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Peripapillary Vessel Density as a Glaucoma Biomarker throughout the Glaucoma Severity Spectrum [Meeting Abstract]
Rai, Ravneet Singh; Lucy, Katie; Tracer, Nathaniel; Wu, Mengfei; Liu, Mengling; Cadena, Maria de los Angeles Ramos; Rathi, Siddarth; Madu, Assumpta; Ishikawa, Hiroshi; Schuman, Joel; Wollstein, Gadi
ISI:000488628107168
ISSN: 0146-0404
CID: 4154342
Investigation of the Effect of Laser, Non-Laser Surgery and Medication on 1-Year Intraocular Pressure Reduction using Weighted Regression by Propensity Score [Meeting Abstract]
Wu, Mengfei; Liu, Mengling; Lucy, Katie; Ishikawa, Hiroshi; Schuman, Joel S.; Wollstein, Gadi
ISI:000488628104353
ISSN: 0146-0404
CID: 4154292
Assessing the Protective Metabolome Using Machine Learning in World Trade Center Particulate Exposed Firefighters at Risk for Lung Injury
Crowley, George; Kwon, Sophia; Ostrofsky, Dean F; Clementi, Emily A; Haider, Syed Hissam; Caraher, Erin J; Lam, Rachel; St-Jules, David E; Liu, Mengling; Prezant, David J; Nolan, Anna
The metabolome of World Trade Center (WTC) particulate matter (PM) exposure has yet to be fully defined and may yield information that will further define bioactive pathways relevant to lung injury. A subset of Fire Department of New York firefighters demonstrated resistance to subsequent loss of lung function. We intend to characterize the metabolome of never smoking WTC-exposed firefighters, stratified by resistance to WTC-Lung Injury (WTC-LI) to determine metabolite pathways significant in subjects resistant to the loss of lung function. The global serum metabolome was determined in those resistant to WTC-LI and controls (n = 15 in each). Metabolites most important to class separation (top 5% by Random Forest (RF) of 594 qualified metabolites) included elevated amino acid and long-chain fatty acid metabolites, and reduced hexose monophosphate shunt metabolites in the resistant cohort. RF using the refined metabolic profile was able to classify cases and controls with an estimated success rate of 93.3%, and performed similarly upon cross-validation. Agglomerative hierarchical clustering identified potential influential pathways of resistance to the development of WTC-LI. These pathways represent potential therapeutic targets and warrant further research.
PMID: 31481674
ISSN: 2045-2322
CID: 4069072
Clinical Biomarkers of World Trade Center Airway Hyperreactivity: A 16-Year Longitudinal Study [Meeting Abstract]
Kwon, S.; Clementi, E.; Crowley, G.; Schwartz, T.; Zeig-Owens, R.; Liu, M.; Prezant, D. J.; Nolan, A.
ISI:000466771102337
ISSN: 1073-449x
CID: 3896772
Nutritional Assessment of the World Trade Center-Health Program Fire Department of New York Cohort [Meeting Abstract]
Lam, R.; Riggs, J.; Sunseri, M.; Kwon, S.; Crowley, G.; Schwartz, T.; Zeig-Owens, R.; Halpren, A.; Liu, M.; Prezant, D. J.; Nolan, A.
ISI:000466776701069
ISSN: 1073-449x
CID: 3896812
Validation of Biomarkers of World Trade Center (WTC) Lung Injury: Design of a Case Cohort Control [Meeting Abstract]
Riggs, J.; Kwon, S.; Crowley, G.; Ostrofsky, D.; Talusan, A.; Mikhail, M.; Kim, J.; Zeig-Owens, R.; Schwartz, T.; Prezant, D. J.; Liu, M.; Nolan, A.
ISI:000466771102339
ISSN: 1073-449x
CID: 3896792
Synergistic Interleukin-1 alpha Elaboration Due to World Trade Center Particulate Matter and Lipid Co-Exposure In Vitro Is Not NF-kappa B Dependent [Meeting Abstract]
Ostrofsky, D.; Lam, R.; Haider, S.; Crowley, G.; Talusan, A.; Kwon, S.; Zhang, L.; Liu, M.; Nolan, A.
