An Update and Review of Unconventional Metals Testing and Treatment
Abstract
:1. Introduction
2. Epidemiology
3. Unconventional Metal Testing
3.1. Provoked Urine Testing
3.2. Scalp Hair Testing
3.3. Red Blood Cell Metal Testing
3.4. Fecal Metals Testing
4. Unconventional Treatments
4.1. Chelation
| Chelator | Used for | Known adverse effects |
|---|---|---|
| Dimercaptosuccinic Acid (DMSA, Succimer, Chemet, Captomer) | Arsenic, Mercury, Lead, Cadmium, Silver, Tin, Copper | Transaminitis, allergic reactions |
| Dimercaptopropanesulfonic Acid (DMPS) | Arsenic, Mercury, Lead, Cadmium, Tin, Silver, Copper, Selenium, Zinc, Magnesium | Stevens Johnson Syndrome |
| Edetate Calcium Disodium (EDTA) | Lead, Cadmium, Zinc Ischemic Heart Disease | Renal Failure, hypotension, cardiac arrhythmias, hypocalcemia (if di-sodium version without calcium used) |
| D-penicillamine | Copper, Arsenic, Zinc, Mercury, Lead | Allergic reactions, copper deficiency |
| Dimercaprol (BAL, British Anti-Lewisite) | Arsenic, Gold, Mercury, Lead | Painful injection, peanut oil base |
4.2. Vitamin and Herbal Supplementation
4.3. Amalgam Filling Removal
5. Mitigation of Risk
6. Approach to the Patient
7. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Shankar, K.; Liao, L.P. Traditional systems of medicine. Phys. Med. Rehabil. Clin. N. Am. 2004, 15, 725–747. [Google Scholar] [CrossRef]
- Ernst, E. A systematic review of systematic reviews of homeopathy. Br. J. Clin. Pharmacol. 2002, 54, 577–582. [Google Scholar] [CrossRef]
- Lu, W.I.; Lu, D.P. Impact of Chinese herbal medicine on American society and health care system: Perspective and concern. Evid. Based Complement. Alternat. Med. 2014, 2014, 1–6. [Google Scholar]
- Eisenberg, D.M.; Davis, R.B.; Ettner, S.L.; Appel, S.; Wilkey, S.; van Rompay, M.; Kessler, R.C. Trends in alternative medicine use in the United States, 1990–1997: Results of a follow-up national survey. JAMA 1998, 280, 1569–1575. [Google Scholar] [CrossRef]
- Tindle, H.A.; Davis, R.B.; Phillips, R.S.; Eisenberg, D.M. Trends in use of complementary and alternative medicine by US adults: 1997–2002. Altern. Ther. Health Med. 2005, 11, 42–49. [Google Scholar]
- Zuzak, T.J.; Boňková, J.; Careddu, D.; Garami, M.; Hadjipanayis, A.; Jazbec, J.; Merrick, J.; Miller, J.; Ozturk, C.; Persson, I.A.L.; et al. Use of complementary and alternative medicine by children in Europe: Published data and expert perspectives. Complement. Ther. Med. 2013, 21, S34–S47. [Google Scholar] [CrossRef]
- Barnes, P.M.; Bloom, B.; Nahin, R.L. Complementary and alternative medicine use among adults and children: United States, 2007. Natl. Health Stat. Report. 2008, 12, 1–23. [Google Scholar]
- Wakefield, A.J. MMR vaccination and autism. Lancet 1999, 354, 949–950. [Google Scholar] [CrossRef]
- Hviid, A.; Stellfeld, M.; Wohlfahrt, J.; Melbye, M. Association between thimerosal-containing vaccine and autism. JAMA 2003, 290, 1763–1766. [Google Scholar] [CrossRef]
- Parker, S.K.; Schwartz, B.; Todd, J.; Pickering, L.K. Thimerosal-containing vaccines and autistic spectrum disorder: A critical review of published original data. Pediatrics 2004, 114, 793–804. [Google Scholar] [CrossRef]
- Andrews, N.; Miller, E.; Grant, A.; Stowe, J.; Osborne, V.; Taylor, B. Thimerosal exposure in infants and developmental disorders: A retrospective cohort study in the United Kingdom does not support a causal association. Pediatrics 2004, 114, 584–591. [Google Scholar]
- Madsen, K.M.; Lauritsen, M.B.; Pedersen, C.B.; Thorsen, P.; Plesner, A.-M.; Andersen, P.H.; Mortensen, P.B. Thimerosal and the occurrence of autism: Negative ecological evidence from Danish population-based data. Pediatrics 2003, 112, 604–606. [Google Scholar] [CrossRef]
- Harrington, J.W.; Rosen, L.; Garnecho, A.; Patrick, P.A. Parental perceptions and use of complementary and alternative medicine practices for children with autistic spectrum disorders in private practice. J. Dev. Behav. Pediatr. 2006, 27, S156–S161. [Google Scholar] [CrossRef]
- Brent, J. Commentary on the abuse of metal chelation therapy in patients with autism spectrum disorders. J. Med. Toxicol. 2013, 9, 370–372. [Google Scholar] [CrossRef]
- American Association of Clinical Chemistry. How Reliable is Laboratory Testing? Available online: http://labtestsonline.org/understanding/features/reliability/start/1 (accessed on 14 April 2014).
