CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Aluminum Hydroxide

  • Aluminium overload after 5 years in skin biopsy following post-vaccination with subcutaneous pseudolymphoma.

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    Abstract Title:

    Aluminium overload after 5 years in skin biopsy following post-vaccination with subcutaneous pseudolymphoma.

    Abstract Source:

    J Trace Elem Med Biol. 2012 Mar 14. Epub 2012 Mar 14. PMID: 22425036

    Abstract Author(s):

    Olivier Guillard, Bernard Fauconneau, Alain Pineau, Annie Marrauld, Jean-Pierre Bellocq, Marie-Pierre Chenard

    Article Affiliation:

    CHU Poitiers, Department of Biochemistry, 86 021 Poitiers, France.

    Abstract:

    Aluminium hydroxide is used as an effective adjuvant in a wide range of vaccines for enhancing immune response to the antigen. The pathogenic role of aluminium hydroxide is now recognized by the presence of chronic fatigue syndrome, macrophagic myofasciitis and subcutaneous pseudolymphoma, linked to intramuscular injection of aluminium hydroxide-containing vaccines. The aim of this study is to verify if the subcutaneous pseudolymphoma observed in this patient in the site of vaccine injection is linked to an aluminium overload. Many years after vaccination, a subcutaneous nodule was discovered in a 45-year-old woman with subcutaneous pseudolymphoma. In skin biopsy at the injection site for vaccines, aluminium (Al) deposits are assessed by Morin stain and quantification of Al is performed by Zeeman Electrothermal Atomic Absorption Spectrophotometry. Morin stain shows Al deposits in the macrophages, and Al assays (inμg/g, dry weight) were 768.10±18 for the patient compared with the two control patients, 5.61±0.59 and 9.13±0.057. Given the pathology of this patient and the high Al concentration in skin biopsy, the authors wish to draw attention when using the Al salts known to be particularly effective as adjuvants in single or repeated vaccinations. The possible release of Al may induce other pathologies ascribed to the well-known toxicity of this metal.

  • DNA released from dying host cells mediates aluminum adjuvant activity.

    Abstract Title:

    DNA released from dying host cells mediates aluminum adjuvant activity.

    Abstract Source:

    Nat Med. 2011 Aug ;17(8):996-1002. Epub 2011 Jul 17. PMID: 21765404

    Abstract Author(s):

    Thomas Marichal, Keiichi Ohata, Denis Bedoret, Claire Mesnil, Catherine Sabatel, Kouji Kobiyama, Pierre Lekeux, Cevayir Coban, Shizuo Akira, Ken J Ishii, Fabrice Bureau, Christophe J Desmet

    Article Affiliation:

    Thomas Marichal

    Abstract:

    Aluminum-based adjuvants (aluminum salts or alum) are widely used in human vaccination, although their mechanisms of action are poorly understood. Here we report that, in mice, alum causes cell death and the subsequent release of host cell DNA, which acts as a potent endogenous immunostimulatory signal mediating alum adjuvant activity. Furthermore, we propose that host DNA signaling differentially regulates IgE and IgG1 production after alum-adjuvanted immunization. We suggest that, on the one hand, host DNA induces primary B cell responses, including IgG1 production, through interferon response factor 3 (Irf3)-independent mechanisms. On the other hand, we suggest that host DNA also stimulates 'canonical' T helper type 2 (T(H)2) responses, associated with IgE isotype switching and peripheral effector responses, through Irf3-dependent mechanisms. The finding that host DNA released from dying cells acts as a damage-associated molecular pattern that mediates alum adjuvant activity may increase our understanding of the mechanisms of action of current vaccines and help in the design of new adjuvants.

  • Effect of aluminium hydroxide administration on normal mice: tissue distribution and ultrastructural localization of aluminium in liver.

    Abstract Title:

    Effect of aluminium hydroxide administration on normal mice: tissue distribution and ultrastructural localization of aluminium in liver.

    Abstract Source:

    Pharmacol Toxicol. 1996 Mar ;78(3):123-8. PMID: 8882343

    Abstract Author(s):

    M Fiejka, E Fiejka, M Døugaszek

    Article Affiliation:

    M Fiejka

    Abstract:

    In order to assess the risk of parenteral aluminium (Al) exposure, we evaluated the effects of intraperitoneal administration of aluminium hydroxide, a compound widely used in medicine. Mice (strain Pzh:SFIS) received intraperitoneally, every two weeks 1 mg Al or 0.1 mg Al for five days a week. Controls received injections of saline. Al concentrations in liver, bone and brain were evaluated by electrothermal atomic absorption spectrometry after exposure to 2 mg, 4 mg, and 6 mg Al. The concentration was the highest in liver and occurred after exposure to only 2 mg Al (265.1 +/- 27.7 mg/kg, 233.5 +/- 28.0 mg/kg). Generally further accumulation was not dose- and treatment-dependent. The only exception was a significant Al increase in the liver after exposure to 6 mg Al, injected 0.1 mg Al five days/week. Development of resorption granulomas was observed in the liver, Al being revealed by Morin fluorescence in constituent macrophages and giant cells. By electron probe X-ray microanalysis, Al was identified predominantly in lysosomes of macrophages and Kupffer cells. In tibia of mice, a dose-dependent Al accumulation was observed. The highest level of Al concentration after the 6 mg treatment was 23.5 +/- 3.82 mg/kg and 25.06 +/- 2.3 mg/kg. The Al concentration in the brain of mice had not changed significantly during Al treatment.

