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Biomedical subjects

B F Trump

Publications and source records attributed to B F Trump.

At least 145 records · Page 8Linked to original sources

The cell kinetics of the adaptation of the human esophagus to organ culture.

The adaptation of normal human esophageal explants to organ culture for the first 33 d of in vitro growth was evaluated using histomorphology and [3H]TdR autoradiography combined with mitotic blockade. On the 3rd d in culture, extensive desquamation of superficial cells reduced the epithelium to about four cell layers. Thereafter, the epithelium remained atrophic, with a relative increase in basal and suprabasal cells. The percentage of cells synthesizing DNA was greatest from Day 4 through 8, just after desquamation, and reached a maximum on Day 4 (24 h [3H]TdR labeling index of 62%). The labeling index (LI) fluctuated, thereafter, but remained high (26% on Day 33). During the last 6 h of each [3H]TdR labeling interval, mitosis was blocked by colcemid. The 6 h mitotic rate (MR) was a reasonably constant fraction of the LI (maximum at 4 d: MR = 1.44%), but was much lower than predicted by [3H]TdR labeling indicating the loss of large numbers of cells after DNA synthesis but before or during mitosis. Unlabeled mitotic figures appeared between Days 1 to 3 and 6 to 33, suggesting that the epithelium initially contained a considerable population of cells arrested or delayed in G2 and continued to generate cells that remained in premitosis longer than 24 h. These results indicate that the atrophy observed in vitro is characterized by a relative increase in the basal and suprabasal cell category, a high replication rate, initial recruitment of cells arrested in premitosis, and rapid cell turnover with significant loss of cells at the premitotic or mitotic step, or both. Thus it seems that human esophageal epithelium grown in organ culture is a satisfactory substrate for experimentation (for example, in vitro carcinogenesis) that requires cell replication. However, there are major differences between the kinetics of esophageal epithelium in vivo and in vitro.

Cell Division↗

Studies on the modification of the cellular response to injury: effect of mannitol on Ehrlich ascites tumor cells following injury by anoxia or p-chloromercuribenzenesulfonic acid (PCMBS).

The possible protective effects of 30 and 180 mM mannitol added to the extracellular medium were studied in Ehrlich ascites tumor cells (EATC) injured by the nonpenetrating mercurial p-chloromercuribenzenesulfonic acid (PCMBS) or by anoxia. Protection was provided with 180 mM mannitol as observed by vital dye uptake, cell volume determinations, and electron microscopy studies in cells incubated for 1 hr in 1 mM PCMBS; however, no protection was observed after 2 and 4 hr. EATC injured by anoxia were not protected by 180 mM mannitol nor did 30 mM offer protection to cells following injury with either PCMBS or anoxia.

4-Chloromercuribenzenesulfonate↗

Biochemical and morphological studies on human kidneys preserved for transplantation.

Seven human kidneys that had been preserved for transplantation by pulsatile perfusion were studied to correlate the biochemical data with morphologic changes. Metabolite concentrations in mumol/g wet tissue were ATP = 0.26; ADP = 0.34; AMP = 0.45; lactate = 15.21; pyruvate = 0.23; 3-phosphoglycerate = 0.05; fructose-1,6-bisphosphate = 0.06; and hexose-6-phosphate = 0.03. Enzyme activities in mumol/min . mg protein found in the microsomal fraction were alkaline phosphatase = 0.049 and gamma-glutamyl transpeptidase = 0.844. Morphologically, none of the kidneys showed irreversible cell injury in the renal tubules, but some glomeruli showed areas where the endothelial cells appeared stripped off of the capillary basement membranes, indicating possible perfusion injury. The data suggest that it is the resynthesizing ability, as opposed to the absolute concentration of ATP, which determines the recovery and the subsequent viability of the tissue.

Adenine Nucleotides↗

An Alcian blue (pH 2.5)-PAS-keratin immunoperoxidase method for the simultaneous demonstration of keratin and neutral and acidic mucosubstances.

A method is proposed for the simultaneous staining of neutral and acidic, periodate reactive and nonperiodate reactive mucosubstances, glycogen and keratin in paraffin sections. Briefly, sections are stained by the Alcian blue (pH 2.5)-PAS method, followed by a peroxidase-antiperoxidase immunohistochemical stain for keratin. The proposed method modifies an existing method, and expands the range of polysaccharides and mucosubstances which may be demonstrated. The proposed method is easily performed within a single working day and promises to be of value in surgical pathology as well as in studies of bronchial carcinogenesis.

Alcian Blue↗

The pathophysiology of septic shock: responses to different doses of live Escherichia coli injection in rats.

