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An electron microscopic study of lipid absorption in the pyloric caeca of rainbow trout (Salmo gairdnerii) fed wax ester--rich zooplankton.

Rainbow trout were killed 4 and 18 h after being fed wax ester-rich marine zooplankton and the absorptive epithelium of the pyloric caeca examined by electron microscopy. Numerous osmiophilic drops were seen in the lamina propria underlying the epithelium of fish killed at both times, but these drops were only abundant within columnar epithelial cells of fish killed 4 h after feeding. Pinocytotic profiles were not common at the luminal plasma membranes, nor were osmiophilic droplets seen in the terminal web area between the luminal plasma membrane and the extensive smooth endoplasmic reticulum. Numerous osmiophilic droplets, 30--100 nm in diameter, were present in the cisternae of the smooth endoplasmic reticulum with up to five separate droplets per individual cisterna. Columnar epithelial cells also contained up to 100 large osmiophilic drops ("conglomerates") which tended to be concentrated in the supranuclear (Golgi) regions. The conglomerates were 250--1200 nm in diameter and were themselves made up of smaller droplets 30--400 nm in diameter. Conglomerates were present both within intracellular membranes and free in the cytoplasm. Osmiophilic droplets in the intercellular spaces and lamina propria were similar in size to individual droplets within conglomerates. We conclude that triacylglycerols are elaborated in the smooth endoplasmic reticulum, transferred to and processed in the Golgi region and finally discharged serosally as chylomicron-like particles of not greater than 400 nm diameter.

Animals

Histopathological and enzymological studies on the effects of chronic lead nitrate intoxication in the digestive system of a freshwater teleost, Channa punctatus.

The effect of lead nitrate on the digestive system of a teleost fish, Channa punctatus has been studied after 125 days of exposure to a sublethal concentration (6.8 mg/liter). The results show that considerable degenerative changes are produced in the histological structure of liver, intestine, and pyloric caeca. In the liver, the damage is in the form of liver cord disarray, necrosis, inflammation of portal areas, hardening of connective tissue, shrinkage of nuclei, and septa formation around blood vessels. No fatty infiltration or glycogen depletion has been observed. Lipofuscin granules accumulated in the cytoplasm of hepatocytes. In the intestine and pyloric caeca flattening of villi at a number of places, inflammation, and necrosis are the most conspicuous changes. The activities of alkaline phosphatase and aminotripeptidase are inhibited in the liver. In stomach, alkaline phosphatase is inhibited but an elevation in amylase activity was noted. Acid phosphatase showed an increase in the intestine and pyloric caeca while aminotripeptidase and glycylglycine dipeptidase were inhibited.

Aminopeptidases

Studies on the effect of dimecron on the digestive system of a fresh water fish, Channa punctatus.

The effect of exposure to a sublethal concentration (0.32 mg/L) of Dimecron for 20 days on the digestive system of a fresh water teleost fish, Channa punctatus has been studied. The most conspicuous pathological changes in the liver were vacuolation of the cytoplasm of hepatocytes, enlargement of nuclei, rupture of the cell membrane, liver cord disarray, damage of connective tissue, infiltration of phagocytes and necrosis. The mucosa of stomach was ruptured and the gastric glands were degenerated. The mucosal epithelium of intestine and pyloric caeca was also degenerated. The mucus secreting goblet cells showed hyperactivity and the intestinal lumen was filled with mucus. No conspicuous changes were noted in the rectum except for hypersecretion of mucus. Histochemical tests revealed that alkaline phosphatase and glucose-6-phosphatase were inhibited by Dimecron treatment. However, acid phosphatase showed slight increase in activity. Biochemical tests for enzyme activity confirmed the histochemical findings. Alkaline phosphatase activity was significantly inhibited in liver and intestine. There was a slight elevation in the activity of acid phosphatase in the liver and pyloric caeca of exposed fish, but this was not statistically significant. The glucose-6-phosphatase activity was significantly inhibited in the liver, intestine and pyloric caeca.

