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Cytological effects of hormones and plasma on bovine mammary tissue in vitro.

Mammary explants from two heifers pretreated with oestradiol and progesterone were cultured for 96 h with various combinations of hormones and calf plasma to identify the complement causing mammary tissue development in vitro in the cow. Initial tissue histology, determined by quantitative morphological analysis, was maintained by incubation with insulin, cortisol, oestrogen and progesterone; enlarged lumina were observed after treatment with insulin and cortisol. Lactogenesis was induced in vitro by insulin, cortisol and prolactin, enhanced by adding oestrogen and progesterone at the doses used here and further stimulated by the addition of plasma. The most highly developed mammary alveoli were characterized by an increased luminal area with lipid and stainable secretion, epithelia with large lipid droplets in the apical cytoplasm and a limited stromal area. In a second experiment, samples of plasma were collected from two cows, successfully induced to lactate, on days 6, 15, 17, 19 and 21 after treatment with oestradiol and progesterone. Mammary gland explants from five heifers pretreated with oestradiol and progesterone in vivo were cultured with insulin and cortisol plus these plasma samples (30%, v/v) to test for changes in lactogenic activity. All plasma samples were found equally beneficial in promoting tissue differentiation. These experiments show that low concentrations of ovarian steroids synergize with prolactin at the level of the mammary epitherlium and suggest that other plasma components aid the development of bovine mammary epithelium in vitro.

Animals↗

The cytological effects of infusion of luminal polyethylene glycol on the rat small intestinal mucosa.

An isolated sac of rat upper small intestine was prepared. Its lower end was drained to the skin. Solutions of known volume and composition were infused into the sac and the intestinal mucosa was examined by light and electron microscopy. Infusion of isosmotic (16.8 percent w/v) polyethylene glycol (PEG) resulted in prompt and progressively severe damage to enterocytes at the top of the villus, while goblet cells and basal-granulated cells were apparently unaffected. Thus, after 6-72 hrs a cap of goblet cells and basal-granulated cells accumulated at the tip of the villus, while the enterocytes underwent vacuolation and disintegration. Infusion of an isosmotic mixture of 1 percent PEG and 5.1 percent glucose caused no damage near the site of infusion, but damaged the intestinal sac further distally...

Animals↗

Host site of activity and cytological effects of histone-like proteins on the parasitic dinoflagellate Amyloodinium ocellatum.

Histone-like proteins (HLPs) are broad-spectrum, endogenously produced antibiotics which we have isolated from tissues of rainbow trout Oncorhynchus mykiss and hybrid striped bass (Morone saxatilis male x M. chrysops female). Here, we show that HLP-1, which has high sequence homology to histone H2B, equally inhibited both young and mature trophonts of the important ectoparasite Amyloodinium ocellatum. In addition to direct killing of Amyloodinium trophonts, there was evidence that HLP-1 from both rainbow trout and hybrid striped bass caused severe developmental abnormalities, including delayed development, in both the parasitic trophont stage as well as the reproductive tomont stage. The deleterious effects of HLP-1 also were manifested in what appeared to be 'delayed mortality', where parasites of normal appearance would die later in development. Similar serious damage was also seen with calf histone H2B and the unrelated peptide antibiotic magainin 2. A comparison of the antibiotic activity in mucus versus epidermis compartments of the skin of hybrid striped bass suggested that the majority of antibiotic (including HLP-1) activity resided in the epidermis, although some activity was present in the mucus. These data suggest that normal, nonimmune fish skin contains potent defenses against protozoan ectoparasites and that the effects of these defenses may extend beyond their transient interactions with the parasites, which has important implications for this host-parasite relationship.

Animals↗

Quantitative oral exfoliative cytology. Effect of alcohol on normal buccal mucosa.

OBJECTIVE: To assess the effect of chronic alcohol intake on the DNA distribution and cell area of normal oral mucosal cells. STUDY DESIGN: Smears were taken from clinically normal buccal mucosa of 50 patients attending an alcohol-problem service (i.e., chronic alcohol use) and average alcohol units per week recorded. DNA distribution histograms and total cell area values were then compared to those obtained from smears taken from a control group (which included social drinkers) of patients attending for routine dental treatment. Nuclear DNA content was assessed on 100 randomly selected, Feulgen-stained nuclei using a Seescan TV image analysis system, and total cell area was assessed on 50 Papanicolaou-stained cells using the Vids V image analysis system. RESULTS: The DNA distribution histograms were essentially diploid in appearance for the alcohol group, although there was an increase in nuclear DNA content in the occasional nucleus. A highly significant reduction in total cell area was found for the alcohol group when compared to the controls. CONCLUSION: The chronic ingestion of alcohol is associated with a reduction in total cell area but appears to have little effect on nuclear DNA content. Our previous research using the same technique showed that oral cancers are frequently nondiploid. Thus, a nondiploid DNA distribution histogram for smears taken from a clinically suspicious lesion in someone who consumes excessive amounts of alcohol is unlikely to be due to alcohol use alone and should indicate biopsy.

Adult↗