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Ghrelin stimulates food intake and growth hormone release in rats with thermal injury: synthesis of ghrelin.

Ghrelin, a 28-residue octanoylated peptide recently isolated from the stomach, exhibits anti-cachectic properties through regulating food intake, energy expenditure, adiposity, growth hormone secretion and immune response. Burn injury induces persistent hypermetabolism and muscle wasting. We therefore hypothesized that ghrelin may also play a role in the pathophysiology of burn-induced cachexia. Overall ghrelin expression in the stomach over 10 days after burn was significantly decreased (p = 0.0003). Total plasma ghrelin was reduced 1 day after burn. Thus, changes in ghrelin synthesis and release may contribute to burn-induced dysfunctions. Ghrelin (30 nmol/rat, i.p.) greatly stimulated 2 h food intake in rats on five separate days after burn and in control rats. On post-burn day 15, plasma growth hormone levels were significantly lower than in controls, and this was restored to normal levels by ghrelin (10 nmol/rat, i.p.). These observations suggest that ghrelin retains its ability to favorably modulate both the peripheral anabolic and the central orexigenic signals, even after thermal injury despite ongoing changes due to prolonged and profound hypermetabolism, suggesting that long-term treatment with ghrelin may attenuate burn-induced dysfunctions.

Animals↗

Antagonists of activin signaling: mechanisms and potential biological applications.

Activins are members of the transforming growth factor-beta (TGF-beta) superfamily that control many physiological processes such as cell proliferation and differentiation, immune responses, wound repair and various endocrine activities. Activins elicit these diverse biological responses by signaling via type I and type II receptor serine kinases. Recent studies have revealed details of the roles of inhibin, betaglycan, follistatin and its related protein follistatin-related gene (FLRG), Cripto and BAMBI in antagonizing activin action, and exogenous antagonists against the activin type I (SB-431542 and SB-505124) and type II (activin-M108A) receptors have been developed. Understanding how activin signaling is controlled extracellularly is the first step in providing treatment for wound healing and for disorders such as cachexia and cancer, which result from a deregulated activin pathway.

Activins↗

Circulating interleukin-6 in severe heart failure.

In a group of patients with New York Heart Association class IV heart failure, significant relations between interleukin-6 and tumor necrosis factor-alpha, and between levels of both interleukin-6 and tumor necrosis factor-alpha and plasma levels of norepinephrine were observed. The present study also demonstrates that in patients with heart failure, elevated levels of tumor necrosis factor-alpha and interleukin-6 may be present even without cachexia.

Adult↗

[Gelatinous bone marrow transformation in anorexia nervosa].

Moderate hematologic abnormalities, like anemia or leukopenia, are frequently seen in anorexia nervosa, whereas pancytopenia and bone marrow abnormalities are uncommon. We report a case of tricytopenia with gelatinous bone marrow transformation in anorexia nervosa. Marrow gelatinous transformation (also called serous fat atrophy or starvation marrow) is characterized by the association of marrow hypoplasia and interstitial infiltration of a ground gelatinous substance (acidic mucopolysaccharides). Changes in peripheral blood cell counts are various and moderate, and do not always reflect the severity of bone marrow damage. The pathogenesis is not yet well elucidated but is certainly related to the nutritional status because gelatinous bone marrow transformation is found in anorexia nervosa and in other clinical situations with cachexia. Gelatinous transformation of the marrow is reversible with feeding.

Adipose Tissue↗

The role of uncoupling proteins in pathophysiological states.

Until very recently, the uncoupling protein-1 (UCP1), present only in brown adipose tissue (BAT), was considered to be the only mitochondrial carrier protein that stimulated heat production by dissipating the proton gradient generated during respiration across the inner mitochondrial membrane and therefore uncoupling respiration from ATP synthesis. Recently, new uncoupling proteins, UCP2, UCP3, and UCP4, and brain mitochondrial carrier protein-1 (BMCP-1) have been described in mammalian tissues. The present review deals with the possible role of these proteins in different pathological conditions involving alterations in energy balance such as obesity or cachexia. In conclusion, the emergence of the UCP family has altered the approaches to bioenergetics and stressed the importance of uncoupling respiration in different pathophysiological conditions. An extensive qualitative and quantitative characterization of the new members of the UCP family in mammalian tissues will allow a better understanding of the molecular and regulatory mechanisms of thermogenesis and energy metabolism. At this point, we hope that the knowledge presented in the present review will not only stimulate a debate about the role of the UCP family in disease but also lead to applications beneficial for human health.

