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In a recent editorial, Kapur described perioperative nausea and vomiting as "the big 'little problem' following ambulatory surgery."257 Although the actual morbidity associated with nausea is relatively low in health outpatients, it should not be considered an unavoidable part of the perioperative experience. The availability of an emesis basin for every patient in the postanesthesia recovery unit is a reflection of the limited success with the available therapeutic techniques.257 There had been little change in the incidence of postoperative emesis since the introduction of halothane into clinical practice in 1956. However, newer anesthetic drugs (e.g. propofol) appear to have contributed to a recent decline in the incidence of emesis. Factors associated with an increased risk of postoperative emesis include age, gender (menses), obesity, previous history of motion sickness or postoperative vomiting, anxiety, gastroparesis, and type and duration of the surgical procedure (e.g., laparoscopy, strabismus, middle ear procedures). Anesthesiologists have little, if any, control over these surgical factors. However, they do have control over many other factors that influence postoperative emesis (e.g., preanesthetic medication, anesthetic drugs and techniques, and postoperative pain management). Although routine antiemetic prophylaxis is clearly unjustified, patients at high risk for postoperative emesis should receive special considerations with respect to the prophylactic use of antiemetic drugs. Minimally effective doses of antiemetic drugs can be administered to reduce the incidence of sedation and other deleterious side effects. Potent nonopioid analgesics (e.g., ketorolac) can be used to control pain while avoiding some of the opioid-related side effects. Gentle handling in the immediate postoperative period is also essential. If emesis does occur, aggressive intravenous hydration and pain management are important components of the therapeutic regimen, along with antiemetic drugs. If one antiemetic does not appear to be effective, another drug with a different site of action should be considered. With the availability of new antiserotonin drugs, the incidence of recurrent (intractable) emesis could be further decreased. Research into the mechanisms of this common postoperative complication may help in improving the management of emetic sequelae in the future. As suggested in a recent editorial, improvement in antiemetic therapy could have a major impact for surgical patients, particularly after ambulatory surgery. Patients as well as those involved in their postoperative care look forward to a time when the routine offering of an emesis basin after surgery becomes a historical practice.
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PMID:Postoperative nausea and vomiting. Its etiology, treatment, and prevention. 843 45

Postoperative nausea and vomiting (PONV) are unpleasent for patients and increase the risk of aspiration pneumonia. PONV is the leading cause of unexpected admission following planned day surgery. Despite new anaesthetic drugs and antiemetics, the incidence of PONV remains high. The incidence of PONV depends numerous factors including age, gender, obesity, anxiety, gastroparesis, history of motion sickness, previous PONV, and the duration and type of surgery. Anaesthesia related factors include premedication, ventilation techniques, and postoperative pain management. Recently, the intraoperative inspired oxygen concentration was identified as a factor that influences PONV. Among the three studies that evaluated intraoperative supplemental O2 for prevention of PONV, two found that it halves PONV while the third failed to identify any benefit. Since supplemental O2 is inexpensive and essentially risk-free, it appears preferable to pharmacologic anti-emetics for prevention of PONV in abdominal surgery.
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PMID:Supplemental oxygen reduces the incidence of postoperative nausea and vomiting. 1202 76

Although aspiration is a relatively rare event during anaesthesia, it represent an important cause of anaesthesia related mortality and also of ventilator associated pneumonia in intensive care unit. The incidence of aspiration is markedly increased after trauma owing to the risk of recent ingestion of food, depression of consciousness and airways reflexes, and gastric stasis induced by raised sympathoadrenal tone. The factors which contribute to the likelihood of aspiration include the urgency of surgery, airways problems, inadequate depth of anaesthetic, use of the lithotomy position, gastrointestinal problems, depressed consciousness, increased severity of illness and obesity. Factors that predispose to aspiration pneumonia are: a gastric content with a pH less than 2.5 and a gastric volume of 0.4 ml kg-1; a reduction in lower oesophageal sphincter tone; a reduction of upper oesophageal sphincter tone and a not coordination between the pharyngeal muscle and the upper oesophageal sphincter tone during swallowing; and a depression of protective airway reflexes. Methods to minimize regurgitation and aspiration involve control of gastric contents (preoperative starvation is the method universal accepted), application of cricoid pressure and control of the airways.
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PMID:Gastric reflux and pulmonary aspiration in anaesthesia. 1276 74

