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"Wood, Robert E."
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Official American Thoracic Society Technical Standards: Flexible Airway Endoscopy in Children
by
Schechter, Michael S.
,
Abode, Kathy
,
Retsch-Bogart, George
in
Adolescent
,
Airway Management - standards
,
Child
2015
Abstract
Background
Flexible airway endoscopy (FAE) is an accepted and frequently performed procedure in the evaluation of children with known or suspected airway and lung parenchymal disorders. However, published technical standards on how to perform FAE in children are lacking.
Methods
The American Thoracic Society (ATS) approved the formation of a multidisciplinary committee to delineate technical standards for performing FAE in children. The committee completed a pragmatic synthesis of the evidence and used the evidence synthesis to answer clinically relevant questions.
Results
There is a paucity of randomized controlled trials in pediatric FAE. The committee developed recommendations based predominantly on the collective clinical experience of our committee members highlighting the importance of FAE-specific airway management techniques and anesthesia, establishing suggested competencies for the bronchoscopist in training, and defining areas deserving further investigation.
Conclusions
These ATS-sponsored technical standards describe the equipment, personnel, competencies, and special procedures associated with FAE in children.
Journal Article
Human GM-CSF Autoantibodies and Reproduction of Pulmonary Alveolar Proteinosis
by
Whitsett, Jeffrey A
,
Trapnell, Bruce C
,
Carey, Brenna C
in
Animals
,
Autoantibodies - physiology
,
Autoimmune Diseases
2009
To the Editor:
Idiopathic pulmonary alveolar proteinosis is a rare disease in which surfactant lipids and proteins accumulate in pulmonary alveolar macrophages and alveoli, resulting in respiratory insufficiency and, in severe cases, respiratory failure.
1
Granulocyte–macrophage colony-stimulating factor (GM-CSF) autoantibodies occur in these patients
2
and may mediate the pathogenesis of this disease, but they are also present in healthy persons and in immune globulin prepared from plasma obtained from healthy persons. Since GM-CSF is required for surfactant catabolism by alveolar macrophages in mice, we hypothesized that high levels of GM-CSF autoantibodies (i.e., levels sufficient to eliminate endogenous GM-CSF priming of myeloid . . .
Journal Article
Hereditary Pulmonary Alveolar Proteinosis: Pathogenesis, Presentation, Diagnosis, and Therapy
by
Trapnell, Bruce C.
,
Carey, Brenna C.
,
Rubin, Bruce K.
in
Age of Onset
,
Anesthesia. Intensive care medicine. Transfusions. Cell therapy and gene therapy
,
Asymptomatic
2010
Abstract
Rationale
We identified a 6-year-old girl with pulmonary alveolar proteinosis (PAP), impaired granulocyte-macrophage colony–stimulating factor (GM-CSF) receptor function, and increased GM-CSF.
Objectives
Increased serum GM-CSF may be useful to identify individuals with PAP caused by GM-CSF receptor dysfunction.
Methods
We screened 187 patients referred to us for measurement of GM-CSF autoantibodies to diagnose autoimmune PAP. Five were children with PAP and increased serum GM-CSF but without GM-CSF autoantibodies or any disease causing secondary PAP; all were studied with family members, subsequently identified patients, and controls.
Measurement and Main Results
Eight children (seven female, one male) were identified with PAP caused by recessive CSF2RA mutations. Six presented with progressive dyspnea of insidious onset at 4.8 ± 1.6 years and two were asymptomatic at ages 5 and 8 years. Radiologic and histopathologic manifestations were similar to those of autoimmune PAP. Molecular analysis demonstrated that GM-CSF signaling was absent in six and severely reduced in two patients. The GM-CSF receptor β chain was detected in all patients, whereas the α chain was absent in six and abnormal in two, paralleling the GM-CSF signaling defects. Genetic analysis revealed multiple distinct CSF2RA abnormalities, including missense, duplication, frameshift, and nonsense mutations; exon and gene deletion; and cryptic alternative splicing. All symptomatic patients responded well to whole-lung lavage therapy.
