Dilution and redistribution effects of rapid 2-litre infusions of 0.9% (w/v) saline and 5% (w/v) dextrose on haematological parameters and serum biochemistry in normal subjects: a double-blind crossover study

2001 ◽  
Vol 101 (2) ◽  
pp. 173-179 ◽  
Author(s):  
Dileep N. LOBO ◽  
Zeno STANGA ◽  
J.Alastair D SIMPSON ◽  
John A. ANDERSON ◽  
Brian J. ROWLANDS ◽  
...  

Although hypoalbuminaemia after injury may result from increased vascular permeability, dilution secondary to crystalloid infusions may contribute significantly. In this double-blind crossover study, the effects of bolus infusions of crystalloids on serum albumin, haematocrit, serum and urinary biochemistry and bioelectrical impedance analysis were measured in healthy subjects. Ten male volunteers received 2-litre infusions of 0.9% (w/v) saline or 5% (w/v) dextrose over 1 h; infusions were carried out on separate occasions, in random order. Weight, haemoglobin, serum albumin, serum and urinary biochemistry and bioelectrical impedance were measured pre-infusion and hourly for 6 h. The serum albumin concentration fell in all subjects (20% after saline; 16% after dextrose) by more than could be explained by dilution alone. This fall lasted more than 6 h after saline infusion, but values had returned to baseline 1 h after the end of the dextrose infusion. Changes in haematocrit and haemoglobin were less pronounced (7.5% after saline; 6.5% after dextrose). Whereas all the water from dextrose was excreted by 2 h after completion of the infusion, only one-third of the sodium and water from the saline had been excreted by 6 h, explaining its persistent diluting effect. Impedances rose after dextrose and fell after saline (P < 0.001). Subjects voided more urine (means 1663 and 563 ml respectively) of lower osmolality (means 129 and 630 mOsm/kg respectively) and sodium content (means 26 and 95 mmol respectively) after dextrose than after saline (P < 0.001). While an excess water load is excreted rapidly, an excess sodium load is excreted very slowly, even in normal subjects, and causes persistent dilution of haematocrit and serum albumin. The greater than expected change in serum albumin concentration when compared with that of haemoglobin suggests that, while dilution is responsible for the latter, redistribution also has a role in the former. Changes in bioelectrical impedance may reflect the electrolyte content rather than the volume of the infusate, and may be unreliable for clinical purposes.

2002 ◽  
Vol 104 (1) ◽  
pp. 17-24 ◽  
Author(s):  
Fiona REID ◽  
Dileep N. LOBO ◽  
Robert N. WILLIAMS ◽  
Brian J. ROWLANDS ◽  
Simon P. ALLISON

In this double-blind crossover study, the effects of bolus infusions of 0.9% saline (NaCl) and Hartmann's solution on serum albumin, haematocrit and serum and urinary biochemistry were compared in healthy subjects. Nine young adult male volunteers received 2-litre intravenous infusions of 0.9% saline and Hartmann's solution on separate occasions, in random order, each over 1h. Body weight, haematocrit and serum biochemistry were measured pre-infusion and at 1h intervals for 6h. Biochemical analysis was performed on pooled post-infusion urine. Blood and plasma volume expansion, estimated by dilutional effects on haematocrit and serum albumin, were greater and more sustained after saline than after Hartmann's solution (P<0.01). At 6h, body weight measurements suggested that 56% of the infused saline was retained, in contrast with only 30% of the Hartmann's solution. Subjects voided more urine (median: 1000 compared with 450ml) of higher sodium content (median: 122 compared with 73mmol) after Hartmann's than after saline (both P = 0.049), despite the greater sodium content of the latter. The time to first micturition was less after Hartmann's than after saline (median: 70 compared with 185min; P = 0.008). There were no significant differences between the effects of the two solutions on serum sodium, potassium, urea or osmolality. After saline, all subjects developed hyperchloraemia (>105mmol/l), which was sustained for >6h, while serum chloride concentrations remained normal after Hartmann's (P<0.001 for difference between infusions). Serum bicarbonate concentration was significantly lower after saline than after Hartmann's (P = 0.008). Thus excretion of both water and sodium is slower after a 2-litre intravenous bolus of 0.9% saline than after Hartmann's solution, due possibly to the more physiological [Na+]/[Cl-] ratio in Hartmann's solution (1.18:1) than in saline (1:1) and to the hyperchloraemia caused by saline.


1979 ◽  
Vol 42 (02) ◽  
pp. 621-625 ◽  
Author(s):  
G G Nenci ◽  
G Agnelli ◽  
M Berrettini ◽  
P Parise ◽  
E Ballatori

SummaryIn a randomized double-blind crossover study in 16 patients with enhanced in vitro spontaneous platelet aggregation, sulfinpyrazone proved to be effective in normalizing platelet aggregability within 4 days after initiation of therapy.


Nutrients ◽  
2021 ◽  
Vol 13 (2) ◽  
pp. 696
Author(s):  
Neus Bosch-Sierra ◽  
Roger Marqués-Cardete ◽  
Aránzazu Gurrea-Martínez ◽  
Carmen Grau-Del Valle ◽  
Clara Talens ◽  
...  

The authors have requested that the following changes be made to their paper [...]


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