Nome |
# |
Bradykinin in asthma: Modulation of airway inflammation and remodelling, file e27ce42e-b9fc-2581-e053-d805fe0acbaa
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840
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Bradykinin- and lipopolysaccharide-induced bradykinin B(2) receptor expression, interleukin 8 release and "nitrosative stress" in bronchial epithelial cells BEAS-2B: Role for neutrophils., file e27ce426-e99a-2581-e053-d805fe0acbaa
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440
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Exhaled nitric oxide as a biomarker in COPD and related comorbidities., file e27ce426-f0c7-2581-e053-d805fe0acbaa
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248
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Nasal nitric oxide is a marker of poor asthma control., file e27ce42a-233f-2581-e053-d805fe0acbaa
|
245
|
Revisiting the role of exhaled nitric oxide in asthma., file e27ce426-f0c6-2581-e053-d805fe0acbaa
|
233
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Fibrosis markers and CRIM1 increase in chronic heart failure of increasing severity., file e27ce426-f0c5-2581-e053-d805fe0acbaa
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197
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Exhaled nitric oxide is related to bronchial eosinophilia and airway hyperresponsiveness to bradykinin in allergen-induced asthma exacerbation., file e27ce426-d2ec-2581-e053-d805fe0acbaa
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196
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Anti-Inflammatory effects of Lactobacillus Rahmnosus and Bifidobacterium Breve on cigarette smoke activated human macrophages., file e27ce428-2417-2581-e053-d805fe0acbaa
|
196
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Th17 immunity in children with allergic asthma and rhinitis: a pharmacological approach., file e27ce426-e10e-2581-e053-d805fe0acbaa
|
153
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Convergent sets of data from in vivo and in vitro methods point to an active role of Hsp60 in chronic obstructive pulmonary disease pathogenesis., file e27ce426-d565-2581-e053-d805fe0acbaa
|
145
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Effect of iron supplementation in women with chronic cough and iron deficiency., file e27ce42a-5eba-2581-e053-d805fe0acbaa
|
130
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Asthma phenotypes and endotypes, file e27ce434-cd55-2581-e053-d805fe0acbaa
|
121
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The role of dupilumab in severe asthma, file e27ce433-04e1-2581-e053-d805fe0acbaa
|
99
|
Caratteristiche patologiche dell’asma - Parte II
Pathology of asthma-Part II, file e27ce435-0635-2581-e053-d805fe0acbaa
|
99
|
Characteristics and treatment regimens across ERS SHARP severe asthma registries, file e27ce430-8234-2581-e053-d805fe0acbaa
|
92
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The impact of aging on outpatients with asthma in a real-world setting, file e27ce42e-730c-2581-e053-d805fe0acbaa
|
91
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TGF-β Signaling Pathways in Different Compartments of the Lower Airways of Patients With Stable COPD, file e27ce42c-a69c-2581-e053-d805fe0acbaa
|
81
|
A microRNA-21-mediated SATB1/S100A9/NF-κB axis promotes chronic obstructive pulmonary disease pathogenesis, file e27ce434-d773-2581-e053-d805fe0acbaa
|
74
|
Economic impact of mepolizumab in uncontrolled severe eosinophilic asthma, in real life, file e27ce431-0c98-2581-e053-d805fe0acbaa
|
60
|
COVID-19 in Severe Asthma Network in Italy (SANI) patients: Clinical features, impact of comorbidities and treatments, file e27ce431-24a9-2581-e053-d805fe0acbaa
|
55
|
Nasal IL-17F is related to bronchial IL-17F/neutrophilia and exacerbations in stable atopic severe asthma., file e27ce42a-3929-2581-e053-d805fe0acbaa
|
52
|