Animals↗

Azaftig, a urinary proteoglycan from a cachectic cancer patient, causes profound weight loss in mice.

Cachexia is a complex medical condition characterized by significant weight loss associated with decreased body fat and protein; the condition may present itself with or without anorexia. We have isolated and partially characterized a proteoglycan (azaftig) from the urine of cancer and AIDS patients experiencing weight loss. When given to mice, the purified azaftig resulted in a significant decrease in body weight and body fat without any effect on appetite. The results of these studies show that azaftig may be one of the many factors participating in the emergence of the cachectic state.

Acquired Immunodeficiency Syndrome↗

Depletion of high energy phosphate compouds in the tumor-bearing state and reversal after tumor resection.

BACKGROUND: Cancer cachexia is a syndrome manifested by a variety of metabolic abnormalities that include depletion of host energy stores. We studied liver and skeletal muscle high energy phosphate compounds, inorganic phosphorus (Pi), and the energy charge in tumor-bearing (TB), pair fed non-tumor-bearing (NTB), and tumor-bearing resected (RES) rats. METHODS: F344 rats were randomized into TB (n = 13), NTB (n = 13), and RES (n = 5) groups. On day 0, the flanks of the TB and RES animals were injected with 1 x 10(7)n methylcholanthrene (MCA)-induced sarcoma cells. On day 19, TB and NTB rat liver and skeletal muscle were analyzed for adenine nucleotides, phosphocreatine, and Pi, and RES animals underwent tumor resection followed by tissue analysis 10 days later. RESULTS: Although the liver adenylate energy charge was maintained, the level of liver adenosine monophosphate was significantly increased and the liver adenosine diphosphate level was decreased in the TB animals (3.55 +/- 0.6, 3.70 +/- 0.3 mumoles/gm dry weight, p < 0.05, p = 0.05, respectively) when compared with the NTB animals (3.06 +/- 0.4, 4.00 +/- 0.5 mumoles/gm dry weight, respectively). Muscle adenosine diphosphate levels were significantly decreased in the TB animals (1.57 +/- 0.7 mumoles/gm dry weight) as compared with NTB animals (2.23 +/- 0.7 mumoles/gm dry weight, p < 0.05). In addition, muscle adenosine triphosphate, phosphocreatine, and phosphocreatine/adenosine triphosphate ratios were significantly decreased in TB animals (19.94 +/- 4.5, 81.51 +/- 12.8, and 4.20 +/- 0.8 mumoles/gm dry weight, respectively) as compared with NTB animals (24.44 +/- 1.9, 116.72 +/- 7.5, and 4.81 +/- 0.4 mumoles/gm dry weight, respectively, p < 0.05) and RES animals (24.08 +/- 3.3, 124.10 +/- 12.2, and 5.19 +/- 0.5 mumoles/gm dry weight, respectively, p < 0.05). CONCLUSIONS: These alterations in high energy phosphate compounds in liver and skeletal muscle indicate that although the energy charge is maintained, energy depletion occurs early in the tumor-bearing state. These changes are tumor specific, not related to anorexia, and revert to non-tumor-bearing levels after tumor resection.

Adenosine Triphosphate↗

Metabolic abnormalities in cancer patients: carbohydrate metabolism.

Weight loss in patients with a variety of cancers is associated with a poor prognosis. Consistent abnormalities of carbohydrate metabolism are seen in cancer patients with weight loss and appear to represent derangements in host metabolism that are induced by the presence of cancer. To define therapeutic strategies to improve the poor clinical outcome for patients with cancer cachexia, investigations are under way to define the relationships among glucose metabolism, altered energy expenditure, caloric intake, weight loss, and clinical outcome.

Animals↗

Fat metabolism and cancer.

