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Biomedical subjects

R Poulsom

Publications and source records attributed to R Poulsom.

At least 73 records · Page 4Linked to original sources

Stromelysin 3: an independent prognostic factor for relapse-free survival in node-positive breast cancer and demonstration of novel breast carcinoma cell expression.

Stromelysin 3 (ST3) is a matrix metalloproteinase implicated in mammary carcinoma progression. To date, localization of ST3 expression in breast cancer by in situ hybridization and immunocytochemistry has shown that the expression of the enzyme is limited to only the stromal fibroblasts surrounding the cancer cells. We have immunostained a large group of ductal carcinoma in situ and invasive breast carcinomas using a monoclonal antibody (5ST-4A9) raised against the hemopexin-like domain of human ST3. We show that invasive lobular carcinomas express significantly less ST3 than invasive ductal carcinomas (IDCs) (P = 0.002). We also show, for the first time, that certain breast carcinoma cells that have undergone a degree of epithelial-to-mesenchymal transition, the so-called metaplastic carcinomas, can express ST3 mRNA and protein, which may in part explain the increased metastatic propensity seen in a number of these tumors. In addition, patients with IDC who had moderate to strong ST3 levels had significantly shorter disease-free survival than those with negative or weak ST3 levels (P = 0.02). Furthermore, in node-positive IDC patients, multivariate analysis revealed that ST3 level was a strong, independent prognostic parameter for disease-free survival (P = 0.005).

Adult↗

A robust method for isotopic riboprobe in situ hybridisation to localise mRNAs in routine pathology specimens.

In situ Hybridisation (ISH) to detect mRNA is widely applicable to studies of human pathology and experimental models including transgenic mice, where it can provide crucial information as to where a gene is expressed, that is not available in other ways. ISH was used to establish that relatively high levels of expression of E-cadherin mRNA were associated with long-term survival in colorectal cancer, before suitable antisera became available. There is increasing awareness that ISH can be used to help select between candidate disease genes found at a linked locus, and that ISH can help validate therapeutic targets. For instance, when several closely related receptor genes are expressed in a tissue, it may be possible to determine which combinations are expressed together in a single cell type. These diverse applications demand a robust method that works on a variety of clinical and experimental materials, and is easily interpreted. To date, the ICRF in situ Hybridisation Service has hybridised over 30,000 sections of principally formalin-fixed, paraffin-embedded tissues, with a high success rate. The practicalities of our preferred method are discussed and key steps for quality control highlighted.

Automation↗

Comparison of isotopic and non-isotopic labelling for in situ hybridisation of various mRNA targets with cRNA probes.

In situ hybridisation methods to localise messenger ribonucleic acid (mRNA) targets in tissue sections or cell preparations using riboprobes can be successful with either isotopic or non-isotopic labelling. Investigators often wish to decide which labelling method provides the maximum specificity, sensitivity and resolution, with minimum nonspecific background. In this study we compared isotopic (35S) and non-isotopic (digoxigenin) labelling, using a variety of probes and paraffin-embedded tissues. The targets were human beta-actin and von Willebrand Factor mRNAs in archival human tissues; and mRNAs for two closely related trefoil factor family (TFF) peptides, TFF2 and TFF3, in rat duodenum. Patterns of localisation with both isotopic and non-isotopic probes were broadly similar for each target. The 35S labelling provided good contrast and sensitive detection under darkfield illumination, but the cellular or subcellular resolution of the target was less precise than that obtained with the digoxigenin-labelled probes in transmitted light. Digoxigenin labelling in individual cells was more clearly demonstrated, but occasionally the contrast of positive staining with background was poor. The sensitivity of each method appeared to be similar for these high-abundance targets, therefore the choice between isotopic and non-isotopic labels is dependent upon the aim of the study and the cellular resolution required.

Animals↗

Making sense out of in situ PCR.

Given the limited sensitivity of existing in situ hybridization methods for detecting specific nucleic acid sequences, amplification in situ by means of the polymerase chain reaction (PCR) seems to be an attractive alternative. Recent studies using in situ PCR technology have not assessed the gain in signal strength that has been achieved, nor evaluated quantitatively the efficiency of amplification. An accompanying article in the current issue of the Journal examines the reproducibility and amplification efficiency of an RT-PCR in situ hybridization method that uses a sense probe, capable of detecting only amplified target sequences. The amplification procedure resulted in approximately 3-6-fold increased sensitivity that depended upon cell type and disease status.

