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Dive into the research topics where Jeffrey J. Atkinson is active.

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Featured researches published by Jeffrey J. Atkinson.


Annals of the American Thoracic Society | 2013

Standardizing Nasal Nitric Oxide Measurement as a Test for Primary Ciliary Dyskinesia

Margaret W. Leigh; Milan J. Hazucha; Kunal K. Chawla; Brock R. Baker; Adam J. Shapiro; David E. Brown; Lisa M. LaVange; Bethany J. Horton; Bahjat F. Qaqish; Johnny L. Carson; Stephanie D. Davis; Sharon D. Dell; Thomas W. Ferkol; Jeffrey J. Atkinson; Kenneth N. Olivier; Scott D. Sagel; Margaret Rosenfeld; Carlos Milla; Hye Seung Lee; Jeffrey P. Krischer; Maimoona A. Zariwala

RATIONALE Several studies suggest that nasal nitric oxide (nNO) measurement could be a test for primary ciliary dyskinesia (PCD), but the procedure and interpretation have not been standardized. OBJECTIVES To use a standard protocol for measuring nNO to establish a disease-specific cutoff value at one site, and then validate at six other sites. METHODS At the lead site, nNO was prospectively measured in individuals later confirmed to have PCD by ciliary ultrastructural defects (n = 143) or DNAH11 mutations (n = 6); and in 78 healthy and 146 disease control subjects, including individuals with asthma (n = 37), cystic fibrosis (n = 77), and chronic obstructive pulmonary disease (n = 32). A disease-specific cutoff value was determined, using generalized estimating equations (GEEs). Six other sites prospectively measured nNO in 155 consecutive individuals enrolled for evaluation for possible PCD. MEASUREMENTS AND MAIN RESULTS At the lead site, nNO values in PCD (mean ± standard deviation, 20.7 ± 24.1 nl/min; range, 1.5-207.3 nl/min) only rarely overlapped with the nNO values of healthy control subjects (304.6 ± 118.8; 125.5-867.0 nl/min), asthma (267.8 ± 103.2; 125.0-589.7 nl/min), or chronic obstructive pulmonary disease (223.7 ± 87.1; 109.7-449.1 nl/min); however, there was overlap with cystic fibrosis (134.0 ± 73.5; 15.6-386.1 nl/min). The disease-specific nNO cutoff value was defined at 77 nl/minute (sensitivity, 0.98; specificity, >0.999). At six other sites, this cutoff identified 70 of the 71 (98.6%) participants with confirmed PCD. CONCLUSIONS Using a standardized protocol in multicenter studies, nNO measurement accurately identifies individuals with PCD, and supports its usefulness as a test to support the clinical diagnosis of PCD.


Journal of Immunology | 2003

A Site on Laminin α5, AQARSAASKVKVSMKF, Induces Inflammatory Cell Production of Matrix Metalloproteinase-9 and Chemotaxis

Tracy L. Adair-Kirk; Jeffrey J. Atkinson; Thomas J. Broekelmann; Masayuki Doi; Karl Tryggvason; Jeffrey H. Miner; Robert P. Mecham; Robert M. Senior

Several peptide sequences in laminin α1, the α-chain of laminin (Ln)-1, mediate biological responses in vitro, but Ln-1 is rare in vivo. Since Ln-5 and Ln-10, which contain the α3 and α5 chains, respectively, are the most prominent laminin heterotrimers in normal adult tissues and few functional domains in other laminin chains have been identified, we are investigating the α3 and α5 chains for biological activities. Incubation of mouse macrophages with the laminin α5 peptide AQARSAASKVKVSMKF resulted in marked increase in matrix metalloproteinase (MMP)-9 mRNA and gelatinolytic activity in the conditioned media, whereas the corresponding α3 peptide QQARDAANKVAIPMRF had no effect. AQARSAASKVKVSMKF also induced expression of MMP-14, while MMP-2, MMP-3, MMP-7, MMP-12, and MMP-13 were not induced by this peptide. Deletion analyses indicated that a minimal sequence of ASKVKVSMKF was sufficient for increasing MMP-9 expression. AQARSAASKVKVSMKF was also chemotactic for neutrophils and macrophages in vitro, and induced accumulation of neutrophils and macrophages in lung airspaces in vivo following intranasal instillation into mice. Comparable accumulation occurred in MMP-9-deficient mice, indicating that MMP-9 was not required for AQARSAASKVKVSMKF-induced inflammatory cell emigration in the lung. A scrambled version of the minimal peptide, KAKSFVMVSK, was inactive. These data indicate that laminin α5-derived peptides can induce inflammatory cell chemotaxis and metalloproteinase activity.