Animals

Effect of mercuric chloride on the digestive system of a teleost fish, Channa punctatus.

The effect of 1.8 mg/liter (LC50) of mercuric chloride exposure on the activities of alkaline phosphatase, acid phosphatase, glucose-6-phosphatase, amylase, pepsin, trypsin, tripeptidase glycyl-glycine dipeptidase and carnosinase has been examined in Channa punctatus. The three phosphatases have been inhibited in the liver but showed an increase in activity in the intestine and pyloric caeca. Amylase, pepsin and trypsin have also shown a slight increase in activity. There has been no significant alteration in the activites of the peptidases. The results show that mercury inhibits the activites of phosphatases in the liver but has no significant effect on the digestive enzymes within the experimental period of 96 hours.

Amylases

The in vivo effect of mercuric chloride on some digestive enzymes of a fresh water teleost fish, Channa punctatus.

Alterations in the activities of alkaline phosphatase, acid phosphatase, glucose-6-phosphatase amylase, trypsin, pepsin, aminotripeptidase, glycylglycine dipeptidase and carnosinase due to exposure of Channa punctatus to a sublethal concentration (0.30 mg/L) of mercuric chloride by bath for 20 days have been studied in the different parts of the digestive system. Afall in the activities of the three phosphatases was recorded except for alkaline phosphatase which showed a slight elevation in activity in intestine and pyloric caeca. An increase in the activity of amylase and the two proteases was observed in all the portions of the digestive system. The three peptidases revealed a decrease in activity.

Acid Phosphatase

Purification of a carboxypeptidase B-like enzyme from the starfish Dermasterias imbricata.

A carboxypeptidase B-like enzyme which catalyses the hydrolysis of synthetic esters of lysine and arginine has been isolated from the starfish Dermasterias imbricata. This carboxypeptidase B-like enzyme has a molecular weight of approximately 34 000 and shares this and other properties with bovine pancreatic carboxypeptidase B. The existence of zymogen for this activity in the pyloric caeca of the starfish is demonstrated. This zymogen has a molecular weight near 40 000 and appears to be analogous to other monomeric procarboxypeptidases B. The zymogen possesses an intrinsic low-level activity toward synthetic substrates of carboxypeptidase B and is activated by trypsin.

Animals

Development of Amphioplus abditus (Verrill) (Echinodermata: Ophiuroidea): I. Larval biology.

A fraction rich in secretory granules was prepared from the pyloric caeca of Asterias amurensis by sucrose density gradient centrifugation. The freshly prepared fraction exhibited no casein-hydrolyzing activity- but showed nine times as much specific activity as that of tissue homogenates after incubation at 37 degrees C for thirty minutes. Electron microscopy showed that the secretory granules were membrane-bound granules measuring 0.5-290 mu in diameter and contained dense and/or light amorphous substances.

Animals

Mycobacteriosis in mountain whitefish (Prosopium williamsoni) from the Yakima River, Washington.

Mycobacteriosis was found in mountain whitefish (Prosopium williamsoni) taken from the Yakima River near Richland, Washington in 1975 and 1976. The disease appeared to affect about 8% of the population sampled. Gross lesions were present in most visceral organs, but were most common in the kidney, liver and pyloric caeca. Microscopically, the lesions consisted of large numbers of macrophages containing numerous intracellular bacilli. An organism was isolated and has been tentatively classified as Mycobacterium sp., Runyon group III.

Animals

[Examination of market carps for residues of antimicrobial agents].

The residues of inhibitory substances in the muscle, hepatopancreas, bile, and pyloric caeca of 30 carps from ponds south of Brno were examined by the microbiological diffusion method. The following testing micro-organisms were used: B. cereus var. mycoides (ATCC 11778), B. subtilis (ATCC 6633), Sarcina lutea (ATCC 9341), and Micrococcus flavus (ATCC 10240). Residues of inhibitory substances were not found in any of the muscle samples tested. The rest of the tested tissues showed, in some cases, small inhibition zones which seem to be due to the presence of natural antimicrobially active substances in the bile and gastro-intestinal tract of the fish rather than to the persistence of the residues of drugs given to the fish during their life.