Responses to different doses of Escherichia coli (E coli; 0-18) injection were studied from the pathological standpoint. Various amounts of live E coli were intravenously injected through the tail vein (group A: 2.7-3.3 X 10(9); B: 1.7-2.0 X 10(9); C: 1.2-1.5 X 10(9); D: 0.3-0.5 X 10(9) organisms/100 g of body weight). All rats from group A died within 6 h; 14 out of 15 rats from group D survived. Hypothermia was commonly seen in the lethal groups (groups A, B, and C) prior to death, and hyperthermia was observed only in groups C and D. Leukopenia was seen in all groups and remained in the lethal groups, whereas in group D, leukocytosis following leukopenia was observed at 12 and 24 h. Light microscopic studies were performed in the lethal groups, showing the following differences among the three lethal groups; a dose-related depletion of white pulp of the spleen, cortical hemorrhage of the adrenal glands (only in groups A and B), foci of bacterial colonies in the heart and small intestine with aggregated leucocytes (only in group C); focal liver necrosis was found in group C, but not in group A. Tubular necrosis and cast formation were also predominant in the kidneys of group C animals. The above findings indicate that the milder, lethal group shows more severe morphological changes in all organs except the spleen and adrenal glands, and suggest that sudden death from bacteremia may involve a depleted host defense.

Adrenal Glands↗

The pathophysiology of septic shock: comparison of systemic hemodynamical responses in the rat following a sonicated, heat-killed, and live E coli injection.

Systemic hemodynamical responses in anesthetized rats subjected to a bolus IV injection of sonicated (50 watts, 3 min), heat-killed (100 degrees C, 15 min), or live E coli suspension (12-15 X 10(8) E coli organisms in 0.5 ml saline per kg body wt) were continuously monitored for 6 h. A transpulmonary thermodilution method was used for measurement of cardiac output. After injection of sonicated E coli suspension, there was a triphasic hemodynamical response: 1) a hypodynamic state immediately following treatment, 2) a recovery phase, and 3) a profound, progressive hypodynamic state in the late phase. In contrast, heat-killed E coli suspension induced a biphasic response: 1) an insignificant hyperdynamic state in the early phase, and 2) a progressive hypodynamic state in the late phase. An injection of live E coli suspension resulted in a biphasic response: 1) a hyperdynamic state in the early phase, and 2) a progressive hypodynamic state in the late phase.

Animals↗

Fatal barium embolization due to incorrect vaginal rather than colonic insertion. An ultrastructural and x-ray microanalysis study.

Fatal generalized barium sulfate (BaSO4) embolization followed erroneous vaginal insertion of the enema tip intended for colon examination. Light microscopy revealed the presence of swollen, granular reticuloendothelial cells in most visceral organs such as lung, liver, spleen, bone marrow, kidney, and brain. Transmission electron microscopy showed the reticuloendothelial cells loaded with uniformly electron-dense granules of various sizes. Scanning electron microscopy equipped with an energy-dispersive x-ray analyzer confirmed the BaSO4 composition of these granules when unstained paraffin sections of different organs mounted on glass slides without coverslips were examined. The use of the technique of x-ray microanalysis is recommended when absolute identification of inorganic material in human organs is needed. The technique can be used directly on routine paraffin-embedded material mounted on glass slides as well as with material expressly prepared.

Age Factors↗

Comparative study of the morphologic, histochemical, and proliferative changes induced in the large intestine of ICR/Ha and C57BL/Ha mice by 1,2-dimethylhydrazine.

The mouse model of 1,2-dimethylhydrazine (DMH)-induced colorectal carcinogenesis was studied to determine the susceptibility of different anatomic segments of the large intestine in ICR/Ha (susceptible) and C57BL/Ha (resistant) mice. In ICR/Ha mice numerous exophytic macroscopic neoplasms were found in the distal colon and rectum after 15 weekly injections of DMH (20 mg/kg). The proximal colon was free of any microscopic or macroscopic neoplasms. In contrast, C57BL/Ha mice given the same treatment showed no macroscopic neoplasms. However, foci of dysplastic crypts were observed throughout the large intestine of C57BL/Ha mice with highest incidence in the distal colon and rectum. In some areas dysplastic crypts were clearly invading the muscularis mucosae and were, therefore, microscopic carcinomas (microcarcinomas). Thus C57BL/Ha mice were not totally resistant to the neoplastic stimulus of DMH, and the susceptibility of the large intestine is site-specific in both mouse strains.

1,2-Dimethylhydrazine↗

Long-term explant culture of normal mammary epithelium.