Conclusions
CSF2RA mutations cause a genetic form of PAP presenting as insidious, progressive dyspnea in children that can be diagnosed by a combination of characteristic radiologic findings and blood tests and treated successfully by whole-lung lavage.
Journal Article
Mental models, decision rules, and performance heterogeneity
by
Wood, Robert E.
,
Gary, Michael Shayne
in
Business environments
,
Business management
,
Business organization
2011
This paper focuses on the role of managerial cognition as a source of heterogeneity in firm strategies and performance. We link differences in mental models to differences in decision rules and performance in a management simulation. Our results show more accurate mental models lead to better decision rules and higher performance. We also find that decision makers do not need accurate knowledge of the entire business environment; accurate mental models of the key principles are sufficient to achieve superior performance. A fundamental assumption in much of strategic management is that managers who have a richer understanding about organizational capabilities and the dynamics of industry structure can improve the performance of their firms. Our findings provide empirical evidence supporting this assumption and show that differences in mental models help explain ex ante why managers and firms adopt different strategies and achieve different levels of competitive success.
Journal Article
Use of Induced Pluripotent Stem Cells to Recapitulate Pulmonary Alveolar Proteinosis Pathogenesis
by
Mayhew, Christopher
,
Sallese, Anthony
,
Wood, Robert E.
in
Case-Control Studies
,
Cell Differentiation
,
Cell growth
2014
Abstract
Rationale
In patients with pulmonary alveolar proteinosis (PAP) syndrome, disruption of granulocyte/macrophage colony–stimulating factor (GM-CSF) signaling is associated with pathogenic surfactant accumulation from impaired clearance in alveolar macrophages.
Objectives
The aim of this study was to overcome these barriers by using monocyte-derived induced pluripotent stem (iPS) cells to recapitulate disease-specific and normal macrophages.
Methods
We created iPS cells from two children with hereditary PAP (hPAP) caused by recessive CSF2RAR217X mutations and three normal people, differentiated them into macrophages (hPAP-iPS-Mφs and NL-iPS-Mφs, respectively), and evaluated macrophage functions with and without gene-correction to restore GM-CSF signaling in hPAP-iPS-Mφs.
Measurements and Main Results
Both hPAP and normal iPS cells had human embryonic stem cell–like morphology, expressed pluripotency markers, formed teratomas in vivo, had a normal karyotype, retained and expressed mutant or normal CSF2RA genes, respectively, and could be differentiated into macrophages with the typical morphology and phenotypic markers. Compared with normal, hPAP-iPS-Mφs had impaired GM-CSF receptor signaling and reduced GM-CSF–dependent gene expression, GM-CSF– but not M-CSF–dependent cell proliferation, surfactant clearance, and proinflammatory cytokine secretion. Restoration of GM-CSF receptor signaling corrected the surfactant clearance abnormality in hPAP-iPS-Mφs.
Conclusions
We used patient-specific iPS cells to accurately reproduce the molecular and cellular defects of alveolar macrophages that drive the pathogenesis of PAP in more than 90% of patients. These results demonstrate the critical role of GM-CSF signaling in surfactant homeostasis and PAP pathogenesis in humans and have therapeutic implications for hPAP.
Journal Article
The effect of pamidronate delivery in bisphosphonate-naïve patients on neutrophil chemotaxis and oxidative burst
by
Wood, Robert E.
,
Sun, Chun-Xiang
,
Glogauer, Michael
in
631/250/2504/223/1699
,
692/1807/1707
,
692/420/2780/262
2020
The pathogenesis of medication-related osteonecrosis of the jaw (MRONJ), a morbid condition associated with bisphosphonate administration, has not been fully elucidated. Recent research utilizing a murine model has revealed that the neutrophil becomes dysfunctional following exposure to bisphosphonates. Accordingly, the impairment of neutrophil function could play an important role in the pathogenesis of MRONJ via an infectious mechanism mediated by the suppression of the innate immune system. Currently, the existing human data are insufficient to substantiate this theory. To investigate, we isolated neutrophils from blood and oral rinse samples from bisphosphonate-naïve patients who were recently diagnosed with multiple myeloma both prior to and one month following their initial infusion of pamidronate, an intravenous bisphosphonate agent. Stimulated blood and oral neutrophil superoxide production and chemotactic capabilities were found to be impaired relative to baseline values. These results suggest that impaired neutrophil function may partially contribute to the aetiology underlying the pathophysiological processes linked to the development of MRONJ. Further, as the functional status of circulating neutrophils was reflected in the oral cavity where sampling can be accomplished in a non-invasive fashion, it is conceivable that neutrophil function could serve as a potential biomarker for MRONJ prognostication.
