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Cachectin: a hormone that triggers acute shock and chronic cachexia.

Septic shock and invasive infection are diseases caused by humoral mediators of both exogenous and endogenous origin. The search for and identification of these factors has led to the discovery and molecular cloning of cachectin. This pyrogenic cytokine is identical to tumor necrosis factor (TNF) and, when released into the circulation, causes profound shock and multiple organ injury. Cachectin antibodies protect against the lethal effects of mice given endotoxin and baboons given E. coli, a result suggesting that this mediator is both necessary and sufficient to provoke septic shock. Cachectin is produced in humans after endotoxin infusion; the infusion of small doses of TNF is associated with fever, rigors, headache, and hypotension. Septicemic patients also produce cachectin, and during meningococcal infection, patients with the highest serum levels of cachectin die. Chronic cachectin production causes a potentially lethal syndrome of cachexia, anemia, and protein and lipid wasting. Future investigation is being directed toward the development of cachectin antibodies for use in treating the humorally mediated systemic complications of infectious disease.

Animals↗

Tumor necrosis factor not detectable in patients with clinical cancer cachexia.

Tumor necrosis factor (TNF) has been implicated in the pathogenesis of cachexia in neoplastic and infectious diseases. To assess the relationship between TNF and weight loss among cancer patients, we assayed TNF levels in serum from 19 patients who had lost 8%-40% of premorbid weight. The weight loss experienced by these patients was not attributable to anticancer therapy, gastrointestinal disorders, or other medical problems. TNF was measured using a quantitative sandwich enzyme-linked immunosorbent assay that is sensitive to human TNF in serum at concentrations greater than or equal to 40 pg/mL. No TNF was detected in serum samples from the 19 patients studied.

Adult↗

Cystine levels, cystine flux, and protein catabolism in cancer cachexia, HIV/SIV infection, and senescence.

Patients with skeletal muscle catabolism (cachexia) fail to conserve the skeletal muscle protein and release large amounts of nitrogen as urea. Previous studies suggest that the threshold for the conversion of amino acids into other forms of chemical energy and the concomitant production of urea are regulated by the plasma cystine level and hepatic cysteine catabolism. Studies of plasma amino acid exchange rates in the lower extremities now show that healthy young subjects regulate their plasma cystine level in a process that may be described as controlled constructive catabolism. The term controlled describes the fact that the release of cystine and other amino acids from the peripheral tissue is negatively correlated with (certain) plasma amino acid levels. The term constructive describes the fact that the release of cystine is correlated with an increase of the plasma cystine level. The regulation of the plasma cystine level is disturbed in conditions with progressive skeletal muscle catabolism including cancer, HIV infection, and old age. These conditions show also a low plasma glutamine:cystine ratio indicative of an impaired hepatic cystine catabolism. In HIV+ patients and SIV-infected macaques, a decrease of the plasma cystine level was found to coincide with the decrease of CD4+ T cells.

Adipose Tissue↗

Cancer cachexia.

Despite recent advances in the delivery of nutritional support, cachexia continues to contribute to the morbidity and mortality of cancer patients. This impasse has called for a review of the many factors that are believed to be associated with weight loss in the cancer host. This article reviews the topic with a view to past problems and areas for investigation in the future.

Cachexia↗

Low dose megestrol acetate can abrogate cachexia in advanced tumor patients receiving systemic interferon-alpha and/or interleukin-2 based antineoplastic therapy.

The progression of advanced malignancies is often associated with anorexia and cachexia, especially when patients receive concomitant systemic antitumor treatment. Megestrol acetate has been reported to increase appetite and body weight, and a linear dose-response relation for doses from 160 up to 1600 mg/day has been proposed. In our study, we were able to show that megestrol acetate at doses as low as 60 mg/day was sufficient to abrogate anorexia and weight loss. In contrast to previous studies, this effect was achieved while patients continued systemic antineoplastic therapy.

Anorexia↗

Overexpression of mutant ras in human melanoma increases invasiveness, proliferation and anchorage-independent growth in vitro and induces tumour formation and cachexia in vivo.

