Anti-erythrocyte antibodies may contribute to anaemia in Plasmodium vivax malaria by decreasing red blood cell deformability and increasing erythrophagocytosis
暂无分享,去创建一个
Ubirajara Agero | U. Agero | É. Braga | M. Bemquerer | P. Roma | C. Fontes | Cor Jesus Fernandes Fontes | Érika Martins Braga | L. Mourão | Jamila da Silva Sultane Aboobacar | C. M. P. Medeiros | Zélia Barbosa de Almeida | Oscar Nassif de Mesquita | Luiza Carvalho Mourão | Paula Magda da Silva Roma | Camila Maia Pantuzzo Medeiros | Marcelo Porto Bemquerer
[1] A. Zilman,et al. Cytoskeleton confinement and tension of red blood cell membranes. , 2003, Physical review letters.
[2] A. W. Woodruff,et al. CAUSE OF ANÆMIA IN MALARIA , 1979, The Lancet.
[3] Ana Rodriguez,et al. Anti-Self Phosphatidylserine Antibodies Recognize Uninfected Erythrocytes Promoting Malarial Anemia. , 2016, Cell host & microbe.
[4] J. Baird. Evidence and Implications of Mortality Associated with Acute Plasmodium vivax Malaria , 2013, Clinical Microbiology Reviews.
[5] R. Gazzinelli,et al. Defocusing microscopy , 2004, Microscopy research and technique.
[6] Baird Jk. Evidence and Implications of Mortality Associated with Acute Plasmodium vivax Malaria , 2013 .
[7] O. Erel,et al. Oxidative stress and antioxidative status of plasma and erythrocytes in patients with vivax malaria. , 1997, Clinical biochemistry.
[8] A. Misore,et al. Red cell surface changes and erythrophagocytosis in children with severe plasmodium falciparum anemia. , 2000, Blood.
[9] P. Phanuphak,et al. Autoantibodies in falciparum malaria: a sequential study in 183 Thai patients. , 1983, Clinical and experimental immunology.
[10] Dennis E Discher,et al. Macrophage engulfment of a cell or nanoparticle is regulated by unavoidable opsonization, a species-specific 'Marker of Self' CD47, and target physical properties. , 2015, Current opinion in immunology.
[11] Bruce Russell,et al. High deformability of Plasmodium vivax-infected red blood cells under microfluidic conditions. , 2009, The Journal of infectious diseases.
[12] O. N. Mesquita,et al. Defocusing microscopy: An approach for red blood cell optics , 2006 .
[13] A. Siqueira,et al. Severe Plasmodium vivax Malaria, Brazilian Amazon , 2010, Emerging infectious diseases.
[14] M. Tanner,et al. Perturbation of red blood cell membrane rigidity by extracellular ligands. , 1995, Blood.
[15] Nathaniel K. Afolabi,et al. Malaria Induces Anemia through CD8+ T Cell-Dependent Parasite Clearance and Erythrocyte Removal in the Spleen , 2015, mBio.
[16] S N Wickramasinghe,et al. Blood and bone marrow changes in malaria. , 2000, Bailliere's best practice & research. Clinical haematology.
[17] S. Yazar,et al. Oxidative Stress in Vivax Malaria , 2012, The Korean journal of parasitology.
[18] J. Roberts,et al. A retrospective examination of anemia during infection of humans with Plasmodium vivax. , 2003, The American journal of tropical medicine and hygiene.
[19] A. W. Woodruff,et al. Cause of anaemia in malaria. , 1979, Lancet.
[20] R. Gazzinelli,et al. Measuring optical and mechanical properties of a living cell with defocusing microscopy. , 2006, Biophysical journal.
[21] O. N. Mesquita,et al. Tomography of fluctuating biological interfaces using defocusing microscopy , 2009 .
[22] N. Day,et al. Circulating red cell-derived microparticles in human malaria. , 2011, The Journal of infectious diseases.
[23] Thorsten Auth,et al. Fluctuations of coupled fluid and solid membranes with application to red blood cells. , 2007, Physical review. E, Statistical, nonlinear, and soft matter physics.
[24] N. B. Viana,et al. Membrane Cholesterol Removal Changes Mechanical Properties of Cells and Induces Secretion of a Specific Pool of Lysosomes , 2013, PloS one.
[25] N. Mohandas,et al. Erythrocyte membrane rigidity induced by glycophorin A-ligand interaction. Evidence for a ligand-induced association between glycophorin A and skeletal proteins. , 1985, The Journal of clinical investigation.