American Journal of Respiratory and Critical Care Medicine | 2011

The Role of Matrix Metalloproteinase-9 in Cigarette Smoke–induced Emphysema

Jeffrey J. Atkinson; Barbara A. Lutey; Yoko Suzuki; Holly M. Toennies; Diane G. Kelley; Dale K. Kobayashi; Whitney G. Ijem; G. Deslee; Carla Moore; M. Eileen Jacobs; Susan H. Conradi; David S. Gierada; Richard A. Pierce; Tomoko Betsuyaku; Robert M. Senior

RATIONALE Matrix metalloprotease (MMP)-9 is an elastolytic endopeptidase produced by activated macrophages that may be involved in the development of human pulmonary emphysema and could be inhibited with existing compounds. Mouse models have demonstrated that excess MMP-9 production can result in permanent alveolar destruction. OBJECTIVES To determine if MMP-9 causes cigarette smoke-induced emphysema using MMP-9 knockout mice and human samples. METHODS Mouse lungs were analyzed for inflammation and airspace enlargement using a mainstream smoke-exposure model. Human macrophage mRNA was isolated from subjects with emphysema by laser capture microdissection. Human blood monocyte mRNA was isolated from subjects with greater than 30 pack-year smoking history. Human gene expression was determined by quantitative polymerase chain reaction and compared with emphysema severity determined by automated computed tomography analysis. Plasma Clara cell secretory protein and surfactant protein-D were quantified to measure ongoing lung injury. MEASUREMENTS AND MAIN RESULTS Mice deficient in MMP-9 develop the same degree of cigarette smoke-induced inflammation and airspace enlargement as strain-matched controls. Macrophages are the predominant source of MMP-9 production in human emphysema specimens and similar quantities of macrophage MMP-9 mRNA is present in areas of lung with and without emphysema. Circulating monocytes produce more MMP-9 in individuals with advanced emphysema severity despite no correlation of MMP-9 with markers of ongoing lung damage. CONCLUSIONS These results suggest that MMP-9 in humans who smoke is similar to smoke-exposed mice, where MMP-9 is present in emphysematous lung but not correlated with the emphysema. To the degree that the mechanisms of emphysema in humans who smoke resemble the mouse model, these data suggest specific inhibition of MMP-9 is unlikely to be an effective therapy for cigarette smoke-induced emphysema. Clinical trial registered with www.clinicaltrials.gov (NCT 00757120).


Developmental Dynamics | 2005

Membrane-type 1 matrix metalloproteinase is required for normal alveolar development.

Jeffrey J. Atkinson; Kenn Holmbeck; Susan S. Yamada; Henning Birkedal-Hansen; William C. Parks; Robert M. Senior

Matrix metalloproteinases (MMPs) are expressed during lung development, but their role may be limited, as mice deficient in MMP‐3, 7, 9, or 12 develop a normal adult lung. Because membrane‐type 1 matrix metalloproteinase (MT1‐MMP) is expressed in the developing lung epithelium, we examined the lung structure of MT1‐MMP–deficient (−/−) mice. Branching morphogenesis was normal, but alveolar development was abnormal in the MT1‐MMP−/− lungs with 40% less alveolar surface area at 1 month (P < 0.01). MT1‐MMP−/− airways and alveoli had an abnormal ultrastructural appearance, but epithelial cell differentiation markers were distributed similarly in both strains. There was no evidence of excess extracellular matrix deposition or inflammation at the time points examined. In contrast, by adulthood MMP‐2−/− mice had normal alveolar size and structure, indicating normal alveolar development was not dependent on the ability of MT1‐MMP to activate pro–MMP‐2. These data indicate that MT1‐MMP is required for normal lung development. Developmental Dynamics 232:1079–1090, 2005.