Alleles↗

Intestinal trefoil factor (TFF 3) and pS2 (TFF 1), but not spasmolytic polypeptide (TFF 2) mRNAs are co-expressed in normal, hyperplastic, and neoplastic human breast epithelium.

pS2-TFF 1 is expressed in breast cancers and has been investigated as a potential prognostic factor reflecting oestrogen dependence. The relationship to the expression of other trefoil peptides, human spasmolytic polypeptide (hSP-TFF 2) and intestinal trefoil factor (hITF/hPI.B-TFF 3) is documented here. Fifty-seven breast specimens were selected from surgical pathology archives and included five normal breasts (two lactating), seven benign proliferative lesions, 11 ductal carcinomas in situ (DCIS), three lobular carcinomas in situ (LCIS), 24 invasive ductal carcinomas (IDC), and seven invasive lobular carcinomas (ILC). The comparative distribution of trefoil mRNAs was assessed by in situ hybridization using 35S-labelled riboprobes and immunohistochemical staining for pS2-TFF 1 and hSP-TFF 2. pS2-TFF 1 and hITF/hPI.B-TFF 3 mRNA were focally present at low signal intensity in normal and benign breast. Both pS2-TFF 1 and hITF/hPI.B-TFF 3 were expressed in all DCIS, LCIS and ILC, and 21/24 IDC. Overall, expression patterns of pS2-TFF 1 and hITF/hPI.B-TFF 3 coincided, but hITF/hPI.B-TFF 3 mRNA was usually found in a greater proportion of cells. Expression of hSP-TFF 2 peptide or mRNA was not detected in any of these cases. MCF 7 breast carcinoma cells also expressed hITF/hPI.B-TFF 3 and pS2-TFF 1 mRNAs but not hSP-TFF 2. hITF/hPI.B-TFF 3 co-expression with pS2-TFF 1 may act as a prognostic factor, but also raises questions about the regulatory pathway for pS2-TFF 1 hITF/hPI.B-TFF 3. Trefoil factors have effects on cell motility and spreading in vitro, and co-expression of hITF/hPI.B-TFF 3 with pS2-TFF 1 could be functionally significant if they form a heterodimer or compete for receptor binding. Absence of hSP-TFF 2 expression may be of equal relevance to tumour cell biology.

Blotting, Northern↗

Roles of hepatocyte growth factor and its receptor Met during gastric ulcer healing in rats.

BACKGROUND & AIMS: It is unclear which growth factors are primarily responsible for stimulating gastric ulcer healing. The roles of hepatocyte growth factor (HGF) and Met/HGF receptor during gastric ulcer healing were studied in rats. METHODS: HGF and Met/HGF receptor were located and quantified by in situ hybridization and immunohistochemistry during experimental gastric ulcer healing. The in vivo effects of exogenous recombinant human HGF on cell proliferation and ulcer healing were assessed and compared with those of placebo and omeprazole treatment. RESULTS: Compared with intact oxyntic mucosa, messenger RNA (mRNA) of HGF and met was substantially greater in the ulcerated region on days 3 and 15. HGF mRNA was located in stromal cells between the regenerative glands and in the arterial vessels of submucosal tissue, whereas met mRNA was located in the epithelial cells of the regenerative glands. After cryoinjury, immunoreactivity for the Met/HGF receptor was absent on day 3, reappeared on day 8, and was overexpressed on day 15. Exogenous recombinant human HGF had no effect on the ulcer healing parameters over days 3-8, but it did increase epithelial cell proliferation in the ulcer margin over days 8-15. CONCLUSIONS: These data suggest that HGF mediates specific tissue interactions between mesenchyme and epithelia during gastric ulcer healing.

Actins↗

Metabolism of MPTP by cytochrome P4502D6 and the demonstration of 2D6 mRNA in human foetal and adult brain by in situ hybridization.

1. 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), a thermal breakdown product of synthetic 'street' heroin, is known to cause Parkinson's Disease-like symptoms in man. 2. The mechanism of action of this neurotoxin is thought to involve activation by the monoamine oxidase B system and subsequent toxicity by inhibition of neuronal mitochondrial respiration. The manifestation of toxicity will be a balance between the rate of activation of this compound versus its rate of inactivation through metabolism by enzymes such as the cytochrome P450-dependent monooxygenases. 3. In this report we demonstrate that MPTP N-demethylation, a detoxification pathway, is catalysed by cytochrome P450 CYP2D6 and up to 40% of the hepatic metabolism is mediated by this enzyme. 4. Perhaps more importantly we also demonstrate by in situ hybridization that CYP2D6 is localized in the pigmented neurons of the substantia nigra indicating that 2D6-mediated detoxification will occur in target cells. 5. These data present evidence that CYP2D6 will be a factor in susceptibility to MPTP neuronal toxicity and provide a biochemical rationale for the genetic observations linking a polymorphism at the CYP2D6 locus with susceptibility to Parkinson's.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Trefoil peptides: mitogens, motogens, or mirages?

