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Biomedical subjects

S A Lamprecht

Publications and source records attributed to S A Lamprecht.

At least 19 recordsLinked to original sources

Apoptosis (programmed cell death) in colonic cells: from normal to transformed stage.

We determined apoptosis in whole rat colonic tissue and in isolated colonocytes from the various rat crypt regions in preneoplastic stages up to frank neoplasia following administration of the procarcinogen, dimethylhydrazine (DMH). Apoptotic cells were determined by the terminal deoxynucleotidyl transferase (TdT)-mediated dUTP nick end labeling (TUNEL)-method, by evaluating sections stained with hematoxylin and eosin, and caspase-1 immunostaining. Apoptotic cells in whole colonic tissue from untreated rats were confined to the upper crypt while, in DMH-treated rats apoptotic and caspase-1 positive cells were located in the crypt proliferative regions. Numerous apoptotic and caspase-1-positive cells were found in sections from early tumors while in the delayed tumors, apoptotic-positive cells were absent and number of caspase-1-positive cells was negligible. A marked reduction in the apoptotic index along the crypt was observed in isolated transformed colonic cells, this was not the case for caspase-1-positive cells. We conclude that: (i) in colorectal tumors at progressive stage apoptosis is altered, (ii) the mechanistic alteration in apoptosis may be located between caspase-1-protease activity and the fragmentation process of DNA.

1,2-Dimethylhydrazine↗

Cellular mechanisms of calcium and vitamin D in the inhibition of colorectal carcinogenesis.

Convincing evidence is available showing that dietary calcium and vitamin D impede the development of colonic carcinogenesis. The major cellular modes of action of calcium and vitamin D which can contribute to the inhibition of colonic neoplasia are reviewed in this article. These consist of complex series of signaling events induced by the chemopreventive agents acting at various tiers of colonic cell organization.

Adenocarcinoma↗

Chemoprevention studies of the flavonoids quercetin and rutin in normal and azoxymethane-treated mouse colon.

In this study we investigated the chemopreventive effects of quercetin and rutin when added to standard AIN-76A diet and fed to normal and azoxymethane (AOM)-treated mice. Early changes in colonic mucosa were analyzed, including colonic cell proliferation, apoptotic cell death, cyclin D(1) expression and focal areas of dysplasia (FAD). The findings show that the number of colonic epithelial cells per crypt column increased (P: < 0.01) in each normal mouse group fed the flavonoids; AOM administration increased colonic crypt cell proliferation and resulted in a marked rise of bromodeoxyuridine-labeled cells in the lower proliferative zone of the crypt. Both supplementary dietary quercetin and rutin increased the apoptotic index and caused a redistribution of apoptotic cells along the crypt axis in normal mice fed a standard AIN-76A diet. The number of apoptotic cells/column and apoptotic indices markedly increased (P: < 0.01) in the AOM-treated group compared with untreated animals; apoptotic cells expanded throughout the colonic crypts after flavonoid supplementation and AOM administration. Positive cyclin D(1) expression was detected in mice on diets supplemented either with quercetin (P: < 0.01) or rutin (P: < 0.05). AOM administration resulted in the formation of FAD. Both the number of mice exhibiting FAD and the total numer of FAD observed were significantly reduced (P: < 0.01) in AOM-treated animals fed flavonoids compared with mice maintained on the standard AIN-76A diet. Surprisingly, however, quercetin alone was able to induce FAD in 22% of normal mice fed the standard AIN-76A diet.

Animals↗

A protective role of dietary vitamin D3 in rat colon carcinogenesis.