Respiratory Research | 2008

Clara cell adhesion and migration to extracellular matrix

Jeffrey J. Atkinson; Tracy L. Adair-Kirk; Diane G. Kelley; Daphne E. deMello; Robert M. Senior

BackgroundClara cells are the epithelial progenitor cell of the small airways, a location known to be important in many lung disorders. Although migration of alveolar type II and bronchiolar ciliated epithelial cells has been examined, the migratory response of Clara cells has received little attention.MethodsUsing a modification of existing procedures for Clara cell isolation, we examined mouse Clara cells and a mouse Clara-like cell line (C22) for adhesion to and migration toward matrix substrate gradients, to establish the nature and integrin dependence of migration in Clara cells.ResultsWe observed that Clara cells adhere preferentially to fibronectin (Fn) and type I collagen (Col I) similar to previous reports. Migration of Clara cells can be directed by a fixed gradient of matrix substrates (haptotaxis). Migration of the C22 cell line was similar to the Clara cells so integrin dependence of migration was evaluated with this cell line. As determined by competition with an RGD containing-peptide, migration of C22 cells toward Fn and laminin (Lm) 511 (formerly laminin 10) was significantly RGD integrin dependent, but migration toward Col I was RGD integrin independent, suggesting that Clara cells utilize different receptors for these different matrices.ConclusionThus, Clara cells resemble alveolar type II and bronchiolar ciliated epithelial cells by showing integrin mediated pro-migratory changes to extracellular matrix components that are present in tissues after injury.


Chest | 2009

Oxidative Damage to Nucleic Acids in Severe Emphysema

Gaetan Deslee; Jason C. Woods; Carla Moore; Susan H. Conradi; David S. Gierada; Jeffrey J. Atkinson; John T. Battaile; Lucy Liu; G. Alexander Patterson; Tracy L. Adair-Kirk; Michael J. Holtzman; Richard A. Pierce

BACKGROUND Oxidative stress is a key element in the pathogenesis of emphysema, but oxidation of nucleic acids has been largely overlooked. The aim of this study was to investigate oxidative damage to nucleic acids in severe emphysematous lungs. METHODS Thirteen human severe emphysematous lungs, including five with alpha(1)-antitrypsin deficiency (AATD), were obtained from patients receiving lung transplantation. Control lung tissue was obtained from non-COPD lungs (n = 8) and donor lungs (n = 8). DNA and RNA oxidation were investigated by immunochemistry. Morphometry (mean linear intercept [Lm] and CT scan) and immunostaining for CD68 and neutrophil elastase also were performed. RESULTS Nucleic acid oxidation was increased in alveolar wall cells in emphysematous lungs compared to non-COPD and donor lungs (p < 0.01). In emphysematous lungs, oxidative damage to nucleic acids in alveolar wall cells was increased in the more severe emphysematous areas assessed by histology (Lm, > 0.5 mm; p < 0.05) and CT scan (< -950 Hounsfield units; p < 0.05). Compared to classic emphysema, AATD lungs exhibited higher levels of nucleic acid oxidation in macrophages (p < 0.05) and airway epithelial cells (p < 0.01). Pretreatments with DNase and RNase demonstrated that RNA oxidation was more prevalent than DNA oxidation in alveolar wall cells. CONCLUSIONS We demonstrated for the first time that nucleic acids, especially RNA, are oxidized in human emphysematous lungs. The correlation between the levels of oxidative damage to nucleic acids in alveolar wall cells and the severity of emphysema suggest a potential role in the pathogenesis of emphysema.