Journal Article
Nature, Artforms, and the World Around Us
2017
This book provides a comprehensive view of the aesthetic realm, placing the various major artforms within the setting of nature and the built environment as they arise within the field of experience. Each chapter displays the regional ontology of the form considered: the comprehensive set of eidetic features that limn the space of the art. It draws upon artists' statements, writings of key figures in the history of philosophy--including Plato, Hegel, Dewey, and Heidegger—and writings from various commentators on art. This volume is unique in its systematic and phenomenological approach, and in how it addresses aesthetics writ large.
Patient-derived Granulocyte/Macrophage Colony–Stimulating Factor Autoantibodies Reproduce Pulmonary Alveolar Proteinosis in Nonhuman Primates
by
Ikegami, Machiko
,
Krischer, Jeffrey P.
,
Ryckman, Fred
in
Anesthesia. Intensive care medicine. Transfusions. Cell therapy and gene therapy
,
Animals
,
Autoantibodies - adverse effects
2010
Abstract
Rationale
Granulocyte/macrophage colony–stimulating factor (GM-CSF) autoantibodies (GMAb) are strongly associated with idiopathic pulmonary alveolar proteinosis (PAP) and are believed to be important in its pathogenesis. However, levels of GMAb do not correlate with disease severity and GMAb are also present at low levels in healthy individuals.
Objectives
Our primary objective was to determine whether human GMAb would reproduce PAP in healthy primates. A secondary objective was to determine the concentration of GMAb resulting in loss of GM-CSF signaling in vivo (i.e., critical threshold).
Methods
Nonhuman primates (Macaca fascicularis) were injected with highly purified, PAP patient-derived GMAb in dose-ranging (2.2–50 mg) single and multiple administration studies, and after blocking antihuman immunoglobulin immune responses, in chronic administration studies maintaining serum levels greater than 40 μg/ml for up to 11 months.
Measurements and Main Results
GMAb blocked GM-CSF signaling causing (1) a milky-appearing bronchoalveolar lavage fluid containing increased surfactant lipids and proteins; (2) enlarged, foamy, surfactant-filled alveolar macrophages with reduced PU.1 and PPARγ mRNA, and reduced tumor necrosis factor-α secretion; (3) pulmonary leukocytosis; (4) increased serum surfactant protein-D; and (5) impaired neutrophil functions. GM-CSF signaling varied inversely with GMAb concentration below a critical threshold of 5 μg/ml, which was similar in lungs and blood and to the value observed in patients with PAP.
Conclusions
GMAb reproduced the molecular, cellular, and histopathologic features of PAP in healthy primates, demonstrating that GMAb directly cause PAP. These results have implications for therapy of PAP and help define the therapeutic window for potential use of GMAb to treat other disorders.
Journal Article
Emotional intelligence and individual differences in affective processes underlying task-contingent conscientiousness
2018
Organisational researchers have recently begun to focus on the more dynamic aspects of personality in the workplace. The present study examines individual differences in the affective processes that underlie one such dynamic construct, task-contingent conscientiousness. Using experience sampling data collected over 3 weeks from 201 managers, we show (a) that individuals differ substantially from each other in the paths that connect task demand, positive and negative affect, and conscientious behaviour; (b) that these individual differences cohere to define person types or classes that represent meaningful differences in the extent to which task-contingent conscientiousness is mediated affectively; and (c) that emotional intelligence increases the likelihood of membership in classes that are characterised by affectively mediated effects. Theoretical implications of the findings are discussed with reference to the cognitive-affective personality system model, research on the consequences of affect in the workplace, and the literature on emotional intelligence. Practical applications are suggested for managers who wish to use personality assessment for developmental purposes, especially in relation to facilitating behavioural change.
Journal Article