PubMed Health⌕ Search

Biomedical subjects

F Fiorini

Publications and source records attributed to F Fiorini.

At least 19 recordsLinked to original sources

Hemodiafiltration with online regeneration of the ultrafiltrate.

The concept of regeneration of dialysis fluids and of ultrafiltrate in particular has been recently revisited. Hemodiafiltration with online regeneration of the ultrafiltrate allows the concomitant infusion of sodium, calcium, and bicarbonate. Here, we studied the adsorptive characteristics of an integrated two-step sorbent system relative to different solutes present in the ultrafiltrate: sodium, calcium, phosphate, bicarbonate, uric acid, creatinine, and beta2-microglobulin. In vitro studies were performed in order to differentiate the relative roles for each sorbent (mineral-activated charcoal or hydrophobic resin) in adsorbing a given solute. Ex vivo studies were performed in order to evaluate the presence of cytokines (interleukin-1 beta and tumor necrosis factor-alpha), of cytokine (interleukin-1 beta and tumor necrosis factor-alpha)-inducing activities, and of the cytokine release in response to exogenous bacterial lipopolysaccharide by normal whole blood incubated with ultrafiltrate samples obtained at 15, 120, and 240 minutes after the start of treatment. The results of the present studies show the presence of immunomodulatory substances in the ultrafiltrate and the significant (P < 0.01) increase in the lipopolysaccharide-induced release of both interleukin-1 beta and tumor necrosis factor-alpha. The biological relevance of the ultrafiltrate and the possible relevance of the online, endogenous reinfusion are discussed.

Adsorption↗

Effects of recombinant human growth hormone on muscle protein turnover in malnourished hemodialysis patients.

To assess the effect of recombinant human growth hormone (rhGH) on muscle protein metabolism in uremic patients with malnutrition, forearm [3H]phenylalanine kinetics were evaluated in six chronically wasted (body weight 79% of ideal weight) hemodialysis (HD) patients in a self-controlled, crossover study. Forearm protein dynamics were evaluated before, after a 6-wk course of rhGH (5 mg thrice weekly) and after a 6-wk washout period. After rhGH: (a) forearm phenylalanine net balance--the difference between phenylalanine incorporation into and phenylalanine release from muscle proteins--decreased by 46% (-8+/-2 vs. -15+/-2 nmol/min x 100 ml at the baseline and -11+/-2 after washout, P < 0.02); (b) phenylalanine rate of disposal, an index of protein synthesis, increased by 25% (25+/-5 vs. 20+/-5 at the baseline and 20+/-4 after washout, P < 0.03); (c) phenylalanine rate of appearance, an index of protein degradation, was unchanged (33+/-5 vs. 35+/-5 at the baseline and 31+/-4 after washout); (d) forearm potassium release declined (0.24+/-0.13 vs. 0.60+/-0.15 microeq/min at the baseline, and 0.42+/-0.20 microeq/min after washout P < 0.03); (e) changes in the insulin-like growth factor binding protein (IGFBP)-1 levels and insulin-like growth factor-I (IGF-I)/IGFBP-3 ratios accounted for 15.1% and 47.1% of the percent variations in forearm net phenylalanine balance, respectively. Together, these two factors accounted for 62.2% of variations in forearm net phenylalanine balance during and after rhGH administration. These data indicate: (a) that rhGH administration in malnourished hemodialysis patients is followed by an increase in muscle protein synthesis and by a decrease in the negative muscle protein balance observed in the postabsorptive state; and (b) that the reduction in net protein catabolism obtained with rhGH can be accounted for by the associated changes in circulating free, but not total, IGF-I levels.

Adult↗

[Protein and amino acid metabolism in chronic renal failure].

Some degrees of protein deficiency, suggestive of abnormal protein metabolism, are a well-known feature of chronic renal failure (CRF). Serum albumin concentration, an index of malnutrition and deranged protein metabolism, is frequently decreased relatively early in CRF, even in absence of heavy proteinuria: a more subtle but characteristic abnormality is found in the plasma profile of amino acids. In addition, there is an accumulation in the plasma and tissues of many products of protein metabolism; some of these have been considered as uremic toxins, while others are largely undefined. The origin of abnormalities in protein metabolism are multifactorial. The defect are caused at least partly by dietary deficiency, as well as by the inability of the failing kidney to excrete normal end products of nitrogen and protein metabolism and by the effect of altered uremic milieu on overall metabolism.

Amino Acids↗

[Renal involvement in multiple myeloma. Physiopathology and therapy].