Healing of mucosal damage occurs in two phases: restitution of mucosal integrity followed by remodeling with recreation of mucosal architecture. Models of these phenomena include cryoprobe-induced ulcers, NSAID lesions, and surgical anastomosis. Three trefoil peptides are expressed constitutively by epithelial cells in specific regions of the GI tract: pS2 (gastric), spasmolytic polypeptide (SP, gastric and Brunner's glands), and intestinal trefoil factor (ITF, goblet cells). Altered expression occurs in reparative epithelium and adjacent mucosa. In cryoprobe ulceration, rSP mRNA abundance doubles within 2 h, with rITF mRNA becoming detectable after 2-3 days. TGF-alpha and EGF mRNAs do not increase as rapidly as rSP or to the same extent as rITF. Indomethacin lesions of gastric mucosa show increased SP immunoreactivity deep in damaged glands within hours. Surgical anastomotic damage increases rITF mRNA levels at the ulcer edge and sometimes rSP mRNA and peptide in para-anastomotic crypts. Initially, trefoil peptides were viewed as mitogens. However, they are in fact motogens, able to promote cell migration, and may possibly be morphogens. Interactions occur between trefoils and other wound healing peptides (FGFs and EGF). Trefoil peptides appear to be of considerable importance to mucosal healing and might constitute a biologic target of therapeutic relevance.

Animals↗

Differential expression of oestrogen receptor and oestrogen inducible genes in gastric mucosa and cancer.

BACKGROUND: Evidence exists for a role for oestrogen in gastric cancer. The incidence of gastric cancer is much higher in men than in woman, and a similar sex difference is also seen in a rat experimental model of gastric cancer. AIMS: Evidence for a functional oestrogen receptor in normal gastric mucosa and cancer has been sought. METHODS: Oestrogen receptor and the oestrogen inducible genes pS2 and ERD5 were sought by northern blot analysis and in situ hybridisation and immunohistochemistry. Oestrogen receptor protein was studied by enzyme immunoassay. RESULTS: mRNA for oestrogen receptor was detected in cancer and normal gastric mucosa. Enzyme immunoassay for oestrogen receptor showed a mean of 1.8 fmol/mg protein in cancer and 13.7 fmol/mg in paired normal mucosa. The oestrogen inducible genes pS2 and ERD5 were also detected in both cancer and normal mucosa, with expression localised to epithelium. Expression of pS2 was lower in cancer compared with normal mucosa, whereas ERD5 expression was higher in cancer. CONCLUSIONS: Significant amounts of oestrogen receptor were expressed in gastric mucosa with a lower amount in cancer. Oestrogen inducible genes were also expressed differentially but were not found to correlate closely with oestrogen receptor. Oestrogen receptor functionality remains to be demonstrated in the stomach.

Blotting, Northern↗

Fibroblast growth factor receptor signalling has a role in lobuloalveolar development of the mammary gland.

We have used the mouse mammary tumor virus promoter to express two dominant negative (DN) fibroblast growth factor receptor (FGFR) isoforms in the mammary epithelium of transgenic mice. While expression of DN-FGFR1(IIIc) showed no discernible phenotype, a similar kinase negative form of FGFR2(IIIb) caused a marked impairment of lobuloalveolar development. The growth retardation was apparent by mid-pregnancy and persisted in the post-partum glands. Despite the substantial underdevelopment of the mammary gland there was a measurable lactational response, but it was insufficient to properly sustain the new-born pups. These findings demonstrate that fibroblast growth factor signalling is necessary for pregnancy dependent lobuloalveolar development of the mammary gland.

Animals↗

The anti-proliferative effect of plasma from rats with acute fulminant hepatic failure.

BACKGROUND: During fulminant hepatic failure (FHF) metabolites normally cleared by the liver accumulate in the circulation and cause hepatic coma. It is believed that the plasma of FHF patients has an inhibitory effect on liver regeneration. Plasma exchange was used to study the effect of plasma collected from donor FHF rats on liver regeneration in two-thirds partially hepatectomized syngeneic animals. METHODS: FHF and hepatic coma were induced in donors by administration of galactosamine at a dose of 1.85 g/kg. Plasma from donors in either grade-II or -IV coma was transfused by plasma exchange into partially hepatectomized animals 2h after resection. RESULTS: The livers from donor animals showed evidence of oval cell activation 1-2 days after galactosamine, but differentiation of oval cells to hepatocytes did not occur before the development of coma. The plasma collected from animals in grade-IV coma totally abolished regeneration in the partially hepatectomized recipients. CONCLUSION: These results support the hypothesis that metabolites present in the plasma during FHF inhibit liver regeneration.