The aim of the present work was to gain insight into a putative anticancer effect of dietary vitamin D3 (cholecalciferol) in a rat model of colon carcinogenesis. Male rats were assigned to three different dietary groups. The dietary regimens were based on a standard murine-defined diet (AIN-76A) or a stress diet containing 20% fat, reduced Ca2+ concentration, a high phosphorus-to-Ca2+ ratio, and either low or high vitamin D3 content. Colorectal cancer was induced by administration of the procarcinogen 1,2-dimethylhydrazine (DMH). Blood Ca2+, 1,25-dihydroxyvitamin D3 [1,25(OH)2D3], and 25-hydroxyvitamin D3 [25(OH)D3] levels were measured in DMH-treated rats and in respective weight- and age-matched dietary control groups. Colonic epithelial proliferation was assessed by determining thymidine kinase (TK) activity, bromodeoxyuridine (BrdUrd) incorporation into crypt cell DNA, and the mean labeling index along the colonic crypt continuum. Maintenance of rats on the stress diet either unmodified or supplemented with vitamin D3 in the absence of carcinogen treatment provoked a time-dependent rise in colonic TK activity and hyperproliferation of colonic epithelium. DMH treatment of rats maintained on the standard diet caused a marked increase in the proliferative indexes of colonic epithelium and in expansion of the crypt proliferative compartment. TK activity and the crypt mitotic zone were significantly augmented in the animal group fed the stress diet. Supplementary vitamin D3 abrogated the stress diet-enhanced colonic responses to the carcinogenic insult. Colon tumor multiplicity was fourfold higher in animals fed the stress diet than in animals maintained on a standard diet. The marked rise in colonic tumor multiplicity and adenocarcinoma incidence in rats fed the stress diet was obliterated by supplemental dietary vitamin D3. Cumulatively, the present results indicate that dietary vitamin D3 impedes the neoplastic process in murine large intestine and strengthen the view that inappropriate changes in dietary components and micronutrients are contributory determinants of colorectal cancer.

1,2-Dimethylhydrazine↗

Dietary factors in human colorectal cancer.

Colorectal cancer is a significant cause of mortality in Western societies. The progression of the disease from normal colonic epithelium to the acquisition of the malignant phenotype is accompanied by numerous genetic and epigenetic alterations. Compelling experimental and epidemiological evidence indicates that diet and nutrition are key factors in the modulation of colorectal cancer. A salient case in point is the recent observation that a dietary regimen based on a Western-style diet provokes in the rodent colon the appearance of preneoplastic lesions in the absence of any genotoxic insult. This review mainly describes dietary factors that inhibit the development and progression of colorectal cancer. Much is unknown about the precise mechanisms of action of chemically disparate nutrients and how they interfere with the development and progression of this disease. Current knowledge about this important issue is summarized. We believe that continuing scrutiny and precise assessment of the benefits (and potential risks) of nutrients in the treatment and prevention of colorectal cancer will prove significant to controlling this devastating disease.

Animals↗

Controlled release of TGF-beta1 impedes rat colon carcinogenesis in vivo.

Transforming growth factor beta1 (TGF-beta1) is a cytokine known to play a key role in the control of cell growth. TGF-beta1 potently inhibits the proliferation of human and rodent-derived epithelial cells. Colonic precancerous and moderately differentiated cancer cells are responsive to TGF-beta1, whereas malignant colon cancer cells are resistant to the inhibitory action of the cytokine. These observations have been derived exclusively from in vitro studies. Therefore, the main aim of our study was to determine whether TGF-beta1 exerts a growth-restraining action on colon carcinogenesis in vivo. TGF-beta1 was sequestered into ethylene acetate copolymer matrices and "loaded" preparations were implanted intraperitoneally (i.p.) in rats. One week later, the animals were treated with dimethylhydrazine (DMH), a colon procarcinogen. Empty matrices devoid of TGF-beta1 but containing bovine serum albumin (BSA) carrier served as the appropriate control preparations. The number of aberrant crypt foci (ACF), considered to be preneoplastic lesions of the colon, was scored. Tumor formation and size were assessed at the appropriate times. TGF-beta1 released in a sustained manner from copolymer matrices: (i) markedly inhibited colonic ACF formation and the number of aberrant crypts and (ii) significantly reduced colonic tumor formation and size.

1,2-Dimethylhydrazine↗

Extensive apoptotic death of rat colonic cells deprived of crypt habitat.