American Journal of Respiratory Cell and Molecular Biology | 2008

Distal Airways in Mice Exposed to Cigarette Smoke Nrf2-Regulated Genes Are Increased in Clara Cells

Tracy L. Adair-Kirk; Jeffrey J. Atkinson; Gail L. Griffin; Mark A. Watson; Diane G. Kelley; Daphne E. deMello; Robert M. Senior; Tomoko Betsuyaku

Cigarette smoke (CS) is the main risk factor for chronic obstructive pulmonary disease (COPD). Terminal bronchioles are critical zones in the pathophysiology of COPD, but little is known about the cellular and molecular changes that occur in cells lining terminal bronchioles in response to CS. We subjected C57BL/6 mice to CS (6 d/wk, up to 6 mo), looked for morphologic changes lining the terminal bronchioles, and used laser capture microdissection to selectively isolate cells in terminal bronchioles to study gene expression. Morphologic and immunohistochemical analyses showed that Clara cell predominance remained despite 6 months of CS exposure. Since Clara cells have a role in protection against oxidative stress, we focused on the expression of antioxidant/detoxification genes using microarray analysis. Of the 35 antioxidant/detoxification genes with at least 2.5-fold increased expression in response to 6 months of CS exposure, 21 were NF-E2-related factor 2 (Nrf2)-regulated genes. Among these were cytochrome P450 1b1, glutathione reductase, thioredoxin reductase, and members of the glutathione S-transferase family, as well as Nrf2 itself. In vitro studies using immortalized murine Clara cells (C22) showed that CS induced the stabilization and nuclear translocation of Nrf2, which correlated with the induction of antioxidant and detoxification genes. Furthermore, decreasing Nrf2 expression by siRNA resulted in a corresponding decrease in CS-induced expression of several antioxidant and detoxification genes by C22 cells. These data suggest that the protective response by Clara cells to CS exposure is predominantly regulated by the transcription factor Nrf2.


American Journal of Respiratory Cell and Molecular Biology | 2010

Cigarette Smoke Induces Nucleic-Acid Oxidation in Lung Fibroblasts

Gaetan Deslee; Tracy L. Adair-Kirk; Tomoko Betsuyaku; Jason C. Woods; Carla Moore; David S. Gierada; Susan H. Conradi; Jeffrey J. Atkinson; Holly M. Toennies; John T. Battaile; Dale K. Kobayashi; G. Alexander Patterson; Michael J. Holtzman; Richard A. Pierce

Oxidative stress is widely proposed as a pathogenic mechanism for chronic obstructive pulmonary disease (COPD), but the molecular pathway connecting oxidative damage to tissue destruction remains to be fully defined. We suggest that reactive oxygen species (ROS) oxidatively damage nucleic acids, and this effect requires multiple repair mechanisms, particularly base excision pathway components 8-oxoguanine-DNA glycosylase (OGG1), endonuclease III homologue 1 (NTH1), and single-strand-selective monofunctional uracil-DNA glycosylase 1 (SMUG1), as well as the nucleic acid-binding protein, Y-box binding protein 1 (YB1). This study was therefore designed to define the levels of nucleic-acid oxidation and expression of genes involved in the repair of COPD and in corresponding models of this disease. We found significant oxidation of nucleic acids localized to alveolar lung fibroblasts, increased levels of OGG1 mRNA expression, and decreased concentrations of NTH1, SMUG1, and YB1 mRNA in lung samples from subjects with very severe COPD compared with little or no COPD. Mice exposed to cigarette smoke exhibited a time-dependent accumulation of nucleic-acid oxidation in alveolar fibroblasts, which was associated with an increase in OGG1 and YB1 mRNA concentrations. Similarly, human lung fibroblasts exposed to cigarette smoke extract exhibited ROS-dependent nucleic-acid oxidation. The short interfering RNA (siRNA)-dependent knockdown of OGG1 and YB1 expression increased nucleic-acid oxidation at the basal state and after exposure to cigarette smoke. Together, our results demonstrate ROS-dependent, cigarette smoke-induced nucleic-acid oxidation in alveolar fibroblasts, which may play a role in the pathogenesis of emphysema.


Journal of Immunology | 2005

A Chemotactic Peptide from Laminin α5 Functions as a Regulator of Inflammatory Immune Responses via TNFα-mediated Signaling

Tracy L. Adair-Kirk; Jeffrey J. Atkinson; Diane G. Kelley; Robert H. Arch; Jeffrey H. Miner; Robert M. Senior

