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GH-releasing peptides improve cardiac dysfunction and cachexia and suppress stress-related hormones and cardiomyocyte apoptosis in rats with heart failure.

Growth hormone (GH)-releasing peptides (GHRP), a class of synthetic peptidyl GH secretagogues, have been reported to exert a cardioprotective effect on cardiac ischemia. However, whether GHRP have a beneficial effect on chronic heart failure (CHF) is unclear, and the present work aims to clarify this issue. At 9 wk after pressure-overload CHF was created by abdominal aortic banding in rats, one of four variants of GHRP (GHRP-1, -2, and -6 and hexarelin, 100 mug/kg) or saline was injected subcutaneously twice a day for 3 wk. Echocardiography and cardiac catheterization were performed to monitor cardiac function and obtain blood samples for hormone assay. GHRP treatment significantly improved left ventricular (LV) function and remodeling in CHF rats, as indicated by increased LV ejection fraction, LV end-systolic pressure, and diastolic posterior wall thickness and decreased LV end-diastolic pressure and LV end-diastolic dimension. GHRP also significantly alleviated development of cardiac cachexia, as shown by increases in body weight and tibial length in CHF rats. Plasma CA, renin, ANG II, aldosterone, endothelin-1, and atrial natriuretic peptide were significantly elevated in CHF rats but were significantly decreased in GHRP-treated CHF rats. GHRP suppressed cardiomyocyte apoptosis and increased cardiac GH secretagogue receptor mRNA expression in CHF rats. GHRP also decreased myocardial creatine kinase release in hypophysectomized rats subjected to acute myocardial ischemia. We conclude that chronic administration of GHRP alleviates LV dysfunction, pathological remodeling, and cardiac cachexia in CHF rats, at least in part by suppressing stress-induced neurohormonal activations and cardiomyocyte apoptosis.

Animals↗

Walker carcinoma 256: a model for studies on tumor-induced anorexia and cachexia.

Data on anorexia and cachexia induced by Walker carcinoma 256 in Sprague-Dawley rats were analyzed in order to standardize an experimental model using a statistical (nondeterministical) procedure for assessing the efficacy of potential orexigenic agents. This model was characterized by a mean survival time of 14 +/- 1 days and by food intake and body weight loss starting from day 6 after tumor implantation. The complex course of cachexia was characterized by reduction in the weight of gastrocnemius muscle and epididymal adipose tissue, taken as representative sites of loss of proteins and lipids.

Adipose Tissue↗

HIV-related cachexia: potential mechanisms and treatment.

Involuntary weight loss or wasting indicative of severe protein energy malnutrition is a frequent complication of acquired immune deficiency syndrome (AIDS). Malnutrition, with its associated adverse effects on immunocompetence, may contribute to the progression of AIDS itself. Since death from wasting is ultimately related to the magnitude of tissue depletion, restoration of body cell mass may enhance survival. The mechanism of weight loss in AIDS has not been clearly elucidated. The etiology is likely to be multifactorial, the result of interactions between decreased caloric intake, malabsorption, and alterations in energy expenditure secondary to hormonal and/or metabolic abnormalities. Although weight loss is occasionally reversible with treatment of underlying infections and/or easily identifiable and reversible causes, the majority of patients are not this fortunate. Enteral and parenteral nutrition, which are expensive, cumbersome, and potentially morbid, have been suggested by some as therapeutic options. Megestrol acetate, a synthetic, orally active progestational agent, has been reported to stimulate appetite and weight gain. Data regarding the use of megestrol acetate for the treatment of cachexia related to human immunodeficiency virus (HIV) infection demonstrate convincingly its effectiveness in treating many patients with HIV-related anorexia and cachexia.

Acquired Immunodeficiency Syndrome↗

Chronic administration of ghrelin improves left ventricular dysfunction and attenuates development of cardiac cachexia in rats with heart failure.

