Amino Acids Extract from Black Bean Seeds (Phaseolus Vulgaris L.)Inhibit Hemoglobin Polymerizationand Modulate Erythrocyte Membrane Atpases In Sickle Cell Disease (SCD)

Talla Tn, Ko Tc, J. P., Pieme Ac, Kansci G, Fokou E
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Abstract

Back ground: The basic extracts involved in the formulation of functional foods/nutraceutics must first be the subject of preclinical and clinical trials. The several studies were shown that amino acids extract from black bean seeds (Phaseolus vulgaris L.) have antisickling, antioxidant and anti-haemolitic properties. Objective: The objective of this study is to investigate the effect of amino acids extract from black bean seeds (Phaseolus vulgaris L.) on hemoglobin polymerization and erythrocytes membrane ATPases activities in Sickle Cell Disease (SCD). Method: The ability for the amino acids extract to inhibit sickle cell hemoglobin polymerization and improve the Fe2+/Fe3+ ratio of HbSS blood were assed using spectroscopic method. The activities of three ATPases (Na+/K+; Ca2+; and Mg2+-ATPases) were investigated by the kinetic method following the release of inorganic phosphate (Pi) by ATP taking into account the determination of the total membrane proteins of erythrocytes by Bradford’s method. Result: The lowest potential of inhibition was obtained (39.98±2%) with the amino acids extract at 12 mg/mL corresponding significantly (p<0.05) to the highest potential of inhibition of polymerization (71.16±2%). The greatest Fe2+Fe3+ ratio was obtained (3.94±2%) with the amino acids extract at 12 mg/mL corresponding significantly (p<0.05) to the best rates increase of oxy-hemoglobin (48.73±2%). The red blood cells membranes ATPase activity were estimated and expressed as μmol of Pi/mg of protein/hour x 10-3 there was an increase in the activities of Na+/ K+ and Ca2+-ATPases (255.98±62 and 282.98±36 respectively) at the concentration of 12 mg/mL of extract compared to the negative control (167.36±60 and 236.91±62 respectively). However, for Mg2+-ATPase, there is rather a significant reduction (p<0.05) in this activity (286.71±51 against 146.53±35) obtained in the presence of the amino acid extract at 12 mg/mL). Conclusion: The amino acids extract of black bean seeds (Phaseolus vulgaris L.) at a concentration of 12 mg/mL offered the best inhibition potentials of hemoglobin S polymerization, increase rates of oxyhemoglobin and the best ATPasic activities. Keywords: Amino acid extracts; black bean seeds; sickle cell disease; polymerization; Fe2+/Fe3 + ratio; ATPase activities
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黑豆种子氨基酸提取物(Phaseolus Vulgaris L.)抑制镰状细胞病血红蛋白聚合和调节红细胞膜atp酶
背景:功能性食品/营养保健品配方中涉及的基本提取物必须首先是临床前和临床试验的主题。多项研究表明,黑豆种子氨基酸提取物具有抗镰刀病、抗氧化和抗溶血作用。目的:研究黑豆种子氨基酸提取物对镰状细胞病(SCD)患者血红蛋白聚合和红细胞膜atp酶活性的影响。方法:采用波谱法考察氨基酸提取物抑制镰状细胞血红蛋白聚合和提高HbSS血中Fe2+/Fe3+比值的能力。三种atp酶(Na+/K+;Ca2 +;和Mg2+-ATPases)在ATP释放无机磷酸盐(Pi)后用动力学方法进行了研究,同时考虑到用Bradford法测定红细胞的总膜蛋白。结果:氨基酸提取物在12 mg/mL时的抑制电位最低(39.98±2%),其抑制电位最高(71.16±2%)显著(p<0.05)。氨基酸提取物浓度为12 mg/mL时,Fe2+Fe3+比值最高(3.94±2%),氧合血红蛋白增幅最高(48.73±2%)(p<0.05)。红血球细胞膜atp酶活性以μmol / Pi/mg蛋白/小时× 10-3表示。与阴性对照(167.36±60和236.91±62)相比,12 mg/mL提取物浓度下Na+/ K+和Ca2+- atp酶活性分别为255.98±62和282.98±36。然而,对于Mg2+- atp酶,在氨基酸提取物浓度为12 mg/mL时,其活性显著降低(p<0.05)(286.71±51比146.53±35)。结论:黑豆种子氨基酸提取物浓度为12 mg/mL时对血红蛋白S聚合的抑制作用最强,对血红蛋白氧合速率的提高作用最强,对ATPasic活性的提高作用最强。关键词:氨基酸提取物;黑豆种子;镰状细胞病;聚合;Fe2+/Fe3 +比值;atp酶的活动
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