Caratteristiche patologiche dell’asma - Parte I
Pathology of asthma - Part I, file e27ce434-f796-2581-e053-d805fe0acbaa
|
47
|
Evaluation of Innate Immune Mediators Related to Respiratory Viruses in the Lung of Stable COPD Patients, file e27ce432-4b71-2581-e053-d805fe0acbaa
|
45
|
Pharmacologic modulation of the bradykinin-induced differentiation of human lung fibroblasts: effects of budesonide and formoterol., file e27ce426-e86c-2581-e053-d805fe0acbaa
|
44
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Exaggerated IL-17A activity in human in vivo recall responses discriminates active tuberculosis from latent infection and cured disease, file e27ce433-3a9b-2581-e053-d805fe0acbaa
|
44
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Clinical Characterization of the Frequent Exacerbator Phenotype in Asthma, file e27ce432-3884-2581-e053-d805fe0acbaa
|
39
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The "serial switcher" in severe asthma, file eabec08b-aea3-4147-9df8-d212c02fc0fd
|
37
|
Upregulation of Notch Signaling and Cell-Differentiation Inhibitory Transcription Factors in Stable Chronic Obstructive Pulmonary Disease Patients, file 0b726d3e-d540-41b8-a24a-63718159f069
|
36
|
Reply to: Kow CS et al. Are severe asthma patients at higher risk of developing severe outcomes from COVID-19?, file e27ce433-10ee-2581-e053-d805fe0acbaa
|
36
|
Utilizzo della misura di ossido nitrico nell’aria espirata: un update
Exhaled nitric oxide measurement: an update, file e27ce433-21fc-2581-e053-d805fe0acbaa
|
35
|
Elevated serum IgE, oral corticosteroid dependence and IL-17/22 expression in highly neutrophilic asthma, file e27ce433-caac-2581-e053-d805fe0acbaa
|
32
|
TNF-alpha, IL-4R-alpha and IL-4 polymorphisms in mild to severe asthma from Italian Caucasians., file e27ce426-e10f-2581-e053-d805fe0acbaa
|
31
|
Eosinophilic inflammation of chronic rhinosinusitis with nasal polyps is related to OX40 ligand expression., file e27ce431-81f9-2581-e053-d805fe0acbaa
|
30
|
Eosinophilic inflammation of chronic rhinosinusitis with nasal polyps is related to OX40 ligand expression., file e27ce426-f400-2581-e053-d805fe0acbaa
|
26
|
Frequent productive cough: Symptom burden and future exacerbation risk among patients with asthma and/or COPD in the NOVELTY study, file 5ec7d9d6-e975-4dff-80cb-f20f3accd298
|
24
|
Identification of IL-17F/frequent exacerbator endotype in asthma, file e27ce433-de9f-2581-e053-d805fe0acbaa
|
21
|
Critical evaluation of asthma biomarkers in clinical practice, file b67ffee4-2806-49ea-9fd8-cfcc0494c2e3
|
18
|
Expression/activation of PAR-1 in airway epithelial cells of COPD patients: Ex vivo/in vitro study, file e27ce434-dcee-2581-e053-d805fe0acbaa
|
16
|
TGF-β Signaling Pathways in Different Compartments of the Lower Airways of Patients With Stable COPD, file e27ce432-53bc-2581-e053-d805fe0acbaa
|
15
|
Characterization of t2-low and t2-high asthma phenotypes in real-life, file e27ce435-14fb-2581-e053-d805fe0acbaa
|
15
|
Which therapy for non-type(T)2/T2-low asthma, file e27ce434-c9bf-2581-e053-d805fe0acbaa
|
14
|
Severe asthma: One disease and multiple definitions, file e27ce434-d17f-2581-e053-d805fe0acbaa
|
14
|
Bronchial inflammation and bacterial load in stable COPD is associated with TLR4 overexpression, file e27ce434-05d4-2581-e053-d805fe0acbaa
|
12
|
The burden of mild asthma: Clinical burden and healthcare resource utilisation in the NOVELTY study, file c94010f3-4baf-461b-887d-85927a515547
|
11
|
Decreased humoral immune response in the bronchi of rapid decliners with chronic obstructive pulmonary disease, file d752c432-9626-4786-8d6c-173a6499abcb
|
10
|
MicroRNAs as biomarkers in corticosteroid-resistant/neutrophilic asthma: Still a long way to go!, file e27ce434-f023-2581-e053-d805fe0acbaa
|
10
|
Effect of iron supplementation in women with chronic cough and iron deficiency., file e27ce427-aba6-2581-e053-d805fe0acbaa
|
6
|
