Literature DB >> 30332562

Pathophysiology of Sickle Cell Disease.

Prithu Sundd1,2,3, Mark T Gladwin1,2,3, Enrico M Novelli2,3,4.   

Abstract

Since the discovery of sickle cell disease (SCD) in 1910, enormous strides have been made in the elucidation of the pathogenesis of its protean complications, which has inspired recent advances in targeted molecular therapies. In SCD, a single amino acid substitution in the β-globin chain leads to polymerization of mutant hemoglobin S, impairing erythrocyte rheology and survival. Clinically, erythrocyte abnormalities in SCD manifest in hemolytic anemia and cycles of microvascular vaso-occlusion leading to end-organ ischemia-reperfusion injury and infarction. Vaso-occlusive events and intravascular hemolysis promote inflammation and redox instability that lead to progressive small- and large-vessel vasculopathy. Based on current evidence, the pathobiology of SCD is considered to be a vicious cycle of four major processes, all the subject of active study and novel therapeutic targeting: ( a) hemoglobin S polymerization, ( b) impaired biorheology and increased adhesion-mediated vaso-occlusion, ( c) hemolysis-mediated endothelial dysfunction, and ( d) concerted activation of sterile inflammation (Toll-like receptor 4- and inflammasome-dependent innate immune pathways). These molecular, cellular, and biophysical processes synergize to promote acute and chronic pain and end-organ injury and failure in SCD. This review provides an exhaustive overview of the current understanding of the molecular pathophysiology of SCD, how this pathophysiology contributes to complications of the central nervous and cardiopulmonary systems, and how this knowledge is being harnessed to develop current and potential therapies.

Entities:  

Keywords:  hemolysis; infarction; inflammation; oxidative stress; reperfusion injury; sickle cell anemia

Mesh:

Substances:

Year:  2018        PMID: 30332562      PMCID: PMC7053558          DOI: 10.1146/annurev-pathmechdis-012418-012838

Source DB:  PubMed          Journal:  Annu Rev Pathol        ISSN: 1553-4006            Impact factor:   23.472


  224 in total

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Journal:  J Clin Invest       Date:  2000-08       Impact factor: 14.808

Review 2.  Sickle cell biomechanics.

Authors:  Gilda A Barabino; Manu O Platt; Dhananjay K Kaul
Journal:  Annu Rev Biomed Eng       Date:  2010-08-15       Impact factor: 9.590

3.  A hemodynamic study of pulmonary hypertension in sickle cell disease.

Authors:  Florence Parent; Dora Bachir; Jocelyn Inamo; François Lionnet; Françoise Driss; Gylna Loko; Anoosha Habibi; Soumiya Bennani; Laurent Savale; Serge Adnot; Bernard Maitre; Azzedine Yaïci; Leila Hajji; Dermot S O'Callaghan; Pierre Clerson; Robert Girot; Frederic Galacteros; Gerald Simonneau
Journal:  N Engl J Med       Date:  2011-07-07       Impact factor: 91.245

4.  Silent cerebral infarcts and cerebral aneurysms are prevalent in adults with sickle cell anemia.

Authors:  Adetola A Kassim; Sumit Pruthi; Matthew Day; Mark Rodeghier; Melissa C Gindville; Max A Brodsky; Michael R DeBaun; Lori C Jordan
Journal:  Blood       Date:  2016-03-03       Impact factor: 22.113

5.  Causes and outcomes of the acute chest syndrome in sickle cell disease. National Acute Chest Syndrome Study Group.

Authors:  E P Vichinsky; L D Neumayr; A N Earles; R Williams; E T Lennette; D Dean; B Nickerson; E Orringer; V McKie; R Bellevue; C Daeschner; E A Manci
Journal:  N Engl J Med       Date:  2000-06-22       Impact factor: 91.245

Review 6.  Pathophysiology of stroke in sickle cell disease.

Authors:  Cheryl A Hillery; Julie A Panepinto
Journal:  Microcirculation       Date:  2004-03       Impact factor: 2.628

7.  Sickle red cells as danger signals on proinflammatory gene expression, leukotriene B4 and interleukin-1 beta production in peripheral blood mononuclear cell.

Authors:  Thassila N Pitanga; Ricardo R Oliveira; Dalila L Zanette; Caroline C Guarda; Rayra P Santiago; Sanzio S Santana; Valma M L Nascimento; Jonilson B Lima; Graziele Q Carvalho; Vitor V Maffili; Magda O S Carvalho; Luiz C J Alcântara; Valéria M Borges; Marilda S Goncalves
Journal:  Cytokine       Date:  2016-04-02       Impact factor: 3.861

8.  Heme triggers TLR4 signaling leading to endothelial cell activation and vaso-occlusion in murine sickle cell disease.

