Association of haemolysis markers, blood viscosity and microcirculation function with organ damage in sickle cell disease in sub-Saharan Africa (the BIOCADRE study).


Journal

British journal of haematology
ISSN: 1365-2141
Titre abrégé: Br J Haematol
Pays: England
ID NLM: 0372544

Informations de publication

Date de publication:
10 2023
Historique:
revised: 27 06 2023
received: 22 04 2023
accepted: 18 07 2023
medline: 5 10 2023
pubmed: 16 8 2023
entrez: 16 8 2023
Statut: ppublish

Résumé

Sickle cell anaemia (SCA) is a monogenic disease with a highly variable clinical course. We aimed to investigate associations between microvascular function, haemolysis markers, blood viscosity and various types of SCA-related organ damage in a multicentric sub-Saharan African cohort of patients with SCA. In a cross-sectional study, we selected seven groups of adult patients with SS phenotype in Dakar and Bamako based on the following complications: leg ulcer, priapism, osteonecrosis, retinopathy, high tricuspid regurgitant jet velocity (TRV), macro-albuminuria or none. Clinical assessment, echocardiography, peripheral arterial tonometry, laboratory tests and blood viscosity measurement were performed. We explored statistical associations between the biological parameters and the six studied complications. Among 235 patients, 58 had high TRV, 46 osteonecrosis, 43 priapism, 33 leg ulcers, 31 retinopathy and 22 macroalbuminuria, whereas 36 had none of these complications. Multiple correspondence analysis revealed no cluster of complications. Lactate dehydrogenase levels were associated with high TRV, and blood viscosity was associated with retinopathy and the absence of macroalbuminuria. Despite extensive phenotyping of patients, no specific pattern of SCA-related complications was identified. New biomarkers are needed to predict SCA clinical expression to adapt patient management, especially in Africa, where healthcare resources are scarce.

Identifiants

pubmed: 37583261
doi: 10.1111/bjh.19006
doi:

Banques de données

ClinicalTrials.gov
['NCT03114137']

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

319-326

Informations de copyright

© 2023 The Authors. British Journal of Haematology published by British Society for Haematology and John Wiley & Sons Ltd.