Animals

Histochemical localization of adenosine triphosphatase and thiamine pyrophosphatase in the digestive system of a teleost fish, Ophiocephalus punctatus.

The localization of ATPase and thiamine pyrophosphatase in the digestive system of Ophiocephalus punctatus has been studied. In stomach ATPase is found in the free border of the mucosa, gastric glands, submucosal connective tissue nuclei and muscularis. Thiamine pyrophosphatase is localized only in the mucosa and gastric gland cells. In the intestine, pyloric caeca and rectum, ATPase is distributed along the brush border of the columnar epithelial cells, their nuclei and cytoplasm. Mild activity is also found in the nuclei of submucosa and muscularis. The activity is stronger in the intestine than in the other portions. Thiamine pyrophosphatase activity in these portions is restircted only to the goblet cells. In the liver ATPase activity is associated both with the cytoplasm and nucleus of the hepatic cells. Thiamine pyrophosphatase activity is maximum in the centro-lobular portion.

Adenosine Triphosphatases

[Evidence and properties of digestive proteases in young mugilidae during the first year of life].

Proteolytic activity was observed in extracts from the digestive tract of Mugil auratus and Mugil capito; its maximum occurs at about pH 2 and 9. Activity in the acid range is mainly found in stomach extracts and the enzyme may be considered as similar to pepsin and cathepsins. In the alkaline range, the main activity is recorded in the region of the pyloric caeca. Activities of the trypsin, chymotrypsin, A and B carboxypeptidases and elastase type are found. The effects of pH and temperature on some activities are studied: optimal pH are about 2.6 and 3,4 with pepsin-like activity, between 8,1 and 8,5 with trypsin-like activity and between 7,8 and 8,5 with chymotrypsin-like activity; incubation optimal temperature (pH 2,2) is found between 35 degrees and 40 degrees.

Aminopeptidases

Histochemical localization of glucose-6-phosphatase and 5-nucleotidase in the digestive system of Ophiocephalus Channa punctatus.

The histochemical localization of G6Pase and 5-Nase in the digestive system of Ophiocephalus (Channa) punctatus was studied. The highest activities of these enzymes were found in the liver. Appreciable activity was also found in the anterior intestine (duodenum) and pyloric caeca. The activity faded toward the middle and posterior intestine and rectum. In the stomach the activity was moderate. The activity of 5-Nase was weaker than that of G6Pase. In the stomach the enzymes were localized in the mucosa and gastric glands. The absorptive columnar epithelial cells were the major sites of localization in the intestine. The goblet cells were negative. The G6Pase activity was associated with the cytoplasm, while the 5-Nase activity was found in the cell membranes and the nuclei.

Animals

Carbohydrase activity in the digestive system of some teleost fishes.

The activity of carbohydrases in Puntius sophore (Ham.), Channa gachua (Ham.) and Cirrhinus mrigala (Ham.) has been studied. The carbohydrases have been found in the stomach, intestinal bulb, intestine, pyloric caeca and the hepato-pancreas. The hepatopancreas is the main site of production of these enzymes and it is in this organ and the intestine that their activity is highest. Their pH optimum lies between 5.4 and 6.4. The enzyme equipment in the teleost is adapted to their respective food and feeding habits both qualitatively and quantitatively. In Puntius (omnivorous) and Cirrhinus (herbivorous) all three carbohydrases, namely amylase (EC 3.2.1.1.), sucrase (EC 3.2.1.26.) and raffinase, while in Channa (carnivorous) only amylase and sucrase have been found to be active. In Cirrhinus mrigala, which is predominantly a herbivorous species, the concentration of carbohydrases is higher than those in the other two fishes.

Animals

Aminotripeptidase (EC E.4.1.3) activity in the digestive system of some teleost fishes.

