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PubMed · 15658313

[Chloride].

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Yoshihito Ueno, Yoshio Ogino, Takashi Kinouchi. 2004. [Chloride].. https://pubmed.ncbi.nlm.nih.gov/15658313/

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Validation of a method to partition the base deficit in meningococcal sepsis: a retrospective study.

INTRODUCTION: The base deficit is a useful tool for quantifying total acid-base derangement, but cannot differentiate between various aetiologies. The Stewart-Fencl equations for strong ions and albumin have recently been abbreviated; we hypothesised that the abbreviated equations could be applied to the base deficit, thus partitioning this parameter into three components (the residual being the contribution from unmeasured anions). METHODS: The two abbreviated equations were applied retrospectively to blood gas and chemistry results in 374 samples from a cohort of 60 children with meningococcal septic shock (mean pH 7.31, mean base deficit -7.4 meq/L). Partitioning required the simultaneous measurement of plasma sodium, chloride, albumin and blood gas analysis. RESULTS: After partitioning for the effect of chloride and albumin, the residual base deficit was closely associated with unmeasured anions derived from the full Stewart-Fencl equations (r2 = 0.83, y = 1.99 - 0.87x, standard error of the estimate = 2.29 meq/L). Hypoalbuminaemia was a common finding; partitioning revealed that this produced a relatively consistent alkalinising effect on the base deficit (effect +2.9 +/- 2.2 meq/L (mean +/- SD)). The chloride effect was variable, producing both acidification and alkalinisation in approximately equal proportions (50% and 43%, respectively); furthermore the magnitude of this effect was substantial in some patients (SD +/- 5.0 meq/L). CONCLUSION: It is now possible to partition the base deficit at the bedside with enough accuracy to permit clinical use. This provides valuable information on the aetiology of acid-base disturbance when applied to a cohort of children with meningococcal sepsis.

Acid-Base Imbalance↗

Experimental study on the role of endotoxin in the development of hepatopulmonary syndrome.

AIM: To evaluate the role of intestinal endotoxemia in the genesis of hepatopulmonary syndrome. METHODS: A rat model of cirrhosis was prepared with the method of compound factors. At the end of the eighth week, rats with cirrhosis were treated with 300 microg LPS/100 g body weight, and 1 g/rat of glycine about four h prior to LPS. After three h of LPS treatment, blood and tissues were collected for various measurements. Kupffer cells were isolated from male Wistar rats and cultured, and divided into five groups. Supernatant was harvested at 3 h after treatment with LPS for measurement of tumor necrosis factor-alpha (TNF-alpha). RESULTS: Our results showed that in rats with cirrhosis, slowed and deepened breath with occasional pause was. PaO2, PaCO2 and standard bicarbonate (SB) in arterial blood were decreased. Arterial O2 and actual bicarbonate (AB) were markedly decreased. There was a close correlation between decreased O2 and endotoxin. Metabolic acidosis accompanying respiratory alkalosis was the primary type of acid-base imbalance. The alveolar-arterial oxygen gradient was sharply widened. Massive accumulation of giant macrophages in the alveolar spaces and its wall and widened alveolar wall architecture were observed. The number of bacterial translocations in mesenteric lymph nodes increased. The ratio of TC99M-MAA brain-over-lung radioactivity rose. Endotoxin, and TNF-alpha, endothelin-1 (ET-1), nitric oxide (NO) in plasma and ET-1, carbon monoxide (CO) in lung homogenates increased. After administration of a given dosage of LPS in rats with cirrhosis, various pathological parameters worsened. Plasma level of endotoxin was related to TNF-alpha, ET-1, NO in plasma and ET-1, NO, CO in lung homogenates. TNF-alpha level was related to ET-1 and NO in plasma and lung homogenates and CO in lung homogenate as well. The level of TNF-alpha increased after infusion of LPS into culture supernatant of Kupffer cells in vitro. However, TNF-alpha significantly decreased after pretreatment with glycine, PD98059 and SB212850. Glycine could antagonize the effect of LPS in vivo and in vitro. CONCLUSION: Intestinal endotoxemia accompanying by cirrhosis may be an important mechanism in the development of hepatopulmonary syndrome in rats. Overproduction of TNF-alpha due to endotoxin stimulation of Kupffer cells via mitogen-activated protein kinase (MAPK) signal transduction pathway may be a major mechanism mediating the pathologic alterations of hepatopulmonary syndrome.

Acid-Base Imbalance↗

[Diagnosis and treatment of disordered acid-base balance].

Differential diagnosis in disordered acid-base homeostasis is usually possible by measuring the pH, pCO2, pO2 and bicarbonate concentration, and enables differentiation between respiratory alkalosis and acidosis, and metabolic alkalosis and acidosis. Compensatory counter-regulation (respiratory or renal) can make correct assessment of the primary disorder problematic. Treatment of the underlying disease, in particular the provision of adequate oxygenation in respiratory disorders is of the essence. In chronic forms of metabolic acidosis, for example in chronic renal insufficiency and elderly patients, bicarbonate substitution should be initiated in order to prevent the negative effects on various organ systems. Sodium bicarbonate formulations that can be assimilated from the small bowel are especially tolerable and suitable.

Acid-Base Imbalance↗