Références

Ingram VM. A specific chemical difference between the globins of normal human and sickle-cell anaemia haemoglobin. Nature. 1956;178(4537):792-794.
Kaul DK, Finnegan E, Barabino GA. Sickle red cell-endothelium interactions. Microcirculation. 2009;16(1):97-111.
Allali S, Maciel TT, Hermine O, de Montalembert M. Innate immune cells, major protagonists of sickle cell disease pathophysiology. Haematologica. 2020;105(2):273-283.
Nader E, Conran N, Romana M, Connes P. Vasculopathy in sickle cell disease: from red blood cell sickling to vascular dysfunction. Compr Physiol. 2011;11:1785-1803.
Kato GJ, Gladwin MT, Steinberg MH. Deconstructing sickle cell disease: reappraisal of the role of hemolysis in the development of clinical subphenotypes. Blood Rev. 2007;21(1):37-47.
Piel FB, Patil AP, Howes RE, Nyangiri OA, Gething PW, Dewi M, et al. Global epidemiology of sickle haemoglobin in neonates: a contemporary geostatistical model-based map and population estimates. Lancet. 2013;381(9861):142-151.
Grosse SD, Odame I, Atrash HK, Amendah DD, Piel FB, Williams TN. Sickle cell disease in Africa: a neglected cause of early childhood mortality. Am J Prev Med. 2011;41(6 Suppl 4):S398-S405.
Ranque B, Kitenge R, Ndiaye DD, Ba MD, Adjoumani L, Traore H, et al. Estimating the risk of child mortality attributable to sickle cell anaemia in sub-Saharan Africa: a retrospective, multicentre, case-control study. Lancet Haematol. 2022;9(3):e208-e216.
Mekontso Dessap A, Contou D, Dandine-Roulland C, Hemery F, Habibi A, Charles-Nelson A, et al. Environmental influences on daily emergency admissions in sickle-cell disease patients. Medicine (Baltimore). 2014;93(29):e280.
Nagel RL, Fabry ME, Pagnier J, Zohoun I, Wajcman H, Baudin V, et al. Hematologically and genetically distinct forms of sickle cell anemia in Africa: the Senegal type and the Benin type. N Engl J Med. 1985;312(14):880-884.
Lettre G, Sankaran VG, Bezerra MAC, Araújo AS, Uda M, Sanna S, et al. DNA polymorphisms at the BCL11A, HBS1L-MYB, and -globin loci associate with fetal hemoglobin levels and pain crises in sickle cell disease. Proc Natl Acad Sci U S A. 2008;105(33):11869-11874.
Bae HT, Baldwin CT, Sebastiani P, Telen MJ, Ashley-Koch A, Garrett M, et al. Meta-analysis of 2040 sickle cell anemia patients: BCL11A and HBS1L-MYB are the major modifiers of HbF in African Americans. Blood. 2012;120(9):1961-1962.
Habara A, Steinberg MH. Minireview: genetic basis of heterogeneity and severity in sickle cell disease. Exp Biol Med. 2016;241(7):689-696.
Ranque B, Menet A, Boutouyrie P, Diop IB, Kingue S, Diarra M, et al. Arterial stiffness impairment in sickle cell disease associated with chronic vascular complications: the multinational African CADRE study. Circulation. 2016;134(13):923-933.
Ranque B, Menet A, Diop IB, Thiam MM, Diallo D, Diop S, et al. Early renal damage in patients with sickle cell disease in sub-Saharan Africa: a multinational, prospective, cross-sectional study. Lancet Haematol. 2014;1(2):e64-e73.
Arlet J-B, Ribeil J-A, Chatellier G, Eladari D, de Seigneux S, Souberbielle JC, et al. Determination of the best method to estimate glomerular filtration rate from serum creatinine in adult patients with sickle cell disease: a prospective observational cohort study. BMC Nephrol. 2012;13:83.
Dubert M, Elion J, Tolo A, Diallo DA, Diop S, Diagne I, et al. Degree of anemia, indirect markers of hemolysis, and vascular complications of sickle cell disease in Africa. Blood. 2017;130(20):2215-2223.
Parent F, Bachir D, Inamo J, Lionnet F, Driss F, Loko G, et al. A hemodynamic study of pulmonary hypertension in sickle cell disease. N Engl J Med. 2011;365(1):44-53.
Kato GJ, McGowan V, Machado RF, Little JA, Taylor J VI, Morris CR, et al. Lactate dehydrogenase as a biomarker of hemolysis-associated nitric oxide resistance, priapism, leg ulceration, pulmonary hypertension, and death in patients with sickle cell disease. Blood. 2006;107(6):2279-2285.
Aliyu ZY, Gordeuk V, Sachdev V, Babadoko A, Mamman AI, Akpanpe P, et al. Prevalence and risk factors for pulmonary artery systolic hypertension among sickle cell disease patients in Nigeria. Am J Hematol. 2008;83(6):485-490.
Lumbala PK, Mbayabo G, Ngole MN, Lumaka A, Race V, Matthijs G, et al. Clinical and laboratory characterization of adult sickle cell anemia patients in Kinshasa. PLoS One. 2022;17(12):e0278478.
Belhassen L, Pelle G, Sediame S, Bachir D, Carville C, Bucherer C, et al. Endothelial dysfunction in patients with sickle cell disease is related to selective impairment of shear stress-mediated vasodilation. Blood. 2001;97(6):1584-1589.
Gladwin MT, Schechter AN, Ognibene FP, Coles WA, Reiter CD, Schenke WH, et al. Divergent nitric oxide bioavailability in men and women with sickle cell disease. Circulation. 2003;107(2):271-278.
Schnabel RB, Wild PS, Schulz A, Zeller T, Sinning CR, Wilde S, et al. Multiple endothelial biomarkers and noninvasive vascular function in the general population: the Gutenberg health study. Hypertension. 2012;60(2):288-295.
Rubinshtein R, Kuvin JT, Soffler M, Lennon RJ, Lavi S, Nelson RE, et al. Assessment of endothelial function by non-invasive peripheral arterial tonometry predicts late cardiovascular adverse events. Eur Heart J. 2010;31(9):1142-1148.
Sivamurthy KM, Dampier C, MacDermott M, Maureen M, Cahill M, Hsu LL. Peripheral arterial tonometry in assessing endothelial dysfunction in pediatric sickle cell disease. Pediatr Hematol Oncol. 2009;26(8):589-596.
Mohan JS, Lip GYH, Blann AD, Bareford D, Marshall JM. Endothelium-dependent and endothelium-independent vasodilatation of the cutaneous circulation in sickle cell disease: skin microvascular dilatation in sickle cell disease. Eur J Clin Invest. 2011;41(5):546-551.
Dembélé AK, Lapoumeroulie C, Diaw M, Tessougue O, Offredo L, Diallo DA, et al. Cell-derived microparticles and sickle cell disease chronic vasculopathy in sub-Saharan Africa: a multinational study. Br J Haematol. 2021;192(3):634-642.
Lemonne N, Lamarre Y, Romana M, Mukisi-Mukaza M, Hardy-Dessources MD, Tarer V, et al. Does increased red blood cell deformability raise the risk for osteonecrosis in sickle cell anemia? Blood. 2013;121(15):3054-3056.
Serjeant BE, Mason KP, Acheson RW, Maude GH, Stuart J, Serjeant GR. Blood rheology and proliferative retinopathy in homozygous sickle cell disease. Br J Ophthalmol. 1986;70(7):522-525.
Lemaire C, Lamarre Y, Lemonne N, Waltz X, Chahed S, Cabot F, et al. Severe proliferative retinopathy is associated with blood hyperviscosity in sickle cell hemoglobin-C disease but not in sickle cell anemia. Clin Hemorheol Microcirc. 2013;55(2):205-212.
Lamarre Y, Romana M, Lemonne N, Hardy-Dessources MD, Tarer V, Mougenel D, et al. Alpha thalassemia protects sickle cell anemia patients from macro-albuminuria through its effects on red blood cell rheological properties. Clin Hemorheol Microcirc. 2014;57(1):63-72.
Steinberg MH. Fetal hemoglobin in sickle cell anemia. Blood. 2020;136(21):2392-2400.
Klings ES, Steinberg MH. Acute chest syndrome of sickle cell disease: genetics, risk factors, prognosis, and management. Expert Rev Hematol. 2022;15(2):117-125.
Minniti CP, Eckman J, Sebastiani P, Steinberg MH, Ballas SK. Leg ulcers in sickle cell disease. Am J Hematol. 2010;85(10):831-833.

