CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Formaldehyde

  • Effects of long-term low-dose formaldehyde exposure on global genomic hypomethylation in 16HBE cells.

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    Abstract Title:

    Effects of long-term low-dose formaldehyde exposure on global genomic hypomethylation in 16HBE cells.

    Abstract Source:

    Toxicol Lett. 2011 Sep 10 ;205(3):235-40. Epub 2011 Jul 1. PMID: 21745553

    Abstract Author(s):

    Qingcheng Liu, Linqing Yang, Chunmei Gong, Gonghua Tao, Haiyan Huang, Jianjun Liu, Huimin Zhang, Desheng Wu, Bo Xia, Gonghua Hu, Kunpeng Wang, Zhixiong Zhuang

    Article Affiliation:

    Qingcheng Liu

    Abstract:

    Formaldehyde (FA), a volatile organic compound, is a ubiquitous air pollutant that is classified as 'Carcinogenic to humans (Group 1)' by IARC (2006). As a well-recognized human carcinogen, its carcinogenic mechanisms are still poorly understood. Previous studies have emphasized on genetic changes. However, little is known about the epigenetic mechanisms of FA exposure. In this study, We not only characterized the epigenomic response to long-term low-dose FA exposure in 16HBE cells, but also examined the expression of DNA methyltransferases (DNMTs) and the methyl-CpG-binding protein DNA-binding domain protein 2 (MBD2). Each week the 16HBE cells were treated with 10μM FA for 24 h (h). After 24 weeks (W) of exposure to FA, the level of genomic DNA methylation gradually decreased in a time-related manner. Moreover, our results showed that FA exposure down-regulated the expression of DNMT3a and DNMT3b at both mRNA and protein level, and up-regulated the levels of DNMT1 and MBD2 at both mRNA and protein level. Our study indicated that long-term FA exposure could disrupt genomic DNA methylation, which may be one of the possible underlying carcinogenic mechanisms of FA.

  • Formaldehyde

  • Low Level Laser Therapy Reduces the Development of Lung Inflammation Induced by Formaldehyde Exposure. 📎

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    Abstract Title:

    Low Level Laser Therapy Reduces the Development of Lung Inflammation Induced by Formaldehyde Exposure.

    Abstract Source:

    PLoS One. 2015 ;10(11):e0142816. Epub 2015 Nov 16. PMID: 26569396

    Abstract Author(s):

    Cristiane Miranda da Silva, Mayara Peres Leal, Robson Alexandre Brochetti, Tárcio Braga, Luana Beatriz Vitoretti, Niels Olsen Saraiva Câmara, Amílcar Sabino Damazo, Ana Paula Ligeiro-de-Oliveira, Maria Cristina Chavantes, Adriana Lino-Dos-Santos-Franco

    Article Affiliation:

    Cristiane Miranda da Silva

    Abstract:

    Lung diseases constitute an important public health problem and its growing level of concern has led to efforts for the development of new therapies, particularly for the control of lung inflammation. Low Level Laser Therapy (LLLT) has been highlighted as a non-invasive therapy with few side effects, but its mechanisms need to be better understood and explored. Considering that pollution causes several harmful effects on human health, including lung inflammation, in this study, we have used formaldehyde (FA), an environmental and occupational pollutant, for the induction of neutrophilic lung inflammation. Our objective was to investigate the local and systemic effects of LLLT after FA exposure. Male Wistar rats were exposed to FA (1%) or vehicle (distillated water) during 3 consecutive days and treated or not with LLLT (1 and 5 hours after each FA exposure). Non-manipulated rats were used as control. 24 h after the last FA exposure, we analyzed the local and systemic effects of LLLT. The treatment with LLLT reduced the development of neutrophilic lung inflammation induced by FA, as observed by the reduced number of leukocytes, mast cells degranulated, and a decreased myeloperoxidase activity in the lung. Moreover, LLLT also reduced the microvascular lung permeability in the parenchyma and the intrapulmonary bronchi. Alterations on the profile of inflammatory cytokines were evidenced by the reduced levels of IL-6 and TNF-α and the elevated levels of IL-10 in the lung. Together, our results showed that LLLT abolishes FA-induced neutrophilic lung inflammation by a reduction of the inflammatory cytokines and mast cell degranulation. This study may provide important information about the mechanisms of LLLT in lung inflammation induced by a pollutant.

  • Systemic Allergic Contact Dermatitis After Formaldehyde-Containing Influenza Vaccination.

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    Abstract Title:

    Systemic Allergic Contact Dermatitis After Formaldehyde-Containing Influenza Vaccination.

    Abstract Source:

    J Cutan Med Surg. 2015 Sep-Oct;19(5):504-6. Epub 2015 Apr 15. PMID: 25876644

    Abstract Author(s):

    L Alexandra Kuritzky, Melanie Pratt

    Article Affiliation:

    L Alexandra Kuritzky

    Abstract:

    BACKGROUND:Systemic contact dermatitis occurs when a patient sensitized to an allergen topically is systemically reexposed to the allergen and develops a cutaneous eruption.

    OBJECTIVE:To report the case of a 48-year-old male who developed explosive dermatitis following injection of a formaldehyde-containing influenza vaccine and was subsequently shown to be strongly positive to formaldehyde and formaldehyde-releasing allergens by patch testing, as well as to review the literature for similar cases.

    METHODS:A PubMed search was made using the following search terms: systemic contact dermatitis, formaldehyde, influenza, and vaccine.

    RESULTS:A review of the literature revealed 2 cases of systemic contact dermatitis from formaldehyde derived from aspartame and 1 case from a thimerosal-containing influenza vaccine. No cases caused by formaldehyde in influenza or other vaccines were found.

    CONCLUSION:This case highlights the importance of considering systemic allergic contact dermatitis in any patient presenting with dermatitis following injection of a formaldehyde-containing vaccine.

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