Gastric electrical stimulation (GES) was shown to improve symptoms in patients with gastroparesis. However, the underlying mechanisms remain unclear. This study assessed the influence of various patterns of GES on fasting and postprandial gastric acid secretion and 24-hr gastric pH. Eight healthy dogs were studied and we found that in the fasting state, low-frequency, long-pulse (6/12-cpm, 375-msec, 4-mA) GES at the proximal stomach significantly inhibited the secretion of gastric juice (P < 0.05). No such effect was observed during GES (6/12 cpm) at the distal stomach. In the postprandial period, low-frequency, long-pulse GES at both proximal and distal sites and at both frequencies did not significantly affect gastric acid secretion. High-frequency, short-pulse GES, investigated for obesity (21 Hz, 8 mA, and 250 microsec, with 2 secs on, 3 sec off), at the proximal and distal stomach did not significantly affect the 24-hr gastric pH profile. In conclusion, GES with various stimulation parameters, and at various sites, has little effect on gastric acid secretion. The clinical effects induced by GES at these parameters may not be related to their effect on gastric acid homeostasis.
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PMID:Gastric electrical stimulation does not significantly affect canine gastric acid secretion and 24-hour gastric pH. 1499 34

All nutrients are absorbed in the gastrointestinal (GI) system, and GI motility plays a very critical role in the consumption of foods, digestion, and absorption of nutrients. Various segments of the GI tract (esophagus, stomach, and intestines) coordinate in a complex yet precise way to control the process of food consumption, digestion, and absorption of nutrients. GI motility not only regulates the rates at which nutrients are processed and absorbed in the gut but also participates in the control of appetite and satiety. Altered GI motility has been associated with various disease conditions (gastroparesis, etc.) and has been frequently observed in obese patients. The significance of these GI motility alterations in obesity is not fully understood, but they have been considered as potential contributing factors in the development and maintenance of obesity and changed eating behavior. Therapies aimed at regulating GI motility are being actively explored and applied clinically for the management of obese patients. To better understand the pathophysiology of obesity, we systematically reviewed GI motility changes observed in obese conditions. The relationship and pathological significance of these findings, as well as the potential therapies by modification of GI motility, are also discussed.
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PMID:Alterations of gastrointestinal motility in obesity. 1560 65

Nutrition therapy is vital to the overall management of lung transplant recipients. The objective of this review is to outline the current applications of pre- and posttransplant nutrition management of the adult lung transplant recipient. Pretransplant nutrition therapy decisions are based on cause of end-stage lung disease, transplant indications, and pretransplant nutritional status. Maintaining adequate nutrient stores is the major goal of nutrition therapy for patients awaiting transplantation. In the posttransplant course, several gastrointestinal (GI) complications such as gastroesophageal reflux, gastroparesis, and distal intestinal obstruction syndrome complicate nutritional recovery. Long-term nutrition therapy for lung transplant recipients is aimed at management of common comorbid conditions such as obesity, diabetes mellitus, hypertension, osteoporosis, and hyperlipidemia. Lung transplantation outcomes are steadily improving; however, much has yet to be explored to improve the nutrition management of these patients in both the pre- and posttransplantation course.
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PMID:Current nutrition practices in adult lung transplantation. 1621 58

1. Diabetes mellitus is common in patients with cirrhosis; patients with DM undergoing liver transplantation often have many other co-morbid illnesses including obesity, coronary artery disease (CAD), autonomic neuropathy, gastroparesis, and nephropathy. 2. Long-term survival of patients with diabetes mellitus (DM) is significantly lower and morbidity higher when compared to non-diabetics mainly because of cardiovascular complications, infections, and renal failure. 3. Obesity, CAD, and renal failure are confounding factors that result in poor patient survival. 4. Patients with DM should undergo careful cardiovascular diagnostic work up, including routine coronary arteriogram, and necessary interventions before liver transplantation. This is especially important in those over 50 years old, and in those with retinopathy, nephropathy, and neuropathy. 5. Patients with coronary artery disease that is not amenable to surgery or stents, and those with impaired left ventricular function, should not be considered for liver transplantation. Other relative or absolute contraindications are those with proteinura and renal failure who are not candidates for combined liver/kidney transplantation, those with severe gastroparesis, especially when it is associated with diabetic autonomic neuropathy, and those with two or more risk factors such as CAD, morbid obesity, and renal failure. 6. Future studies should focus on risk stratification of patients with DM undergoing liver transplantation and better interventions to reduce the risk of diabetic complications before and after liver transplantation.
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PMID:When is diabetes mellitus a relative or absolute contraindication to liver transplantation? 1623 83