Malignant melanoma is the deadliest form of skin cancer. Previous studies have shown that the incidence of ras mutation increases with progression of melanoma, but that such mutations may not be present in the earliest radial growth phase melanomas. Recently it has been proposed that introduction of ras mutations into cells deficient in tumour suppressor genes such as p16 (INK4a) is sufficient to induce characteristics of cellular transformation such as anchorage-independent growth and tumour formation in vivo. To test this hypothesis in human melanoma, mutant N-ras, mutant H-ras or wild-type H-ras genes were transfected by electroporation into WM35 cells, a p16-deficient human melanoma cell line of low invasive potential. Increased expression of mutant ras p21 enhanced anchorage-dependent cell growth on tissue culture plastic. In addition, overexpression of mutant N-ras and H-ras, but not of wild-type H-ras, increased the experimental invasive potential, inducing anchorage-independent growth in soft agar, increasing cell motility measured by time-lapse video microscopy, and increasing invasiveness through reconstituted basement membranes. Finally, overexpression of mutant H-ras in melanoma cells was shown to increase tumorigenicity and to induce cachexia when H-ras transfected cell lines were injected subcutaneously in severe combined immunodeficiency (SCID) mice. Thus the addition of activating ras mutations to a melanoma cell line already deficient in p16 leads to enhanced proliferation, survival and migration in vitro and to enhanced subcutaneous tumour formation in vivo. This phenotype is typical of the behaviour of vertical growth phase (VGP) melanoma, and we propose that activation of the ras signalling pathway in the presence of deletions in p16 or related tumour suppressors can induce the VGP melanoma phenotype.

Animals↗

The cachexia associated with Trypanosoma cruzi acute infection in mice is attenuated by anti-TNF-alpha, but not by anti-IL-6 or anti-IFN-gamma antibodies.

BALB/c male mice acutely infected with Trypanosoma cruzi underwent a severe weight loss (around 20%, from day 18 to 31 post-infection), when compared to age-matched uninfected animals. Though mice regained weight later, when blood parasites were hardly detectable, wasting extended over the chronic phase of infection. The onset and the magnitude of weight loss were related to the mouse susceptibility to infection, since they were respectively earlier and higher in male mice which will die than in surviving ones, in males than in females, and in BALB/c than in B6D2 [(C57B1/6 x DBA/2)F1], a mouse strain more resistant to infection. Fat weight of infected mice (male BALB/c) was reduced by 60 to 80%, whereas lean mass was unaffected and water content rose by 6 to 10% in acute and chronic infection. Haematocrit was also decreased by 15-16% in acute infection. Animals failed to compensate their energetic loss since their food intake remained similar to that of uninfected animals. Injections of neutralizing anti-TNF-alpha monoclonal antibody into infected male mice, during the first two weeks but not later in infection, significantly attenuated the weight loss. Early administration of anti-IL-6 or anti-IFN-gamma MoAbs did not improve the mouse wasting. Taken together, these data show that TNF is a key agent of cachexia occurring in the acute T. cruzi infection in mice.

Animals↗

Depressed protein synthesis is the dominant characteristic of muscle wasting and cachexia.

Wasting of skeletal muscle is a characteristic of many conditions besides those involving primary muscle disease, for example, cancer, cachexia and postoperative catabolism. There is now strong evidence from studies in animals, normal men and in patients with a variety of diseases to suggest that the muscle mass is regulated primarily by alterations in the protein synthetic rate and that changes in muscle protein degradation are largely secondary and adaptive. If this is so, attention should be focused on possible means of therapeutic intervention to increase protein synthesis rather than on ways of decreasing protein degradation.

Animals↗

Interleukin 1, tumour necrosis factor-alpha (cachectin) and the pathogenesis of cancer cachexia.

Soluble proteins synthesized and released by phagocytic cells may be responsible for the protein and energy wasting frequently observed during catabolic states, including cancer cachexia. This hypothesis is based upon the observation that many of the hosts's metabolic responses to infection, inflammation, accidental trauma and some forms of cancer are remarkably similar. Anorexia and degradation of skeletal and connective tissue protein, as well as increases in hepatic protein synthesis and energy expenditure, can all be reproduced by the administration of activated macrophage products. During inflammatory states, including active tumour growth, increased production of some cytokines, including interleukin 1 and tumour necrosis factor-alpha (cachectin), have been observed. If these monokines serve as metabolic inducers, then efforts to block therapeutically the actions of macrophage-secreted substances may play a role in slowing the progression of tissue-wasting associated with catabolic states, particularly due to malignant tumours.

Animals↗

Effect of a protein and energy dense N-3 fatty acid enriched oral supplement on loss of weight and lean tissue in cancer cachexia: a randomised double blind trial.

