| Literature DB >> 31014007 |
José Joaquín Merino1, José María Parmigiani-Izquierdo2, Adolfo Toledano Gasca3, María Eugenia Cabaña-Muñoz4.
Abstract
The toxicity of heavy metals such as Hg++ is a serious risk for human health. We evaluated whether 90 days of nutritional supplementation (d90, n = 16) with Chlorella vulgaris (CV) and Fucus sp extracts in conjunction with aminosulphurate (nutraceuticals) supplementation could detox heavy metal levels in patients with long-term titanium dental implants (average: three, average: 12 years in mouth) and/or amalgam fillings (average: four, average: 15 years) compared to baseline levels (d0: before any supplementation, n = 16) and untreated controls (without dental materials) of similar age (control, n = 21). In this study, we compared levels of several heavy metals/oligoelements in these patients after 90 days (n = 16) of nutritional supplementation with CV and aminozuphrates extract with their own baseline levels (d0, n = 16) and untreated controls (n = 21); 16 patients averaging 44 age years old with long-term dental amalgams and titanium implants for at least 10 years (average: 12 years) were recruited, as well as 21 non-supplemented controls (without dental materials) of similar age. The following heavy metals were quantified in hair samples as index of chronic heavy metal exposure before and after 90 days supplementation using inductively coupled plasma-mass spectrometry (ICP-MS) and expressed as μg/g of hair (Al, Hg++, Ba, Ag, Sb, As, Be, Bi, Cd, Pb, Pt, Tl, Th, U, Ni, Sn, and Ti). We also measured several oligoelements (Ca++, Mg++, Na+, K+, Cu++, Zn++, Mn++, Cr, V, Mo, B, I, P, Se, Sr, P, Co, Fe++, Ge, Rb, and Zr). The algae and nutraceutical supplementation during 90 consecutive days decreased Hg++, Ag, Sn, and Pb at 90 days as compared to baseline levels. The mercury levels at 90 days decreased as compared with the untreated controls. The supplementation contributed to reducing heavy metal levels. There were increased lithium (Li) and germanium (Ge) levels after supplementation in patients with long-term dental titanium implants and amalgams. They also (d90) increased manganesum (Mn++), phosphorum (P), and iron (Fe++) levels as compared with their own basal levels (d0) and the untreated controls. Finally, decreased SuperOxide Dismutase-1 (SOD-1) activity (saliva) was observed after 90 days of supplementation as compared with basal levels (before any supplementation, d0), suggesting antioxidant effects. Conversely, we detected increased SOD-1 activity after 90 days as compared with untreated controls. This SOD-1 regulation could induce antioxidant effects in these patients. The long-term treatment with algae extract and aminosulphurates for 90 consecutive days decreased certain heavy metal levels (Hg++, Ag, Sn, Pb, and U) as compared with basal levels. However, Hg++ and Sn reductions were observed after 90 days as compared with untreated controls (without dental materials). The dental amalgam restoration using activated nasal filters in conjunction with long-term nutritional supplementation enhanced heavy metals removal. Finally, the long-term supplementation with these algae and aminoazuphrates was safe and non-toxic in patients. These supplements prevented certain deficits in oligoelements without affecting their Na+/K+ ratios after long-term nutraceutical supplementation.Entities:
Keywords: Chlorella; Fucus; SOD-1; algae; aminoazuphrates; antioxidants; clinical medicine; detoxification; environmental pollution; heavy metals; neuropathology; neurotoxicology; nutrition; selenium
Year: 2019 PMID: 31014007 PMCID: PMC6523211 DOI: 10.3390/antiox8040101
Source DB: PubMed Journal: Antioxidants (Basel) ISSN: 2076-3921
Figure 1Study groups.
Composition (nutraceuticals) of formulations.
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| Nutritional supplementation during 90 consecutive days (4 capsules/day 2-0-2) | dosage (mg/day) |
| Chlorella: 80 mg/capsule | 320 mg/day |
| Spirulina: 80 mg/capsule | 320 mg/day |
| Kelp of Pacific: 60 mg/capsule | 240 mg/day |
| Fucus: 30 mg/capsule | 120 mg/day |
| Cardille: 25 mg/capsule | 100 mg/day |
| Pectine of apple: 60 mg/capsule | 240 mg/day |
| Acerole (rich in vitamin C): 50 mg/capsule | 200 mg/day |
| Fructooligosacarides: 280 mg | 1120 mg/day |
| 240 mg/day | |
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| Treatment: 90 consecutive days (2 capsules/day; 1-0-1) | dosage (mg or μg/day) |
| Selenium (Se): 25 μg/capsule | 50 μg/day |
| Vitamin B6: 0.8 μg/capsule | 1.6 μg/day |
| Folic Acid (B-9): 100 μg/capsule | 200 μg/day |
| Zinc (Zn++): 3.5 mg/capsule | 50 μg/day |
| Taurine: 120 mg/capsule | 240 mg/day |
| Extract of | 30 mg/day |
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| Extracts from: | dosage: mg/month |
| 1440 mg | |
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| 900 mg |
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| 400 mg |
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| 320 mg |
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| 228 mg |
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| 200 mg |
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| 640 mg |
| 200 mg | |
| Sodium Moligdate | 50 μg |
| Selenium | 50 μg |
Regulation of SuperOxide Dismutase-1 (SOD-1) by long-term algae and aminosulphurate supplementation and SOD-1 activity.