Mammary epithelium and surrounding stroma have been maintained in an explant system for 1 to 6 months and subsequently xenografted into athymic nude mice. The morphological characteristics of 26 cases of normal human mammary epithelium in long-term explant culture were described, using high-resolution light and electron microscopy. Normal human breast tissue specimens were obtained from immediate autopsy or surgical resection. The explants were cultured in Connaught Medical Research Laboratories Medium 1066 supplemented with serum, insulin, and hydrocortisone. The histotypic features of the mammary epithelium in both the central portion of the explant and the epithelial outgrowth onto the surface of the explant were described. In some cultures, the cells acquired more keratin and formed multicellular blister-like domes. Tissues from eight cases after 1 to 14 weeks in culture were xenografted in athymic nude mice and were maintained up to 924 days.

Adolescent↗

Effect of hypothermia on survival time and ECG in rats with acute blood loss.

The effects of hypothermia on survival time and ECGs were investigated in hemorrhagic-shocked rats. Acute blood loss corresponding to LD84 was achieved within 1 min through cannulation of the carotid artery. Immediately following the hemorrhagic episode, extracorporeal cooling was performed by placing the animals, with ice packs attached to their lateral sides, in a cold water bath. Rewarming was achieved by removing the ice packs and resetting the temperature of the water bath to 37 degrees C. With this system, the survival time of the hemorrhagic rats was lengthened from 40 to 60 min without rewarming and to 123 min with rewarming. ECGs showed sinus bradycardia, prolonged PR and QRS intervals, AV block, and finally ventricular fibrillation in both the control and hemorrhagic groups during extracorporeal cooling. During rewarming, the above ECG changes returned to normal in the control group as did body temperature. In contrast, animals in the hemorrhagic group did not survive. Body temperature in this group began to rise toward normal, and above ECG changes showed slight but not complete improvement. It is concluded that extracorporeal cooling can lengthen the survival time of hemorrhagic-shocked rats and that recovery of the disturbed conduction system is a prerequisite for survival from severe hypothermia.

Acute Disease↗

Heterogeneity in the distal nephron of the salamander (Ambystoma tigrinum): a correlated structure function study of isolated tubule segments.

Studies on isolated perfused tubules of the tiger salamander (Ambystoma tigrinum) have shown that the distal nephron is heterogeneous with respect to function (Stoner, 1977). In this study, the initial portion of the distal tubule (diluting segment) exhibited a voltage, positive in the lumen, and a net absorption of chloride. Since the chloride was transported against an electro-chemical gradient, its transport was active. More distad, the junctional segment exhibited a lumen-negative voltage and sodium, rather than chloride, was transported actively. More recently Delaney and Stoner (1981) have demonstrated in vitro that the collecting duct of this species also has a lumen-negative voltage which is probably associated with active sodium reabsorption. The primary objective of the present paper was to correlate the morphology of the diluting and junctional segments of the Ambystoma distal tubules with the physiologic data from the same isolated perfused tubules. The results indicate that the morphological heterogeneity previously demonstrated in distal tubules of Necturus exists with respect to both structure and function in Ambystoma. The cell types found in the amphibian distal nephron appear to be homologous to those seen in the mammalian nephron.

Animals↗

Morphologic and functional studies of mouse hepatocytes in primary culture.

Mouse liver cells in primary culture were evaluated by high-resolution light microscopy (HRLM) and transmission electron microscopy (TEM). Cells after 2 hours of culture in L-15 medium supplemented with 10% fetal bovine serum were spherical in shape, and were either individual or in small clusters of up to ten cells. Following 1 day in culture, hepatocytes were flattened and usually found in groups. Bile canaliculus-like structures were apparent between hepatocytes. Tight junctions and desmosomes were also present along adjacent plasma membranes. Autophagic vacuoles were seen within the cytoplasm. After 2 days in culture, hepatocytes appeared more elongated and flattened than in earlier sampling periods. Both autophagic and clear vacuoles were seen in the cytoplasm. Mitochondria were present in a variety of shapes and sizes. Small bundles of microfilaments were frequently seen in the basal region of cross-sectioned cells. From the fourth until the eighth day in culture, hepatocytes displayed further progression of the morphologic changes seen after 2 days. Nuclear elongation and the projection of cytoplasmic pseudoinclusions into the nucleus were also evident after 4 days. Cytoplasmic and nuclear changes were eventually observed in all hepatocytes by the eighth day of culture. DNA synthesis in the cells during culture was investigated by autoradiography. The percentage of S-phase labeled cells was 0.1% after 1 day of culture. The labeling index increased to 1.02%, 3.14%, and 5.88% after 2, 4, and 6 days of culture, respectively. Synthesis of albumin by the liver cells was also detectable during the first 8 days of primary culture. A gradual drop in albumin synthesis was noted with increased time in culture. The percentage of hepatocytes that histochemically stained for gamma glutamyl transpeptidase (GGT) progressively increased from 0.01% of the cells after 2 hours culture to 3.14% of the cells after 8 days of culture.