- Terr, A.I. Allergic Diseases: Diagnosis and Management; Lippincott-Raven: Philadelphia, PA, USA, 1997; pp. 591–608. [Google Scholar]
- Kales, S.N.; Goldman, R.H. Mercury exposure: Current concepts, controversies, and a clinic’s experience. J. Occup. Environ. Med. 2002, 44, 143–154. [Google Scholar] [CrossRef]
- Ruha, A.-M. Recommendations for provoked challenge urine testing. J. Med. Toxicol. 2013, 9, 318–325. [Google Scholar] [CrossRef]
- Sears, M.E. Chelation: Harnessing and enhancing heavy metal detoxification—A review. Sci. World J. 2013, 2013, 219840. [Google Scholar] [CrossRef]
- Molin, M.; Schütz, A.; Skerfving, S.; Sällsten, G. Mobilized mercury in subjects with varying exposure to elemental mercury vapour. Int. Arch. Occup. Environ. Health 1991, 63, 187–192. [Google Scholar] [CrossRef]
- Sällsten, G.; Barregård, L.; Schütz, A. Clearance half life of mercury in urine after the cessation of long term occupational exposure: Influence of a chelating agent (DMPS) on excretion of mercury in urine. Occup. Environ. Med. 1994, 51, 337–342. [Google Scholar] [CrossRef]
- Frumkin, H.; Manning, C.C.; Williams, P.L.; Sanders, A.; Taylor, B.B.; Pierce, M.; Elon, L.; Hertzberg, V.S. Diagnostic chelation challenge with DMSA: A biomarker of long-term mercury exposure? Environ. Health Perspect. 2001, 109, 167–171. [Google Scholar] [CrossRef]
- Goldman, R.H.; Woolf, A. Chelation Therapy—Guidance for the General Public from the Pediatric Environmental Health Specialty Units (PEHSU) and the American Academy of Clinical Toxicology (AACT), 2012. Available online: http://www.clintox.org/documents/publicinformation/PEHSU_AACTchelationPublicFactsheet2012.pdf (accessed on 26 February 2014).
- American College of Medical Toxicology. American College of Medical Toxicology position statement on post-chelator challenge urinary metal testing. J. Med. Toxicol. 2010, 6, 74–75. [Google Scholar] [CrossRef]
- Villain, M.; Cirimele, V.; Kintz, P. Hair analysis in toxicology. Clin. Chem. Lab. Med. 2004, 42, 1265–1272. [Google Scholar]
- Seidel, S.; Kreutzer, R.; Smith, D.; McNeel, S.; Gilliss, D. Assessment of commercial laboratories performing hair mineral analysis. JAMA 2001, 285, 67–72. [Google Scholar] [CrossRef]
- Harkins, D.K.; Susten, A.S. Hair analysis: Exploring the state of the science. Environ. Health Perspect. 2003, 111, 576–578. [Google Scholar] [CrossRef]
- Steindel, S.J.; Howanitz, P.J. The uncertainty of hair analysis for trace metals. JAMA 2001, 285, 83–85. [Google Scholar] [CrossRef]
- Grandjean, P.; Weihe, P.; Nielsen, J.B. Methylmercury: Significance of intrauterine and postnatal exposures. Clin. Chem. 1994, 40, 1395–1400. [Google Scholar]
- Kales, S.K.; Christiani, D.C. Hair in Toxicology: An Important Bio-monitor. In Hair and Metal Toxicology; Royal Society of Chemistry: Cambridge, UK, 2005; Chapter 6; pp. 125–158. [Google Scholar]
- Doctor’s Data. Red Blood Cell (RBC) Elements, Tests/Assessments Info. Available online: http://www.doctorsdata.com/test_info.asp?id=148 (accessed on 30 January 2014).
- Berglund, M.; Lind, B.; Björnberg, K.A.; Palm, B.; Einarsson, O.; Vahter, M. Inter-individual variations of human mercury exposure biomarkers: A cross-sectional assessment. Environ. Health 2005, 4, 20. [Google Scholar] [CrossRef]
- Doctor’s Data Laboratory. Fecal Metals Tests/Assessments Info. Available online: http://www.doctorsdata.com/test_info.asp?id=147 (accessed on 19 February 2014).