Apoptosis in cells of different lineages is restrained by survival signals which depend upon cell-to-cell communication. The aim of this study was to determine whether colonic cells deprived of crypt ambient are doomed to die prior to their normal chronological demise. Apoptosis was studied in rat whole colonic tissue, in isolated intact crypts, and in colonic cell populations collected from the crypt axis at different stages of proliferation and differentiation. In a number of experiments, cell harvest was performed in the presence of either a tetrapeptide (YVAD-CMK) inhibitor of interleukin-1beta-converting enzyme (ICE), or tyrphostin A25, a protein tyrosine kinase inhibitor, or sodium-orthovanadate, a phosphatase inhibitor. DNA fragmentation was assessed by electrophoretic and nonisotopic-labeling procedures. The ultrastructure of colonic tissue specimens and isolated cells was examined by transmission electron microscopy. Apoptosis in whole colonic tissue and in isolated crypts was confined predominantly to cells resident in the upper crypt regions. In contrast, extensive apoptotic death was observed in isolated colonic cells, irrespective of their developmental stage and positional hierarchy within the crypt continuum at harvest time. An apoptotic gradient, however, was evident. Exposure to YVAD-CMK resulted in a marked decrease in the number of apoptotic cells. Treatment with tyrphostin A25 caused a sharp rise in the apoptotic index; conversely, vanadate significantly impeded apoptosis. Cumulatively, these results indicate that disordered intercellular communication provokes unscheduled ICE-mediated apoptosis of colonocytes, and that local signals along the crypt continuum control both the reprieve from death and the timely demise of distinct colonic cell populations. Attenuation of tyrosine phosphorylation may be a contributory event in the acquisition of the apoptotic phenotype.

Amino Acid Chloromethyl Ketones↗

Gastrin levels in colorectal cancer.

Our objective was to determine whether colorectal cancer tissue synthesizes and secretes biologically active gastrins resulting in a rise of gastrin levels in patients with adenocarcinoma of the colon. Blood samples for gastrin determination were taken from the artery feeding, and from the vein draining colon tumors, from a vein draining an uninvolved colon segment and from a peripheral vein. Tissue gastrin levels were measured in tumor tissues and normal mucosa taken by colonoscopic biopsy from colon cancer patients and healthy controls. The setting was a university hospital research laboratory. We had seventeen patients with colorectal cancer and 23 controls. No significant difference was found in peripheral venous blood gastrin levels between the cancer and the control groups. Serum gastrin concentration was not significantly different in the arterial blood which supplied the tumor area, the venous blood draining the tumor, the "uninvolved" mucosa or the control normal epithelium. Cancer tissue gastrin levels were lower than those measured in biopsies of uninvolved mucosa from cancer patients and normal controls. The present results show no rise of gastrin blood levels in patients with colon cancer, nor any evidence of gastrin-increased synthesis by the tumors.

Adenocarcinoma↗

Induction of the differentiated phenotype in human colon cancer cell is associated with the attenuation of subcellular tyrosine phosphorylation.

In the present study we have determined membrane, cytosolic, and cytoskeleton-associated tyrosine protein kinase (TPK) activity in human colon cancer cell lines exposed to (i) the differentiation-promoting agents sodium butyrate and 8-chloro-cyclic-adenosine 3',5'-monophosphate (8-Cl-cAMP), (ii) tyrphostins, specific TPK inhibitors, or (iii) differentiation-inducing culture manipulations. Treatment of human colon cancer cell lines, LS 174T, COLO 205, and SW620, with sodium butyrate and 8-Cl-cAMP or tyrphostins AG-30 and AG-34, significantly attenuated TPK activity concomitantly with an increase in the activity of alkaline phosphatase, an enzymatic marker of intestinal cell differentiation. The differentiated phenotype induced in Caco-2 and HT-29 colon cancer cells by culture manipulation was associated with a significant decrease in cytoskeleton-associated TPK activity and marked activity of alkaline phosphatase (AP). Electron microscopy and freeze-fracturing analysis of HT-29 cells showed that the gradual transition from the undifferentiated to the differentiated phenotype resulted in the acquisition of a distinct polarized morphology. Immunocytochemical phosphotyrosine analysis of cultured SW620 cells showed positive staining mostly localized in zones of focal contacts. A marked reduction in phosphotyrosine staining with notable changes in cell morphology was observed in SW620 cells exposed to tyrphostins. Cumulatively, the present results indicate that the induction of the differentiated phenotype in colon cancer cells is associated with a marked decrease in TPK activity and tyrosine phosphorylation.

8-Bromo Cyclic Adenosine Monophosphate↗

A protective role of 1,25-dihydroxyvitamin D3 in chemically induced rat colon carcinogenesis.

