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Body composition changes in rats with experimental cancer cachexia: improvement with exogenous insulin.

Exogenous insulin treatment has been shown to improve food intake and host weight of cachectic tumor-bearing (TB) rats, but the composition of the host weight gain has not been quantitated. Sixty-six Fischer 344 rats were randomized to seven groups: early nontumor-bearing (NTB) (n = 10) who underwent compositional analysis (CA) on the day the methylcholanthrene sarcoma was implanted in TB rats; pretreatment-NTB (n = 10) and pretreatment-TB (n = 10) who underwent CA 25 days later when rats began treatment with saline or insulin; and finally saline-treated NTB (n = 9), saline-treated TB (n = 9), insulin-treated NTB (n = 9), and insulin-treated TB (n = 9), who underwent CA following 5 days of treatment with daily saline or neutral protamine hagedorn insulin 2 units/100 g. Body weight and food intake were measured daily. For compositional analysis, the tumor was separated from the host in TB rats and the entire rat in NTB animals was homogenized, lyophilized and analyzed for fat, water, protein, potassium, chloride, and sodium. The tumor was processed in a similar fashion. In response to insulin, NTB rats ate significantly more food, and had an increase in body weight gain. Compositional analysis of insulin-treated NTB rats indicated a slight, but insignificant, increase in body fat and a similar insignificant decrease in body protein. TB rats ate significantly less than NTB rats during the 5-day experimental period, and insulin treatment significantly increased food intake to levels similar to NTB animals. Compositional analysis indicated that the tumor-bearing state resulted in a significant decrease in total host water, protein, fat, potassium, sodium, and chloride. Insulin administration resulted in preservation of host nitrogen, fat, potassium, sodium, and chloride in cachectic tumor-bearing rats. Insulin treatment did not affect tumor dry weight or composition. The results suggest that exogenous insulin, can preserve normal host composition of TB rats during cachectic decline.

Animals↗

[Diagnosis and follow-up of Russel's diencephalic cachexia by echography, x-ray computed tomography and nuclear magnetic resonance].

A diencephalic astrocytoma was diagnosed by ultrasonography in a 5 months old girl with nystagmus and emaciation. A 27 months follow-up with ultrasonography, computed tomography and magnetic resonance imaging, showed an initial improvement after irradiation and afterwards the development of complications with ventricular dilatation and parenchymal calcifications.

Astrocytoma↗

Pancreatic carcinoma and low serum testosterone; a correlation secondary to cancer cachexia?

Serum testosterone concentration (S(T)) and four nutritional parameters were measured in patients with pancreatic adenocarcinoma (19), other malignancy (17) and other non-malignant conditions (29). In females neither the diagnosis nor the nutritional parameters correlated with the S(T). In males significantly lower S(T) were found in those with malignant conditions. Also, in males poor nutritional status correlated significantly with low S(T). Those patients with pancreatic adenocarcinoma did not have significantly lower S(T) than those with other cancers. A covariate analysis of the results supports the conjecture that it is primarily the poor nutritional status of cancer patients which leads to depression of S(T). This study provides no evidence to support the existence of a direct relationship between pancreatic cancer and testosterone metabolism.

Adenocarcinoma↗

Cancer cachexia.

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Anemia↗

Growth hormone and experimental cancer cachexia.

Plasma levels of growth hormone (GH) and the effect of GH treatment have been evaluated in adult nongrowing sarcoma-bearing mice (C57BL/6J). Prepubertal tumor-bearing mice, tumor-bearing hypophysectomized Sprague-Dawley rats, and malnourished non-tumor-bearing animals served as additional groups of study and control animals. Adult sarcoma-bearing mice showed an increase in plasma levels of GH early following tumor implantation. GH levels increased further with tumor progression. The anorexia and the state of malnutrition in sarcoma-bearing mice were the major factors behind increased GH levels. Muscle wasting and body composition in the tumor-bearing host were not improved by GH treatment at doses that increased growth rate in normal growing mice with intact pituitaries or partially normalized growth rate in hypophysectomized rats. Exogenous GH supported tumor growth and host body growth to the same extent in hypophysectomized rats. Exogenous GH in excess of endogenous GH did not stimulate tumor growth further. It is suggested that increased GH production in a tumor-bearing host acts in concert with other hormones to stimulate endogenous substrate mobilization and in tumor-bearing animals to prevent substrate deficiency and hypoglycemia. On the basis of this conclusion, it is unlikely that GH supplementation to a freely eating tumor-bearing host will support replenishment of host tissues.

Animals↗

Characterization of a transplantable adenocarcinoma of the mouse colon producing cachexia in recipient animals.

MAC16 is a chemically induced, transplantable adenocarcinoma of the colon passaged in inbred NMRI mice. At small tumor burdens (less than 1% of the host weight), weight loss was observed without a reduction in food intake. As the tumor mass increased, weight loss also increased and reached 33% of host body weight in females and 20% in males when compared with the weight of age-matched controls. The reduction in host body weight was directly proportional to the tumor size and was reversible when the tumor was excised. There was a preferential loss of body fat in tumor-bearing animals with an increase in the plasma level of free fatty acids, although there was a minimal elevation of ketone bodies. Tumor growth was accompanied by progressive hypoglycemia and a reduction in the plasma insulin levels. The decrease in plasma insulin may have contributed to the catabolic effects of progressive tumor growth.

Adenocarcinoma↗

Role of insulin in development of cancer cachexia in nongrowing sarcoma-bearing mice: special reference to muscle wasting.

This study evaluated whether altered insulin metabolism is a key factor behind weight loss during sarcoma growth in nongrowing mice (C57BL/6J). Fasted sarcoma-bearing mice had decreased blood glucose concentrations but unchanged levels of insulin, compared with those in pair-weighed and freely fed controls. During refeeding, insulin levels were inappropriately low for the degree of glycemia in sarcoma-bearing mice compared with those of pair-weighed and freely fed controls. Injections ip of glucose to tumor-bearing animals resulted in insulin levels comparable to postabsorptive values in healthy control animals, indicating that hypoinsulinemia in freely eating tumor-bearing animals was due to a reduced glycemic sensitivity for pancreatic insulin release. Insulin supplementation at doses [4 IU/100 g (body wt)] that increase body fat in normal animals could not protect the tumor-bearing host from progressive loss of body fat or lean tissues. Exogenous insulin in excess of endogenous insulin production did not stimulate tumor growth. Nitrogen and RNA-DNA content were significantly decreased in the quadriceps muscle of tumor-bearing mice. This reduction was independent of altered insulin levels and could not be prevented by exogenous insulin. The depressed capacity of protein synthesis in extensor digitorum longus (EDL) muscle could be entirely attributed to the state of malnutrition in tumor-bearing animals. The sensitivity and responsiveness of protein synthesis in EDL muscles to insulin were normal in tumor-bearing mice, regardless of whether exogenous insulin exerted its effect in vivo or in vitro. This study confirms insulin resistance for glucose metabolism in an experimental sarcoma animal model. Such changes are concluded to be secondary to anorexia and necessary to counteract hypoglycemia. In non-growing sarcoma-bearing mice, malnutrition and anorexia account entirely for depressed muscle protein synthesis, which is not explained by insulin resistance at the translational level. Insulin metabolism is not a key factor behind progression of wasting in sarcoma-bearing mice, but anorexia is.

Animals↗