[26] R. Price,et al. Multidrug-Resistant Plasmodium vivax Associated with Severe and Fatal Malaria: A Prospective Study in Papua, Indonesia , 2008, PLoS medicine.
[27] A. Zilman,et al. Cytoskeleton confinement of red blood cell membrane fluctuations , 2002, cond-mat/0207514.
[28] R. Price,et al. The anaemia of Plasmodium vivax malaria , 2012, Malaria Journal.
[29] S. Kitchen,et al. The Infection of Reticulocytes by Plasmodium Vivax 1 , 1938 .
[30] F. Brochard,et al. Frequency spectrum of the flicker phenomenon in erythrocytes , 1975 .
[31] D J Weatherall,et al. Reduced erythrocyte survival following clearance of malarial parasitaemia in Thai patients , 1987, British journal of haematology.
[32] B. Greenwood. Possible role of a B-cell mitogen in hypergammaglobulinaemia in malaria and trypanosomiasis. , 1974, Lancet.
[33] M. Wahlgren,et al. Studies on the specificity of anti-erythrocyte antibodies in the serum of patients with malaria. , 1983, Clinical and experimental immunology.
[34] J. Waitumbi,et al. B-cell activity in children with malaria , 2012, Malaria Journal.
[35] C. Daniel-Ribeiro,et al. Similar Cytokine Responses and Degrees of Anemia in Patients with Plasmodium falciparum and Plasmodium vivax Infections in the Brazilian Amazon Region , 2008, Clinical and Vaccine Immunology.
[36] G. Strickland,et al. IgM antibodies to red cells and autoimmune anemia in patients with malaria. , 1973, The American journal of tropical medicine and hygiene.
[37] W. Monteiro,et al. Potential Immune Mechanisms Associated with Anemia in Plasmodium vivax Malaria: a Puzzling Question , 2014, Infection and Immunity.
[38] É. Braga,et al. Low sensitivity of nested PCR using Plasmodium DNA extracted from stained thick blood smears: an epidemiological retrospective study among subjects with low parasitaemia in an endemic area of the Brazilian Amazon region , 2004, Malaria Journal.
[39] R. Lipowsky,et al. hyperactivating Myosin-II Cell rigidity and shape override CD47's 'Self' signaling in phagocytosis by , 2014 .
[40] E. Sackmann,et al. Measurement of erythrocyte membrane elasticity by flicker eigenmode decomposition. , 1995, Biophysical journal.
[41] Carlos Saavedra,et al. Real-time study of shape and thermal fluctuations in the echinocyte transformation of human erythrocytes using defocusing microscopy , 2012, Journal of biomedical optics.
[42] A. Teixeira-Carvalho,et al. Augmented plasma microparticles during acute Plasmodium vivax infection , 2010, Malaria Journal.
[43] O. N. Mesquita,et al. Total three-dimensional imaging of phase objects using defocusing microscopy: Application to red blood cells , 2014, 1404.2968.
[44] C. Daniel-Ribeiro,et al. Specificity of auto-antibodies in malaria and the role of polyclonal activation. , 1983, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[45] M. Toner,et al. Malaria-infected erythrocyte-derived microvesicles mediate cellular communication within the parasite population and with the host immune system. , 2013, Cell host & microbe.
[46] S. Fucharoen,et al. Impaired parasite growth and increased susceptibility to phagocytosis of Plasmodium falciparum infected alpha-thalassemia or hemoglobin Constant Spring red blood cells. , 1988, American Journal of Clinical Pathology.
[47] M. Alpers,et al. Plasmodium vivax and Mixed Infections Are Associated with Severe Malaria in Children: A Prospective Cohort Study from Papua New Guinea , 2008, PLoS medicine.
[48] C. Parish,et al. Polyclonal B-cell activation during rodent malarial infections. , 1978, Clinical and experimental immunology.
[49] R. Lipowsky,et al. Cell rigidity and shape override CD47's "self"-signaling in phagocytosis by hyperactivating myosin-II. , 2015, Blood.
[50] S. Looareesuwan,et al. Dyserythropoiesis and ineffective erythropoiesis in Plasmodium vivax malaria , 1989, British journal of haematology.
[51] L. Hviid,et al. Complement binding to erythrocytes is associated with macrophage activation and reduced haemoglobin in Plasmodium falciparum malaria. , 2001, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[52] B. Mordmüller,et al. Hemolysis Is Associated with Low Reticulocyte Production Index and Predicts Blood Transfusion in Severe Malarial Anemia , 2010, PloS one.
[53] M. Molyneux,et al. Pathophysiological Mechanisms of Severe Anaemia in Malawian Children , 2010, PloS one.