Progressive weight loss and anorexia are frequent phenomena in cancer patients. Although cachexia is an expected occurrence in the terminal stages of nearly all malignancies, it may be a presenting sign when the tumor burden is quite small. Lipid depletion occurs out of proportion to the protein loss and accounts for most of the weight loss in cancer. Lipids, more specifically fatty acids, are the major source of fuel in mammals and may also be used in the synthesis of new cell products. Lipolysis and lipogenesis are under the influence of several important enzymes and peptide hormones that may be modulated by a variety of exogenous factors. There is evidence that cancer patients have lost the normal homeostatic responses to decreased energy intake or starvation that allow a decrease in oxygen consumption and protein sparing. An increase in Cori cycle activity or futile recycling of metabolic products occurs with a net energy expenditure rather than energy production. Clinical studies have shown that the body lipid depletion accompanying tumor progression is not solely secondary to decreased food intake and may be reproduced by the transplantation of certain noninvasive tumors to normal hosts. Elevated basal lipolysis has occasionally been seen early in tumor growth. Such findings suggest the presence of a tumor-associated factor responsible for this increase in lipid mobilization. Some of the potential mechanisms for the altered lipid metabolism seen in cancer have been discussed. Metabolic substrates may be remodeled and directed away from fuel-efficient into energy-requiring pathways. An increased energy expenditure may occur as a result of the energy costs of tumor synthesis, an uncoupling of oxidative phosphorylation, or energy-requiring futile cycling. An overall depletion of lipid may be the final outcome of the inhibition of lipid deposition. TNF/cachectin has recently been found to suppress the activity and synthesis of several key lipogenic enzymes, including lipoprotein lipase. Abnormalities in insulin secretion or sensitivity may be involved in the decrease of fat storage in malignancy. Insulin also exerts a significant antilipolytic effect by its antagonism of hormone-sensitive lipase. Mediators of lipolysis and abnormal lipid metabolism may occur in a number of clinical conditions and include ectopic hormone production, growth factors, and tumor-associated lipolytic factors (lipid mobilizing factor, toxohormone).

Animals↗

Nutritional support of patients with cancer of the gastrointestinal tract.

Malnutrition is extremely common in patients with malignant disease. Whereas the causes are multifactorial, the predominant factor is the imbalance between nutrient intake and host nutrient requirements. Furthermore, the evidence suggests that cachexia is related to abnormal changes in host intermediary metabolism induced by host-tumor interactions, and endogenous peptides such as TNF may be important mediators. The role of nutritional therapy in cancer patients remains to be defined. Clearly, patients with severe malnutrition benefit from nutritional intervention. However, the benefit of nutritional therapy in less severe cases of malnutrition as an adjuvant to oncologic therapy has yet to be established.

Cachexia↗

Twist regulates cytokine gene expression through a negative feedback loop that represses NF-kappaB activity.

During Drosophila embryogenesis, the dorsal transcription factor activates the expression of twist, a transcription factor required for mesoderm formation. We show here that the mammalian twist proteins, twist-1 and -2, are induced by a cytokine signaling pathway that requires the dorsal-related protein RelA, a member of the NF-kappaB family of transcription factors. Twist-1 and -2 repress cytokine gene expression through interaction with RelA. Mice homozygous for a twist-2 null allele or doubly heterozygous for twist-1 and -2 alleles show elevated expression of proinflammatory cytokines, resulting in perinatal death from cachexia. These findings reveal an evolutionarily conserved signaling circuit in which twist proteins regulate cytokine signaling by establishing a negative feedback loop that represses the NF-kappaB-dependent cytokine pathway.

Animals↗

Effect of hydrazine sulphate on whole-body protein breakdown measured by 14C-lysine metabolism in lung cancer patients.

In a prospective double-blind trial twelve malnourished patients with lung cancer were randomised to receive either placebo or hydrazine sulphate (60 mg three times daily) for 30 days. Fasting lysine flux was determined by a primed 4-hour continuous infusion of 14C-lysine before and after one month of hydrazine treatment. Baseline plasma lysine flux was 2580 (SD 580) mumol/h for the placebo group and 2510 (440) mumol/h for the hydrazine group. After one month the placebo group showed a slight rise to 2920 (450) mumol/h (p = 0.08) and the hydrazine group showed a significant fall to 1840 (750) mumol/h (p less than 0.05); serum albumin fell in the placebo group and was unchanged in the hydrazine group. Administration of hydrazine sulphate to reduce aminoacid flux may favourably influence the metabolic abnormalities in cancer cachexia.

Adult↗

Plasma leptin levels in children with cyanotic and acyanotic congenital heart disease and correlations with growth parameters.

