Javascript must be enabled to continue!
New mechanisms in diisocyanate-mediated allergy/toxicity: are microRNAs in play?
View through CrossRef
Purpose of review
To describe recent findings of diisocyanate-mediated mechanisms in allergy and toxicology by addressing the role of microRNA (miR) in immune responses that may contribute to the development of occupational asthma (OA).
Recent findings
Studies of diisocyanate asthma have traditionally focused on the immune and inflammatory patterns associated with diisocyanate exposures; however, recognized knowledge gaps exist regarding the detailed molecular mechanism(s) of pathogenesis. Recent studies demonstrate the critical role endogenous microRNAs play as gene regulators in maintaining homeostasis of the human body, and in the pathophysiology of many diseases including asthma. Given that diisocyanate-OA shares many pathophysiological characteristics with asthma, it is likely that miR-mediated mechanisms are involved in the pathophysiology of diisocyanate-OA. Recent reports have shown that changes in expression of endogenous miRs are associated with exposure to the occupationally relevant diisocyanates, toluene diisocyanate (TDI) and methylene diphenyl diisocyanate (MDI). Continued mechanistic study of these relevant miRs may lead to the development of novel biomarkers of occupational exposure and/or provide efficacious targets for therapeutic strategies in diisocyanate asthma.
Summary
The molecular mechanisms underlying diisocyanate-OA pathophysiology are heterogeneous and complicated. In this review, we highlight recent research into the roles and potential regulation of miRs in diisocyanate-OA.
Ovid Technologies (Wolters Kluwer Health)
Title: New mechanisms in diisocyanate-mediated allergy/toxicity: are microRNAs in play?
Description:
Purpose of review
To describe recent findings of diisocyanate-mediated mechanisms in allergy and toxicology by addressing the role of microRNA (miR) in immune responses that may contribute to the development of occupational asthma (OA).
Recent findings
Studies of diisocyanate asthma have traditionally focused on the immune and inflammatory patterns associated with diisocyanate exposures; however, recognized knowledge gaps exist regarding the detailed molecular mechanism(s) of pathogenesis.
Recent studies demonstrate the critical role endogenous microRNAs play as gene regulators in maintaining homeostasis of the human body, and in the pathophysiology of many diseases including asthma.
Given that diisocyanate-OA shares many pathophysiological characteristics with asthma, it is likely that miR-mediated mechanisms are involved in the pathophysiology of diisocyanate-OA.
Recent reports have shown that changes in expression of endogenous miRs are associated with exposure to the occupationally relevant diisocyanates, toluene diisocyanate (TDI) and methylene diphenyl diisocyanate (MDI).
Continued mechanistic study of these relevant miRs may lead to the development of novel biomarkers of occupational exposure and/or provide efficacious targets for therapeutic strategies in diisocyanate asthma.
Summary
The molecular mechanisms underlying diisocyanate-OA pathophysiology are heterogeneous and complicated.
In this review, we highlight recent research into the roles and potential regulation of miRs in diisocyanate-OA.
Related Results
555. Early Outcomes of Penicillin and Cephalosporin Allergy Assessment Tool
555. Early Outcomes of Penicillin and Cephalosporin Allergy Assessment Tool
Abstract
Background
Penicillin allergy is reported in approximately 10% of the US population and is one of the most frequent med...
Allergy-Like Asthma and Rhinitis
Allergy-Like Asthma and Rhinitis
<i>Background:</i> Chronic idiopathic urticaria is considered an allergy-like skin disorder, and in some cases an auto-reactivity caused by mast cell degranulating fact...
Identification of predictors for persistence of immediate-type egg allergy in Chinese children
Identification of predictors for persistence of immediate-type egg allergy in Chinese children
Background
Egg allergy is one of the most common food allergies in childhood with increasing prevalence in Hong Kong. While ample studies were published on its ...
562. Multipronged Approach to Recruitment of Pediatric Patients with Beta-Lactam Allergies for Evaluation and De-labeling
562. Multipronged Approach to Recruitment of Pediatric Patients with Beta-Lactam Allergies for Evaluation and De-labeling
Abstract
Background
Penicillin allergy is the most commonly reported drug allergy in the pediatric population. However, most rep...
Suspected Reaction with Cephalosporin May Be a Predictive Factor for β-Lactam Allergy in Children
Suspected Reaction with Cephalosporin May Be a Predictive Factor for β-Lactam Allergy in Children
<b><i>Background:</i></b> Most children diagnosed with β-lactam allergy based only on history are not truly allergic, and mislabeling leads to use of less e...
The spectrum of cow's milk allergy
The spectrum of cow's milk allergy
Childhood cow's milk allergy is a diagnosis encompassing various syndromes. Antigen‐immunoglobulin E (IgE) antibody interaction is classically involved in mast cell degranulation i...
The CML-Microvesicles Are Enriched with Mirnas Regulating MAPK Signaling Pathway.
The CML-Microvesicles Are Enriched with Mirnas Regulating MAPK Signaling Pathway.
Abstract
Abstract 2786
Leukemia-cell-derived microvesicles (MVs) act as vehicles for exchange of genetic information between leukemia and nomal cells,...
Fractional exhaled nitrogen oxide (FeNO), asthma, respiratory symptoms and self-reported allergy among high school students in Penang, Malaysia
Fractional exhaled nitrogen oxide (FeNO), asthma, respiratory symptoms and self-reported allergy among high school students in Penang, Malaysia
Background
:
We investigated the association between FeNO and respiratory symptoms, asthma and allergy among high schoo...

