Presence of insulin-like growth factors and their binding proteins in rat milk.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to O Koldovsky.
Explore the source record for details and available documents.
The gastric effect of bombesin, a homolog of the mammalian peptide found in breast milk, was studied in suckling, weanling and adult rats (11, 30 and 90 days old, respectively). Control gastric emptying was not different in the three age groups. When bombesin was given orogastrically in a saline vehicle, 30 min before a nonabsorbable radiolabeled marker (used to assess gastric emptying), a significant and dose-related inhibitory effect was observed in sucklings. In contrast to the data with orogastric peptide in saline, when bombesin was given orogastrically in rat milk 30 min before the marker, there was no effect on gastric emptying in sucklings. Inhibition of gastric emptying was again demonstrated in the sucklings when bombesin (0.6-30 micrograms) was given with an artificial rat milk substitute 30 min before the marker. In contrast, orogastric bombesin in rat milk or rat milk substitute had no effect on gastric emptying in weanlings or adults. While s.c. bombesin in saline did not alter gastric emptying in sucklings, s.c. administration of the peptide produced a significant and dose-related increase in gastric emptying in both weanlings and adults. These results support the concept that milk-borne peptides, such as gastrin releasing peptide, may be involved in regulation of gastric function in suckling rats.
In vitro degradation of 125I-labeled somatostatin-14 (Tyr11) [I-SS-14(Tyr11)] by luminal flushings of rat gastrointestinal segments was studied to characterize the fate of somatostatin in the gastrointestinal lumen. In addition, we evaluated the effect of rat milk as a potential inhibitor of luminal degradation of 125I-SS-14(Tyr11). Degradation of 125I-SS-14(Tyr11) was not detected in stomach flushings from either suckling or weanling rats. Luminal flushings from the small intestine degraded 125I-SS-14(Tyr11), with a gradient increase of activity from duodenum to midjejunum (degradation in suckling rat midjejunum and ileum was about five times lower than that in weanling rat). Degradation of 125I-SS-14(Tyr11) by luminal flushings of suckling rat midjejunum was dose dependently inhibited by rat milk casein and soluble fractions. Inhibitory activity of rat milk soluble fraction was heat labile and several times more potent than that of casein fraction. Casein fraction appeared to be stable at 100 degrees C for up to 30 min of exposure. These studies suggest that somatostatin is stable in the gastric lumen and that milk protects somatostatin from intestinal luminal proteolysis, indicating a possible physiological significance of milk-borne SS-14 for the suckling rat gastrointestinal tract.
Because of the presence of bombesin-like immunoreactivity in milk, we investigated if enteral administration of bombesin affects the intestinal luminal content of trypsin and protein in 12-14-day-old rats. Bombesin (40 micrograms/kg), given either orogastrically or subcutaneously, produced a significant elevation in the intestinal content of trypsin activity. Thus, enterally-administered bombesin can produce acute biologic effects in suckling rats.
Individuals with sufficient intestinal lactase hydrolyze ingested lactose to galactose and glucose and these monosaccharides are absorbed. Lactose is not digested completely when intestinal lactase activity is low and the disaccharide is malabsorbed. Breath hydrogen excretion after lactose ingestion is used commonly to diagnose lactose malabsorption. However, no direct tests are currently used to assess lactose absorption. We tested a new method of assessing lactose absorption in 26 healthy individuals. Each subject ingested 50 g of lactose. Participants were evaluated for lactose malabsorption using a standard 3-h breath hydrogen test. In addition, the urinary excretions of galactose, lactose, and creatinine were quantitated for 3-5 h after lactose ingestion. On the basis of breath hydrogen analysis after lactose ingestion, 12 individuals were lactose malabsorbers (defined as a rise in the breath hydrogen concentration of greater than 20 parts per million above the baseline value). The 14 subjects who did not malabsorb lactose by breath hydrogen testing (defined as a rise in the breath hydrogen concentration of less than or equal to 20 parts per million above the baseline value), had significantly more galactose in their urine 1, 2, and 3 h after lactose ingestion than lactose malabsorbers. The ratio of excreted lactose to excreted galactose was significantly decreased in lactose absorbers compared with lactose malabsorbers (p less than 0.001). Determination of the ratio of urinary galactose to urinary creatinine separated lactose absorbers from lactose malabsorbers completely (p less than 0.001). We conclude from this study that the determination of urinary galactose, urinary lactose/galactose ratio, and urinary galactose/creatinine ratio may be used to assess lactose digestion and absorption in healthy adults.
