Literature DB >> 21983655

Effect of 45 nm silver nanoparticles (AgNPs) upon the smooth muscle of rat trachea: role of nitric oxide.

Carmen González1, Samuel Salazar-García, Gabriela Palestino, Pedro P Martínez-Cuevas, Manuel A Ramírez-Lee, Brenda B Jurado-Manzano, Héctor Rosas-Hernández, Noemí Gaytán-Pacheco, Guadalupe Martel, Ricardo Espinosa-Tanguma, Alexandru S Biris, Syed F Ali.   

Abstract

AgNPs have been used to manufacture nanomaterials with new biophysical properties and functions. However, few experimental approaches have been used to assess their potential toxic or beneficial effects on human health, in association with the size, concentration, and biological target. The aim of this work was to evaluate the effects of the AgNPs on the smooth muscle of rat trachea. A single administration of AgNPs did not modify the smooth muscle tone, but, when the trachea rings were pre-treated with acetylcholine (ACh), AgNPs produced a contractile effect. Simultaneous administration of AgNPs and ACh resulted in a slight increase of smooth muscle contractility induced by ACh. AgNPs pretreatment followed by ACh administration showed that AgNPs exerted an important contraction effect induced by ACh after which muscle tone did not return to the basal level. This effect was associated with an increase in the production of nitric oxide (NO). The contractile response of the AgNPs induced by ACh was completely blocked when the rings were incubated, after the ACh but before the AgNPs administration, with 1400 W (NO blocker). The contractile effect was also abolished by atropine, which suggests that AgNPs alter ACh muscarinic receptor signaling. These data also show that AgNPs modify the contractile action of ACh through NO production and possibly induce hyper-reactivity of tracheal smooth muscle.
Copyright © 2011 Elsevier Ireland Ltd. All rights reserved.

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Year:  2011        PMID: 21983655     DOI: 10.1016/j.toxlet.2011.09.024

Source DB:  PubMed          Journal:  Toxicol Lett        ISSN: 0378-4274            Impact factor:   4.372


  7 in total

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Authors:  Katherine A Roach; Stacey E Anderson; Aleksandr B Stefaniak; Hillary L Shane; Vamsi Kodali; Michael Kashon; Jenny R Roberts
Journal:  Inhal Toxicol       Date:  2019-11-11       Impact factor: 2.724

Review 2.  Nanoparticle Effects on Stress Response Pathways and Nanoparticle-Protein Interactions.

Authors:  Shana J Cameron; Jessica Sheng; Farah Hosseinian; William G Willmore
Journal:  Int J Mol Sci       Date:  2022-07-19       Impact factor: 6.208

3.  Two Methods of AuNPs Synthesis Induce Differential Vascular Effects. The Role of the Endothelial Glycocalyx.

Authors:  Daniel Alberto Maldonado-Ortega; Gabriel Martínez-Castañón; Gabriela Palestino; Gabriela Navarro-Tovar; Carmen Gonzalez
Journal:  Front Med (Lausanne)       Date:  2022-06-29

Review 4.  Promising opportunities and potential risk of nanoparticle on the society.

Authors:  Somya Ranjan Dash; Chanakya Nath Kundu
Journal:  IET Nanobiotechnol       Date:  2020-06       Impact factor: 1.847

Review 5.  Mechanistic insight into the impact of nanomaterials on asthma and allergic airway disease.

Authors:  Kirsty Meldrum; Chang Guo; Emma L Marczylo; Timothy W Gant; Rachel Smith; Martin O Leonard
Journal:  Part Fibre Toxicol       Date:  2017-11-21       Impact factor: 9.400

6.  Role of Oxidative and Nitro-Oxidative Damage in Silver Nanoparticles Cytotoxic Effect against Human Pancreatic Ductal Adenocarcinoma Cells.

Authors:  Ewelina Barcińska; Justyna Wierzbicka; Agata Zauszkiewicz-Pawlak; Dagmara Jacewicz; Aleksandra Dabrowska; Iwona Inkielewicz-Stepniak
Journal:  Oxid Med Cell Longev       Date:  2018-08-16       Impact factor: 6.543

7.  Effect of gold nanoparticles (AuNPs) on isolated rat tracheal segments.

Authors:  Daniel Alberto Maldonado-Ortega; Gabriela Navarro-Tovar; Gabriel Martínez-Castañón; Carmen Gonzalez
Journal:  Toxicol Rep       Date:  2021-07-09
  7 in total

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