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Biomedical subjects

R Poulsom

Publications and source records attributed to R Poulsom.

At least 109 records · Page 6Linked to original sources

The expression of the trefoil peptides pS2 and human spasmolytic polypeptide (hSP) in 'gastric metaplasia' of the proximal duodenum: implications for the nature of 'gastric metaplasia'.

Expression of pS2 protein (an oestrogen-induced gene discovered in the MCF-7 breast carcinoma cell line) and its homologue human spasmolytic polypeptide (hSP) was analysed, using immunohistochemistry and in situ hybridization to their mRNAs, in the proximal duodenum of 17 partial gastrectomy specimens removed from individuals with chronic peptic ulceration. Eight were found to have gastric-type metaplasia. In gastric metaplasia, mRNAs for pS2 and hSP, and pS2 peptide antibody were co-localized in the cells covering the duodenal villi. pS2 immunostaining was diffusely cytoplasmic in nature. A similar pattern was seen in Brunner's gland ducts. The trefoil peptide localization in gastric metaplasia closely resembles that seen in superficial gastric epithelium and the distal Brunner's gland duct, which in turn shares morphological similarities with gastric epithelium. We therefore conclude that gastric metaplasia may be the result of an expansion of the surface component of the Brunner's gland duct. The function of these trefoil peptides is at present unknown, but their distribution elsewhere suggests an involvement in reparative mechanisms. The similarities between gastric foveolar and Brunner's gland duct epithelium may derive from common restitution-enhancing features pertinent to a locally harsh environment.

Brunner Glands↗

Bcl-2 expression in adult and embryonic non-haematopoietic tissues.

The B-cell leukaemia/lymphoma-2 (bcl-2) proto-oncogene is unusual as its product appears to provide survival advantage to B cells by blocking apoptosis. In this study, the expression of bcl-2 has been examined in normal non-haematopoietic tissues, embryos, and psoriatic skin by immunohistochemical staining. Bcl-2 protein expression is mainly observed in cell populations with a long life and/or proliferating ability such as duct cells in exocrine glands, basal keratinocytes, cells at the bottom of colon crypts, and neurons. In the skin of both adult and embryo and also embryonic kidney and cartilage, bcl-2 expression was observed in cells which were undergoing morphological transition from undifferentiated stem cells to committed precursor cells. The finding of bcl-2 expression in the terminal differentiated syncytial trophoblast, but not cytotrophoblast, and in some cells responsive to hormone stimulation such as in the endometrium and myometrium suggests that the gene expression may be related to hormone responsiveness. As no bcl-2 localization was seen in the benign hyperproliferative skin condition psoriasis, this does not suggest a straight-forward link to proliferation. These observations support the view that the bcl-2 gene may have an important role in cell development, maturation, and the path to terminal differentiation.

Adult↗

Expression of hepatocyte growth factor mRNA during oval cell activation in the rat liver.

The customary wave of hepatocyte regeneration which occurs in the rat liver after two-thirds partial hepatectomy can be abolished by oral administration of the carcinogen 2-acetylaminofluorene. Instead, regeneration is achieved through the proliferation and differentiation of potential stem cells (oval cells) which appear to emanate from the portal space. Ultrastructural studies have illustrated the undifferentiated nature of these cells in the first 3 days after resection, but very rapidly they acquire features of small hepatocytes or biliary epithelia. Oval cell progeny can form either cohesive columns of cells within sinusoids which may later differentiate into new hepatic plates, or single cells that can insinuate within existing plates. Using a 35S antisense riboprobe to hepatocyte growth factor (HGF) mRNA, the synthesis of HGF mRNA was observed in sinusoid-lining cells. There were few HGF mRNA-expressing cells in the liver removed at resection, but numbers steadily increased in the remnant over the next 7 days. In particular, an almost nine-fold increase in the density of HGF mRNA-producing cells occurred in the periportal areas, resulting in approximately double the density present within the centrilobular parenchyma. The superabundance of HGF-producing cells in the immediate vicinity of oval cell proliferation and differentiation strongly suggests that this growth factor is involved in all aspects of stem cell behaviour--proliferation, migration, and differentiation, through a paracrine mechanism.