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| SOD-1 activity (control) | 100 | 100 | 100 |
| SOD-1 activity (d0) | 143.5 | 139.500 * | 149 |
| SOD-1 activity (d90) | 121 | 119.000 *,# | 125 |
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| Control vs. d0 (before treatment) | 34.000 | 6.7 | Yes |
| d0 vs. d90 (after 90 days) | 16.000 | 2.920 | Yes |
| d90 vs. Cont: controls | 18.500 | 3.600 | Yes |
* p < 0.05 vs. control, # p < 0.05 d90 vs. d0; control: controls without dental materials and non-supplemented (n = 21); d0: patients with long-term titanium implants and dental amalgam fillings restorations before any nutritional supplementation (d0, n = 16); d90: patients with long-term titanium implants and dental amalgam fillings restorations after 90 days of supplementation (d90, n = 16).
Heavy metals/oligoelements of dental materials.
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| Control | 1.6 | 1.25 | 2.3 | H = 13.85, |
| d0 | 1.9 | 1.9 | 3.7 * | MW (* |
| d90 | 1.15 | 0.34 | 2.1 *,# | MW (# d90 vs. d0, |
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| Control | 0.03 | 0.02 | 0.06 | H = 9.3, |
| d0 | 0.1 | 0.03 | 0.155 # | MW (* |
| d90 | 0.055 | 0.025 | 0.075 | |
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| Control | 0.045 | 0.02 | 0.095 | H = 6.27, |
| d0 | 0.11 | 0.04 | 0.20 * | MW (* d0 vs. Cont, |
| d90 | 0.03 | 0.02 | 0.105 # | MW (# d90 vs. d0, |
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| Control | 195 | 180 | 230 | H = 5, |
| d0 | 245 | 208 | 275 * | MW (* |
| d90 | 210 | 180 | 242 | |
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| Control | 13.5 | 10.5 | 35.5 | H = 1.01, |
| d0 | 15 | 11 | 31 | |
| d90 | 13.5 | 10 | 19.5 | |
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| Control | 2.9 | 2.05 | 5.6 | H = 4.6, |
| d0 | 3 | 1.6 | 4.6 | |
| d90 | 1.6 | 1.5 | 2.4 * | MW (* d90 vs. control, |
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| Control | 0.35 | 0.31 | 0.39 | H=9.64, |
| d0 | 0.35 | 0.35 | 0.39 | |
| d90 | 0.41 | 0.36 | 0.45 *,# | MW or Dunn’s.* |
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| Control | 0.004 | 0.004 | 0.010 | H = 4.97, |
| d0 | 0.017 | 0.04 | 0.035 * | MW * |
| d90 | 0.06 | 0.035 | 0.012 | |
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| Control | 0.055 | 0.04 | 0.10 | H = 3.07, |
| d0 | 0.09 | 0.08 | 0.16 * | MW (* |
| d90 | 0.11 | 0.04 | 0.16 | |
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| Control | 0.04 | 0.003 | F (2.50) = 2.73, | |
| d0 | 0.031 | 0.004 * | Bonferroni ( | |
| d90 | 0.041 | 0.0035 # | (# | |
| * | # | n.s: non significant effect ( | ||
Percentiles analysis for heavy metals/oligoelement levels in Kruskal-Wallis (H) between patients with long-term titanium implant and dental fillings after 90 days of supplementation (d90, n = 16) as compared with their own basal levels (d0: before any supplementation, n = 16) and untreated (non-supplemented) controls without dental materials (control, n = 21). All heavy metals and oligoelements were expressed as μg/g of hair. H is the Krukal-Wallis analysis and F is ANOVA data. MW = Mann Whitney, S.E.M = standard error media; Control: controls without dental materials and non-supplemented (n = 21); d0: patients with long-term titanium implants and dental amalgam fillings restorations before any supplementation (d0, n = 16); d90: patients with long-term titanium implants and amalgams after 90 days of supplementation (n = 16); n.s: not significant effect, p > 0.05. * p < 0.05 vs. Control; # p < 0.05 d90 vs. d0.