The intriguing observation has been made that 1,25-dihydroxyvitamin D3 [1,25(OH)2D3] receptors are present in tissues not involved in calcium homeostasis and that 1,25(OH)2D3 exerts an antiproliferative, differentiation-promoting action in a variety of cancer cell lines, including cells of the large intestine. It was therefore deemed of interest to study 1,25(OH)2D3 expression and biological activity in a murine model of colon carcinogenesis. Colon carcinogenesis was induced in male rats by the sequential administration of 1,2-dimethylhydrazine dihydrochloride (DMH). Levels and binding characteristics of 1,25(OH)2D3 receptors were assessed in control and DMH-treated rat colonic mucosal high-speed supernatants. In concurrent studies, 1,25(OH)2D3 was administered (s.c., 400 ng/rat) prior to, together with and after DMH challenge and the activity of ornithine decarboxylase (ODC), a growth-related DMH-induced enzyme, was determined in colonic cytosols. Serum Ca2+ levels were measured concurrently. Rats submitted to identical treatment schedules were killed 10 weeks after termination of DMH administration and the whole colon was opened and examined for tumors. The results show that (i) rat colonic mucosa possesses a single class of high-affinity 1,25(OH)2D3 receptors; (ii) DMH administration provokes a marked reduction (50%) in 1,25(OH)2D3 binding sites without affecting Kd values; (iii) DMH administered concurrently with 1,25(OH)2D3 suppressed the vitamin D-induced hypercalcemia and restored serum Ca2+ concentrations to basal levels; and (iv) 1,25(OH)2D3 delivered prior to DMH challenge obliterated the typical DMH-induced early colonic ODC activity peak and markedly reduced (50%) the number of colon adenocarcinomas. The present findings indicate that a colon-specific potent carcinogen interferes with the biological expression of 1,25(OH)2D3 and that vitamin D administered prior to a carcinogenic insult is able to reduce significantly the incidence of colon tumors, presumably acting as an antiproliferative or differentiation-promoting agent.

1,2-Dimethylhydrazine↗

Isolation and characterization of normal and neoplastic colonic epithelial cell populations.

The aim of the present study was to characterize rat mucosal colonic cells harvested from the crypt continuum during differentiation and dimethylhydrazine-induced neoplasia. The collection of colonocytes was performed using a modified nonenzymatic isolation procedure based on Ca2+ chelation and gentle mechanical dissociation. Light and electron microscopy histomorphological examinations, [3H]thymidine incorporation studies, and activity gradients of alkaline phosphatase, thymidine kinase, and cytoskeleton-associated protein tyrosine kinase indicated that distinct cell populations were harvested from the various crypt regions in a temporal sequence mirroring their zonal and functional distribution in situ. After dimethylhydrazine administration, marked protein tyrosine kinase activity was noted in colonic cells harvested from upper crypt zones. The misplaced and sustained kinase activity preceded the actual polyp or tumor formation. This observation is consistent with the expansion of colonic proliferative compartments beyond allowable boundaries during the preneoplastic period. Companion studies in human colonic epithelial specimens corroborate the findings observed in normal and transformed murine colonocytes. It is believed that the characterization and manipulation of colonocytes using our in vitro model will provide important clues to the molecular events underlying the differentiation program and carcinogenic process in the colonic cell.

Animals↗

Effect of cimetidine on hepatic vitamin D metabolism in humans.

Cimetidine inhibits the action of vitamin D-hydroxylase (a hepatic mixed-function oxidase) in the rat. Therefore, the hypothesis was tested that this H2 receptor antagonist would affect vitamin D metabolism in humans. Nine adult patients were treated with 400 mg cimetidine orally twice daily during a period from winter to summer, when days were becoming longer. Serum levels of 25-hydroxyvitamin D, 24,25-dihydroxyvitamin D and 1,25-dihydroxyvitamin D were monitored before treatment, after 4 weeks of treatment, and 1 month after cessation of treatment. No seasonal increase in the level of 25-hydroxyvitamin D was observed during the period of treatment, but the level rose significantly after withdrawal of the drug. The other hydroxylates of vitamin D were not affected. Levels of albumin, total calcium, phosphorus and alkaline phosphatase remained normal. The data suggest that short-term treatment with cimetidine could potentially perturb vitamin D metabolism in man.