Explore the source record for details and available documents.
An experiment was done to determine maltase, sucrase, isomaltase, and trehalase activities in mucosa of different segments of small intestines of young turkeys as influenced by age and diet. Two-day-old poults were fed diets containing no added fat [44.6% starch, 2.2% ether extract by weight (HC)], 10% tallow (T), or 10% corn oil [(CO) 29.0% starch, 10.9% ether extract]. Diets HC, T, and CO were calculated to contain 2,705, 3,083, and 3,196 kcal ME/kg, respectively, and constant protein, TSAA, and lysine:ME ratios were maintained. Appreciable maltase and isomaltase specific activities (micromoles of substrate hydrolyzed per milligram protein per hour) were observed in 2-day-old poults, and activities of these enzymes increased in poults fed the HC diet through 7 and 14 days, respectively. At 2 days, specific activity of sucrase was low, and trehalase activity was not detected. Sucrase activity increased steadily through 28 days of age in poults fed the HC diet. Trehalase activity was detected at 7 days of age and reached a maximum by Day 21 after hatch. By Day 28, trehalase activity had disappeared from all segments except for the proximal jejunum. In 28-day-old poults fed the HC diet, specific activities of all disaccharidases were greatest in the jejunal segments; i.e., 21, 1.06, 7.24, and .034 mumol/mg protein/h for maltase, sucrase, isomaltase, and trehalase, respectively, in the proximal jejunum. Poults fed the T or CO diets had significantly lower disaccharidase activities than did those fed the HC diet, beginning at 7 days of age. Changes in specific activities of disaccharidases as related to age or diet or both were not always parallel, suggesting that each enzyme may be regulated by or affected by diet in a partly independent way.
Dietary transferrins are postulated to play a number of biological roles in the developing gastrointestinal tract. A prerequisite for such roles is survival in the gastrointestinal lumen. To evaluate luminal transferrin digestion during development, 125I-transferrin was incubated in vitro with luminal fluid from the stomach and small intestine of 12-day old suckling and 31-day old weanling rats, followed by analysis of degradation products. At both ages, the rate of degradation to trichloroacetic acid soluble material was maximum in the mid-jejunum and lowest in the stomach. Transferrin hydrolysis by weanling fluid was 2-10 times greater than suckling depending upon the particular segment. Chromatography of small intestinal reaction mixtures on Sephacryl S-200 revealed label eluting between intact transferrin and free iodine: two such peaks were generated with suckling fluid and one with weanling. Electrophoresis on SDS-polyacrylamide gels showed two major bands of Mr 69K and 20K; the former was the predominant reaction product with suckling intestinal fluid and the latter with weanling. Both methods showed small amounts of apparently intact transferrin. Results indicate substantial yet incomplete luminal degradation of transferrin which is more pronounced in the weanling than in the suckling. This survival is compatible with potential biological functioning of dietary transferrin or one of its breakdown products within the gastrointestinal tract.
To characterize the changes in pancreatic function during postnatal development, isolated pancreatic acini were prepared from rats aged 8-9, 12-14 and 20 days and from adult rats. Isolated acini maintained a normal microscopic appearance and viability as judged by exclusion of trypan blue and linear incorporation of tritiated leucine into total protein. The rate of incorporation in 8-day-old acini was 20% of that observed in adult rats. Significant dose-dependent increases in amylase release in response to carbachol were observed in all age groups; stimulated amylase secretion was significantly less in the 8- to 9- and 12- to 14-day-old animals than in the 20-day-old and adult rats. These data indicate that viable isolated pancreatic acini can be prepared from suckling rats and that these acini exhibit an altered in vitro responsiveness to carbachol. This preparation should therefore be a useful model for in vitro studies of the development of pancreatic function.