Auteurs

Brigitte Ranque (B)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.
Service de Médecine Interne, Hôpital Européen Georges Pompidou, Assistance Publique des Hôpitaux de Paris, Paris, France.
LABEX GREX, Université Paris Cité, Paris, France.

Mor Diaw (M)

Laboratoire de Physiologie et Explorations Fonctionnelles, Faculté de Médecine, Pharmacie et Odontologie Université Cheikh Anta Diop de Dakar, Dakar, Senegal.
Unité Mixte Internationale (UMI 3189), "Environnement, Santé, Sociétés" CNRS, UCAD, CNRST, USTTB, UGB, Dakar, Senegal.

Abdoul Karim Dembele (AK)

Université Paris Cité and Université des Antilles, Inserm, BIGR, Paris, France.

Claudine Lapoumeroulie (C)

Université Paris Cité and Université des Antilles, Inserm, BIGR, Paris, France.

Lucile Offredo (L)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.

Oumar Tessougue (O)

Centre de Recherche et de Lutte Contre la Drépanocytose (CRLD), Bamako, Mali.

Serigne Mourtalla Gueye (SM)

Centre National de Transfusion Sanguine (CNTS), Dakar, Senegal.

Dapa Diallo (D)

Centre de Recherche et de Lutte Contre la Drépanocytose (CRLD), Bamako, Mali.

Saliou Diop (S)

Centre National de Transfusion Sanguine (CNTS), Dakar, Senegal.

Yves Colin-Aronovicz (Y)

LABEX GREX, Université Paris Cité, Paris, France.
Université Paris Cité and Université des Antilles, Inserm, BIGR, Paris, France.

Xavier Jouven (X)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.
LABEX GREX, Université Paris Cité, Paris, France.

Olivier Blanc-Brude (O)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.
LABEX GREX, Université Paris Cité, Paris, France.

Pierre-Louis Tharaux (PL)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.
LABEX GREX, Université Paris Cité, Paris, France.

Sylvain Le Jeune (S)

Université Paris Cité, Inserm, UMR S970, PARCC, Paris, France.
Service de Médecine Interne, Hôpital Avicenne, Bobigny, Assistance-Publique Hôpitaux de Paris, Paris, France.

Philippe Connes (P)

LABEX GREX, Université Paris Cité, Paris, France.
Université Lyon 1, Laboratoire LIBM EA7424, Equipe «Biologie Vasculaire et du Globule Rouge», COMUE, Lyon, France.

Marc Romana (M)

LABEX GREX, Université Paris Cité, Paris, France.
Université Paris Cité and Université des Antilles, Inserm, BIGR, Paris, France.

Caroline Le Van Kim (C)

LABEX GREX, Université Paris Cité, Paris, France.
Université Paris Cité and Université des Antilles, Inserm, BIGR, Paris, France.

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