Aminotripeptidase (EC 3.4.1.3) has been found to be present in the intestinal mucosa, hepatopancreas and the pyloric caeca of the three fished examined. The pH optimum of the enzyme ranges from 6.6 to 7.6. The pH optimum varies from species to species and also from section to section of the gut in the same species. The enzyme is most active in the carnivorous Channa gachua in comparison to the other fishes studied.

Animals

Histochemical studies on iron absorption in Ophiocephalus punctatus and Heteropneustes fossilis.

Iron absorption in both the teleost fishes Ophiocephalus punctatus and Heteropneustes fossilis, initially starts after 2h of feeding the iron diet. However, at this stage, there is no absorption of iron in the posterior intestine of both the fishes. Absorption initially starts along the brush border of enterocytes of the villi. Later, it gets accumulated in the supranuclear region of the epithelial cells and then through these cells, it is transported into the cores of the villi. The absorbed amount ultimately reaches along the bases of the villi. Through the blood capillaries, which are situated in the submucosa, absorbed iron is passed on to the blood stream. Although, the entire intestine of both the fishes is able to absorb iron but the regional variations have been noted. In contrast to the posterior intestine, the anterior and middle intestine of both the fishes show better iron absorption. The pyloric caeca of Ophiocephalus have comparatively less affinity for iron absorption. However, the intestine of Heteropneustes shows more affinity for iron absorption than the intestine of Ophiocephalus.

Animals

Multi-omics integration uncovers adaptive responses of stomach and pyloric ceca to artificial feed in mandarin fish (Siniperca chuatsi).

The mandarin fish, as an obligate piscivore, is highly dependent on live bait, which restricts its intensive aquaculture. Although domestication has enabled it to partially accept formulated diets, the tissue-specific molecular adaptation mechanisms of its digestive tract to artificial feed remain unclear. In this study, we conducted an integrated analysis of mandarin fish fed with live bait or artificial diet for three weeks, combining growth performance evaluation, gastric histology, and paired transcriptomic and metabolomic analyses of the stomach and pyloric ceca. AD feeding significantly improved growth performance, while histological examination revealed marked hyperplasia of the gastric mucosa and disorganized fold structures. Transcriptomic analysis identified 5065 and 3381 differentially expressed genes in the stomach and pyloric ceca, respectively. In the stomach, the artificial diet induced a glutathione-dependent antioxidant response, accompanied by glycolytic reprogramming and coordinated upregulation of genes in the extracellular matrix (ECM)-receptor interaction signaling pathway, including those encoding collagen, laminin, and integrin. In the pyloric ceca, the tricarboxylic acid (TCA) cycle and oxidative phosphorylation were broadly suppressed, whereas glycosaminoglycan degradation and lysosomal pathways were activated. Metabolomic analysis showed that gastric metabolites were enriched in vascular and inflammatory mediator pathways, while metabolites in the pyloric ceca were enriched in peroxisome proliferator-activated receptor (PPAR) signaling, sphingolipid signaling, and steroid hormone biosynthesis pathways. Following artificial diet feeding, integrated multi-omics analysis of the stomach revealed significant enrichment of pathways such as phospholipase D signaling, sphingolipid signaling, and arachidonic acid metabolism, accompanied by the accumulation of key metabolites including sphingosine-1-phosphate, 20-hydroxyeicosatetraenoic acid, and cellobiose. Integrated analysis of the pyloric ceca identified significantly altered pathways, including sphingolipid metabolism, alpha-linolenic acid metabolism, and glutathione metabolism, along with elevated levels of sphingosine-1-phosphate, sphingosine galactoside, and 9-hydroxy-12-oxo-10,15-octadecadienoic acid, as well as decreased glutathionylspermidine. These findings systematically unveil the tissue-specific molecular adaptation characteristics of the mandarin fish digestive tract in response to artificial feed, providing an important basis for understanding the molecular mechanisms of dietary adaptation in carnivorous fish and for optimizing artificial feed formulations.

Animals