Chen Q, Hazra R, Crosby D, Lenhart D, Lenhart S, Mondal P
Blood. 2024; 144(5):552-564.
PMID: 38820589
PMC: 11307268.
DOI: 10.1182/blood.2023023528.
Bejoy J, Farry J, Qian E, Dearing C, Ware L, Bastarache J
Dis Model Mech. 2023; 16(12).
PMID: 37942584
PMC: 10695115.
DOI: 10.1242/dmm.050342.
Lewis C, Sellak H, Sawan M, Joseph G, Darby T, VanInsberghe D
FASEB Bioadv. 2023; 5(5):199-210.
PMID: 37151850
PMC: 10158626.
DOI: 10.1096/fba.2022-00121.
Gbotosho O, Li W, Joiner C, Brown L, Hyacinth H
Exp Biol Med (Maywood). 2023; 248(12):1013-1023.
PMID: 37012678
PMC: 10581160.
DOI: 10.1177/15353702231157940.
Wulftange W, Kucukal E, Man Y, An R, Monchamp K, Sevrain C
Br J Haematol. 2022; 198(5):893-902.
PMID: 35822297
PMC: 9542057.
DOI: 10.1111/bjh.18328.
Circulating Small Extracellular Vesicles May Contribute to Vaso-Occlusive Crises in Sickle Cell Disease.
Gemel J, Zhang J, Mao Y, Lapping-Carr G, Beyer E
J Clin Med. 2022; 11(3).
PMID: 35160266
PMC: 8836895.
DOI: 10.3390/jcm11030816.
Imaging Blood-Brain Barrier Permeability Through MRI in Pediatric Sickle Cell Disease: A Feasibility Study.
Lin Z, Lance E, McIntyre T, Li Y, Liu P, Lim C
J Magn Reson Imaging. 2021; 55(5):1551-1558.
PMID: 34676938
PMC: 9018466.
DOI: 10.1002/jmri.27965.
Toxic effects of cell-free hemoglobin on the microvascular endothelium: implications for pulmonary and nonpulmonary organ dysfunction.
Meegan J, Bastarache J, Ware L
Am J Physiol Lung Cell Mol Physiol. 2021; 321(2):L429-L439.
PMID: 34009034
PMC: 8526348.
DOI: 10.1152/ajplung.00018.2021.
Cell-free hemoglobin-mediated human lung microvascular endothelial barrier dysfunction is not mediated by cell death.
Tomasek T, Ware L, Bastarache J, Meegan J
Biochem Biophys Res Commun. 2021; 556:199-206.
PMID: 33848934
PMC: 8483287.
DOI: 10.1016/j.bbrc.2021.03.161.
Endothelial Barrier Integrity Is Disrupted by Heme and by Serum From Sickle Cell Disease Patients.
Santaterra V, Fiusa M, Hounkpe B, Chenou F, Tonasse W, da Costa L
Front Immunol. 2020; 11:535147.
PMID: 33381108
PMC: 7767881.
DOI: 10.3389/fimmu.2020.535147.
High molecular weight kininogen contributes to early mortality and kidney dysfunction in a mouse model of sickle cell disease.
Sparkenbaugh E, Kasztan M, Henderson M, Ellsworth P, Davis P, Wilson K
J Thromb Haemost. 2020; 18(9):2329-2340.
PMID: 32573897
PMC: 8043232.
DOI: 10.1111/jth.14972.
White Matter Brain Development after Exposure to Circulating Cell-Free Hemoglobin and Hyperoxia in a Rat Pup Model.
Jungner A, Kvist S, Romantsik O, Bruschettini M, Ekstrom C, Bendix I
Dev Neurosci. 2020; 41(3-4):234-246.
PMID: 31991415
PMC: 7212701.
DOI: 10.1159/000505206.
Microvasculature-on-a-chip for the long-term study of endothelial barrier dysfunction and microvascular obstruction in disease.
Qiu Y, Ahn B, Sakurai Y, Hansen C, Tran R, Mimche P
Nat Biomed Eng. 2018; 2:453-463.
PMID: 30533277
PMC: 6286070.
DOI: 10.1038/s41551-018-0224-z.
Impaired pulmonary endothelial barrier function in sickle cell mice.
Umapathy N, Gonzales J, Makala L, Xu H, Biddinger P, Pace B
Haematologica. 2016; 102(1):e26-e29.
PMID: 27686374
PMC: 5210255.
DOI: 10.3324/haematol.2016.153098.
Peroxisome Proliferator-Activated Receptor γ Regulates the V-Ets Avian Erythroblastosis Virus E26 Oncogene Homolog 1/microRNA-27a Axis to Reduce Endothelin-1 and Endothelial Dysfunction in the Sickle Cell Mouse Lung.
Kang B, Park K, Kleinhenz J, Murphy T, Sutliff R, Archer D
Am J Respir Cell Mol Biol. 2016; 56(1):131-144.
PMID: 27612006
PMC: 5248964.
DOI: 10.1165/rcmb.2016-0166OC.
Nonhematopoietic Nrf2 dominantly impedes adult progression of sickle cell anemia in mice.
Ghosh S, Ihunnah C, Hazra R, Walker A, Hansen J, Archer D
JCI Insight. 2016; 1(4).
PMID: 27158670
PMC: 4857015.
DOI: 10.1172/jci.insight.81090.
Thrombin-independent contribution of tissue factor to inflammation and cardiac hypertrophy in a mouse model of sickle cell disease.
Sparkenbaugh E, Chantrathammachart P, Chandarajoti K, Mackman N, Key N, Pawlinski R
Blood. 2016; 127(10):1371-3.
PMID: 26817955
PMC: 4786843.
DOI: 10.1182/blood-2015-11-681114.
Hydroxyurea with AKT2 inhibition decreases vaso-occlusive events in sickle cell disease mice.
Barazia A, Li J, Kim K, Shabrani N, Cho J
Blood. 2015; 126(22):2511-7.
PMID: 26265698
PMC: 4661173.
DOI: 10.1182/blood-2015-02-626234.
Body composition and grip strength are improved in transgenic sickle mice fed a high-protein diet.
Capers P, Hyacinth H, Cue S, Chappa P, Vikulina T, Roser-Page S
J Nutr Sci. 2015; 4:e6.
PMID: 26090102
PMC: 4463939.
DOI: 10.1017/jns.2014.63.
Microarchitectural and mechanical characterization of the sickle bone.
Green M, Akinsami I, Lin A, Banton S, Ghosh S, Chen B
J Mech Behav Biomed Mater. 2015; 48:220-228.
PMID: 25957113
PMC: 4442736.
DOI: 10.1016/j.jmbbm.2015.04.019.