BACKGROUND: Ghrelin is a novel growth hormone (GH)-releasing peptide that may also induce vasodilation and stimulate feeding through GH-independent mechanisms. We investigated whether ghrelin improves left ventricular (LV) dysfunction and attenuates cardiac cachexia in rats with chronic heart failure (CHF). METHODS AND RESULTS: Ligation of the left coronary artery or sham operation was performed; 4 weeks after surgery, rat ghrelin (100 microg/kg SC BID) or saline was administered for 3 weeks. Echocardiography and cardiac catheterization were performed. Serum GH and insulin-like growth factor-1 were significantly higher in both CHF and sham rats treated with ghrelin than in those given placebo (P<0.05 for both). CHF rats given placebo showed an impaired increase in body weight compared with sham rats given placebo (P<0.05). CHF rats treated with ghrelin, however, showed a significantly greater increase in body weight than those given placebo (+10% versus +3%, P<0.05). They showed significantly higher cardiac output (315+/-49 versus 266+/-31 mL. min(-1). kg(-1), P<0.05) and LV dP/dt(max) (5738+/-908 versus 4363+/-973 mm Hg/s, P<0.05) than CHF rats given placebo. Ghrelin increased diastolic thickness of the noninfarcted posterior wall, inhibited LV enlargement, and increased LV fractional shortening in CHF rats (from 15+/-3% to 19+/-3%, P<0.05). CONCLUSIONS: Chronic subcutaneous administration of ghrelin improved LV dysfunction and attenuated the development of LV remodeling and cardiac cachexia in rats with CHF.

Animals↗

Metabolic effects of cachectin/tumor necrosis factor are modified by site of production. Cachectin/tumor necrosis factor-secreting tumor in skeletal muscle induces chronic cachexia, while implantation in brain induces predominantly acute anorexia.

We have developed a murine model of wasting by injecting intracerebrally cells which continuously secrete h-cachectin/TNF (CHO-TNF) to: (a) determine the effects of cachectin/TNF produced continuously in the central nervous system (CNS), and (b) compare the metabolic effects of cachectin/TNF-secreting tumor in the brain to the cachexia caused by CHO-TNF tumor in peripheral tissue (IM). Intracerebral CHO-TNF tumors produced increased serum h-cachectin/TNF levels with lethal hypophagia and weight loss (mean survival time of 11 d); these changes were not observed in association with nonsecretory control brain tumors. The metabolic consequences of intracerebral cachectin/TNF production were indistinguishable from acute, lethal starvation: whole-body lipid content was decreased significantly but protein was conserved. Although intramuscular cachectin/TNF-secreting tumors caused similar increases of serum h-cachectin/TNF levels, profound anorexia did not develop; wasting developed after a longer period of tumor burden (50 d) with classical signs of cachexia (i.e., anemia and depletion of both protein and lipid). These studies provide a reproducible animal model of site-specific cytokine production and suggest that, regardless of serum levels, cachectin/TNF produced locally in brain influences both the rate of development of wasting and its net metabolic effects.

Animals↗

Cancer cachexia is regulated by selective targeting of skeletal muscle gene products.

Cachexia is a syndrome characterized by wasting of skeletal muscle and contributes to nearly one-third of all cancer deaths. Cytokines and tumor factors mediate wasting by suppressing muscle gene products, but exactly which products are targeted by these cachectic factors is not well understood. Because of their functional relevance to muscle architecture, such targets are presumed to represent myofibrillar proteins, but whether these proteins are regulated in a general or a selective manner is also unclear. Here we demonstrate, using in vitro and in vivo models of muscle wasting, that cachectic factors are remarkably selective in targeting myosin heavy chain. In myotubes and mouse muscles, TNF-alpha plus IFN-gamma strongly reduced myosin expression through an RNA-dependent mechanism. Likewise, colon-26 tumors in mice caused the selective reduction of this myofibrillar protein, and this reduction correlated with wasting. Under these conditions, however, loss of myosin was associated with the ubiquitin-dependent proteasome pathway, which suggests that mechanisms used to regulate the expression of muscle proteins may be cachectic factor specific. These results shed new light on cancer cachexia by revealing that wasting does not result from a general downregulation of muscle proteins but rather is highly selective as to which proteins are targeted during the wasting state.

Animals↗

Megestrol acetate for cachexia and anorexia in advanced non-small cell lung cancer: a randomized study comparing two different doses.