  • Non-linear dose-response of aluminium hydroxide adjuvant particles: selective low dose neurotoxicity.

    Abstract Title:

    Non-linear dose-response of aluminium hydroxide adjuvant particles: selective low dose neurotoxicity.

    Abstract Source:

    Toxicology. 2016 Nov 28. Epub 2016 Nov 28. PMID: 27908630

    Abstract Author(s):

    Guillemette Crépeaux, Housam Eidi, Marie-Odile David, Yasmine Baba-Amer, Eleni Tzavara, Bruno Giros, François-Jérôme Authier, Christopher Exley, Christopher A Shaw, Josette Cadusseau, Romain K Gherardi

    Article Affiliation:

    Guillemette Crépeaux

    Abstract:

    Aluminium (Al) oxyhydroxide (Alhydrogel(®)), the main adjuvant licensed for human and animal vaccines, consists of primary nanoparticles that spontaneously agglomerate. Concerns about its safety emerged following recognition of its unexpectedly long-lasting biopersistence within immune cells in some individuals, and reports of chronic fatigue syndrome, cognitive dysfunction, myalgia, dysautonomia and autoimmune/inflammatory features temporally linked to multiple Al-containing vaccine administrations. Mouse experiments have documented its capture and slow transportation by monocyte-lineage cells from the injected muscle to lymphoidorgans and eventually the brain. The present study aimed at evaluating mouse brain function and Al concentration 180days after injection of various doses of Alhydrogel(®) (200, 400 and 800μg Al/kg of body weight) in the tibialis anterior muscle in adult female CD1 mice. Cognitive and motor performances were assessed by 8 validated tests, microglial activation by Iba-1 immunohistochemistry, and Al level by graphite furnace atomic absorption spectroscopy. An unusual neuro-toxicological pattern limited to a low dose of Alhydrogel(®) was observed. Neurobehavioural changes, including decreased activity levels and altered anxiety-like behaviour, were observed compared to controls in animals exposed to 200μg Al/kg but not at 400 and 800μg Al/kg. Consistently, microglial number appeared increased in the ventral forebrain of the 200μg Al/kg group. Cerebral Al levels were selectively increased in animals exposed to the lowest dose, while muscle granulomas had almost completely disappeared at 6 months in these animals. We conclude that Alhydrogel(®) injected at low dose in mouse muscle may selectively induce long-term Al cerebral accumulation and neurotoxic effects. To explain this unexpected result, an avenue that could be explored in the future relates to the adjuvant size since the injected suspensions corresponding to the lowest dose, but not to the highest doses, exclusively contained small agglomerates in the bacteria-size range known to favour capture and, presumably, transportation by monocyte-lineage cells. In any event, the view that Alhydrogel(®) neurotoxicity obeys"the dose makes the poison"rule of classical chemical toxicity appears overly simplistic.

  • Pediatric Wells syndrome (eosinophilic cellulitis) after vaccination: A case report and review of the literature.

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    Abstract Title:

    Pediatric Wells syndrome (eosinophilic cellulitis) after vaccination: A case report and review of the literature.

    Abstract Source:

    Pediatr Dermatol. 2018 Sep ;35(5):e262-e264. Epub 2018 Jul 12. PMID: 29998475

    Abstract Author(s):

    Ashley M Yu, Shinya Ito, Tom Leibson, Sasson Lavi, Lisa W Fu, Miriam Weinstein, Sandra M Skotnicki

    Article Affiliation:

    Ashley M Yu

    Abstract:

    A 4-year-old boy presented with erythematous vesicular plaques, ulceration, edema, and pruritus on the left foot and ankle 10 days after receiving the tetanus, diphtheria, pertussis, and polio; measles, mumps, rubella, and varicella; and hepatitis A/B vaccines. Biopsy showed eosinophilic infiltrates and flame figures, suggesting Wells syndrome. Patch testing showed a 1+ reaction to neomycin and aluminum hydroxide, with arecall reaction of Wells syndrome of the feet bilaterally. We report a rare case of pediatric Wells syndrome triggered by nonthimerosal vaccine components confirmed by patch testing.

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