Literature DB >> 17188738

Relations between PM10 composition and cell toxicity: a multivariate and graphical approach.

Irma Rosas Pérez1, Jesús Serrano, Ernesto Alfaro-Moreno, Darrel Baumgardner, Claudia García-Cuellar, Javier Miranda Martín Del Campo, G B Raga, Margarita Castillejos, René Drucker Colín, Alvaro R Osornio Vargas.   

Abstract

Previous studies have used particle mass and size as metrics to link airborne particles with deleterious health effects. Recent evidence suggests that particle composition can play an important role in PM-toxicity; however, little is known about the specific participation of components (individually or acting in groups) present in such a complex mixture that accounts for toxicity. This work explores relationships among PM(10) components in order to identify their covariant structure and how they vary in three sites in Mexico City. Relationships between PM(10) with cell toxicity and geographical location were also explored. PM(10) was analyzed for elemental composition, organic and elemental carbon, endotoxins and the induction of inhibition of cell proliferation, IL-6, TNFalpha and p53. PM(10) variables were evaluated with principal component analysis and one-way ANOVA. The inhibition of cell proliferation, IL-6 and TNFalpha were evaluated with factorial ANOVA and p53 with the Welch test. The results indicate that there is heterogeneity in particle mass, composition and toxicity in samples collected at different sites. Multivariate analysis identified three major groups: (1) S/K/Ca/Ti/Mn/Fe/Zn/Pb; (2) Cl/Cr/Ni/Cu; and (3) endotoxins, organic and elemental carbon. Groups 1 and 3 showed significant differences among sites. Factorial ANOVA modeling indicated that cell proliferation was affected by PM concentration; TNFalpha and IL-6 by the interaction of concentration and site, and p53 was different by site. Radial plots suggest the existence of complex interactions between components, resulting in characteristic patterns of toxicity by site. We conclude that interactions of PM(10) components determine specific cellular outcomes.

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Year:  2006        PMID: 17188738     DOI: 10.1016/j.chemosphere.2006.10.078

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  19 in total

1.  Particulate matter promotes in vitro receptor-recognizable low-density lipoprotein oxidation and dysfunction of lipid receptors.

Authors:  Natalia Manzano-León; Jaime Mas-Oliva; Laura Sevilla-Tapia; Rocío Morales-Bárcenas; Jesús Serrano; Marie S O Neill; Claudia M García-Cuellar; Raúl Quintana; Inés Vázquez-López; Alvaro R Osornio-Vargas
Journal:  J Biochem Mol Toxicol       Date:  2013-01-07       Impact factor: 3.642

2.  The impact of environmental metals in young urbanites' brains.

Authors:  Lilian Calderón-Garcidueñas; Alejandro Serrano-Sierra; Ricardo Torres-Jardón; Hongtu Zhu; Ying Yuan; Donna Smith; Ricardo Delgado-Chávez; Janet V Cross; Humberto Medina-Cortina; Michael Kavanaugh; Tomás R Guilarte
Journal:  Exp Toxicol Pathol       Date:  2012-03-19

3.  Indicators of environmental contamination by heavy metals in leaves of Taraxacum officinale in two zones of the metropolitan area of Mexico City.

Authors:  Sandra Gómez-Arroyo; Arisbel Barba-García; Francisco Arenas-Huertero; Josefina Cortés-Eslava; Michel Grutter de la Mora; Rocío García-Martínez
Journal:  Environ Sci Pollut Res Int       Date:  2017-12-02       Impact factor: 4.223

4.  Air pollution, inflammation and preterm birth: a potential mechanistic link.

Authors:  Felipe Vadillo-Ortega; Alvaro Osornio-Vargas; Miatta A Buxton; Brisa N Sánchez; Leonora Rojas-Bracho; Martin Viveros-Alcaráz; Marisol Castillo-Castrejón; Jorge Beltrán-Montoya; Daniel G Brown; Marie S O'Neill
Journal:  Med Hypotheses       Date:  2013-12-11       Impact factor: 1.538

5.  Air pollution is associated with brainstem auditory nuclei pathology and delayed brainstem auditory evoked potentials.

Authors:  Lilian Calderón-Garcidueñas; Amedeo D'Angiulli; Randy J Kulesza; Ricardo Torres-Jardón; Norma Osnaya; Lina Romero; Sheyla Keefe; Lou Herritt; Diane M Brooks; Jose Avila-Ramirez; Ricardo Delgado-Chávez; Humberto Medina-Cortina; Luis Oscar González-González
Journal:  Int J Dev Neurosci       Date:  2011-03-31       Impact factor: 2.457

6.  Urban air pollution produces up-regulation of myocardial inflammatory genes and dark chocolate provides cardioprotection.

Authors:  Rodolfo Villarreal-Calderon; William Reed; Juan Palacios-Moreno; Sheyla Keefe; Lou Herritt; Diane Brooks; Ricardo Torres-Jardón; Lilian Calderón-Garcidueñas
Journal:  Exp Toxicol Pathol       Date:  2010-10-06

7.  Variation in the composition and in vitro proinflammatory effect of urban particulate matter from different sites.

Authors:  Natalia Manzano-León; Raúl Quintana; Brisa Sánchez; Jesús Serrano; Elizabeth Vega; Inés Vázquez-López; Leonora Rojas-Bracho; Tania López-Villegas; Marie S O'Neill; Felipe Vadillo-Ortega; Andrea De Vizcaya-Ruiz; Irma Rosas; Alvaro R Osornio-Vargas
Journal:  J Biochem Mol Toxicol       Date:  2013-01       Impact factor: 3.642

8.  Air pollution, inflammation and preterm birth in Mexico City: study design and methods.

Authors:  Marie S O'Neill; Alvaro Osornio-Vargas; Miatta A Buxton; Brisa N Sánchez; Leonora Rojas-Bracho; Marisol Castillo-Castrejon; Irina B Mordhukovich; Daniel G Brown; Felipe Vadillo-Ortega
Journal:  Sci Total Environ       Date:  2012-11-21       Impact factor: 7.963

9.  Decreased PM10 exposure attenuates age-related lung function decline: genetic variants in p53, p21, and CCND1 modify this effect.

Authors:  Medea Imboden; Joel Schwartz; Christian Schindler; Ivan Curjuric; Wolfgang Berger; Sally L J Liu; Erich W Russi; Ursula Ackermann-Liebrich; Thierry Rochat; Nicole M Probst-Hensch
Journal:  Environ Health Perspect       Date:  2009-05-26       Impact factor: 9.031

10.  Air pollutant characterization in Tula industrial corridor, Central Mexico, during the MILAGRO study.

Authors:  G Sosa; E Vega; E González-Avalos; V Mora; D López-Veneroni
Journal:  Biomed Res Int       Date:  2013-01-31       Impact factor: 3.411

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