Animals↗

Trefoil peptide gene expression in gastrointestinal epithelial cells in inflammatory bowel disease.

BACKGROUND: This work expands on recent observations that the trefoil peptides pS2 and human spasmolytic polypeptide (hSP) are expressed in the ulceration-associated cell lineage (UACL) glands developing in chronic ulcerative conditions. METHODS: Trefoil peptide expression in small intestinal Crohn's disease was examined by in situ hybridization to reveal sites of expression of the messenger RNAs encoding pS2 and hSP and by immunohistochemistry and immunoelectron microscopy to localize the peptides in the UACL and adjacent goblet and neuroendocrine cells. RESULTS: Goblet cells near the UACL expressed pS2 messenger RNA and peptide; ultrastructural immunolocalization revealed pS2 copackaged within mucous cell granules. Neuroendocrine cell hyperplasia was marked in crypts near the UACL; pS2 was copackaged with the neuroendocrine granules. CONCLUSIONS: Copackaging of a secretory protein, pS2, in both mucous and neuroendocrine granules, which have different functions, is unusual and indicates an important role for pS2 in the secretory process itself or as a ligand delivered to its receptors via different routes. It is concluded that trefoil peptides are of considerable potential functional importance in inflammatory bowel disease.

Cell Line↗

Spasmolytic polypeptide is a major antral peptide: distribution of the trefoil peptides human spasmolytic polypeptide and pS2 in the stomach.

BACKGROUND: The regional differences in the distribution of the trefoil peptides pS2 and human spasmolytic polypeptide (hSP) within the stomach are not known. The aim of this study was to gain insight into these functionally obscure molecules by characterizing their distribution. METHODS: Tissue from gastrectomy specimens removed for peptic ulceration was examined to chart the distribution of hSP and pS2, using immunohistochemistry and in situ hybridization to chart their messenger RNAs (mRNAs). RESULTS: Colocalization of pS2 and hSP was noted in the gastric foveolar and surface epithelium throughout the stomach. In the gastric antrum and pylorus, an extremely strong hSP mRNA signal was present within pyloric-type glands; strong hSP immunostaining was also seen at this site and in mucous-neck cells. Neither pS2 mRNA nor pS2 peptide were shown within the deep portions of the pyloric glands. Within areas of intestinal metaplasia, a few goblet cells immunostained for pS2 and putative ulcer associated cell lineage was seen with a pattern of trefoil peptide localization similar to the ileum. CONCLUSION: The detailed function of these trefoil peptides is unknown, but their distribution suggests involvement in repair-enhancing mechanisms. hSP may be an important antral peptide and both of these peptides may play a specific reparative role.

Epithelium↗

Trefoil peptide gene expression in small intestinal Crohn's disease and dietary adaptation.

We examined the patterns of trefoil peptide gene expression in the ulcer-associated cell lineage (UACL) and mucosa adjacent to Crohn's disease in humans and during gastrointestinal adaptation to enteral feeding in rats. In the UACL, human spasmolytic polypeptide (hSP) mRNA and peptide are present in the acinar and proximal duct cells, whereas pS2 mRNA and peptide are found in the distal duct cells and in the surface cells. In mucosa adjacent to UACL, pS2 mRNA and peptide are expressed ectopically by goblet cells and neuroendocrine cells. Intestinal crypts associated with the UACL showed marked neuroendocrine cell hyperplasia. Ultrastructural immunolocalization showed pS2 to be copackaged in the mucous cell and neuroendocrine granules. The copackaging of a secretory protein in both mucous and neuroendocrine granules, which have different functions, is unusual and indicates an important role for pS2 in the secretory process itself or as a ligand delivered to its receptor via multiple routes. We also cloned the newest trefoil peptide, intestinal trefoil factor (ITF), from human and rat intestinal mucosa. Using in situ hybridization we demonstrated its synthesis by normal rat intestinal goblet cells. RNAse protection analysis revealed that the level of mRNA for rat ITF in small and large intestine was affected by the process of enteral feeding. We conclude that trefoil peptides are widely distributed in the intestine in human inflammatory bowel disease and are of considerable potential functional importance.