Long-Term Safety of Antifibrotic Drugs in IPF: A Real-World Experience, file 73a2bd44-22f0-46ea-9e1e-609ae832897e
|
5
|
Chronic Airways Assessment Test: psychometric properties in patients with asthma and/or COPD, file 0ed7ad6e-9add-4d92-b8a1-418d515d5b14
|
4
|
Treatable traits in the NOVELTY study, file 41f655f2-62e8-4ad9-916a-d073f43817f6
|
4
|
ERS International Congress 2022: highlights from the Airway Diseases Assembly, file 68735af1-0d5b-4ffd-bf16-461685978635
|
4
|
Identification of IL-17F/frequent exacerbator endotype in asthma, file e27ce432-4e06-2581-e053-d805fe0acbaa
|
4
|
Phenotype overlap in the natural history of asthma, file 8eba76e4-a1dc-4a52-87a6-b246e5d6dad0
|
3
|
Expression of vascular remodelling markers in relation to bradykinin receptors in asthma and COPD, file e27ce426-e679-2581-e053-d805fe0acbaa
|
3
|
Th17 polarization and upper airways: new insights., file e27ce428-2460-2581-e053-d805fe0acbaa
|
3
|
Reliability of Total Serum IgE Levels to Define Type 2 High and Low Asthma Phenotypes, file 07fb6d96-693b-492e-9c75-39f0bbab8832
|
2
|
Cluster Analyses From the Real-World NOVELTY Study: Six Clusters Across the Asthma-COPD Spectrum, file 5b6a8692-6dc4-46cb-8ef7-8ad6d3a2ddd9
|
2
|
Glucocorticoid Receptor Polymorphism A3669G Is Associated with Airflow Obstruction in Mild-to-Severe Asthma, file 5c5f4277-8bc8-4d4d-961e-fec702899adc
|
2
|
Burden of Uncontrolled Severe Asthma With and Without Elevated Type-2 Inflammatory Biomarkers, file a18912ec-19d1-4a8a-bce1-579926032e26
|
2
|
Nasal IL-17F is related to bronchial IL-17F/neutrophilia and exacerbations in stable atopic severe asthma., file e27ce428-22d5-2581-e053-d805fe0acbaa
|
2
|
Muscarinic receptor M3 contributes to vascular and neural growth factor up-regulation in severe asthma, file e27ce42f-35be-2581-e053-d805fe0acbaa
|
2
|
Asthma inflammatory phenotypes show differential microRNA expression in sputum, file e27ce432-57b6-2581-e053-d805fe0acbaa
|
2
|
Pathogenesis of COPD at the cellular and molecular level, file e27ce434-c19f-2581-e053-d805fe0acbaa
|
2
|
Patients with asthma consulting an allergist differ from those consulting a pulmonologist, file 159b2511-9f7d-48af-892f-07ec2cf79ab8
|
1
|
The Practical Role of FEF25-75 in Young Patients with Allergic Rhinitis, file 23e4a31b-f3b3-4996-9026-f2253e464892
|
1
|
ERS International Congress 2022: highlights from the Airway Diseases Assembly, file 2c286a3e-2689-4f5b-a8e0-baf5dc15ce90
|
1
|
Bone Morphogenic Proteins and Their Antagonists in the Lower Airways of Stable COPD Patients, file 5f7eb344-5756-4a73-9240-554aa57ac4b8
|
1
|
Impaired autophagy in the lower airways and lung parenchyma in stable COPD, file 71d2fd54-77d7-46e7-be0d-44ad87e708af
|
1
|
Economic impact of a more extensive use of FENO testing on the Italian population with asthma, file 9ad7fda7-9657-4cfc-b3f5-9b1c871831e8
|
1
|
Symptom Burden, Health Status, and Productivity in Patients with Uncontrolled and Controlled Severe Asthma in NOVELTY, file d25ea17e-0ba1-44f6-a96d-96373d15835e
|
1
|
Review of exhaled nitric oxide in chronic obstructive pulmonary disease., file e27ce426-cfaa-2581-e053-d805fe0acbaa
|
1
|
Bradykinin- and lipopolysaccharide-induced bradykinin B(2) receptor expression, interleukin 8 release and "nitrosative stress" in bronchial epithelial cells BEAS-2B: Role for neutrophils., file e27ce426-e999-2581-e053-d805fe0acbaa
|
1
|
Effect of Ambroxol and Beclomethasone on Lipopolysaccharide-Induced Nitrosative Stress in Bronchial Epithelial Cells., file e27ce428-1d57-2581-e053-d805fe0acbaa
|
1
|
Bronchial inflammation and bacterial load in stable COPD is associated with TLR4 overexpression, file e27ce432-4bc5-2581-e053-d805fe0acbaa
|
1
|
The impact of anxiety and depression on outpatients with asthma., file e27ce432-57b7-2581-e053-d805fe0acbaa
|
1
|
Bradykinin B2 receptor expression in the bronchial mucosa of allergic asthmatics: the role of NF-kB, file e27ce432-5f98-2581-e053-d805fe0acbaa
|
1
|
Totale |
4.574 |