Percentiles for oligoelements involved in metabolic functions in patients with long-term titanium implant and dental fillings after 90 days of supplementation (d90, n = 16) and their basal levels (d0: before any supplementation, n = 16) and non-supplemented controls (control: without dental materials and non-supplemented, n = 21). All heavy oligoelements were expressed as μg g/g of hair.
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| Control | 0.66 | 0.59 | 0.73 | H = 10.91, |
| d0 | 0.6 | 0.47 | 0.67 * | MW (* d0 vs. control, |
| d90 | 0.55 | 0.48 | 0.62 * # | MW (# d90 vs. d0, |
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| Control | 0.034 | 0.0140 | 0.0032 | H = 14.5, |
| d0 | 0.022 | 0.0079 | 0.023 * | MW or Dunn’s (* |
| d90 | 0.020 | 0.0084 | 0.150 * | MW or Dunn’s: * |
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| Control | 0.075 | 0.06 | 0.10 | H = 5.42, |
| d0 | 0.085 | 0.04 | 0.11 | |
| d90 | 0.115 | 0.07 | 0.18 * # | MW (* d90 vs. control, |
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| Control | 0.008 | 0.006 | 0.012 | H = 1.45, |
| d0 | 0.005 | 0.0045 | 0.0075 * | MW (* d0 vs. control, |
| d90 | 0.023 | 0.010 | 0.010 * # | MW (* d90 vs. control, |
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| Control | 0.031 | 0.024 | 0.033 | H = 13.1, |
| d0 | 0.024 | 0.021 | 0.032 | MW (* d0 vs. control, |
| d90 | 0.023 | 0.032 | 0.035 # | MW or Dunn’s (# |
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| Control | 47700 | 47200 | 49250 | H = 3.97, |
| d0 | 46900 | 46350 | 47600 * | MW (* d0 vs. control, |
| d90 | 46850 | 45600 | 49950 | |
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| Control | 185 | 155 | 197 | H = 8.88, |
| d0 | 153 | 134 | 160 * | MW (* d0 vs. control, |
| d90 | 170 | 154 | 179 # | MW (# d90 vs. d0, |
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| Control | 0.58 | 0.37 | 2.05 | H=3.67, |
| d0 | 0.39 | 0.29 | 0.5 | |
| d90 | 0.47 | 0.31 | 0.77 | |
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| Control | 488 | 285 | 705 | H = 1.37, |
| d0 | 785 | 410 | 1262 | |
| d90 | 676 | 380 | 1060 | |
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| Control | 2.7 | 0.93 | 6.55 | H = 4.41, |
| d0 | 7 | 2.97 | 11.7 | d0 vs. control, |
| d90 | 11.81 | 1.9 | 17.75 | d90 vs. control, |
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| Control | 0.5 | 0.41 | 0.87 | H = 1.5, |
| d0 | 0.63 | 0.56 | 1.1 | |
| d90 | 0.71 | 0.52 | 0.8 | |
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| Control | 35 | 14.5 | 73.25 | H = 6, |
| d0 | 62.5 | 52 | 140 * | MW or Dunn’s (* d0 vs. control, |
| d90 | 48 | 33 | 75 | d90 vs. control, |
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| Control | 13.5 | 4 | 31.5 | H = 1.3, |
| d0 | 5.5 | 3.5 | 44 | |
| d90 | 8.5 | 3 | 15 | |
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| Control | 50 | 32.5 | 94 | H = 3.63, |
| d0 | 99 | 43.5 | 184.5 | |
| d90 | 137 | 57 | 345 | MW (d90 vs. control, |
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| Control | 0.015 | 0.0045 | 0.031 | H = 2.72, |
| d0 | 0.014 | 0.0040 | 0.019 | |
| d90 | 0.011 | 0.0030 | 0.013 | |
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| Control | 6.7 | 6.2 | 7.7 | H = 3.7, |
| d0 | 6.6 | 6.4 | 7.4 | |
| d90 | 7.7 | 6.5 | 8.4 # | MW (d90 vs. d0, # |
| * | # |
* p < 0.05 vs. control; # p < 0.05 d90 vs. d0; controls (without dental materials and non-supplement; control, n = 21); d0: patients with long-term titanium implants and dental amalgam fillings restorations before any supplementation (d0, n = 16); d90: patients with long-term titanium implants and dental amalgams after 90 days of supplementation (d90, n = 16); (n.s: not significant effect, p > 0.05; * p < 0.05 vs. Control; # p < 0.05 d90 vs. d0).