Acute Disease↗

Expression of oestrogen receptor and oestrogen-inducible genes in pancreatic cancer.

BACKGROUND: Previous studies have not been able to demonstrate convincingly whether the human pancreas expresses oestrogen receptor and whether there is any benefit from antioestrogen therapy in advanced pancreatic cancer. METHODS: Oestrogen receptor expression was assessed in normal human pancreas and pancreatic cancer tissue by enzyme immunoassay, Northern blot analysis, in situ hybridization and immunohistochemistry. The expression of the oestrogen-inducible proteins, progesterone receptor, pS2 and ERD5 was also examined. RESULTS: A mean of 1.0 (range 0-2.4) fmol oestrogen receptor per mg protein was detected in normal pancreas and 0.5 (range 0-1.2) fmol mg-1 in pancreatic cancer. Messenger RNA for oestrogen receptor was detected in both normal and cancerous pancreas. In situ hybridization and immunohistochemistry, however, failed to localize oestrogen receptor expression. Mean (range) expression of progesterone receptor in normal and neoplastic pancreas was 1.9 (0.5-3.5) and 2.5 (0.3-9.3) fmol mg-1 respectively. pS2 and ERD5 were also expressed in normal tissue and pancreatic cancer, and expression was localized to ductular epithelium. CONCLUSION: The amount of oestrogen receptor detected in pancreatic tissue was small, and may account for previous difficulties in its detection. The extent to which it is functional in both the normal and malignant pancreas warrants further investigation.

Adult↗

Keratinocyte growth factor in inflammatory bowel disease. Increased mRNA transcripts in ulcerative colitis compared with Crohn's disease in biopsies and isolated mucosal myofibroblasts.

Inflammation in the gastrointestinal tract is associated with increased epithelial cell proliferation. Keratinocyte growth factor (KGF) is an epithelial cell mitogen widely expressed by mesenchymal cells subjacent to the epithelial cells. In this study, we have investigated the expression and distribution of KGF in normal and diseased (Crohn's disease and ulcerative colitis(UC)) intestine by quantitative competitive reverse-transcriptase polymerase chain reaction in whole biopsies and purified lamina propria myofibroblasts and by in situ hybridization. Analysis of whole mucosal biopsies reveals significantly higher numbers of KGF mRNA transcripts in UC compared with Crohn's colitis and control colon (P < 0.001). KGF transcripts were also elevated in Crohn's ileitis compared with normal ileum. In situ hybridization showed a marked increase in cells expressing KGF mRNA throughout the lamina propria in both UC and Crohn's tissue. In Crohn's disease, positively hybridizing cells were only rarely seen in the submucosa but were abundant around the bases of the crypts and were not associated with lymphoid aggregates. In purified mucosal myofibroblasts, increased (15- to 20-fold) KGF mRNA expression was seen in UC compared with control and Crohn's tissue. These results confirm and extend earlier studies showing that KGF transcripts are elevated in inflammatory bowel disease, but they show for the first time that transcripts are higher in UC than Crohn's disease because of increased production by mucosal mesenchymal cells.

Adolescent↗

Duodenal content reflux esophagitis in the rat: an animal model for the ulcer-associated cell lineage (UACL)?

We have studied the histological changes observed in the mucosa of 10 rats in the region of a esophagojejunostomy to evaluate it as a model for the ulcer-associated cell lineage (UACL). In man, the UACL has a distinctive morphology, proliferative organization, and pattern of trefoil peptide localization. We have therefore examined these aspects aided by immunohistochemistry and in situ hybridization to the trefoil peptides TFF1, TFF2, and TFF3. Only TFF2 was studied by immunohistochemistry, whereas the mRNAs for all three peptides were examined by in situ hybridization using 35S-labeled riboprobes. The marker MIB-1 to the Ki67 proliferation-related antigen was used to examine the proliferative organization of UACL-like changes. In all cases, columnar epithelialization of the distal esophagus was seen, and in all, glands with morphological and gene expression attributes of the UACL were identified. TFF3 mRNA localized patchily throughout the UACL, whereas TFF1 mRNA was found in the upper portions of the lineage and TFF2 mRNA and its product in the acini. These lineages showed virtually no intrinsic proliferative activity. These appearances are similar to those seen in early human UACL, and we therefore propose this that this represents the first published animal model of this lineage.

Animals↗

Analysis of foetal expression sites of human type II DNA topoisomerase alpha and beta mRNAs by in situ hybridisation.