Animals↗

Expression of gelatinase A and TIMP-2 mRNAs in desmoplastic fibroblasts in both mammary carcinomas and basal cell carcinomas of the skin.

AIMS: To compare the localisation of mRNAs for the basement membrane degrading enzyme gelatinase A (72 kilodalton type IV collagenase) and its inhibitor TIMP-2 in carcinomas of the breast and basal cell carcinomas of the skin which have little or no ability to metastasize. METHODS: In situ hybridisation was performed on formalin fixed, paraffin wax embedded blocks using 35S-labelled riboprobes on 16 mammary carcinomas, three fibroadenomas, and a benign phyllodes tumour, and on 15 basal cell carcinomas of the skin (BCC). RESULTS: Labelling for both mRNAs was detectable in 14 of 16 mammary carcinomas and in 13 of 15 BCC, most often over organising desmoplastic fibroblasts in the stroma around invasive epithelial aggregates. Some sparse labelling was seen over malignant epithelial cells in six of the mammary carcinomas but not in the BCC. Some expression of gelatinase A mRNA was also seen in fibroblasts of breast lobules adjacent to the mammary carcinomas and around engulfed adnexal elements in the BCC, but not in unaffected breast tissues, fibroadenomas, the phyllodes tumour or unaffected skin. CONCLUSIONS: Maximal expression of gelatinase A and TIMP-2 mRNAs occurs in malignant neoplasms as part of the host response to the presence of established neoplastic cells rather than as an initial response to invasion. The degree to which this is present suggests this may be a highly relevant mechanism modulating tumour differentiation, growth and progression, possibly entailing uptake via specific receptors on the tumour cell surface.

Actins↗

Trefoil peptides: a newly recognized family of epithelial mucin-associated molecules.

Members of the trefoil family of peptides are generally small stable secreted molecules, structurally related by the presence of one, or up to six, compact 6-cysteine motifs. Several trefoil peptides are expressed in mammalian gut and Xenopus gut and skin, often in association with mucins. Chronic ulcerative conditions of the gut, such as Crohn's disease, result in the growth of glandular structures of the ulcer-associated cell lineage (UACL) that secrete epidermal growth factor/urogastrone, transforming growth factor-alpha, and at least three trefoil peptides [pS2, human spasmolytic polypeptide (hSP), and intestinal trefoil factor (hITF/hP1.B)]. Neuroendocrine and goblet cells near the UACL are "recruited" into expressing pS2 and hSP, but the purpose of this concerted expression is unclear. A role in mucosal healing has been proposed. Biological functions of trefoil peptides have been difficult to establish. Pancreatic spasmolytic polypeptide of porcine origin inhibits gastric acid secretion and smooth muscle contraction and is a growth factor for some cultured cells, but pS2, once thought to be breast cancer specific, is not a mitogen. Recombinant trefoil peptides have allowed localization of binding sites and will allow structure-activity relationships to be studied, once the functions are clear.

Amino Acid Sequence↗

Hyperplastic polyps: a cell lineage which both synthesizes and secretes trefoil-peptides and has phenotypic similarity with the ulcer-associated cell lineage.

