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J C Thompson

Publications and source records attributed to J C Thompson.

At least 109 records · Page 6Linked to original sources

Activation of hepatic proliferation-associated transcription factors by lipopolysaccharide.

BACKGROUND: The hepatic acute-phase response is the result of reprogramming of gene expression in the liver. Similar acute-phase responses occur in regenerating liver after partial hepatectomy and are preceded by increases in the expression of a set of transcriptional regulatory proteins that are encoded by "immediate-early" genes. The purpose of this study was to determine whether acute systemic inflammation after lipopolysaccharide injection induces hepatic immediate-early genes that are induced by partial hepatectomy. METHODS: Two- to 4-month-old Balb/c mice received intraperitoneal Escherichia coli lipopolysaccharide (0111:B4; 100 micrograms), and total liver RNA, nuclear protein extracts, or total liver protein lysates were obtained at 0, 1, 3, 12, and 24 hours. RNA blot hybridization analysis was used to determine steady-state messenger RNA levels for c-jun, jun-B, jun-D, c-fos, fos-B, fra-1, nup475, and zif268. Specific nuclear protein-binding activity was determined by gel mobility shift assay. The protein c-Jun was detected by antibody-blocking experiments, and Jun-B was detected by gel supershift assay of the activating protein (AP-1) complex. Steady-state Jun-B levels were determined by immunoblot analysis. RESULTS: Intraperitoneal injection of lipopolysaccharide is followed by induction (from fivefold to 13-fold) of c-jun, jun-B, c-fos, zif268, and nup475 messenger RNAs in the liver. Lipopolysaccharide induced increases in AP-1 and Zif268 consensus DNA-binding activity in mouse liver. The proteins c-Jun and Jun-B are detected in the AP-1 complex after administration of lipopolysaccharide. CONCLUSIONS: The induction of hepatic immediate-early genes after lipopolysaccharide is similar to that that follows partial hepatectomy. These transcription factors likely have important roles in the reprogramming of gene expression that leads to the acute-phase response.

Animals↗

In vitro relationship between magnesium and insulin secretion.

Magnesium, the most abundant intracellular divalent cation, is known to play an essential role in many normal cell functions, such as fluid and electrolyte transport, enzyme activity, and cell proliferation. It is known that magnesium deficiency or hypomagnesaemia induces hyperinsulinism, while hypermagnesaemia inhibits insulin secretion: however, the mechanism controlling the intracellular level of free magnesium and its role in the insulin-secretory mechanism of pancreatic beta cells (RIN m5F cells) are still unclear. Using a fluorescent indicator (mag-fura-2) we have found that the influx of magnesium appears to be voltage-dependent and is sensitive to blockade of the voltage-dependent calcium channel in RIN m5F cells; the efflux of magnesium appears to be voltage- and cyclic AMP-independent. We have observed that depletion of extracellular magnesium potentiates insulin secretion from RIN m5F cells. This finding has led us to speculate on two possible mechanisms through which extracellular magnesium participates in the regulation of insulin secretion: (1) extracellular magnesium may regulate ATP-sensitive potassium channels, and (2) extracellular magnesium may act as a competitive inhibitor of the calcium influx mediated through the voltage-dependent calcium channel. In addition to the role of extracellular magnesium, the changes in the intracellular levels of free magnesium observed during secretagogue-stimulated insulin secretion may alter magnesium-sensitive enzymes or systems, which may play regulatory roles in signal transduction. Elucidation of the role of magnesium in the insulin secretory mechanism will be beneficial for understanding the insulin secretory mechanism of pancreatic beta cells and may be helpful in treating insulin-related abnormalities in patients with hypo- or hypermagnesaemia.

Animals↗

Neural regulation of peptide YY secretion.

The purpose of these experiments was to investigate the neural control of peptide YY (PYY) secretion. The effects of various pharmacological manipulations and vagotomy on peptide YY (PYY) secretion was examined in dogs. Atropine, hexamethonium and atropine plus hexamethonium treatment blocked food-induced release of PYY significantly. Integrated release of PYY in response to food alone and in combination with atropine, hexamethonium and atropine plus hexamethonium were 8.8 +/- 2.2, -1.1 +/- 2.3, -2.7 +/- 2.2 and -3.2 +/- 3.1 (ng (0-150) min/ml), respectively. beta-Adrenergic blockade with propranolol or depletion of nerve terminal stores of catecholamines with reserpine did not affect food-stimulated release of PYY. Truncal vagotomy resulted in significant elevations of basal and food-induced release of PYY. IV administration of bethanechol, a cholinergic agonist, and electrical stimulation of the vagus nerve resulted in release of PYY. Together, these data suggest that food-stimulated PYY secretion is dependent on ganglionic transmission and an atropine-blockable postganglionic parasympathetic pathway; and that PYY release is inhibited tonically, probably through a vagal cholinergic mechanism. Adrenergic pathways do not participate in food-stimulated PYY release; however, electrical stimulation of the splanchnic nerves increased basal levels of PYY, suggesting that the sympathetic nervous system affects release of PYY.