AIM: N-3 fatty acids, especially eicosapentaenoic acid (EPA), may possess anticachectic properties. This trial compared a protein and energy dense supplement enriched with n-3 fatty acids and antioxidants (experimental: E) with an isocaloric isonitrogenous control supplement (C) for their effects on weight, lean body mass (LBM), dietary intake, and quality of life in cachectic patients with advanced pancreatic cancer. METHODS: A total of 200 patients (95 E; 105 C) were randomised to consume two cans/day of the E or C supplement (480 ml, 620 kcal, 32 g protein +/- 2.2 g EPA) for eight weeks in a multicentre, randomised, double blind trial. RESULTS: At enrolment, patients' mean rate of weight loss was 3.3 kg/month. Intake of the supplements (E or C) was below the recommended dose (2 cans/day) and averaged 1.4 cans/day. Over eight weeks, patients in both groups stopped losing weight (delta weight E: -0.25 kg/month versus C: -0.37 kg/month; p = 0.74) and LBM (Delta LBM E: +0.27 kg/month versus C: +0.12 kg/month; p = 0.88) to an equal degree (change from baseline E and C, p<0.001). In view of evident non-compliance in both E and C groups, correlation analyses were undertaken to examine for potential dose-response relationships. E patients demonstrated significant correlations between their supplement intake and weight gain (r = 0.50, p<0.001) and increase in LBM (r = 0.33, p = 0.036). Such correlations were not statistically significant in C patients. The relationship of supplement intake with change in LBM was significantly different between E and C patients (p = 0.043). Increased plasma EPA levels in the E group were associated with weight and LBM gain (r = 0.50, p<0.001; r = 0.51, p = 0.001). Weight gain was associated with improved quality of life (p<0.01) only in the E group. CONCLUSION: Intention to treat group comparisons indicated that at the mean dose taken, enrichment with n-3 fatty acids did not provide a therapeutic advantage and that both supplements were equally effective in arresting weight loss. Post hoc dose-response analysis suggests that if taken in sufficient quantity, only the n-3 fatty acid enriched energy and protein dense supplement results in net gain of weight, lean tissue, and improved quality of life. Further trials are required to examine the potential role of n-3 enriched supplements in the treatment of cancer cachexia.

Aged↗

Cachexia and tumour necrosis factor-alpha in cytomegalovirus infection.

Although cachexia is a common feature of cytomegalovirus infection, little is known about its cause. To explore any contributory role that tumour necrosis factor-alpha (TNF) might have the serum concentrations of TNF in eight patients who developed CMV disease after liver transplantation were investigated. All patients exhibited pronounced and long lasting increases in TNF serum concentrations. Increased endogenous TNF concentrations were associated with weight loss and anorexia. In contrast, liver transplant recipients without CMV disease showed no weight loss.

Cachexia↗

Insulin-like growth factor I preserves host lean tissue mass in cancer cachexia.

Insulin-like growth factor I (IGF-I) has been implicated in the regulation and maintenance of skeletal muscle protein balance and thus may be of potential benefit in attenuating the cancer-cachectic process. To examine this hypothesis, 47 sham or tumor-implanted Fischer 344 rats were randomized to receive either continuous subcutaneous IGF-I (220 or 400 micrograms/day) or saline as control. In the tumor-bearing (TB) population, IGF-I-treated groups showed a dose-dependent increase in host weight gain (P less than 0.05), final carcass weight (P less than 0.05), and gastrocnemius muscle weights (P less than 0.05) and protein contents (0.50 +/- 0.02, 0.40 +/- 0.01, and 0.52 +/- 0.03 g/100 g host wt, for non-TB saline, TB saline, and TB 400 mg IGF-I groups, respectively; P less than 0.01, IGF-I vs. saline). Similar increases in muscle RNA and DNA contents (P less than 0.01) were induced by IGF-I treatment (P less than 0.05). IGF-I treatment in this rat sarcoma model significantly reduced the proportion of aneuploid cells in the tumor (aneuploid-to-diploid ratio: TB saline 1.1 +/- 0.2 vs. TB IGF-I 0.5 +/- 0.1; P less than 0.05). IGF-I treatment attenuated host muscle protein and lean tissue depletion without stimulation of tumor growth. The tumor aneuploid population was reduced in response to IGF-I treatment. Thus IGF-I may be a potential therapeutic agent in cancer-induced cachexia.

Analysis of Variance↗

Experimental cachexia: effects of MCA sarcoma in the Fischer rat.