Hyperplastic polyps are common benign lesions of uncertain histogenesis, which occur in the colon in populations at risk for colorectal carcinoma. They contain neutral/MUC1 gene-related mucin which in turn is closely associated with the trefoil-peptide pS2, a major component of the ulcer-associated cell lineage, previously termed pseudopyloric metaplasia. We have examined 17 hyperplastic polyps for expression of the trefoil-peptides pS2 and human spasmolytic polypeptide by in situ hybridization and immunohistochemistry, as well as by using antisera to epidermal growth factor/urogastrone and its receptor and to epitopes of the product of the MUC1 gene to characterize any further similarity between these lesions and the ulcer-associated cell lineage and thus help elucidate the nature of the lesions. Our investigations show both human spasmolytic polypeptide and pS2 messenger RNA within the polyps, whereas only pS2 peptide could be demonstrated immunohistochemically. Epidermal growth factor/urogastrone, its receptor, and antisera to the MUC1 gene also showed widespread staining of these polyps. We suggest that hyperplastic polyps are formed of a lineage that both synthesizes and secretes trefoil-peptides and the MUC1 mucin and that hyperplastic polyps may be related to the phenotypically similar ulceration-associated cell lineage.

Cell Line↗

E-cadherin expression in colorectal cancer. An immunocytochemical and in situ hybridization study.

Expression of the epithelial-specific adhesion molecule E-cadherin has been assessed in paraffin-embedded tissue from a series of 72 colorectal carcinomas. Using immunocytochemistry and in situ hybridization it was found that E-cadherin expression was related inversely to tumor differentiation. Out of 44 well- and moderately differentiated tumors, 36 expressed good positivity, whereas 24 of 28 poorly differentiated tumors were E-cadherin-negative. Classification by Dukes stage revealed a highly significant difference (P << 0.001) between A and B (32 positive, four negative) and C1 and C2 (seven positive, 29 negative) stages in terms of immunoreactivity. Of the 32 lymph node metastases studied, 20 were negative for E-cadherin expression, as were seven of eight liver metastases. These results indicate that the down-regulation of E-cadherin levels in vivo is associated with the dedifferentiation, progression, and metastasis of colorectal cancer.

Adenocarcinoma↗

Localization of intestinal trefoil-factor mRNA in rat stomach and intestine by hybridization in situ.

A cDNA encoding rat intestinal trefoil factor (rITF) was prepared by reverse transcription and PCR amplification. The sequence obtained was well conserved with that of other trefoil peptides. An antisense riboprobe produced from the clone was used to localize the sites of ITF expression in the rat gastrointestinal tract using hybridization in situ. We found rITF mRNA in goblet cells in the small intestine and colon; a gradient of signal strength greatest near the crypt base was sometimes present. We found no evidence for rITF expression in Brunner's glands, the pancreas, or most regions of the gastric mucosa. Surprisingly, strong signals for rITF mRNA were detected in a region of stomach at the junction of the squamous fore-stomach with the glandular gastric mucosa. This region, which may correspond to the cardiac region, formed part of a larger area of cells staining positive for acid mucins. We hypothesize that concerted expression occurs of particular trefoil peptides with specific mucins, and that this organization reflects a functional relationship between mucins and trefoil peptides.

Amino Acid Sequence↗

The epidermal growth factor receptor in human pancreatic cancer.

The epidermal growth factor receptor (EGFR) and its ligands are thought to be important in the control of proliferation of many epithelial systems, including the exocrine pancreas. Abnormalities in expression of two of the known ligands of the EGFR, transforming growth factor alpha and epidermal growth factor, occur frequently in ductal adenocarcinoma of the human pancreas. We have examined an archival series of cases of pancreatic pathology for expression of the EGFR using the anti-EGFR antiserum 12E and found that there is almost ubiquitous overexpression of EGFR in pancreatic cancer and in chronic pancreatitis. Southern blot analysis showed no evidence of amplification or rearrangement of the EGFR gene. We conclude that an autocrine loop involving the EGFR system may be involved in the genesis of both neoplasia and reactive hyperplasia of pancreatic ductal epithelium.

Adenocarcinoma↗

Lysozyme gene expression in inflammatory bowel disease.