Animals↗

Biomolecular advances in gastrointestinal hormones.

Gastrointestinal hormones are chemical messengers that regulate a broad range of physiologic functions. Although primarily expressed within tissues of the gut, these peptide hormones are widely distributed throughout the body and act on multiple target tissues. Furthermore, these regulatory peptides can exist in multiple molecular forms that may bind to multiple cell-surface receptors coupled to one of several possible signal transduction systems leading to diverse biologic responses. With such an expansive field to study, it is not surprising that gut endocrinologists have embraced the new techniques that are emerging from the revolution of molecular biology. Beginning with the first construction of a recombinant DNA molecule by Paul Berg in 1971, molecular biology has developed many new techniques that have been rapidly adopted by gut endocrinologists to enable a more detailed understanding of gastrointestinal function. The merging of these two fields has led to a new area of research, molecular gut endocrinology, or the study of gut physiology and endocrinology at the level of individual molecules (ranging from polypeptide-surface receptors to small-molecule second messengers to DNA sequences). Gut cells are constantly bombarded by numerous hormones, and the tightly regulated physiologic status of each cell is becoming more clearly understood.

Animals↗

Novel action of transforming growth factor beta 1 in functioning human pancreatic carcinoid cells.

We have shown recently that 5-HT is an autocrine growth stimulatory factor for a cell line (BON) that is derived from a human pancreatic carcinoid tumor. This action is mediated by a 5-HT receptor-linked decrease of cyclic adenosine monophosphate (AMP) production, but not mediated by a 5-HT receptor-linked stimulation of phosphatidylinositol hydrolysis. The BON cells also express transforming growth factor betas (TGF beta s) (1, 2, and 3) and release TGF beta into their medium. In this study, we examined the effects of TGF beta on the secretion of 5-HT, on signal transduction pathways involved in 5-HT secretion, and on growth of BON cells. TGF beta 1 inhibited basal and acetylcholine-stimulated release of 5-HT, but did not inhibit isobutylmethylxanthine-stimulated release of 5-HT. TGF beta 1 inhibited both basal and acetylcholine-stimulated hydrolysis of phosphatidylinositol in a dose dependent manner, but did not affect cyclic AMP production. TGF-beta 1 inhibited growth of BON cells in culture; this effect was reversed by exogenously administered 5-HT. Three different specific and saturable TGF beta 1 binding sites were identified; binding assays performed after mild acid wash (0.1% acetic acid, pH 2.5) conditions uncovered TGF beta receptors that were apparently occupied by endogenously produced TGF beta species. Affinity cross-linking assay showed that BON cells had three different TGF beta binding proteins. These results suggest that TGF beta 1 can inhibit growth of BON cells by altering secretory responses of 5-HT by means of receptor-mediated inhibition of phosphatidylinositol hydrolysis. We conclude that growth of BON cells is regulated, at least in part, by the opposing receptor-mediated autocrine actions of 5-HT and TGF beta.

Affinity Labels↗

Effects of aging on gastrin and somatostatin secretion from isolated perfused rat stomach.

We have examined the release of gastrin and somatostatin from the isolated perfused stomach of rats of three different age groups (4 months, 12 months, and 24 months old) in response to bombesin and carbachol. The basal release of gastrin was diminished in 24-month-old rats. Basal somatostatin release showed an age-related decrease. Bombesin (10(-10) and 10(-9) M) and carbachol (10(-8) and 10(-7) M) stimulated gastrin release in each age group. The integrated release of gastrin in response to bombesin (10(-10) and 10(-9) M) or carbachol (10(-8) M) did not differ among the three age groups, although integrated gastrin release in response to carbachol (10(-7) M) decreased in 24-month-old rats. Bombesin-stimulated release of somatostatin decreased in 12- and 24-month-old rats. Carbachol inhibited release of somatostatin in each age group. Compared with 4-month-old rats, the inhibition of somatostatin release by carbachol was less in 24-month-old rats at 10(-8) and 10(-7) M, and less in 12-month-old rats at 10(-7) M. The decreased basal gastrin secretion and well-preserved gastrin response were further confirmed in conscious aged rats tested by means of oral gavage with 10% peptone. Our findings indicate that gastrin response to the stimuli is well preserved with aging, whereas the response of somatostatin diminishes in an age-related manner. Aging has different effects on the release of gastrin and somatostatin from the rat stomach.