Urocortins, three paralogs of the stress-related peptide corticotropin-releasing factor (CRF) found in bony fish, amphibians, birds, and mammals, have unique phylogenies, pharmacologies, and tissue distributions. As a result and despite a structural family resemblance, the natural functions of urocortins and CRF in mammalian homeostatic responses differ substantially. Endogenous urocortins are neither simply counterpoints nor mimics of endogenous CRF action. In their own right, urocortins may be clinically relevant molecules in the pathogenesis or management of many conditions, including congestive heart failure, hypertension, gastrointestinal and inflammatory disorders (irritable bowel syndrome, active gastritis, gastroparesis, and rheumatoid arthritis), atopic/allergic disorders (dermatitis, urticaria, and asthma), pregnancy and parturition (preeclampsia, spontaneous abortion, onset, and maintenance of effective labor), major depression and obesity. Safety trials for intravenous urocortin treatment have already begun for the treatment of congestive heart failure. Further understanding the unique functions of urocortin 1, urocortin 2, and urocortin 3 action may uncover other therapeutic opportunities.
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PMID:Physiology, pharmacology, and therapeutic relevance of urocortins in mammals: ancient CRF paralogs. 1708 71

In most Western countries, diabetic nephropathy (DN) has become the single most common condition found in patients with end-stage renal disease (ESRD). This is to some extent due to better survival of diabetic patients with renal failure, but mostly due to the dramatic increase in the prevalence of type 2 diabetes. The majority of type 2 diabetic patients with renal failure suffer from nodular glomerulosclerosis (Kimmelstiel-Wilson); but ischemic nephropathy, irreversible acute renal failure (mostly acute on chronic) and diabetes co-existing with primary renal diseases are common as well. Classical DN evolves in a sequence of stages. After a period of glomerular hyperfiltration, increased urinary albumin excretion [microalbuminuria (MA)] i.e. 30-300 mg/day or 20 - 200 microg/minute indicates the onset of overt DN. Risk factors for development of DN are positive family history, hyperglycemia in the mother during pregnancy, high blood pressure, obesity and insulin resistance. Poor glycemic control (HbAlc) and elevated systolic blood pressure (> 135 mm Hg) interact in enhancing the risk of DN. Proteinuria and smoking are major promoters of progression. The risk of onset of microalbuminuria can be reduced by lowering of blood pressure and specifically by blockade of the renin angiotensin system (RAS). In patients with established DN, the target systolic blood pressure should be <130 mm Hg and RAS blockade is obligatory. Treating all cardiovascular risk factors is a high priority. Antihypertensive management is rendered difficult by extreme volume sensitivity, pronounced activation of the RAS and autonomic neuropathy. Cardiac events are excessively frequent, glycemic control becomes difficult and autonomic diabetic neuropathy with gastroparesis and diabetic foot are additional problems. Hemodialysis or continuous ambulatory peritoneal dialysis should be started relatively early. In the absence of contraindications, transplantation (renal transplantation, combined kidney/pancreas transplantation or pancreas after kidney transplantation) is the treatment of choice.
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PMID:Diabetic nephropathy. 1718 81

The worldwide epidemic of type 2 diabetes mellitus (T2DM) is a substantial economic and social burden. Although gastroparesis associated with type 1 diabetes mellitus (T1DM) has been recognized for years, only recently have studies shown that patients with T2DM also have high rates of gastroparesis. Individuals with T2DM constitute 90% to 95% of the diabetic population. Unique characteristics that distinguish this population are obesity, insulin resistance, and associated comorbidities. These features highlight the importance of investigating gastric emptying in individuals with T2DM and upper gastrointestinal symptoms. The purpose of this review is to examine the literature pertaining to diabetes and the effect of diabetes on gastric neuromuscular function, with a focus on T2DM. An understanding of gastric motility in T2DM is important to diagnose gastroparesis, to treat upper gastrointestinal symptoms, and to restore normal gastric motility, which may lead, in turn, to improved glucose control.
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PMID:Gastroparesis in type 2 diabetes mellitus: prevalence, etiology, diagnosis, and treatment. 1788 73


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