Riboprobe in situ hybridization (rISH) demonstrates active lysozyme synthesis in ulcerative colitis and Crohn's disease. Maximal labeling was seen in Paneth cells, macrophages, and granulomas. Diffuse infiltration of the mucosa by lysozyme-rich polymorphs characterizes ulcerative colitis but obscures reactivity in other cell lineages in immunohistochemical studies; lysozyme mRNA is not detected in polymorphs, rISH giving a clearer picture than immunohistochemical studies of the active synthesis of lysozyme within the gut in inflammatory bowel disease. In ulcerative colitis, strong signals localized to Paneth cell metaplasia were found in 11 of 20 cases and to a lesser degree in non-Paneth cell lineages in regenerative mucosa in 13 of 20 cases. In Crohn's disease, abundant labeling was seen in tuberculoid granulomas (5 of 20) and over macrophage aggregates in the lamina propria in another 7, characteristic patterns not encountered in ulcerative colitis. Low levels of lysozyme messenger RNA were found in the ulceration-associated cell lineage ("pseudopyloric metaplasia"). These results support the view that neutrophils are largely responsible for elevated fecal lysozyme levels in ulcerative colitis and macrophages for elevated serum lysozyme levels in Crohn's disease.

Colitis, Ulcerative↗

Trefoil peptide expression in intestinal adaptation and renewal.

There are many avenues where molecular biology is important in studying the gut, and here we explore methods for defining expression of a new gene family in the gut. We have defined the pattern of trefoil peptide gene expression in the ulceration-associated cell lineage (UACL) and in the nearby mucosa in Crohn's disease. In the UACL, human spasmolytic polypeptide mRNA and peptide are expressed in the acinar and proximal duct cells, whereas pS2 mRNA and peptide are found in the distal duct cells and in the surface cells. In adjacent mucosa, pS2 mRNA and protein are expressed ectopically by goblet cells. Ultrastructural immunolocalisation showed the pS2 to be co-packaged in the mucous cell granules. pS2 peptide was demonstrated in local neuroendocrine cells and was also co-packaged with the neuroendocrine granules. The crypts associated with the UACL also showed marked neuroendocrine cell hyperplasia. We have also cloned the newest trefoil peptide intestinal trefoil factor from human and rat intestinal mucosa and shown its co-expression with mucus by normal intestinal goblet cells. The co-packaging of the same secretory protein in both mucous and neuroendocrine granules, which have different functions, is unusual and indicates an important role for pS2 in the secretory process itself or as a ligand delivered to its receptor via multiple routes. We conclude that the trefoil peptides are widely distributed in the intestine in inflammatory bowel disease and are of considerable potential functional importance.

Amino Acid Sequence↗

Trefoil peptide gene expression in gastrointestinal epithelial cells in inflammatory bowel disease.

Trefoil peptides are a growing group of proteins with interesting structural and functional properties. We have defined the pattern of trefoil peptide gene expression in the ulceration-associated cell lineage (UACL) and in the nearby mucosa in Crohn's disease. In the UACL, human spasmolytic polypeptide (hSP) mRNA is expressed in the acinar and proximal duct cells, while pS2 mRNA and peptide are found in the distal duct cells and in the surface cells. In adjacent mucosa, pS2 mRNA and protein are expressed by goblet cells, with the pS2 peptide concentrated in the area of the Golgi and also in the theca. Ultrastructural immunolocalisation showed the pS2 to be co-packaged in the mucous cell granules before being secreted into the intestinal lumen. In addition, pS2 peptide was demonstrated in local neuroendocrine cells and was also co-packaged with the neuroendocrine granules. The crypts associated with the UACL also showed marked neuroendocrine cell hyperplasia. We conclude that pS2 peptide is secreted locally into the viscoelastic coat covering the intestinal mucosa which surrounds Crohn's disease ulcers. In addition, it is clear that intestinal goblet cells, in addition to producing mucins, are a rich source of regulatory peptides. Moreover, pS2 is clearly co-packaged with neurosecretory granules, which are released through basal and lateral membranes so that the contained peptides can act in a paracrine manner. These findings are interpreted in terms of the epidermal growth factor/urogastrone released by the UACL, stimulating pS2 gene expression in surrounding cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Crohn Disease↗

Stromal expression of 72 kda type IV collagenase (MMP-2) and TIMP-2 mRNAs in colorectal neoplasia.