- Amazon.com. Buy NOW Glutathione. Available online: http://www.amazon.com/Foods-Glutathione-500mg-Plus-Vcaps/dp/B0019LWV92 (accessed on 14 April 2014).
- Life Extension, Foundation for Longer Life. Heavy Metals Toxicity: Life Extension Suggestions. Available online: http://www.lef.org/protocols/health_concerns/heavy_metal_detoxification_les.htm#AnchorSug (accessed on 14 April 2014).
- Cohen, J.P.; Ruha, A.-M.; Curry, S.C.; Biswas, K.; Westenberger, B.; Ye, W.; Caldwell, K.L.; LoVecchio, F.; Burkhart, K.; Samia, N. Plasma and urine dimercaptopropanesulfonate concentrations after dermal application of transdermal DMPS (TD-DMPS). J. Med. Toxicol. 2013, 9, 9–15. [Google Scholar] [CrossRef]
- Ellithorpe, R. Anti-aging medical therapeutics: Calcium Disodium EDTA chelation suppositories: A novel approach for removing heavy metal toxins in clinical practice. Tustin Longevity Center, 2009. Available online: http://www.tlcdoctors.com/documents/calciumDisodiumEDTA_antiAgingTherapeutics.pdf (accessed on 26 February 2014).
- Ellithorpe, R.; Mazur, P.; Gum, G.; Button, G.; Le, J.; Pfadenhauer, E.H.; Settineri, R.A.; Nicolson, G. Comparison of the absorbtion, brain and prostate distribution, and elimination of calcium-disodium EDTA of rectal chelation suppositories to intravenous administration. JANA 2007, 10, 38–44. [Google Scholar]
- Landauer, Ellen. EDTA Chelation Suppositories Reviews: Which are the best? Available online: http://www.peak-health-now.com (accessed on 26 February 2014).
- Feldman, S.; Ljahnicki, B. Effects of Magnesium Di-Potassium EDTA Suppositories on the Symptoms of Diabetes Mellitus Type One. Available online: http://www.balancedhealthtoday.com/EDTA-suppositories-on-the-symptoms-of-Diabetes-Mellitus.html (accessed on 14 April 2014).
- US FDA. FDA issues warning to marketers of unapproved chelation products. Available online: http://www.fda.gov/newsevents/newsroom/PressAnnouncements/ucm229320.htm (accessed on 14 April 2014).
- Wax, P.M. Current use of chelation in American health care. J. Med. Toxicol. 2013, 9, 303–307. [Google Scholar] [CrossRef]
- Centers for Disease Control and Prevention (CDC). Deaths associated with hypocalcemia from chelation therapy—Texas, Pennsylvania, and Oregon, 2003–2005. MMWR Morb. Mortal. Wkly. Rep. 2006, 55, 204–207. [Google Scholar]
- Brown, M.J.; Willis, T.; Omalu, B.; Leiker, R. Deaths resulting from hypocalcemia after administration of edetate disodium: 2003–2005. Pediatrics 2006, 118, e534–e536. [Google Scholar] [CrossRef]
- Villarruz, M.V.; Dans, A.; Tan, F. Chelation therapy for atherosclerotic cardiovascular disease. Cochrane Database Syst. Rev. 2002, 4, CD002785. [Google Scholar]
- Lamas, G.A.; Mark, D.; Lee, K.L. Chelation therapy and cardiovascular outcomes—In reply. JAMA. 2013, 310, 431–432. [Google Scholar] [CrossRef]
- Crisponi, G. Kill or cure: Misuse of chelation therapy for human diseases. Coord. Chem. Rev. 2014. [Google Scholar] [CrossRef]
- Knudtson, M.L.; Wyse, D.G.; Galbraith, P.D.; Brant, R.; Hildebrand, K.; Paterson, D.; Richardson, D.; Burkart, C.; Burgess, E. Chelation therapy for ischemic heart disease: A randomized controlled trial. JAMA 2002, 287, 481–486. [Google Scholar] [CrossRef]
- Lamas, G.A.; Goertz, C.; Boineau, R.; Mark, D.B.; Rozema, T.; Nahin, R.L.; Lindblad, L.; Lewis, E.F.; Drisko, J.; Lee, K.F. Effect of disodium EDTA chelation regimen on cardiovascular events in patients with previous myocardial infarction: The TACT randomized trial. JAMA 2013, 309, 1241–1250. [Google Scholar] [CrossRef]
- Nissen, S.E. Concerns about Reliability in the Trial to Assess Chelation Therapy (TACT). JAMA 2013, 309, 1293–1294. [Google Scholar] [CrossRef]