BACKGROUND: Leptin has been shown to be an integral component of energy homeostasis and regulation of body weight. Leptin regulates adipose tissue mass and correlates with the fat mass, however the circulating levels are altered by energy intake. Research on the physiological function of leptin has primarily focused on its role in the pathogenesis of obesity. However, its role in the negative energy imbalance is unclear. Increased energy expenditure is a primary factor in the reduced growth in infants with cyanotic congenital heart disease. The objective of this study was to examine the possible role of leptin on growth and nutrition in children with cyanotic and acyanotic congenital heart disease. METHODS AND RESULTS: In this study, plasma leptin levels, nutritional and growth status were evaluated in 28 cyanotic and 20 acyanotic patients with congenital heart disease. Although standard deviation (S.D.) of height (P<0.01), mid arm circumference (MAC) (P<0.001) and body mass index (BMI) (P<0.05) were significantly low in cyanotic group, plasma leptin levels were similar. Energy intake was high in cyanotic group. In both cyanotic and acyanotic group, plasma leptin levels were correlated with BMI (R: 0.388, P<0.05 and R: 0.789, P<0.001, respectively). In addition, leptin levels were significantly correlated with the height (R: 0.415, P<0.05), MAC (R: 0.482, P<0.05) and BMI (R: 0.377, P<0.05) S.D. in cyanotic subjects. CONCLUSIONS: Our results suggest that the leptin regulating axis is intact in cyanotic patients and leptin does not contribute to the cachexia of cyanotic heart disease.

Adolescent↗

Ghrelin in chronic liver disease.

BACKGROUND/AIMS: Ghrelin is a novel endogenous ligand for the growth hormone (GH) secretagogue receptor involved in energy metabolism, glucose homeostasis and food intake. We investigated the role of ghrelin and insulin-like growth factor-1 (IGF-1), the mediator of the GH axis, in patients with chronic liver diseases (CLD). METHODS: Ghrelin and IGF-1 serum levels were determined in 105 CLD patients and 97 healthy controls and correlated with clinical and biochemical parameters. RESULTS: Ghrelin was significantly elevated and IGF-1 reduced in CLD patients compared with healthy controls. IGF-1 serum levels inversely correlated with Child's classification. Ghrelin levels were significantly elevated in Child C cirrhosis patients independent of the aetiology of liver disease. Ghrelin levels did not correlate with liver function. In contrast, there was a correlation of ghrelin with clinical (gastrointestinal bleeding, ascites, encephalopathy) and biochemical (anaemia, inflammatory markers, hypoglycaemia, renal dysfunction) parameters. In a subgroup of patients with CLD and hepatocellular carcinoma (HCC), we observed a strong inverse correlation between alpha-fetoprotein (AFP) and ghrelin levels. CONCLUSIONS: Unlike IGF-1, ghrelin is not correlated with liver function, but increases in Child C cirrhosis and with complications of CLD. The inverse correlation with AFP in HCC patients requires further studies on the potential impact of ghrelin on the pathogenesis of anorexia-cachexia syndrome.

Adolescent↗

Hepatic amino acid and protein metabolism in non-anorectic, moderately cachectic tumor-bearing rats.

BACKGROUND/AIMS: Cancer cachexia is characterized by loss of lean body mass. Under this condition peripheral proteins are broken down and transferred to visceral organs and the tumor. The liver is the principal organ in the regulation of protein and amino acid metabolism, but liver amino acid kinetics in cancer are unclear. Therefore, we examined the effects of increasing tumor loads on hepatic protein turnover and amino acid handling. METHODS: A MCA-induced sarcoma was implanted subcutaneously in Lewis rats (200-225 g). Rats were studied when the tumor was 5-15% or 15-30% of body weight. Control rats were sham implanted. Under anesthesia, a primed constant infusion of para-aminohippuric acid and L-[3, 4-3H]-valine was given to calculate hepatic substrate fluxes and protein turnover. Serum alpha 2-macroglobulin concentration was measured to determine the acute phase response. RESULTS: Carcass weight decreased approximately 10% in large-tumor-bearing rats (p < 0.001). Liver wet weight increased from 5.5 +/- 0.1 (g) to 5.9 +/- 0.2 in the small-tumor-bearing group and 7.3 +/- 0.3 (p < 0.001) in the large-tumor-bearing group, with minimal changes in water content. Serum alpha 2-macroglobulin concentration, essential and gluconeogenic amino acid uptake by the liver increased in large-tumor-bearing animals. This contrasted with reduced liver ammonia uptake and unchanged urea production in tumor-bearing rats. In the small-tumor-bearing group liver protein synthesis increased, whereas protein breakdown remained unchanged. In the large-tumor-bearing group protein synthesis also increased, but protein breakdown decreased to zero. CONCLUSIONS: The study shows that in tumor-bearing rats, liver uptake of essential and gluconeogenic amino acids increases without significant increases in urea or glucose production. Synthesis of both structural and export proteins, e.g. acute phase proteins, increases suggesting that the liver becomes a more efficient nitrogen-sparing and active protein-synthesizing organ during the growth of a malignant tumor.