We undertook an in situ hybridization study to localize the mRNAs for the 72 kda type IV collagenase (MMP-2) and its specific inhibitor (TIMP-2) in 12 colorectal carcinomas, 3 adenomas, and 4 uninvolved resection margins to see how their distributions correlated with that of the reported distribution of MMP-2 protein. Labeling for MMP-2 and TIMP-2 mRNAs was detectable in 10 of 12 carcinomas and in 2 of 3 adenomas. Unexpectedly, we found much stronger signals for MMP-2 and TIMP-2 mRNAs within the mesenchymal cells in the desmoplastic stroma, of endothelial and/or (myo)fibroblastic nature, rather than in tumor epithelial cells in which localization of MMP-2 was anticipated. Our data indicate that stromal cells may have the ability to synthesize a metalloproteinase that degrades basement membrane, and may together with the neoplastic epithelial cells participate actively in the tissue remodeling and disruption of the basement membrane integrity which is characteristic of invasive tumors.

Actins↗

Nonuniform expression of a mouse mammary tumor virus-driven int-2/Fgf-3 transgene in pregnancy-responsive breast tumors.

We have developed transgenic mice in which expression of the mouse int-2/Fgf-3 gene is regulated by a single long terminal repeat from mouse mammary tumor virus. Such mice contain and transmit a replica of the activated int-2/Fgf-3 allele present in a spontaneous mammary tumor from a BR6 mouse. Although free of infectious mouse mammary tumor virus and with a different genetic background, the transgenic mice develop pregnancy-responsive mammary epithelial proliferations that are similar to the early stages of tumorigenesis in the BR6 strain. Histological examination revealed that most of these tumors showed pronounced tubular and acinar structures, features usually associated with morphological differentiation. In some cases, the tumors were locally invasive, causing disruption of the dermis which manifested itself as local hair loss. In situ hybridization showed that patterns of transgene expression in the abnormal glands were markedly nonuniform. In contrast, mouse mammary tumor virus-induced neoplasms showed more uniform expression of int-2/Fgf-3, as did the urogenital epithelial proliferations that occur among males of this transgenic line. These data suggest that mammary tumors in virally infected animals may depend primarily on autocrine stimulation by the int-2/Fgf-3 gene product, whereas both autocrine and paracrine mechanisms may contribute to tumors and hyperplasias found in transgenic animals.

Animals↗

Epidermal growth factor (EGF/URO) induces expression of regulatory peptides in damaged human gastrointestinal tissues.

The pS2 gene encodes for a small cysteine-rich protein, and was originally found by differential screening of a cDNA library from the human breast carcinoma cell line, MCF-7. The presence of pS2 is closely correlated with oestrogen dependence in breast carcinomas. While the function of pS2 is unknown, pS2 protein has been shown to be homologous with the gastrointestinal peptide hormone pancreatic spasmolytic polypeptide (PSP) and its human counterpart hSP, in which a 5-cysteine domain is tandemly repeated. The 5' flanking region of the pS2 gene contains an enhancer region responsive to oestrogens and to epidermal growth factor (EGF/URO). We now report that pS2 and hSP expression occurs in a wide range of endodermally-derived tissues, including the duodenum, the pancreas, and in a recently defined cell lineage associated with chronic gastrointestinal ulceration. In each case, this expression was associated with secretion of immunoreactive EGF/URO. We further show that the co-expression of pS2 and hSP in gastric surface epithelial cells is also associated with the secretion of EGF/URO in the subjacent mucous neck cells. Our results indicate that local EGF/URO secretion induces pS2 and hSP in adjacent cells, and that these molecules are then available to participate in pathophysiological responses. The finding of similar patterns of EGF/URO, hSP and pS2 expression in association with chronic damage suggests that this is a fundamental response in the healing of these tissues.

Cell Line↗