ISI:000466771102342
ISSN: 1073-449x
CID: 3896802
Metabolomics of WTC-Lung Injury (WTC-LI): A Validation Study [Meeting Abstract]
Crowley, G.; Kwon, S.; Li, Y.; Clementi, E.; Haider, S.; Talusan, A.; Prezant, D. J.; Schwartz, T. M.; Zeig-Owens, R.; Liu, M.; McRitchie, S.; Sumner, S. J.; Nolan, A.
ISI:000466771102335
ISSN: 1073-449x
CID: 3896752
Metabolic Syndrome Biomarkers of World Trade Center Airway Hyperreactivity: A 16-Year Prospective Cohort Study
Kwon, Sophia; Crowley, George; Mikhail, Mena; Lam, Rachel; Clementi, Emily; Zeig-Owens, Rachel; Schwartz, Theresa M; Liu, Mengling; Prezant, David J; Nolan, Anna
Airway hyperreactivity (AHR) related to environmental exposure is a significant public health risk worldwide. Similarly, metabolic syndrome (MetSyn), a risk factor for obstructive airway disease (OAD) and systemic inflammation, is a significant contributor to global adverse health. This prospective cohort study followed N = 7486 World Trade Center (WTC)-exposed male firefighters from 11 September 2001 (9/11) until 1 August 2017 and investigated N = 539 with newly developed AHR for clinical biomarkers of MetSyn and compared them to the non-AHR group. Male firefighters with normal lung function and no AHR pre-9/11 who had blood drawn from 9 September 2001-24 July 2002 were assessed. World Trade Center-Airway Hyperreactivity (WTC-AHR) was defined as either a positive bronchodilator response (BDR) or methacholine challenge test (MCT). The electronic medical record (EMR) was queried for their MetSyn characteristics (lipid profile, body mass index (BMI), glucose), and routine clinical biomarkers (such as complete blood counts). We modeled the association of MetSyn characteristics at the first post-9/11 exam with AHR. Those with AHR were significantly more likely to be older, have higher BMIs, have high intensity exposure, and have MetSyn. Smoking history was not associated with WTC-AHR. Those present on the morning of 9/11 had 224% increased risk of developing AHR, and those who arrived in the afternoon of 9/11 had a 75.9% increased risk. Having ≥3 MetSyn parameters increased the risk of WTC-AHR by 65.4%. Co-existing MetSyn and high WTC exposure are predictive of future AHR and suggest that systemic inflammation may be a contributor.
PMID: 31035527
ISSN: 1660-4601
CID: 3830262
Bronchodilator Response Predicts Longitudinal Improvement in Small Airway Function in World Trade Center Dust Exposed Community Members
Pradhan, Deepak; Xu, Ning; Reibman, Joan; Goldring, Roberta M; Shao, Yongzhao; Liu, Mengling; Berger, Kenneth I
The evolution of lung function, including assessment of small airways, was assessed in individuals enrolled in the World Trade Center Environmental Health Center (WTC-EHC). We hypothesized that a bronchodilator response at initial evaluation shown by spirometry or in small airways, as measured by forced oscillation technique (FOT), would be associated with improvement in large and small airway function over time. Standardized longitudinal assessment included pre and post bronchodilator (BD) spirometry (forced vital capacity, FVC; forced expiratory volume in 1 second, FEV1) and FOT (resistance at 5 Hz, R5; resistance at 5 minus 20 Hz, R5-20). Longitudinal changes were assessed using linear mixed-effects modelling with adjustment for potential confounders (median follow-up 2.86 years; 95% measurements within 4.9 years). Data demonstrated: (1) parallel improvement in airflow and volume measured by spirometry and small airway function (R5 and R5-20) measured by FOT; (2) the magnitude of longitudinal improvement was tightly linked to the initial BD response; and (3) longitudinal values for small airway function on FOT were similar to residual abnormality observed post BD at initial visit. These findings suggest presence of reversible and irreversible components of small airway injury that are identifiable at initial presentation. These results have implications for treatment of isolated small airway abnormalities that can be identified by non-invasive effort independent FOT particularly in symptomatic individuals with normal spirometry indices. This study underscores the need to study small airway function to understand physiologic changes over time following environmental and occupational lung injury.
PMID: 31009988
ISSN: 1660-4601
CID: 3821372