Literature DB >> 22446185

Hemoglobin-driven pathophysiology is an in vivo consequence of the red blood cell storage lesion that can be attenuated in guinea pigs by haptoglobin therapy.

Jin Hyen Baek1, Felice D'Agnillo, Florence Vallelian, Claudia P Pereira, Matthew C Williams, Yiping Jia, Dominik J Schaer, Paul W Buehler.   

Abstract

Massive transfusion of blood can lead to clinical complications, including multiorgan dysfunction and even death. Such severe clinical outcomes have been associated with longer red blood cell (rbc) storage times. Collectively referred to as the rbc storage lesion, rbc storage results in multiple biochemical changes that impact intracellular processes as well as membrane and cytoskeletal properties, resulting in cellular injury in vitro. However, how the rbc storage lesion triggers pathophysiology in vivo remains poorly defined. In this study, we developed a guinea pig transfusion model with blood stored under standard blood banking conditions for 2 (new), 21 (intermediate), or 28 days (old blood). Transfusion with old but not new blood led to intravascular hemolysis, acute hypertension, vascular injury, and kidney dysfunction associated with pathophysiology driven by hemoglobin (Hb). These adverse effects were dramatically attenuated when the high-affinity Hb scavenger haptoglobin (Hp) was administered at the time of transfusion with old blood. Pathologies observed after transfusion with old blood, together with the favorable response to Hp supplementation, allowed us to define the in vivo consequences of the rbc storage lesion as storage-related posttransfusion hemolysis producing Hb-driven pathophysiology. Hb sequestration by Hp might therefore be a therapeutic modality for enhancing transfusion safety in severely ill or massively transfused patients.

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Year:  2012        PMID: 22446185      PMCID: PMC3314461          DOI: 10.1172/JCI59770

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  39 in total

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2.  Free hemoglobin concentrations in patients receiving massive blood transfusion during emergency surgery for trauma.

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Journal:  Transfusion       Date:  1969 Sep-Oct       Impact factor: 3.157

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Journal:  Vox Sang       Date:  1984       Impact factor: 2.144

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Journal:  J Lab Clin Med       Date:  1967-06

7.  Cell-free hemoglobin limits nitric oxide bioavailability in sickle-cell disease.

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Journal:  Nat Med       Date:  2002-11-11       Impact factor: 53.440

Review 8.  Review of hemoglobin-induced myocardial lesions.

Authors:  Kenneth Burhop; Donovan Gordon; Timothy Estep
Journal:  Artif Cells Blood Substit Immobil Biotechnol       Date:  2004

9.  Duration of red-cell storage and complications after cardiac surgery.

Authors:  Colleen Gorman Koch; Liang Li; Daniel I Sessler; Priscilla Figueroa; Gerald A Hoeltge; Tomislav Mihaljevic; Eugene H Blackstone
Journal:  N Engl J Med       Date:  2008-03-20       Impact factor: 91.245

10.  Differences in the interaction of 2,3-diphosphoglycerate with certain mammalian hemoglobins.

Authors:  H F Bunn
Journal:  Science       Date:  1971-06-04       Impact factor: 47.728

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  132 in total

Review 1.  Vasculopathy and pulmonary hypertension in sickle cell disease.

Authors:  Karin P Potoka; Mark T Gladwin
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2014-11-14       Impact factor: 5.464

Review 2.  Nitric oxide formation versus scavenging: the red blood cell balancing act.

Authors:  Benjamin Y Owusu; Ryan Stapley; Rakesh P Patel
Journal:  J Physiol       Date:  2012-06-11       Impact factor: 5.182

3.  Erythrocyte storage increases rates of NO and nitrite scavenging: implications for transfusion-related toxicity.

Authors:  Ryan Stapley; Benjamin Y Owusu; Angela Brandon; Marianne Cusick; Cilina Rodriguez; Marisa B Marques; Jeffrey D Kerby; Scott R Barnum; Jordan A Weinberg; Jack R Lancaster; Rakesh P Patel
Journal:  Biochem J       Date:  2012-09-15       Impact factor: 3.857

Review 4.  The red cell storage lesion(s): of dogs and men.

Authors:  Harvey G Klein
Journal:  Blood Transfus       Date:  2017-03       Impact factor: 3.443

Review 5.  The potential adverse effects of haemolysis.

Authors:  Francesca Rapido
Journal:  Blood Transfus       Date:  2017-05       Impact factor: 3.443

6.  Haemoglobinuria is associated with chronic kidney disease and its progression in patients with sickle cell anaemia.

Authors:  Santosh L Saraf; Xu Zhang; Tamir Kanias; James P Lash; Robert E Molokie; Bharvi Oza; Catherine Lai; Julie H Rowe; Michel Gowhari; Johara Hassan; Joseph Desimone; Roberto F Machado; Mark T Gladwin; Jane A Little; Victor R Gordeuk
Journal:  Br J Haematol       Date:  2013-12-12       Impact factor: 6.998

7.  Transfusion of older stored blood worsens outcomes in canines depending on the presence and severity of pneumonia.

Authors:  Dong Wang; Irene Cortés-Puch; Junfeng Sun; Steven B Solomon; Tamir Kanias; Kenneth E Remy; Jing Feng; Meghna Alimchandani; Martha Quezado; Christine Helms; Andreas Perlegas; Mark T Gladwin; Daniel B Kim-Shapiro; Harvey G Klein; Charles Natanson
Journal:  Transfusion       Date:  2014-03-03       Impact factor: 3.157

8.  Cell-Free Plasma Hemoglobin and Male Gender Are Risk Factors for Acute Kidney Injury in Low Risk Children Undergoing Cardiopulmonary Bypass.

Authors:  Nahmah Kim-Campbell; Catherine Gretchen; Clifton Callaway; Kathryn Felmet; Patrick M Kochanek; Timothy Maul; Peter Wearden; Mahesh Sharma; Melita Viegas; Ricardo Munoz; Mark T Gladwin; Hülya Bayir
Journal:  Crit Care Med       Date:  2017-11       Impact factor: 7.598

9.  Mortality increases after massive exchange transfusion with older stored blood in canines with experimental pneumonia.

Authors:  Steven B Solomon; Dong Wang; Junfeng Sun; Tamir Kanias; Jing Feng; Christine C Helms; Michael A Solomon; Meghna Alimchandani; Martha Quezado; Mark T Gladwin; Daniel B Kim-Shapiro; Harvey G Klein; Charles Natanson
Journal:  Blood       Date:  2012-12-18       Impact factor: 22.113

Review 10.  Does prolonged storage of red blood cells cause harm?

Authors:  Willy A Flegel; Charles Natanson; Harvey G Klein
Journal:  Br J Haematol       Date:  2014-01-25       Impact factor: 6.998

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