Tissue injury triggers inflammatory responses that may result in release of degradation products or exposure of cryptic domains of extracellular matrix components. Previously, we have shown that a cryptic peptide (AQARSAASKVKVSMKF) in the α-chain of laminin-10 (α5β1γ1), a prominent basement membrane component, is chemotactic for both neutrophils (PMNs) and macrophages (Mφs) and induces matrix metalloproteinase-9 (MMP-9) production. To determine whether AQARSAASKVKVSMKF has additional effects on inflammatory cells, we performed microarray analysis of RNA from RAW264.7 Mφs stimulated with AQARSAASKVKVSMKF. Several cytokines and cytokine receptors were increased >3-fold in response to the laminin α5 peptide. Among these were TNF-α and one of its receptors, the p75 TNFR (TNFR-II), increasing 3.5- and 5.7-fold, respectively. However, the peptide had no effect on p55 TNFR (TNFR-I) expression. Corroborating the microarray data, the protein levels of TNF-α and TNFR-II were increased following stimulation of RAW264.7 cells with AQARSAASKVKVSMKF. In addition, we determined that the production of TNF-α and TNFR-II in response to AQARSAASKVKVSMKF preceded the production of MMP-9. Furthermore, using primary Mφs from mice deficient in TNFR-I, TNFR-II, or both TNF-α receptors (TNFRs), we determined that AQARSAASKVKVSMKF induces MMP-9 expression by Mφs through a pathway triggered by TNFR-II. However, TNF-α signaling is not required for AQARSAASKVKVSMKF-induced PMN release of MMP-9 or PMN emigration. These data suggest that interactions of inflammatory cells with basement membrane components may orchestrate immune responses by inducing expression of cytokines, recruitment of inflammatory cells, and release of proteinases.


American Journal of Physiology-lung Cellular and Molecular Physiology | 2014

Matrix metalloproteinase-9 activates TGF-β and stimulates fibroblast contraction of collagen gels

Tetsu Kobayashi; Huijung Kim; Xiangde Liu; Hisatoshi Sugiura; Tadashi Kohyama; Qiuhong Fang; Fu Qiang Wen; Shinji Abe; Xingqi Wang; Jeffrey J. Atkinson; James Shipley; Robert M. Senior; Stephen I. Rennard

Matrix metalloproteinase-9 (MMP-9) is a matrix-degrading enzyme implicated in many biological processes, including inflammation. It is produced by many cells, including fibroblasts. When cultured in three-dimensional (3D) collagen gels, fibroblasts contract the surrounding matrix, a function that is thought to model the contraction that characterizes both normal wound repair and fibrosis. The current study was designed to evaluate the role of endogenously produced MMP-9 in fibroblast contraction of 3D collagen gels. Fibroblasts from mice lacking expression of MMP-9 and human lung fibroblasts (HFL-1) transfected with MMP-9 small-interfering RNA (siRNA) were used. Fibroblasts were cast into type I collagen gels and floated in culture medium with or without transforming growth factor (TGF)-β1 for 5 days. Gel size was determined daily using an image analysis system. Gels made from MMP-9 siRNA-treated human fibroblasts contracted less than control fibroblasts, as did fibroblasts incubated with a nonspecific MMP inhibitor. Similarly, fibroblasts cultured from MMP-9-deficient mice contracted gels less than did fibroblasts from control mice. Transfection of the MMP-9-deficient murine fibroblasts with a vector expressing murine MMP-9 restored contractile activity to MMP-9-deficient fibroblasts. Inhibition of MMP-9 reduced active TGF-β1 and reduced several TGF-β1-driven responses, including activity of a Smad3 reporter gene and production of fibronectin. Because TGF-β1 also drives fibroblast gel contraction, this suggests the mechanism for MMP-9 regulation of contraction is through the generation of active TGF-β1. This study provides direct evidence that endogenously produced MMP-9 has a role in regulation of tissue contraction of 3D collagen gels mediated by fibroblasts.

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Robert M. Senior

Washington University in St. Louis

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David S. Gierada

Washington University in St. Louis

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Barbara A. Lutey

Washington University in St. Louis

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Holly M. Toennies

Washington University in St. Louis

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Diane G. Kelley

Washington University in St. Louis

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Susan H. Conradi

Washington University in St. Louis

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Tracy L. Adair-Kirk

Washington University in St. Louis

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Michael J. Holtzman

Washington University in St. Louis

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Thomas W. Ferkol

Washington University in St. Louis

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