment Contam Toxicol., 25:726-32, 1980.

Griffith, CG; et al. The Inorganic Element Content of Certain Human Tissues. Ann Internal Med., 41:501-9, 1954.

Hahn, LJ; et al. Dental "silver " tooth fillings: a source of mercury exposure revealed by whole body scan and tissue analysis. FASEB J, 3:2641-6, 1989.

Hahn, LJ; et al. Whole-Body Imaging of the Distribution of Mercury Released from Dental Fillings into Monkey Tissues. FASEB J. 4:3256-609 1990.

Halbach, S. Sulfhydryl-Induced Restoration of Myocardial Contractility After Alteration by Mercury. Arch Toxicol., S13:349-52, 1989.

Jha, LB; Bhatia, B. Effect of Mercuric Chloride on Coronary Flow in Perfused Rat Heart. Bull Environ Contam Toxicol., 31(2):132-8, 1983.

Jonek, J. Histochische Untersuchungen Uber Das Verhalten Eineger Enzyme im Herzmuskel Nach Experimenteller Vergiftung mit Quecksilberdampfen [Mercury effect on heart muscle contraction]. Int Arch Gewerbepathol Bewergehyg., 21:1-10, 1964.

Kahler, HJ. Zur Frage der Kardiotoxischen Wirkung des Quecksilbers, Inbesondere des Saatfruchbeizmettel [Mercury causing EKG and heart rhythm disturbances, cardiac arrest]. Zbl Arbeitsmed Arbeitsschutz., 1025-31, 1960.

Khayat, A; Dencker, L. Interactions between selenium and mercury in mice: Marked retention in t6he lung after inhalation of metallic mercury. Chem Biol Interactions, 46:283-98, 1983.

Khayat, A; Dencker, L. Organ and cellular distribution of inhaled metallic mercury in the rat and marmoset monkey (Callithrix jacchus): Influence of ethyl alcohol pretreatment. Acta Pharmacol Toxicol, 55:145-52, 1984.

Kleinfeld, M; Stein. Action of Divalent Cations on Membrane Potentials and Contactility in Rat Atrium. Amer J Physiol., 215(3):593-9, Sep 1968.

Kussmaul, A. Untersuchungen Uber DenConstitutionellen Mercurialismus und Sein Verhaeltniss zur Constitutitionellen Syphilis [General heart damage by mercury]. Wuerzburg, 1861.

Lu, KP; et al. The Stimulatory Effect of Heavy Metal Cations on Proliferation of Aortic Smooth Muscle Cells. Sci China [B]. 33(3):303-10, Mar 1990.

Matsuo, N; et al. Mercury Concentration in Organs of Contemporary Japanese. Arch Environ Health, 44(5):298-303, Sep-Oct 1989.

Orlowski, JP; Mercer, RD. Urine Mercury Levels in Kawasaki Disease [Myocardial infarction, abnormal EKG, A-V block, PVC, myocarditis, aneurysms by mercury]. Pediatrics, 66(4):633-6, )ct 1980.

Perry, HM; Yunice, A. Acute Pressor Effects of Intra-Arterial Cadmium and Mercuric Ions in Anesthetized Rats. Proc Soc Exp Biol Med., 120:805-8, 1965.

Perry, HM; et al. In Vitro Production and Inhibition of Aortic Vasoconstriction by Mercuric, Cadmium, and Other Metal Ions. Proc Soc Exp Biol Med., 124:485-90, 1967.

Perry, HM; et al. Hypertension and Tissue Metal Levels Following Intravenous Cadmium, Mercury, and Zinc. Amer J Physiol., 219:755-61, Sep 1970.

Perry, HM; Erlanger, M. Hypertension and Tissue Metal Levels After Intraperitoneal Cadmium, Mercury, and Zinc. Amer J Physiol., 220:808-11, 1971.

Piikivi, L. Cardiovascular Reflexes and Low Long Term Exposure to Mercury Vapour. Int Arch Occup Environ Health, 61:391-5, 1989.