Albumins↗

Differences in metabolism of chemical carcinogens in cultured human epithelial tissues and cells.

The metabolism of chemical carcinogens has been studied in cultured human bronchus, colon, duodenum, pancreatic duct, and esophagus. Metabolite patterns and carcinogen-DNA adducts are generally qualitatively similar among animal species, individuals within a species, and tissues within an individual. However, wide quantitative differences are observed between individuals in outbred animal species, including humans. These interindividual differences in amounts of carcinogen-DNA adducts and in activities of enzymes that are important in the metabolism of chemical carcinogens are similar in magnitude (10-to 150-fold) to those observed in pharmacogenetic studies of drug metabolism. The role of these differences as risk factors in human cancer is being investigated.

Aryl Hydrocarbon Hydroxylases↗

A comparative study of the normal histochemical and proliferative properties of the large intestine in ICR/Ha and C57Bl/Ha mice.

The histochemical staining, labeling index and incorporation of [3H] thymidine [TdR] in large intestinal epithelium were compared in four anatomically distinct segments from ICR/Ha and C57Bl/Ha mice. This comparison was done because the incidence of 1,2-dimethylhydrazine (DMH)-induced carcinomas is different for different anatomic segments as well as for the two strains. Within each strain, the amount of [3H] TdR incorporated into mucosal DNA was found to vary less than 20% at each anatomic site of the large intestine. However, there were site-specific differences in the depth of the proliferative populations within the crypts. In autoradiograms from both strains, the crypts of the proximal colon showed maximal [3H] TdR labeling of nuclei in mid-crypt cells, some of which contained mucin. In contrast, the distal colon and rectum were characterized by maximal nuclear labeling in a population of undifferentiated cells near the base of each crypt. In distal ICR/Ha colon, the proportion of labeled nuclei at each crypt depth corresponded to the [3H] TdR labeling of DNA that had been isolated from frozen sections cut sequentially. As visualized with alcian blue-periodic acid Schiff (AB-PAS) and high iron diamine-alcian blue (HID-AB) stains, the epithelial mucin showed site-specific differences, but the differences between the two strains of mice were not remarkable. In contrast to the human and rat large intestine, the acidic mucin in the mouse large intestine was predominantly sialomucin. However in the cecum and mid-distal colon, there was a predominance of sulfomucin. In the various anatomic segments of both strains, the histochemical staining, labeling index and incorporation of [3H]TdR were remarkably similar considering the large differences in susceptibility to chemically-induced neoplastic change.

Animals↗

Human large intestinal epithelium: light microscopy, histochemistry, and ultrastructure.

Despite numerous reports of morphologic characteristics of premalignant and malignant large intestinal epithelium, the literature lacks comprehensive reports of the morphologic features of the epithelium of the normal large intestine, except of the rectum. Large intestinal epithelium from 41 persons was obtained, and samples from the ascending, transverse, descending, and rectosigmoid areas were studied by light microscopy, histochemical techniques, and transmission and scanning electron microscopy. The morphologic features and histochemical reactions of the various segments of the large intestine are different. Neutral mucopolysaccharide is predominant in the ascending colon, whereas the rectum has predominantly or exclusively acidic mucin. Only three basic epithelial cell phenotypes have been identified: undifferentiated cells, mucous cells, and endocrine cells. The columnar cells at the surface between the crypts appear to be a variant of mucous cells. Compared with other segments, the rectum shows an unusually high concentration of endocrine cells, positively correlating with the high incidence of carcinoid tumors in that segment of the large intestine. The mucous cells in all segments contain large mucous vacuoles and small apical vesicles. The apical vesicles show variable electron density, being most dense in the ascending colon and becoming progressively less dense at the transverse and descending colon and most electron-lucent in the sigmoid colon and rectum. Ultrastructurally, the mucin shows a variable degree of heterogeneity in the proximal segments. This study suggests that some of the previously described ultrastructural features of abnormal large-intestinal epithelium may be only the result of failure to compare the so-called abnormal cells with normal cells from the same region. Well-controlled studies of the abnormal epithelium of a particular segment of large intestine must include the normal epithelium from the identical segment as control in order to make interpretations accurate.

Adult↗