Aging↗

Age-related changes in duodenal adaptation after distal small bowel resection in rat.

Two groups of male Fisher 344 rats (young: 4 months old; aged: 25 months old) underwent either 70% distal small bowel resection or sham operation (small bowel transection). Rats from each treatment group of each age were sacrificed on the 10th (N = 15: young rats; N = 13: aged rats) or 20th (N = 15: young; N = 13: aged) postoperative day (POD), and the duodenal mucosa was weighed and assayed for DNA, RNA, and protein contents, as well as for specific activities of the disaccharidase, sucrase, maltase, and lactase. Compared to the sham operation, distal small bowel resection significantly increased DNA by 48%, RNA by 122%, and protein by 75% in young rats and DNA by 40%, RNA by 92%, and protein by 71% in aged rats on the 20th POD. Both young and aged rats showed similar adaptive hyperplasia on the 10th POD. On the 20th POD after distal small bowel resection, specific activities of all tested enzymes were significantly increased in young rats (sucrase +86%, maltase +110% and lactase +64%), but showed no significant changes in aged rats. These findings suggest that the duodenum of aged rats may have sufficient proliferative potential to respond to distal small bowel resection, but that the mechanisms governing return of function in response to distal small bowel resection are inhibited in aged rats, compared to those mechanisms in the young.

Adaptation, Physiological↗

Differential effect of submandibular gland resection on the growth of pancreatic cancer in cheek pouch and subcutaneous tissue.

Exogenous administration of epidermal growth factor (EGF) enhances tumor growth of H2T, a hamster pancreatic cancer that is inoculated in the cheek pouch. The effect of endogenous EGF on tumor growth, however, is not known. The main source of EGF in the body is the submandibular glands. This study examined the influence of submandibular gland resection (SMx) on H2T tumor growth in the cheek pouch and compared it to the growth in SC tissue. Bilateral SMx or sham operation was performed on male Syrian golden hamsters. In 30 hamsters (n = 15 for each operation group), 5 x 10(4) and 5 x 10(5) H2T cells were inoculated in the bilateral cheek pouches and intrascapular SC tissue, respectively (Exp. 1). In another 30 hamsters (n = 15 for each operation group), 5 x 10(5) and 1 x 10(6) H2T cells were inoculated at the same sites (Exp. 2). Two longest perpendicular diameters of the tumor were measured once a week for 12 wk (Exp. 1) or 8 wk (Exp. 2), and the tumor area was calculated. The tumor area in the cheek pouch became significantly smaller in the SMx group than the sham-operated group after the 8th wk (Exp. 1) or the 7th wk (Exp. 2). On the other hand, the tumor area in the SC tissue did not show any difference between groups through the experiments.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Insulinlike growth factor-binding protein modulates the growth response to insulinlike growth factor 1 by human gastric cancer cells.

BACKGROUND: This study determined whether the resistance to the mitogenic effect of insulinlike growth factor 1 (IGF-1) in AGS (we found that IGF-1 had almost no effect on the growth of AGS) cells is caused by the absence of IGF-1 receptor on the cells or by the interference of endogenous IGFs and IGF-binding protein (IGFBP). METHODS: IGF-1 receptors were examined by radioligand binding assay. The protein in conditioned medium and the molecular weight of IGF-1 receptors on AGS cells were determined by affinity cross-linking with 125I-IGF-1 followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Messenger RNAs for IGF-1, IGF-2, and IGFBP-4 were detected by Northern analysis. RESULTS: AGS cells possessed a single class of high-affinity binding sites for IGF-1 (dissociation constant [Kd], 0.51), with a binding capacity approximately 4 x 10(4) sites per cell. The size of the alpha subunit of IGF-1 receptors on cell membranes was approximately 130 kilodaltons. des (1-3) IGF-1, a truncated IGF-1 with very low affinity to IGFBPs, stimulated AGS cell growth in dose-dependent fashion. The medium conditioned by AGS cells contained IGFBPs of 27-32 and 37-42 kilodaltons. AGS cells expressed messenger (mRNA) RNAs for IGF-2 and IGFBP-4 but not for IGF-1, whereas another gastric carcinoma cell line (SIIA), whose growth is stimulated by IGF-1, expressed mRNA IGF-2 but did not express mRNA for IGF-1 or IGFBP-4: CONCLUSIONS: The relative absence of growth response of AGS cells to IGF-1 is due to the endogenously produced IGFBPs sequestering IGF-1 and preventing receptor interaction.