BACKGROUND: The primary aim of the study was to compare two different dose levels of megestrol acetate, administered for cancer-related anorexia and cachexia for 3 months. METHODS: From August 1996 to December 2000, 119 patients with advanced non-small cell lung cancer were randomized to take 160 mg/day or 320 mg/day of megestrol acetate for 3 months at the Gülhane Military Medicine Academy of Ankara, Turkey. Patients were controlled at biweekly periods. RESULTS: There were 59 patients in the single dose arm (group 1) and 60 patients in the twice a day dose arm (group 2). The mean percentages of weight loss were 16.9% and 16.7% in group 1 and 2, respectively. In the first and the second month of weight gain, there were no significant differences in the two groups (P = 0.23 and P = 0.11). In the third month, weight gain was significantly higher in group 2 than in group 1 (P = 0.038). Toxicity was similar for both dose levels. CONCLUSIONS: Megestrol acetate can be safely and effectively given to patients with advanced non-small cell lung cancer. Although lower doses of megestrol acetate can be effective for anorexia and cachexia, the higher dose level seems to be more efficient.

Adult↗

Copper chelation with tetrathiomolybdate suppresses adjuvant-induced arthritis and inflammation-associated cachexia in rats.

Tetrathiomolybdate (TM), a drug developed for Wilson's disease, produces an anti-angiogenic and anti-inflammatory effect by reducing systemic copper levels. TM therapy has proved effective in inhibiting the growth of tumors in animal tumor models and in cancer patients. We have hypothesized that TM may be used for the therapy of rheumatoid arthritis and have examined the efficacy of TM on adjuvant-induced arthritis in the rat, which is a model of acute inflammatory arthritis and inflammatory cachexia. TM delayed the onset of and suppressed the severity of clinical arthritis on both paw volume and the arthritis score. Histological examination demonstrated that TM significantly reduces the synovial hyperplasia and inflammatory cell invasion in joint tissues. Interestingly, TM can inhibit the expression of vascular endothelial growth factor in serum synovial tissues, especially in endothelial cells and macrophages. Moreover, the extent of pannus formation, which leads to bone destruction, is correlated with the content of vascular endothelial growth factor in the serum. There was no mortality in TM-treated rat abnormalities. TM also suppressed inflammatory cachexia. We suggest that copper deficiency induced by TM is a potent approach both to inhibit the progression of rheumatoid arthritis with minimal adverse effects and to improve the well-being of rheumatoid arthritis patients.

Administration, Oral↗

A systematic review of the evidence on symptom management of cancer-related anorexia and cachexia.

PURPOSE/OBJECTIVES: To evaluate and synthesize the evidence regarding cancer-related anorexia and cachexia symptom management and make recommendations for future directions. DATA SOURCES: Cochrane Library, MEDLINE, CANCERLIT, CINAHL, Dissertation Abstracts, EBM Reviews--Best Evidence, EMBASE, and the Computer Retrieval of Information on Scientific Projects. Current overviews, clinical trials, systematic research reviews, and meta-analyses. DATA SYNTHESIS: All studies focused on increasing food intake. Nonpharmacologic clinical trials increased caloric and protein intake but resulted in no improvement in nutritional status, weight, tumor response, survival, or quality of life. Weight, appetite, and well-being were improved with megestrol acetate, but nutritional status was not improved. Some exercise studies demonstrated improvements in nutrition-related outcomes, but these were not primary research outcomes. CONCLUSIONS: Symptom management of anorexia and cachexia should focus on decreasing energy expenditure or minimizing factors creating a negative energy balance, as well as improving food intake. Increased measurement sensitivity also is needed. IMPLICATIONS FOR NURSING: Improved nutritional assessment skills are needed with an emphasis on anticipated problems and current status.

Anorexia↗

Occurrence of hypercalcemia and leukocytosis with cachexia in a human squamous cell carcinoma of the maxilla in athymic nude mice: a novel experimental model of three concomitant paraneoplastic syndromes.