Renal failure (RF) is a common accompaniment of multiple myeloma and is identified in over half of patients at presentation. RF is usually related to the presence of Bence-Jones protein (immunoglobulin light chain) which damages all the compartments of the kidney: glomerule, tubulo-interstitium and vasculature. The most common renal lesion is cast nephropathy, named "myeloma kidney": Cast are produced by two mechanisms: proximal tubule damage and intratubular cast formation. The predominant pathophysiologic mechanism of tubule damage appears to be a precipitation of Bence-Jones protein and Tamm-Horsfall glycoprotein produced by cells of ascending limb of Henle's loop in the tubule lumen. The therapeutic maneuvers to reduce renal damage and preserve renal function are reduction of plasma concentration of light chain with chemotherapy, elimination of factors which favour coprecipitation of Tamm-Horsfall protein with light chain (hypercalcemia, acid urine, radiocontrast material, furosemide, oliguria). At last, colchicine (1.2 mg/day) will also be efficacious in the acute management of patients with cast nephropathy.

Bence Jones Protein↗

Clinical investigation on the hypolipidemic effect of simvastatin versus probucol in hemodialysis patients.

In chronic renal failure hypertriglyceridemia is a well-known complication that persists during hemodialysis treatment: it may be one of the major risk factor for cardiovascular death in these patients. We studied the effects of two lipid lowering drugs; simvastatin (20 mg/day for six months) and probucol (500 mg/day for six months), on lipid profile in 12 hemodialysis patients. Simvastatin therapy reduced plasma total cholesterol by 26% (p > 0.002), LDL-cholesterol by 36% (p > 0.002) and triglycerides by 28% (p > 0.05): plasma HDL-cholesterol and apo-A were raised, but not significantly. Probucol therapy decreased plasma triglycerides by 38% (p > 0.05), total cholesterol by 15% and LDL-cholesterol by 19%: plasma HDL-cholesterol and apo-A were decreased but not significantly. No side effects occurred with either drug. These data suggest that in hemodialysis patients both simvastatin and probucol profoundly affect the lipid profile, as well as the triglyceride levels.

Aged↗

[Glucose metabolism and chronic renal insufficiency].

Chronic renal failure is characterized by abnormalities in glucose metabolism. In fact there are present a normal fasting plasma glucose level )or mild hyperglycemia) in the presence of hyperinsulinemia, blunted decrease in the plasma glucose concentration in response to exogenous insulin administration, and diminished effect of intravenous insulin on glucose uptake in forearm perfusion studies. The glucose intolerance is not the result of reduced insulin secretion, or circulating insulin antagonists, and does not correlate with the coexisting metabolic acidosis. Glucose intolerance exists because the peripheral insulin-sensitive tissue (muscle, adipose tissue, liver) of the patients with chronic renal failure are insulin resistant. However there are two subgroups of uremic patients with regard to glucose tolerance: about half of uremic patients can augment their insulin secretion sufficiently to maintain normal glucose tolerance despite glucose intolerance. In the other half, insulin secretion following glucose loads is not different from normal values, so that glucose intolerance results. The cause of the peripheral insulin resistance remain unclear. Besides deranged renal function can result in the development of hypoglycemia. The most important predisposing mechanism to hypoglycemia is diminished glucose availability due to substrate limitation; the second important mechanism (alcohol, insulin, propranolol, etc.). Finally, in chronic renal failure persistent hyperinsulinemia can contribute hyperlipemia and to high incidence of cardiovascular disease.

Glucagon↗

Anti-hepatitis C virus antibodies and hepatitis C virus viraemia in haemodialysis patients.

Sera from 82 haemodialysis patients were tested for anti-HCV, HCV-RNA, and HBsAg. Alanine aminotransferase (ALT) activity was monitored weekly for 2 months. Anti-HCV was positive in 31 patients (37.8%), showing different single-peptide patterns. HCV-RNA was detected in 26 anti-HCV-positive patients (84%) and also in two of 21 anti-HCV-negative patients. Twenty-seven (87%) of the 31 anti-HCV-positive patients had persistently normal ALT values; 22 of these patients were HCV-RNA positive. The four patients with elevated ALT values had HCV viraemia. HBsAg was positive in nine anti-HCV-negative patients. The close correlation between HCV viraemia and HCV status, independently of ALT values, requires that anti-HCV dialysis patients must be considered potentially infective and dialysed with reserved machines and/or in separate shifts.

Adult↗

Peripheral metabolism of branched-chain keto acids in patients with chronic renal failure.