Decreased lead (Pb) levels after 90 days of supplementation as compared with baseline levels.
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| Control | 0.17 | 0.1 | 0.33 | H = 7.73, |
| d0 | 0.54 | 0.25 | 0.84 * | MW (* d0 vs. control, |
| d90 | 0.28 | 0.2 | 0.36 | MW (d90 vs. control, |
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| Control | 0.11 | 0.07 | 0.3 | H = 3.41, |
| d0 | 0.14 | 0.09 | 0.21 | |
| d90 | 0.085 | 0.05 | 0.14 # | MW (# d90 vs. d0, |
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| Control | 0.009 | 0.009 | 0.010 | H = 4.73, |
| d0 | 0.009 | 0.009 | 0.009 | |
| d90 | 0.009 | 0.009 | 0.009 | MW (d90 vs. control, |
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| Control | 0.01 | 0.01 | 0.018 | H = 3.5, |
| d0 | 0.01 | 0.01 | 0.01 | |
| d90 | 0.01 | 0.01 | 0.01 | |
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| Control | 0.038 | 0.01 | 0.018 | H = 0.9, |
| d0 | 0.028 | 0.022 | 0.042 | |
| d90 | 0.028 | 0.023 | 0.052 | |
| * | # |
These tables show percentile values (median, 25%, and 75%) in Kruskal Wallis analysis for several heavy metals/oligoelements (Hg++, Ag, Sn, Zn++, Cu++, Al, Cr, V, Co, and Ni), metabolic oligoelements (Se, Mo, Mn++, Li, Ge, S, P, I, Ca++, Sr, B, Na+, K+, Mg++, Rb, B, and Fe++), and metals of environmental exposure in Table 6 (Ba, As, Pt, Sb, Tl, To, Cd, Be, Bi, Zr, Pb, Cd, As, and U). The ANOVA data for V are shown by mean values ± S.E.M [the root square divided by n; n was the size sample; n = 16 (d90), n = 16 (d0), n = 21 controls]. Post hoc differences were evaluated by the Mann Whitney or Dunn’s method; Control: controls without dental materials and non-supplemented (n = 21); d0: patients with long-term titanium implants and dental amalgam fillings restorations (d0, n = 16); d90: patients with long-term titanium implants and dental amalgams after 90 days of supplementation (n = 16); n.s: not significant effect, p > 0.05). * p < 0.05 vs. Control; # p < 0.05 d90 vs. d0).
Effects on Se/Hg++, Se/Ag, Se/Al, Se/Pb, Mo/Hg++, Na+/K+ before/after nutritional supplementation and untreated controls.
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| Control | 2.21 | 1.6 | 3.2 | H = 31.42, |
| d0 | 0.23 | 0.17 | 0.31 * | MW (* d0 vs. control, |
| d90 | 0.28 | 0.24 | 0.56 * # | MW (# d90 vs. d0, |
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| Control | 22.3 | 12.26 | 37.7 | H = 6.25, |
| d0 | 7.16 | 4.12 | 20.5 | MW (* d0 vs. control, |
| d90 | 11 | 6.8 | 18.2 * | MW (* d90 vs. control, |
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| cont | 0.26 | 0.1 | 0.39 | H = 3.76, |
| d0 | 0.14 | 0.07 | 0.29 | |
| d90 | 0.34 | 0.19 | 0.36 # | MW (# d90 vs. d0, |
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| Control | 4.57 | 1,79 | 9.1 | H = 1.12, |
| d0 | 3.81 | 2.2 | 6.9 | |
| d90 | 5.72 | 3.76 | 8.24 | |
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| Control | 0.018 | 0.011 | 0.03 | H = 13.51, |
| d0 | 0.0089 | 0.0067 | 0.011 * | MW or Dunn’s, * d0 vs. Cont, |
| d90 | 0.026 | 0.011 | 0.112 * # | MW or Dunn’s, # d90 vs. d0, |
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| Control | 3.57 | 4.46 | 0.94 | H = 2.59, |
| d0 | 7.74 | 16.3 | 0.82 * | MW (* |
| d90 | 8 | 13.6 | 0.79 | MW (d90 vs. control, |
| * | # |
Control: controls without dental materials and non-supplemented (n = 21); d0: patients with long-term titanium implants and dental amalgam fillings restorations (d0, n = 16); d90: patients with long-term titanium implants and dental amalgams after 90 days of supplementation (n = 16); n.s: not significant effect, p > 0.05; * p < 0.05 vs. Control; # p < 0.05 d90 vs. d0.