Robert M Strieter
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Explore the profile of Robert M Strieter including associated specialties, affiliations and a list of published articles.
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171
Citations
9208
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Recent Articles
1.
Campbell C, Burdick M, Strieter R
Ann Plast Surg
. 2021 Jul;
87(2):150-155.
PMID: 34253698
Background: Fibrocytes are bone marrow mesenchymal precursors with a surface phenotype compatible with leukocytes, fibroblasts, and hematopoietic progenitors that have been shown to traffic to wound healing sites in response...
2.
Southworth T, Pattwell C, Khan N, Mowbray S, Strieter R, Erpenbeck V, et al.
Cytokine
. 2019 Sep;
125:154857.
PMID: 31557636
Rhinovirus (RV) infections are a major cause of exacerbations in patients with asthma. Experimental RV challenges can provide insight into the pathophysiology of viral exacerbations. Previous reports, investigating mild or...
3.
Mehrad B, Burdick M, Wandersee N, Shahir K, Zhang L, Simpson P, et al.
Blood Adv
. 2018 Jan;
1(24):2217-2224.
PMID: 29296869
Lung injury and fibrosis are common in patients with sickle cell disease (SCD). Fibrocytes, a population of circulating, bone marrow-derived cells, have been linked to development and progression of tissue...
4.
Keeley E, Schutt R, Marinescu M, Burdick M, Strieter R, Mehrad B
Transl Res
. 2016 Mar;
172:73-83.e1.
PMID: 27012475
Half of the patients who present with unstable angina (UA) develop recurrent symptoms over the subsequent year. Identification of patients destined to develop such adverse events would be clinically valuable,...
5.
Shipe R, Burdick M, Strieter B, Liu L, Shim Y, Sung S, et al.
J Allergy Clin Immunol
. 2015 Sep;
137(3):750-7.e3.
PMID: 26371837
Background: A biomarker that predicts poor asthma control would be clinically useful. Fibrocytes are bone marrow-derived circulating progenitor cells that have been implicated in tissue fibrosis and T(H)2 responses in...
6.
Zhu L, Davoodi M, Srivastava M, Kachroo P, Lee J, St John M, et al.
Oncoimmunology
. 2015 Jul;
4(4):e992237.
PMID: 26137407
An immune tolerant tumor microenvironment promotes immune evasion of lung cancer. Agents that antagonize immune tolerance will thus aid the fight against this devastating disease. Members of the tumor necrosis...
7.
Karafin M, Dogra S, Rodeghier M, Burdick M, Mehrad B, Rose C, et al.
Pediatr Pulmonol
. 2015 Jul;
51(3):295-9.
PMID: 26130026
Background: Interstitial lung disease is common in patients with sickle cell anemia (SCA). Fibrocytes are circulating cells implicated in the pathogenesis of pulmonary fibrosis and airway remodeling in asthma. In...
8.
Holgate S, Agusti A, Strieter R, Anderson G, Fogel R, Bel E, et al.
Nat Rev Drug Discov
. 2015 May;
14(6):367-8.
PMID: 26000726
Advancing drug development for airway diseases beyond the established mechanisms and symptomatic therapies requires redefining the classifications of airway diseases, considering systemic manifestations, developing new tools and encouraging collaborations.
9.
Ilkow C, Marguerie M, Batenchuk C, Mayer J, Ben Neriah D, Cousineau S, et al.
Nat Med
. 2015 Apr;
21(5):530-6.
PMID: 25894825
Tumors are complex ecosystems composed of networks of interacting 'normal' and malignant cells. It is well recognized that cytokine-mediated cross-talk between normal stromal cells, including cancer-associated fibroblasts (CAFs), vascular endothelial...
10.
Hou Y, Wu Y, Farooq S, Guan X, Wang S, Liu Y, et al.
Stem Cell Res
. 2015 Jan;
14(2):133-43.
PMID: 25622052
Bone marrow-derived endothelial progenitor cells (EPCs) contribute to neovessel formation in response to growth factors, cytokines, and chemokines. Chemokine receptor CXCR2 and its cognate ligands are reported to mediate EPC...