Temporal patterns of the cachectic effects of tumor growth and their relation to systemic levels of tumor necrosis factor (TNF) and IL-6 (interleukin-6) were examined in a rat model of experimental cancer cachexia employing the methylcholanthrene (MCA) sarcoma. Fischer 344 rats, implanted with biotelemeters for measuring temperature and activity, were implanted subdermally with tumor tissue fragments. Ad libitum-fed and pair-fed controls were sham incised. Bioassays for TNF and IL-6 were performed on serial plasma samples, obtained via jugular vein at 3- to 6-day intervals throughout the experimental period. Tumor growth induced significant anorexia, weight loss, and a decline in motor activity corresponding to an increase in mean plasma IL-6 levels, independent of reduced food intake or weight loss alone as shown in pair-fed controls. A significant lowering of body temperature then developed, followed by a two- to threefold increase in water consumption. The patterns of weight loss and temperature reduction differed in rate and degree from those seen with pair feeding.

Animals↗

Cancer cachexia and cannabinoids.

Anorexia and cachexia are diagnosed in more than two-thirds of all cancer patients with advanced disease, and are independent risk factors for morbidity and mortality. Anorexia, nausea and vomiting often are described as more significant inhibiting factors for quality of life of cancer patients than even intense pain. In 1986, delta-9-tetrahydrocannabinol (THC), the main effective constituent of cannabis, was licensed as an anti-emetic drug in cancer patients receiving chemotherapy. In addition, in clinical studies THC has shown significant stimulation of appetite and increase of body weight in HIV-positive and cancer patients. The appetite-stimulating effect of cannabis itself has also been well documented in many anecdotal cases. There are strong indications that cannabis is better tolerated than THC alone, because cannabis contains several additional cannabinoids, like cannabidiol (CBD), which antagonize the psychotropic actions of THC, but do not inhibit the appetite-stimulating effect. Therefore, we intend to compare the therapeutic effects of whole-plant extracts of cannabis to those of THC (dronabinol) alone in controlled studies.

Appetite Stimulants↗

Metabolic response to enteral food in different phases of cancer cachexia in rats.

The resting energy expenditure (REE) and postprandial energy expenditure (PPEE) were measured using closed-circuit indirect calorimetry in Walker 256 carcinosarcoma-bearing rats. The results were compared to the appropriate controls. The PPEE measurements were performed after oral test feeding. At the beginning of the tumor growth, the REE and PPEE were similar in all groups. In the second week, the tumor-bearing rats showed increased REE and decreased PPEE. The tumor-bearing rats lost weight and became anorectic. After day 14, the REE rapidly dropped to very low values and the body weight continued to decrease. This study makes it possible to differentiate three phases of cancer cachexia: silent or preclinical, hypermetabolic and hypometabolic.

Animals↗

Megestrol acetate for anorexia and cachexia.

Based on promising preliminary information obtained from uncontrolled pilot studies, several randomized, placebo-controlled, double-blind clinical trials have been launched to evaluate the effectiveness of megestrol acetate for the treatment of patients with anorexia and/or cachexia. The results of these studies have demonstrated that megestrol acetate can improve patients' appetites and promote nonfluid weight gain in some. They also suggest that megestrol acetate has antiemetic properties. Ongoing clinical trials are evaluating the dose-response relationship of megestrol acetate for these clinical problems and whether megestrol acetate will improve the survival of patients at risk for developing cancer anorexia/cachexia.

Anorexia↗

Rheumatoid cachexia: cytokine-driven hypermetabolism accompanying reduced body cell mass in chronic inflammation.

The cytokines IL-1 beta and TNF-alpha cause cachexia and hypermetabolism in animal models, but their role in human inflammation remains controversial. The relationship between in vitro cytokine production and metabolism was examined in 23 adults with RA and 23 healthy control subjects matched on age, sex, race, and weight. Body composition was measured by multicompartmental analysis of body cell mass, water, fat, and bone mass. Resting energy expenditure (REE) was measured by indirect calorimetry. Cytokine production by PBMC was measured by radioimmunoassay. Usual energy intake, physical activity, disability scores, medication use, and other confounders were also measured. Body cell mass was 13% lower (P < 0.00001), REE was 12% higher (P < 0.008), and physical activity was much lower (P < 0.001) in subjects with RA. Production of TNF-alpha was higher in RA than controls, both before and after stimulation with endotoxin (P < 0.05), while production of IL-1 beta was higher with endotoxin stimulation (P < 0.01). In multivariate analysis, cytokine production was directly associated with REE (P < 0.001) in patients but not in controls. While energy and protein intake were similar in the two groups and exceeded the Recommended Dietary Allowances, energy intake in subjects with RA was inversely associated with IL-1 beta production (P < 0.005). In this study we conclude that: loss of body cell mass is common in RA; cytokine production in RA is associated with altered energy metabolism and intake, despite a theoretically adequate diet; and TNF-alpha and IL-1 beta modulate energy metabolism and body composition in RA.

Adult↗