Hypercalcemia and leukocytosis may occur in conjunction as paraneoplastic syndromes associated with malignant disease. Here we describe a human squamous cell carcinoma of the maxilla that was associated with hypercalcemia and leukocytosis, and also cachexia. The primary tumor was surgically removed and established in permanent cell culture. When either primary tumors or cultured tumor cells were inoculated into nude mice, the nude mice developed the same paraneoplastic syndromes as those which occurred in the patient from whom the tumor was originally derived. The plasma calcium was increased two and one-half-fold and the WBC count 30-fold, and the body weight was decreased by 45% in tumor-bearing animals. Each of these paraneoplastic syndromes was alleviated by surgical excision of the tumor, indicating that the paraneoplastic syndromes were due to a factor or factors produced by the primary tumor. The development of each of these paraneoplastic syndromes in nude mice correlated positively with the other two syndromes. We examined the organs of tumor-bearing mice and found striking histopathologic abnormalities in the bones, spleen, and liver, but no infiltration with tumor cells. The bones showed marked evidence of osteoclastic bone resorption. This model of a human tumor associated with the hypercalcemia-leukocytosis paraneoplastic syndrome, together with cachexia, should make it possible to determine the mechanisms responsible for these paraneoplastic syndromes and their relationship to each other.

Animals↗

The cancer anorexia-cachexia syndrome.

PURPOSE: To review the research related to the anorexia-cachexia syndrome in patients with cancer, with attention to the etiology and symptomatic treatment. DESIGN: A comprehensive literature review using MEDLINE. RESULTS AND CONCLUSION: The anorexia-cachexia syndrome is a common problem in advanced cancer. Although many possible etiologies have been investigated, the cause has not been determined. Appropriate clinical evaluation is necessary to identify those patients who may respond to available, symptomatic treatments.

Animals↗

Cancer cachexia: it's time for more clinical trials.

Cancer cachexia (CC) is a multifactorial paraneoplastic syndrome characterized by anorexia, body weight loss, loss of adipose tissue and skeletal muscle, accounting for at least 20% of deaths in neoplastic patients. CC significantly impairs quality of life and response to anti-neoplastic therapies, increasing morbidity and mortality of cancer patients. Muscle wasting is the most important phenotypic feature of CC and the principal cause of function impairment, fatigue and respiratory complications, mainly related to a hyperactivation of muscle proteolytic pathways. Most current therapeutic strategies to counteract CC have proven to be only partially effective. In the last decade, the correction of anorexia, the inhibition of catabolic processes and the stimulation of anabolic pathways in muscle have been attempted pharmacologically with encouraging results in animal models and through preliminary clinical trials. However, data in the clinical setting are still scanty and non definitive. It is time to start prospective, randomized, controlled trials to evaluate which drugs are effective in counteracting the loss of lean of muscle mass and in improving nutritional status and quality of life in patients affected by cancer-related cachexia.

Cachexia↗

[Neuromuscular abnormalities in disuse, ageing and cachexia].

Cachexia, ageing and disuse and their effects on the human and animals neuromuscular system are reviewed. Disuse induces reduction of muscle fibers (mainly II) diameter with peripheral myofibrils lost; there is no core-targetoid or even reduction on myophosphorilase activity, both typical of denervation; the acetylcholine spontaneous release and trophic factors on myoneural junction are maintained; muscle fibers could change to angular shape. Ageing affects nerve and muscle by a continuous and progressive process of denervation and reinnervation; the number of motor units diminishes in sixties without any denervation electric activity; there is also reduction on the amount of ACh release on terminal neurons and mitochondrial oxidative capacity leading to compensatory type I muscle fiber number increase. Cachexia also induces reduction on muscle fibers diameter first on legs and then on arms and trunk; there is type II atrophy with occasional angular fibers, RNA/proteic synthesis reduction and normal DNA.

Aged↗

Is TNF really involved in cachexia?

A review on the possible involvement of tumor necrosis factor-alpha (TNF) in cachexia is presented. While this cytokine is definitely linked to sepsis and tumor-associated weight loss in some experimental models, other cytokines, such as interleukin-6 (IL-6) or interferon-gamma (IFN-gamma), alone or in combination with TNF, may also play an important role in the development of cachexia.

Animals↗

Decreased serum tryptophan in patients with cancer cachexia correlates with increased serum neopterin.

