[New aspects of enteral nutrition].
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Biomedical subjects
Publications and source records attributed to C Puchstein.
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For major operative procedures in the lower abdomen and many orthopedic procedures such as total hip replacement, a combination of general and epidural anesthesia is used. In order to investigate the hemodynamic effects of such a combination in 14 geriatric patients aged 63-80 years who were undergoing total hip replacement, cardiovascular monitoring was established by an arterial line and a pulmonary artery catheter. The epidural anesthesia was achieved with bupivacaine 0.5% in a dose calculated to obtain a block up to Th 6. General anesthesia was then induced and maintained with midazolam, fentanyl, pancuronium bromide, and a 2:1 nitrous oxide-oxygen mixture. Hemodynamic measurements were established before and 30 min after induction of the epidural anesthesia and 20 min after the induction of general anesthesia. After bupivacaine was injected the loss of sympathetic tone produced a systolic arterial blood pressure decrease from 174 +/- 22 to 136 +/- 28 mmHg (p less than 0.05) and a decrease in heart rate from 73 +/- 12 to 66 +/- 10 min-1 (p less than 0.05). The cardiac index did not change, but the peripheral vascular resistance decreased significantly. Because intravenous fluids were given simultaneously, preload could be maintained. Oxygen delivery and oxygen extraction did not change. During general anesthesia a significant drop in cardiac output was observed from 3.0 +/- 0.6 l/min.m2 to 2.3 +/- 0.4 l/min.m2 (p less than 0.05). The systolic arterial blood pressure decreased to as low as 95 +/- 17 mmHg (p less than 0.05) and oxygen delivery decreased from 500 +/- 125 ml/min.m2 to 323 +/- 84 ml/min.m2 (p less than 0.05).
The aim of the study was to acquire basic knowledge on pharmacokinetic, metabolism and tolerance of a new 20% fatty emulsion with a 70% proportion of medium-chain triglycerides (MCT) and a 30% proportion of long-chain triglycerides (LCT) in the postoperative phase after a trauma of medium severity. - 12 female patients who had an elective rectal amputation and who needed parenteral nutrition postoperatively, were studied. The nutritional regime consisted of 4.8 g/kg/day of glucose and 1 g/kg/day of amino acids. On the second postoperative day the patients were given 0.06 g/kg body weight/h and on the third day 0.12 g/kg body weight/h of new 20% fatty emulsion during a time period of eight hours. Blood samples for the evaluation of triglycerides, free fatty acids, phospholipids, beta-hydroxybutyrate (beta-OHB), acetoacetate, cholesterol, glucose, pyruvate and lactate were taken before and after the fat application. Ketone were measured semiquantitatively. Side effects and complications were not observed. Simultaneously to the administrated triglycerides an increase in serum triglycerides was observed. After four hours fat emulsion was infused under steady state conditions. Under the graphically measured half-life of 17 minutes for the MCT/LCT emulsion, rapid and complete elimination could be seen after the infusion had been stopped. Simultaneously with the high clearance of the infused triglycerides, free fatty acids increased significantly in the plasma without reaching a plateau; 30 minutes after the fat application the laboratory results returned to the initial levels.(ABSTRACT TRUNCATED AT 250 WORDS)
Twelve patients admitted for elective resection of carcinoma of colon or rectum were allocated at random to experimental and control groups (six in each) and received a total parenteral nutrition regimen providing 230 mg N/kg and 166 KJ/kg daily over the first 5 postoperative days. In the experimental group the parenteral fluid was supplemented with a synthetic glutamine-containing dipeptide, L-alanyl-L-glutamine (54 mg peptide-N/kg per day) and the control group received corresponding amounts of alanine-N and glycine-N. On each postoperative day nitrogen balance was better in the experimental group; mean daily nitrogen balance with alanyl-glutamine was -1.5 (SE 0.4) g N/day and with the control solution -3.6 (0.2) g N/day. The cumulative nitrogen balances on the fifth postoperative day were -7.1 (2.2) and -18.1 (1.7) g N, respectively. With the peptide-containing solution intramuscular glutamine concentration remained close to the preoperative value whereas with the control solution it decreased from 19.7 (SE 0.9) to 12.0 (0.6) mmol/l intracellular water.
In patients with neuropathologic processes leading to disturbed cerebrovascular autoregulation, sudden increases in arterial blood pressure may lead to a sudden elevation in cerebral blood flow and intracranial pressure. Therefore, sudden increases in arterial pressure should be assiduously avoided in the perioperative period. Hypertensive episodes may occur at any time during anesthesia, but are more likely to occur (1) during laryngoscopy and intubation, (2) at the time of skin incision, (3) at extubation, and (4) during awakening. In patients with cardiovascular disease, such hypertensive episodes may also cause deterioration of the cardiovascular situation. Catecholamines are the principal mediators of such intraoperative hypertensive reactions. There are 2 options available to the anesthesiologist: (1) attempt to suppress this response after it has occurred, or (2) prevent its occurrence at the outset. Treatment of hypertension often relies on agents that relax vascular smooth muscle. In patients with compromised intracranial compliance, however, cerebral vasodilation must be avoided because it leads to an increase in cerebral blood volume. This, in turn, may raise intracranial pressure and result either in herniation of brain contents or a decrease in cerebral perfusion pressure leading to brain ischemia. Different pharmacologic means of preventing or suppressing such intraoperative hypertensive reactions are reviewed. Many of the drugs reviewed resulted in adverse effects that could preclude their use in patients with reduced intracranial compliance. Alpha- and beta-adrenergic receptor blockers can safely be administered to such patients.