Peripheral tissue metabolism of branched-chain amino acids (BCAA) and branched-chain keto acids (BCKA) in the postabsorptive state was evaluated in 8 patients with chronic renal failure (CRF) and 7 controls by measuring the arterial-deep forearm venous differences for BCAA and BCKA. Arterial whole blood levels of BCAA and BCKA were also measured in an additional 7 patients and 11 controls. In CRF, total BCKA levels are reduced owing to a decrease in ketoisocaproic acid (KICA) and ketoisovaleric acid (KIVA) levels, parallel to changes in BCAA levels, whereas levels of ketomethylvaleric acid (KMVA) are not different from controls. Both in normal conditions and in patients, arterial levels of individual BCAA are directly correlated with arterial levels of the corresponding BCKA. However, in CRF, the ratios of leucine to KICA and of isoleucine to KMVA are increased. A direct correlation between KICA and HCO3- levels is observed. In CRF, the release of leucine and valine as well as of KICA and KMVA from peripheral tissues is reduced, whereas KIVA is neither released nor taken up by the forearm. The lack of KICA release from peripheral tissues likely accounts for its low circulating levels. The depressed peripheral release of leucine associated with the lack of KICA release suggests an increased degradation of leucine which proceeds beyond the transamination step.

Adult↗

[Nutritional status and chronic renal insufficiency].

The occurrence of malnutrition in patients with chronic renal failure has been well documented, mostly in patients undergoing regular dialysis: these patients often suffer from protein-calorie malnutrition, but more seldom there are disturbances to be due to deficit of 1,25 dihydroxyvitamin D3, folic acid, vitamin B6, iron, zinc and L-carnitine, mostly in patients who do not get adequate supplementation. There are several causes for protein-calorie malnutrition in chronic renal insufficiency. These include uremia per se, altered hormonal milieu, abnormal amino acid metabolism due to uremia or to loss of metabolically active renal tissue. Dialysis treatment improves some of these abnormalities, but introduces others. On the other hand, it is well established that morbidity and mortality in chronic renal failure are influenced by their nutritional status: therefore it is important to know the factors and the mechanisms that cause malnutrition for its prevention, recognition and correction.

Humans↗

[Carnitine metabolism in chronic kidney failure].

Carnitine plays an important role in regulating the flow of energetic substrates and their balance through cellular membranes. Usually in chronic renal failure, increased plasma levels of carnitine are found. In early hemodialysis a slow decrease of the muscle concentrations of carnitine is found, followed by a decrease of plasma concentrations long after substitutive treatment. Several signs and symptoms are attributable to carnitine deficiency. It is reported that these changes regress with suitable supply of intravenous carnitine after dialysis end for 15-30 days, and subsequently with chronic administration in the dialysis fluid.

Carnitine↗

Reversed-phase high-performance liquid chromatographic analysis of branched-chain keto acid hydrazone derivatives: optimization of techniques and application to branched-chain keto acid balance studies across the forearm.

A sensitive method of quantifying branched-chain keto acids in plasma and whole blood samples is described. It is based on the separation by ion-pair reversed-phase liquid chromatography of 2,4-dinitrophenylhydrazine derivatives with ultraviolet detection. The sample clean-up steps that are usually required for reversed-phase high-performance liquid chromatography are eliminated. A reduction in ketoisocaproate isomer formation is obtained by incubation of derivatives in ice. The method is reproducible (coefficient of variation 2%, n = 5, at the 200-pmol level) and the ultraviolet response is linearly related to branched-chain keto acid concentration. Recoveries are high (greater than 95%). Other keto acids do not co-elute with branched-chain keto acids. Because of its sensitivity and precision, this method can be proposed for whole blood branched-chain keto acid balance studies across organs.

Biological Transport↗

Cloning and expression of human ciliary neurotrophic factor.

Ciliary neurotrophic factor (CNTF) is a survival factor for avian ciliary ganglion neurons and a variety of other neuronal cell types in vitro. We report here the cloning of the entire genomic sequence encoding human CNTF and its primary structure. Biologically active CNTF has been expressed in Chinese hamster ovary cells from a human genomic DNA clone. Human CNTF has no significant sequence similarity to any previously reported protein, although approximately 84% similarity exists compared with rat and rabbit CNTF. The lack of both an N-terminal signal sequence and consensus sequences for glycosylation or hydrophobic regions, and the fact that active CNTF is expressed but not released into the culture medium of transfected cells, argue in favour of human CNTF as a cytosolic protein. These data provide a basis for understanding the role of CNTF in nervous system physiology and pathology.

Amino Acid Sequence↗

Acute renal failure due to acute bilateral renal artery thrombosis: successful surgical revascularization after prolonged anuria.

Acute bilateral renal artery thrombosis is a rare but surgically correctable cause of acute renal failure. A middle-aged woman with acute renal failure and anuria due to atherosclerotic occlusion of the abdominal aorta and both renal arteries was surgically treated 42 days after the onset of anuria. Revascularization resulted in the reversal of renal failure and complete recovery of renal function in spite of prolonged anuria. An aggressive diagnostic and therapeutic approach is important whenever this condition is suspected.

Acute Kidney Injury↗