We investigated serum tryptophan (Trp), neopterin (NPT) and immunosuppressive acidic protein (IAP), one of tumor-associated tumor marker, concentrations in 28 patients with gastrointestinal tumors representing cancer cachexia and 10 healthy controls. NPT comes from activated macrophages presumably activated by tumor-sensitized T cells via gamma-interferon (IFN-gamma) excitation of the macrophages. We found that the NPT level was significantly higher than the control value. The negative correlation of NPT and Trp concentrations indicates activity of indoleamine 2,3-dioxygenase (IDO), a Trp degradating enzyme, in cancer-burden patients. The activity of IDO can be induced by cytokines such as IFN-gamma, and therefore low Trp levels may result from endogenous IFN-gamma production due to immune activation against tumors. We also found a positive correlation between NPT and IAP levels, suggesting that host immune activation against tumors played a role in the immunosuppression of cancer-burden states, followed by cancer-cachexia.

Adult↗

Decrease of serum carnitine levels in patients with or without gastrointestinal cancer cachexia.

AIM: To evaluate the levels of serum carnitine in patients with cancer in digestive organs and to compare them with other cancers in order to provide new insights into the mechanisms of cachexia. METHODS: Fifty-five cachectic patients with or without gastrointestinal cancer were enrolled in the present study. They underwent routine laboratory investigations, including examination of the levels of various forms of carnitine present in serum (i.e., long-chain acylcarnitine, short-chain acylcarnitine, free carnitine, and total carnitine). These values were compared with those found in 60 cancer patients in good nutritional status as well as with those of 30 healthy control subjects. RESULTS: When the cachectic patients with gastro-intestinal cancer were compared with the cachectic patients without gastrointestinal cancer, the difference was -6.8 micromol/L in free carnitine (P < 0.005), 0.04 micromol/L in long chain acylcarnitine (P < 0.05), 8.7 micromol/L in total carnitine (P < 0.001). In the cachectic patients with or without gastrointestinal cancer, the difference was 12.2 micromol/L in free carnitine (P < 0.001), 4.60 micromol/L in short chain acylcarnitine (P < 0.001), and 0.60 micromol /L in long-chain acylcarnitine (P < 0.005) and 17.4 micromol/L in total carnitine (P < 0.001). In the cachectic patients with gastrointestinal cancer and the healthy control subjects, the difference was 15.5 micromol/L in free carnitine (P < 0.001), 5.2 micromol /L in short-chain acylcarnitine (P < 0.001), 1.0 micromol/L in long chain acylcarnitine (P < 0.001), and 21.8 micromol/L in total carnitine (P < 0.001). CONCLUSION: Low serum levels of carnitine in terminal neoplastic patients are decreased greatly due to the decreased dietary intake and impaired endogenous synthesis of this substance. These low serum carnitine levels also contribute to the progression of cachexia in cancer patients.

Adult↗

[A study on the relationship between the production of cytokines and the biological features of cachexia using renal cell carcinoma heterotransplanted to nude mice].

We studied the biological features of cacheixa using renal cell carcinoma heterotransplanted to nude mice (JRC 11) where cachexia was caused after the inoculation of tumour. The results of our study were as follows; 1) The JRC 11 tumour expressed mRNA of interleukin-6 by the analysis using the polymerase chain reaction method (PCR). 2) The human IL-6 was detected in the sera of nude mice according to the growth of JRC 11. On the other hand, human IL-1-beta, human tumour necrosis factor (hTNF)-alpha and human interferon (hIFN)-gamma were not detected. 3) The serial body weight of nude mice excluding tumour weight decreased at the 3rd week after the inoculation of tumour compared with tumour non-inoculated mice (control). Furthermore, the experimental group performed the resection of JRC 11 at the 3rd week after the inoculation of tumour showed a re-increase in the body weight, and reached the same weight as that of the control group at the 6th week after the inoculation of tumour. At the same time, serum hIL-6 was not detected in this group. 4) The serial weight of visceral organs including the liver, kidney and spleen began to decrease at the 3rd week after the inoculation of tumour compared with the control group. We conclude that serum IL-6 is defined as a promoter of cachexia in renal cell carcinoma relating to paraneoplastic syndrome.

Animals↗