Adult rats that were maintained on a low-carbohydrate intake showed rapid increase in the activities of sucrase, maltase, and lactase along the length of the small intestine when they were fed a high-starch diet. In the present study, we have identified these activity increases, and showed that they reflect proportional accumulations in enzyme-protein of sucrase-isomaltase (EC 3.2.1.10, 3.2.1.48), maltase-glucoamylase (EC 3.2.1.20), and neutral lactase (EC 3.2.1.23). It was determined that each of these enzymes exists in adult rat intestine in single immunoreactive form and accounts as a group for all sucrase, cellobiase, and most maltase and lactase activities. Dietary change from low to high carbohydrate (starch) resulted in an increase in [3H]leucine accumulation in each of the enzymes, without a change in the amount of label accumulation in total intestinal proteins. The increase in label accumulation in the brush-border carbohydrase pools was matched generally by proportional elevation in the pool concentrations of sucrase-isomaltase and lactase but not maltase. These studies suggest that the elevation of intestinal carbohydrase concentrations induced by high-carbohydrate feeding may involve selective stimulation of their synthesis.
Serum from 28 hyperthyroid, hypothyroid, and euthyroid pre- or early puberty females was examined for N-acetyl-beta-glucosaminidase (HEX) activity. Total, isoenzyme A (labile), and isoenzyme B (stable) levels were determined for this enzyme. A high degree of correlation (r = 0.76; p less than 0.001) exists between total hexosaminidase activity and thyroid hormone levels (as reflected by the Free Thyroxine Index). Examining each isoenzyme individually, A is selectively enhanced (r = 0.84; p less than 0.0005) whereas B displays no significant change regardless of thyroid activity. In hyperthyroid individuals, levels of total hexosaminidase (730 +/- 67 units) (mean +/- S.D.) and isoenzyme A (516 +/- 46) were significantly higher than levels found in either the hypothyroid (total: 547 +/- 30; isoenzyme A: 352 +/- 31) or euthyroid (total: 620 +/- 81; isoenzyme A: 423 +/- 45) groups. However, no change was observed in levels of isoenzyme B among hypothyroid (195 +/- 19), euthyroid (197 +/- 43) and hyperthyroid (215 +/- 32) groups. These data substantiate our earlier findings in the rat, wherein thyroxine administration evoked a similar response in the liver. They are of particular interest in light of the deficiency of HEX A in variants of GM2 gangliosidosis.
Acid lipase activity in the livers of thyroidectomized rats is increased by administration of L-thyroxine. The response is dose-dependent and can be demonstrated within 12 h after treatment. L-Triiodothyronine also evokes a rapid increase in acid lipase activity, and this increase can be inhibited by coadministration of actinomycin D.
Explore the source record for details and available documents.
Fatty acid esterification was measured in fetal jejunal and ileal isografts implanted under the kidney capsules of adult host rats and compared to the age-controlled intestine grown in situ. Studies were conducted on the 21st, 35th, 49th, and 63rd postconceptional days, corresponding to prenatal, suckling, weaning, and weaned rats. Substantial fatty acid esterification activity was found in prenatal jejunum but not in ileum. A proximal-distal gradient of fatty acid esterification was observed in all groups grown in situ, but not in isografts. The monoglyceride pathway (MG-P) accounted for about one-third of total fatty acid esterification (TFAE) in jejunum grown in situ and remained constant through the study. In the ileum, MG-P was the major esterification pathway during the first 4 postnatal weeks, but decreased progressively after weaning to become insignificant in adult rats. TFAE fell in the jejunal isografts, whereas it increased in the ileum. MG-P remained as the major pathway in the implanted jejunum and ileum. Our studies suggest that luminal contents are probably the most important modulator for the development and maintenance of intestinal fatty acid esterification, and "fetal programming" manifested by changes in fatty acid esterification mechanisms in the isografts is less important.
Triiodothyronine injected daily to pregnant rats for the last week of gestation (50 microgram/100 g b.wt) increased the specific activities of 5 acid glycosidases in the fetal forebrain and cerebellum. Cortisone (50 mg/100 g b.wt) administered in the same period had no effect on cerebellum acid hydrolases, but decreased their activity in the forebrain.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
We have found that acid beta-galactosidase, beta-glucuronidase and N-acetyl-beta-glucosaminidase in the rat fetal liver increase during the last week of pregnancy. These enzyme activities were influenced by treatment of pregnant rats (daily from day 16) with L-tri-iodothyronine (20 or 50 microgram/100 gm b.w.) or cortisone acetate (10 or 50 mg/100 gm b.w.) as studied in their fetuses obtained on day 22 by caesarian section.