Amino Acids↗

Peptide YY and cancer: current findings and potential clinical applications.

Peptide YY (PYY) is a naturally occurring gut hormone with mostly inhibitory actions on multiple tissue targets. PYY has been identified in several carcinoid tumors and a decreased expression of PYY may be relevant to the development and progression of colon adenocarcinoma. Treatment with PYY decreases growth in pancreatic and breast tumors, most likely through a reduction in intracellular cAMP. In cancer patients, PYY may also improve malnutrition that results from iatrogenic causes or cachexia associated with advanced disease. PYY plays a significant role in multiple aspects of cancer from regulation of cell growth to potential therapeutic applications.

Adenocarcinoma↗

Supportive treatment improves survival in multivisceral cholesterol crystal embolism.

Disseminated cholesterol crystal embolism (CCE) is a devastating complication of atherosclerosis that is often considered beyond therapeutic resources. We designed and implemented a treatment protocol based on an analysis of the main causes of death in disseminated CCE with renal involvement. From 1985 to 1996, we applied this protocol in 67 consecutive atherosclerotic patients admitted to our renal intensive care unit for acute renal failure (serum creatinine level, 6 +/- 2.5 mg/dL) accompanied by signs and symptoms of CCE. The other principal clinical features in these patients were cardiac failure with pulmonary edema (61%), gastrointestinal ischemia (33%), cutaneous ischemia (90%), and retinal cholesterol embolism (22%). Disseminated CCE followed one or several precipitating factors, including angiographic procedure(s) (85%), anticoagulant treatment (76%), and cardiovascular surgery (33%). Our treatment schedule systematically addressed the identified causes of death in these patients. (1) To avoid CCE recurrence, any form of anticoagulant treatment was withdrawn, and aortic catheterization and surgery were proscribed. (2) To treat or prevent cardiac failure, a high-dose vasodilator regimen was instituted, including angiotensin-converting enzyme (ACE) inhibitors. In case of cardiac failure refractory to vasodilators, loop diuretics were added and, if necessary, overhydration was corrected by ultrafiltration/hemodialysis (11 patients). (3) To avoid cachexia, severe metabolic disorders were treated by hemodialysis (41 patients), and special attention was given to providing enteral or parenteral nutritional support. Patients with declining general status and laboratory evidence of inflammation, as well as those with new episodes of CCE, were treated with corticosteroids. Statistical analysis found a significant correlation between the requirement for hemodialysis and previous anticoagulation, degree of renal insufficiency, and severity of cardiac failure. Conversely, there was no correlation between requirement for hemodialysis and ACE inhibitor treatment or presence of atherosclerotic renal artery stenosis/thrombosis. The inhospital mortality rate was 16%. There were no clinical or laboratory elements found on admission that were predictive of inhospital mortality. Among survivors, 32% had to remain on maintenance hemodialysis therapy for irreversible chronic renal failure. Including initial hospitalization, the 1-year survival rate was 87%, which compares favorably with reports in the literature indicating a first-year mortality rate of 64% to 81%. Overall follow-up was 19 +/- 20 months, ranging from 1 to 74 months. The 4-year survival rate was 52%. We conclude that an intensive-care, specific-treatment schedule reduces mortality in multivisceral cholesterol embolism.

Aged↗

Establishment of a new human pancreatic cancer cell line, NOR-P1, with high angiogenic activity and metastatic potential.

We present here a new cell line, NOR-P1, established from a metastatic subcutaneous tumor of a patient with pancreatic cancer. The cells show rapid growth in culture with a doubling time of 16 h and high migration activity. Genetic and molecular analyses revealed high telomerase activity and a mutation in the K-ras oncogene. Of particular interest, the cells express markedly elevated mRNA levels of angiogenic factors, vascular endothelial growth factor and platelet-derived growth factor, as well as other tumor growth-related factors. Subcutaneous transplantation of the NOR-P1 cells into nude mice formed solid, hemorrhagic tumors which were histologically diagnosed as adenocarcinoma with dense blood vessels and severe extravasation of blood. Furthermore, when NOR-P1 cell suspension was injected directly into the pancreas of nude mice, the cells grew rapidly to form intra-pancreatic tumors associated with liver metastases and peritoneal dissemination that resulted in cachexia and subsequent death. These properties suggest that NOR-P1 is an aggressive pancreatic cancer cell line with a high metastatic potential and may serve as a useful experimental model for studying tumor angiogenesis and metastasis of pancreatic cancer.

Aged↗