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In the postoperative state, hypercaloric parenteral nutrition is not indicated in every patient where enteral nutrition is not feasible. Low caloric protein oriented peripheral venous parenteral feeding might be an alternative nutritional regimen in moderate catabolic postoperative states. In a prospective study, 18 females received a completed nutritional solution during 4 days postoperatively following major colon surgery. The solution contained 80 g Sorbitol, 40 g Xylitol, 70 g amino acids and electrolytes (700 kcal/day). A slightly negative nitrogen balance with daily losses of about 4 g of N were observed. Routine biochemical data did not change compared to preoperative values. Plasma free amino acid homeostasis has been maintained so that conditions for optimal utilisation of the infused nutrients were given. No general side effects could be observed. This protein oriented nutritional solution may be recommended for hypocaloric peripheral venous nutrition in moderate catabolic states.
Adequate nutritional support is an important goal for the management of burn patients. Caloric requirements are higher than in any other major trauma or disease. The development of hypermetabolism and hypercatabolism leads to an increase in resting energy expenditure which depends on the severity of the injury. Therefore, with the intent to counteract these developments and their complications, a balanced carbohydrate, fat and protein intake should be adjusted to the actual needs. This paper gives a survey of the metabolic consequences of burns, reviews the underlying pathophysiology and tries to give practical guidelines for the nutritional support of the burn patient.
Multiple-system organ failure is associated with progressive defects of cellular metabolism involving several organ systems. The metabolic failure is caused by a neural-hormonal reaction to trauma and sepsis and by humoral mediators damaging cell metabolism. Involved are catabolic hormones like catecholamines, cortisol and glucagon as well as the humoral mediators interleukin and arachidonic acid metabolites. There is an increase in resting energy expenditure and a derangement of utilization and production of adenine nucleotides. Severe injury, sepsis and multiple-system organ failure are associated with a 30-40% decreased content of energy rich phosphates in different tissues. The low energy charge potential is caused by the inability to use nutritional substrates adequately. Relative clearance and oxidation of glucose will advance fatty infiltration of the liver. Clearance and oxidation of fat is normal or often increased. If illness is progredient fat utilization will be disturbed. Although protein synthesis is increased in critical ill patients, due to excessive proteolyses net protein loss occur. In preterminal patients the ability of the liver to synthetize protein decreases, concentrations of several free amino acids in plasma increase, while the clearance for amino acids decreases.
As far as energy availability is concerned, it is advantageous to give lipid emulsions to severely catabolic patients, in comparison to lipid-free TPN. It is important to administer essential fatty acids, especially linoleic and linolenic acid, which play a major part in synthesis of membrane phospholipids and prostaglandin metabolism. Lipid emulsions with linoleic acid content and high linoleic-linolenic ratio might be of great value in posttraumatic situations, where the need for linoleic acid might be increased up to 50 g/day. We have examined the safety of a new lipid emulsion with a linoleic-linolenic acid ratio of 16:1 in 14 severely catabolic surgical ICU patients. As a result, neither liver enzyme elevation nor allergic reactions occurred. The limited elevation of triglycerides under lipid infusion and the rapid fall of these values to normal levels account for the satisfactory utilization of the examined lipid emulsion in critically ill patients.
Malnutrition is associated with a delayed recovery from illness and an increased rate of complications. Heart failure, respiratory diseases, impaired immune function and postoperative wound healing are influenced by the nutritional status. Nutritional assessment includes patients history, physical examination, anthropometric measurements, laboratory dates and changes of immunocompetence. Anthropometric assessment, like skinfold and muscle area measurements, is not an extremely accurate method predicting nutritional status of an individual patient. Multifactorial influence on the concentration of the serum proteins, albumine, transferrin and retinolbinding protein caused a wide range of normal values. Therefore the validity and sensitivity of these parameters to assess nutritional status are diminished for the individual patient. The concentration of serum albumin seems to be of some value as a marker for nutritional status. The influence of malnutrition on immunity is complex. There are no sensitive markers available to assess the influence of malnutrition on the immuno competence of an individual patient for the clinical routine. Malnutrition may be assessed and the resulting clinical complications may be predicted by calculating a prognostic nutritional index, which include several nutritional parameters.
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The binding of 3H-adenosine to rat brain membranes was studied by a microcentrifugation technique. Specific binding of 3H-adenosine was rapid, reversible, saturable and dependent on pH and temperature. Scatchard plots of equilibrium binding data were nonlinear suggesting the existence of two different binding sites for adenosine. The dissociation constants (Kd) were 1.7 muM and 13.6 muM and the maximal number of binding sites (Bmax) 31 and 165 pmol adenosine bound per mg of membrane protein. Ten adenosine derivatives were studied for their ability to compete with 3H-adenosine binding. The phosphorylated adenosine compounds 5'-AMP, cyclic AMP and ATP were most potent in displacing 3H-adenosine from its binding sites and the IC50-values ranged from 11--25 muM. N6-Phenylisopropyladenosine produced only partial inhibition (30%) of 3H-adenosine binding and no stereospecific difference between the (-)- and (+)isomer was observed. Several methylxanthines known as adenosine antagonists competed for the 3H-adenosine binding sites parallel with their pharmacological potency. The results offer a first approach for the study of adenosine binding sites in brain membranes.
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