Cimetidine↗

Differential distribution of protein kinases along the crypt-to-lumen regions of rat colonic epithelium.

The activity of cAMP-dependent and cAMP-independent protein kinases, a class of enzymes involved in the regulation of cell proliferation was measured in rat colonic epithelium. Sequential cell populations harvested by a stepwise scraping technique from colonic crypt regions were identified by histology and incorporation of [3H]-thymidine into DNA. cAMP-independent phosphorylation of casein, in the presence of [gamma-32P]ATP, was markedly suppressed by quercetin, a bioflavonoid known to inhibit G-type casein kinase, protein kinase-C and tyrosine protein kinase. Conversely, the cyclic nucleotide regulatable form requiring histone as substrate was responsive to the action of the heat stable protein kinase inhibitor. The protein kinase species were characterised and partially purified by DEAE-cellulose chromatography. The activity of cAMP-dependent protein kinase in colonic cytosols (pmol 32P/min/mg protein, means (SE)) increased from 129.4 (15.9) in superficial cell populations to 238.5 (31.4) in lower crypt cell fractions (p less than 0.01). Colonic cAMP-independent protein kinase activity increased from 87.3 (15.6) in surface cell preparations to 178.1 (30.0) in lower crypt cell populations (p less than 0.02). A comparable activity gradient was observed in membrane fractions. The activity gradient persisted when the results were expressed as a function of cellular DNA. These findings indicate that protein kinases display a defined topological segregation along the colonic crypt regions and that during migration to the lumen colonic cells attenuate enzyme signals supposedly related to tissue growth.

Animals↗

Role of cyclic GMP in gastrin secretion from rat antral mucosae in organ culture.

Rat antral mucosae maintained for 6 h in organ culture responded to carbamylcholine with a significant increase in endogenous cyclic GMP production and gastrin secretion. The acetylcholine analogue exerted a stimulatory action within a defined concentration range: exposure of antral explants to carbachol concentrations greater than the optimal stimulatory dose was accompanied by a marked decrease in both cyclic GMP production and gastrin release. Exogenous 8-Br-cyclic GMP (1 mM) significantly augmented gastrin secretion into the culture media during 6-12 h culture periods. Cycloheximide (0.1 mM) and the Ca2+ channel-blocker verapamil (5 microM) prevented 8-Br-cyclic GMP from acting as a gastrin secretagogue. Addition of cyclic somatostatin-14 (0.1 mM) to culture media was attended by complete inhibition of 8-Br-cyclic GMP-stimulable gastrin secretion. These results provide evidence that cyclic GMP may play a mediatory role in the coupling of gastrin secretory processes to agonist stimulation. It would seem that the secretagogue action of 8-Br-cyclic GMP requires unabated Ca2+ transmembrane fluxes and protein biosynthesis. Since somatostatin-14 abrogates the stimulatory effect of 8-Br-cyclic GMP on antral gastrin secretion, it is surmised that the inhibitory tetradecapeptide acts at a locus (or loci) distal to domains involved in the actual generation of the cyclic nucleotide.

Animals↗

Regional difference in ambient intraluminal gastric acidity after cimetidine monitored by intragastric pH-metry.

Acid secretion was monitored in five duodenal ulcer patients using intragastric glass pH electrodes located in the gastric body and antrum under basal conditions and after the administration of cimetidine. It was shown that differences exist between the body and antral pH in the basal state and in the response to cimetidine. The basal hydrogen ion concentration (mean +/- SEM, mmol/l) in the body, 25.97 +/- 5.03, exceeded that in the antrum, 10.59 +/- 6.44 (p less than 0.05). After cimetidine, the pH rose to 3.5 at both electrodes, this stage being shorter in the antrum (16 min) than body (54 min) (p less than 0.0125). During the next stage the pH rose above 3.5 and the hydrogen ion concentration (mean +/- SEM, mmol/l) was very low in both the body, 0.05 +/- 0.01 (p less than 0.0005 compared to basal) and antrum, 0.08 +/- 0.05 (p less than 0.05 compared to basal). Recovery to basal pH levels occurred more quickly in the body than antrum. Intragastric pH-metry offers a reliable method for studying the mode of action of pharmacological agents on the stomach and contributes information not made available by routine gastric analysis.

Cimetidine↗