- Bittl, J.A. Chelation therapy and cardiovascular outcomes. JAMA 2013, 310, 430–431. [Google Scholar] [CrossRef]
- Peraza, M.A.; Ayala-Fierro, F.; Barber, D.S.; Casarez, E.; Rael, L.T. Effects of micronutrients on metal toxicity. Environ. Health Perspect. 1998, 106, S203–S216. [Google Scholar]
- Abascal, K.; Yarnell, Y. Cilantro-culinary herb or miracle medicinal plant? Altern. Complement. Ther. 2012, 18, 259–264. [Google Scholar] [CrossRef]
- Heard, K.J. Acetylcysteine for acetaminophen poisoning. N. Engl. J. Med. 2008, 359, 285–292. [Google Scholar] [CrossRef]
- Aremu, D.A.; Madejczyk, M.S.; Ballatori, N. N-acetylcysteine as a potential antidote and biomonitoring agent of methylmercury exposure. Environ. Health Perspect. 2008, 116, 26–31. [Google Scholar]
- Aldosary, B.M.; Sutter, M.E.; Schwartz, M.; Morgan, B.W. Case series of selenium toxicity from a nutritional supplement. Clin. Toxicol. 2012, 50, 57–64. [Google Scholar] [CrossRef]
- Bennett, A.; Stryjewski, G. Severe hypokalemia caused by oral and rectal administration of bentonite in a pediatric patient. Pediatr. Emerg. Care 2006, 22, 500–502. [Google Scholar] [CrossRef]
- Bratel, J.; Haraldson, T.; Meding, B.; Yontchev, E.; Ohman, S.C.; Ottosson, J.O. Potential side effects of dental amalgam restorations. (I). An oral and medical investigation. Eur. J. Oral Sci. 1997, 105, 234–243. [Google Scholar] [CrossRef]
- Guzzi, G.; Grandi, M.; Cattaneo, C.; Calza, S.; Minoia, C.; Ronchi, A.; Gatti, A.; Severi, G. Dental amalgam and mercury levels in autopsy tissues: Food for thought. Am. J. Forensic Med. Pathol. 2006, 27, 42–45. [Google Scholar] [CrossRef]
- Bellinger, D.C.; Trachtenberg, F.; Barregard, L.; Tavares, M.; Cernichiari, E.; Daniel, D.; McKinlay, S. Neuropsychological and renal effects of dental amalgam in children: A randomized clinical trial. JAMA 2006, 295, 1775–1783. [Google Scholar] [CrossRef]
- Bellinger, D.C.; Trachtenberg, F.; Daniel, D.; Zhang, A.; Tavares, M.A.; McKinlay, S. A dose-effect analysis of children’s exposure to dental amalgam and neuropsychological function: The new England children’s amalgam trial. J. Am. Dent. Assoc. 2007, 138, 1210–1216. [Google Scholar] [CrossRef]
- Grandjean, P.; Guldager, B.; Larsen, I.B.; Jørgensen, P.J.; Holmstrup, P. Placebo response in environmental disease. Chelation therapy of patients with symptoms attributed to amalgam fillings. J. Occup. Environ. Med. 1997, 39, 707–714. [Google Scholar] [CrossRef]
- Sandborgh Englund, G.; Dahlqvist, R.; Lindelöf, B.; Söderman, E.; Jonzon, B.; Vesterberg, O.; Larsson, K.S. DMSA administration to patients with alleged mercury poisoning from dental amalgams: A placebo-controlled study. J. Dent. Res. 1994, 73, 620–628. [Google Scholar]
- Lee, C.E. Federal regulation of unapproved chelation products. J. Med. Toxicol. 2013, 9, 313–317. [Google Scholar] [CrossRef]
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Felton, D.J.; Kales, S.N.; Goldman, R.H. An Update and Review of Unconventional Metals Testing and Treatment. Toxics 2014, 2, 403-416. https://doi.org/10.3390/toxics2030403
Felton DJ, Kales SN, Goldman RH. An Update and Review of Unconventional Metals Testing and Treatment. Toxics. 2014; 2(3):403-416. https://doi.org/10.3390/toxics2030403
Chicago/Turabian StyleFelton, Diana J., Stefanos N. Kales, and Rose H. Goldman. 2014. "An Update and Review of Unconventional Metals Testing and Treatment" Toxics 2, no. 3: 403-416. https://doi.org/10.3390/toxics2030403
APA StyleFelton, D. J., Kales, S. N., & Goldman, R. H. (2014). An Update and Review of Unconventional Metals Testing and Treatment. Toxics, 2(3), 403-416. https://doi.org/10.3390/toxics2030403