Piikivi, L; Tolonen, L. EEG findings in chlor-alkali workers subjected to low long term exposure to mercury vapour. Brit J Indus Med, 46:370-5, 1989.

Placidi, GF; et al. Distribution of Inhaled Mercury (203Hg) in Various Organs. Int J Tiss React., 5:193-200, 1983.

Prabhu, SD; Salama, G. The Heavy Metal Ions Ag+ and Hg2+ Trigger Calcium Release from Cardiac Sarcoplasmic Reticulum, Arch Biochem Biophys., 15; 277(1):47-55, Feb 1990.

Rhee, HM; Choi, BH. Hemodynamic and Electrophsiological Effects of Mercury in Intact Anesthetized Rabbits and in Isolated Perfused Hearts. Exp Molec Pathol., 50:281-90, 1989.

Rieselman, SD. Einfluss der Quecksilberintoxikation auf die Inneren Organe [Cardiomyopathy, vascular damage by mercury]. Arch Gewerbepathol., 1:496, 1930.

Shiraki, H; Nagashima, K. Essential Neuropathology of Alkylmercury Intoxications in Humans from the Acute to the Chronic Stage With Special Reference to Experimental Whole Body Auroradiographic Study Using Labeled Mercury Compounds. Neurotoxicology. Ed. Roisin, et al:247-60, 1977.

Siblerud, RL. The Relationship Between Mercury From Dental Amalgam and the Cardiovascular System, Sci Total Environ, 99:23-5, 1990.

Simmons, MS; et al. EKG Screening of Dentists for Cardiac Arrhythmias. J Dent Res., 68(SI):958, A731, 1989.

Solomon, HS; Hollenberg, NK. Catecholamine Release: Mechanism of Mercury Induced Vascular Smooth Muscle Contractions. Amer J Physiol., 229(1):8-12, Jul 1975.

Togna, G; et al. Inhibition of Aortic Vessel Adenosine Diphosphate Degradation by Cadmium and Mercury. Arch Toxicol., S7:378-81, 1984.

Tomera, JF; Harakal, C. Mercury- and Lead-Induced Contraction of Aortic Smooth Muscle In Vitro. Arch Int Pharmacodyn., 283(2):295-302, Oct 1986.

Trakhtenberg, IM. Chronic Effects of Mercury on Organisms: The Micromercurialism Phenomenon on Mercury Handlers. Chap. VI:109-34, DHEW Publ. No. (NIH) 74-473, 1974.

Vassallo, DV; et al. Effects of Mercury on the Isolated Heart Muscle Are Prevented by DTT and Cysteine. Toxicol Appl Pharmacol., 156(2):112-8, Apr 1999.

von Oettingen, WF. Poisoning: A Guide to Clinical Diagnosis and Treatment, 2nd Ed [Cardiac and vascular damage by mercury]. Saunders Co. London, 1958.

Vulliamy, GD. Vasomotor Disturbance in Pink Disease. Lancet, 2:1248-51, 1952.

Wierzbicki, R; et al. Interaction of Fibrinogen With Mercury. Thrombo Res., 30(6):579-85, 1983.

Wojceichowski, J; Kowalski, W. Cardiac and Aortic Lesions in Chronic Experimental Poisoning With Mercury Vapors. Pol Med Sci Hist Bull., 15(2):255-60, Mar 1975.

Wronski, R; Hartmann, F. Uber Eine Besondere Verlaufsform der Panarteritis Nodosa bei Chronisch Scleichender Quecksibervergiftung. Dutsch Med Wschr., 102:323, 1977.

Yoshida, M; et al. Distribution of Mercury in Neonatal Guinea Pigs After Exposure to Mercury Vapor. Bull Environ Contam Toxicol., 43(5):697-704, Nov 1989.

Also make sure to read these books: Poison in Your Teeth: Mercury Amalgam (Silver) Fillings...Hazardous to Your Health! and Mercury Detoxification by Tom McGuire