We present the first analysis of the sites of expression of DNA topoisomerase II alpha and II beta mRNAs in human foetal tissues by in situ hybridisation, using 35S-radiolabelled probes. This revealed differential localisation of topoisomerase II alpha and II beta mRNAs in a range of foetal organs, including foetal kidney (developing structures within the neogenic zone), brain (cortical layers), small intestine (crypt epithelium and muscle), liver (hepatocytes), lung (smooth muscle, and epithelium in the lining of primitive lung buds) and placenta (trophoblastic epithelium). The intensity of expression of topoisomerase II alpha mRNA appeared higher than that of topoisomerase II beta, although topoisomerase II beta mRNA was expressed in a broader range of cell types. The distinct patterns of expression of topoisomerase II alpha and beta mRNAs indicate differential regulation of these genes, suggesting that the two isoforms may play important but different roles in foetal development, with topoisomerase II alpha being expressed most strongly in zones of proliferation.

Antigens, Neoplasm↗

The gene encoding mouse intestinal trefoil factor: structural organization, partial sequence analysis and mapping to murine chromosome 17q.

Trefoil peptides, a growing family of secretory molecules, have been identified mainly in the gastrointestinal tract of humans, rodents and amphibians. In the present study, the nucleotide sequence of a large portion (81%) of the gene encoding murine intestinal trefoil factor (mITF) and its whole genomic organization were determined. The mITF gene contains three exons distributed over 5 kb of genomic DNA. The genomic sequence is highly conserved, as compared with that of the rat and human ITF, and contains several AP-1-binding sites, the consensus binding site for the transcription factor Sp1, and a sequence homologous to a heat-shock element. Fluorescence in situ hybridization was used to assign ITF to chromosome 17 of the murine genome, a region syntenic with the trefoil gene cluster on human chromosome 21q22.3.

Amino Acid Sequence↗

Transgenic mice that overexpress the human trefoil peptide pS2 have an increased resistance to intestinal damage.

pS2 is a member of the trefoil peptide family, all of which are overexpressed at sites of gastrointestinal injury. We hypothesized that they are important in stimulating mucosal repair. To test this idea, we have produced a transgenic mice strain that expresses human pS2 (hpS2) specifically within the jejunum and examined the effect of this overexpression on proliferation and susceptibility to indomethacin-induced damage. A transgenic mouse was produced by microinjecting fertilized oocytes with a 1.7-kb construct consisting of rat intestinal fatty acid binding protein promoter (positions -1178 to +28) linked to full-length (490 bp) hpS2 cDNA. Screening for positive animals was by Southern blot analysis. Distribution of hpS2 expression was determined by using Northern and Western blot analyses and immunohistochemical staining. Proliferation of the intestinal mucosa was determined by assessing the crypt cell production rate. Differences in susceptibility to intestinal damage were analyzed in animals that had received indomethacin (85 mg/kg s.c.) 0-30 h previously. Expression of hpS2 was limited to the enterocytes of the villi within the jejunum. In the nondamaged intestine, villus height and crypt cell production rate were similar in transgenic and negative (control) litter mates. However, there was a marked difference in the amount of damage caused by indomethacin in control and transgenic animals in the jejunum (30% reduction in villus height in controls vs. 12% reduction in transgenic animals, P < 0.01) but the damage sustained in the non-hpS2-expressing ileal region was similar in control and transgenic animals. These studies support the hypothesis that trefoil peptides are important in stimulating gastrointestinal repair.

Animals↗

The gene encoding human intestinal trefoil factor (TFF3) is located on chromosome 21q22.3 clustered with other members of the trefoil peptide family.

The gene coding for human intestinal trefoil factor (hITF), a recently described cellular motogen produced by gastrointestinal goblet cells and epithelia elsewhere, is a member of the rapidly growing trefoil peptide family. In a rodent-human somatic cell hybrid panel, the hITF (HGMW-approved symbol TFF3) genomic locus segregated with human chromosome 21q. Fluorescence in situ hybridization with a 2.1-kb genomic probe of the hITF gene mapped this locus more precisely to the q22.3 region. Triple fluorescence in situ hybridization, together with physical mapping of human genomic DNA using pulsed-field gel electrophoresis, revealed that the hITF gene is tightly linked to those encoding the other known human trefoil peptides, namely the breast cancer estrogen-inducable gene pS2 (BCEI) and human spasmolytic polypeptide (hSP/SML1). This gene family could become a useful marker for the genetic and physical mapping of chromosome 21 and for a better definition of the region involved in the clinical phenotype of several genetic diseases.

Chromosome Mapping↗