Authors:  John D Belcher; Chunsheng Chen; Julia Nguyen; Liming Milbauer; Fuad Abdulla; Abdu I Alayash; Ann Smith; Karl A Nath; Robert P Hebbel; Gregory M Vercellotti
Journal:  Blood       Date:  2013-11-25       Impact factor: 22.113

9.  Pulmonary hypertension as a risk factor for death in patients with sickle cell disease.

Authors:  Mark T Gladwin; Vandana Sachdev; Maria L Jison; Yukitaka Shizukuda; Jonathan F Plehn; Karin Minter; Bernice Brown; Wynona A Coles; James S Nichols; Inez Ernst; Lori A Hunter; William C Blackwelder; Alan N Schechter; Griffin P Rodgers; Oswaldo Castro; Frederick P Ognibene
Journal:  N Engl J Med       Date:  2004-02-26       Impact factor: 91.245

10.  Elevated pulse pressure is associated with hemolysis, proteinuria and chronic kidney disease in sickle cell disease.

Authors:  Enrico M Novelli; Mariana Hildesheim; Caterina Rosano; Rebecca Vanderpool; Marc Simon; Gregory J Kato; Mark T Gladwin
Journal:  PLoS One       Date:  2014-12-05       Impact factor: 3.240

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  87 in total

Review 1.  Gene therapy using haematopoietic stem and progenitor cells.

Authors:  Giuliana Ferrari; Adrian J Thrasher; Alessandro Aiuti
Journal:  Nat Rev Genet       Date:  2020-12-10       Impact factor: 53.242

Review 2.  Manipulation of Developmental Gamma-Globin Gene Expression: an Approach for Healing Hemoglobinopathies.

Authors:  Vigneshwaran Venkatesan; Saranya Srinivasan; Prathibha Babu; Saravanabhavan Thangavel
Journal:  Mol Cell Biol       Date:  2020-12-21       Impact factor: 4.272

3.  Patrolling monocytes scavenge endothelial-adherent sickle RBCs: a novel mechanism of inhibition of vaso-occlusion in SCD.

Authors:  Yunfeng Liu; Hui Zhong; Weili Bao; Avital Mendelson; Xiuli An; Patricia Shi; Stella T Chou; Deepa Manwani; Karina Yazdanbakhsh
Journal:  Blood       Date:  2019-05-10       Impact factor: 22.113

4.  The Gut Microbiome Regulates Psychological-Stress-Induced Inflammation.

Authors:  Chunliang Xu; Sung Kyun Lee; Dachuan Zhang; Paul S Frenette
Journal:  Immunity       Date:  2020-07-30       Impact factor: 31.745

Review 5.  A Comprehensive Review of the Treatment and Management of Pain in Sickle Cell Disease.

Authors:  Jacob Fiocchi; Ivan Urits; Vwaire Orhurhu; Mariam Salisu Orhurhu; Stephen Giacomazzi; Briggs Hoyt; Alan D Kaye; Rachel J Kaye; Omar Viswanath
Journal:  Curr Pain Headache Rep       Date:  2020-03-21

6.  Intravascular hemolysis triggers ADP-mediated generation of platelet-rich thrombi in precapillary pulmonary arterioles.

Authors:  Tomasz Brzoska; Ravi Vats; Margaret F Bennewitz; Egemen Tutuncuoglu; Simon C Watkins; Margaret V Ragni; Matthew D Neal; Mark T Gladwin; Prithu Sundd
Journal:  JCI Insight       Date:  2020-07-23

7.  Redox Signaling in Sickle Cell Disease.

Authors:  Deirdre Nolfi-Donegan; Tirthadipa Pradhan-Sundd; Kirkwood A Pritchard; Cheryl A Hillery
Journal:  Curr Opin Physiol       Date:  2019-05-02

8.  Tandem P-selectin glycoprotein ligand immunoglobulin prevents lung vaso-occlusion in sickle cell disease mice.

Authors:  Ravi Vats; Egemen Tutuncuoglu; Tirthadipa Pradhan-Sundd; Jesus Tejero; Gray D Shaw; Prithu Sundd
Journal:  Exp Hematol       Date:  2020-03-31       Impact factor: 3.084

Review 9.  Sickle cell disease: at the crossroads of pulmonary hypertension and diastolic heart failure.

Authors:  Katherine C Wood; Mark T Gladwin; Adam C Straub
Journal:  Heart       Date:  2019-12-10       Impact factor: 5.994

10.  Platelet Extracellular Vesicles Drive Inflammasome-IL-1β-Dependent Lung Injury in Sickle Cell Disease.

Authors:  Ravi Vats; Tomasz Brzoska; Margaret F Bennewitz; Maritza A Jimenez; Tirthadipa Pradhan-Sundd; Egemen Tutuncuoglu; Jude Jonassaint; Edgar Gutierrez; Simon C Watkins; Sruti Shiva; Melanie J Scott; Adrian E Morelli; Matthew D Neal; Gregory J Kato; Mark T Gladwin; Prithu Sundd
Journal:  Am J Respir Crit Care Med       Date:  2020-01-01       Impact factor: 21.405

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