Adenocarcinoma↗

Bombesin stimulates intracellular Ca2+ mobilization but not proliferation on human colon cancer cells.

Increases in intracellular Ca2+ ([Ca2+]i) levels mediated by bombesin (BBS) are believed to be important signals leading to stimulation of DNA synthesis and an increase in cellular proliferative rate. Since the role of BBS on growth of normal or malignant cells in the GI tract is still unclear, we examined whether BBS affects in vitro growth of human colon cancer cells (COLO 320, HCT116 and LoVo). We also examined the effect of BBS on intracellular Ca2+ levels to determine if the growth-regulatory effect of BBS is mediated through increases in [Ca2+]i. Levels of [Ca2+]i in response to BBS were measured by single cell fluorescence after loading with fura-2. BBS stimulated the mobilization of [Ca2+]i in COLO 320, LoVo, and HCT116 cells in a dose-dependent fashion, but did not affect in vitro growth. These findings suggest that the BBS-mediated increase in [Ca2+]i does not always correlate with the growth-regulatory effect of BBS.

Bombesin↗

Bombesin stimulates growth of colon cancer in mice and decreases their survival.

Bombesin (BBS) stimulates cellular proliferation of both normal and transformed cells. The mouse colon cancer cells (MC-26) possess specific binding sites for BBS. The purpose of this study, therefore, was to examine the effect of chronic administration of BBS on in vivo growth of MC-26 tumours in Balb/c mice and on survival of tumour-bearing mice. Three groups of mice (n = 10 each) inoculated with MC-26 cells received either saline containing 0.1% bovine serum albumin (BSA), or BBS (5 micrograms kg-1 or 20 micrograms kg-1) dissolved with 0.1% BSA saline by intraperitoneal route three times a day for 15 days. BBS increased weight, DNA and RNA contents of MC-26 tumours. To examine the effect of BBS on survival rates of mice with MC-26 tumours, three groups of mice (n = 20 each) were treated for 31 days, as above. One group of mice inoculated with MC-26 cells received 0.1% BSA saline; the other group of MC-26-inoculated mice and the control group without tumour received BBS (5 micrograms kg-1) dissolved with 0.1% BSA saline. BBS significantly decreased the survival rate of mice bearing MC-26 tumours (median survival; saline group: 42.5 days, BBS group: 32.0 days, P = 0.037). None of the mice in the control group died during the experiment. BBS may stimulate in vivo growth of MC-26 cells through specific receptors.

Animals↗

Effect of 5-HT3 receptor antagonist (ondansetron) on functioning human pancreatic carcinoid cells.

5-Hydroxytryptamine (5-HT) is a mitogen for selected cell types. We have reported that 5-HT is an autocrine growth factor for functioning human pancreatic carcinoid (BON) cells; autocrine growth effect is transmitted by 5-HT1A but not 5-HT1C/2 receptors, activation of which decreases cyclic AMP production through a pertussis toxin-sensitive inhibitory GTP-binding protein. In this study, the effect of 5-HT3 receptor antagonist, ondansetron, on BON was examined. Ondansetron did not affect growth of BON cells and also affected neither stimulation of phosphatidylinositol hydrolysis or inhibition of cyclic AMP production evoked by 5-HT in BON cells. Ondansetron, however, inhibited mobilization of intracellular calcium evoked by 5-HT. Present findings suggest that BON cells possess 5-HT3 receptors, but their roles in pancreatic carcinoid cells are still unknown.

Calcium↗

Role of polyamine biosynthesis during gut mucosal adaptation after burn injury.

The induction of ornithine decarboxylase (ODC) mRNA and of ODC enzyme activity are important events in gut repair after cutaneous burn injury. ODC catalyzes the rate-limiting step in the biosynthesis of polyamines that are necessary for normal cell growth; alpha-difluoromethylornithine (DFMO) specifically inhibits ODC activity. The purpose of this study was to examine the role of polyamines in the adaptive response of gut mucosa after burn injury. In experiment 1, male Sprague-Dawley rats (250 to 300 g; n = 6/group) were randomized into sham, 60% burn, or 60% burn plus DFMO. In experiment 2, rats with either a 60% burn or 60% burn plus DFMO treatment received spermidine by gavage. We measured ODC activity, polyamine levels, and DNA content at 0, 12, 24, and 48 hours postburn in the mucosa of both the proximal and distal small intestine. Burn injury produced early atrophy (by 12 hours postburn) of the gut mucosa characterized by decreased mucosal weight and DNA content. Increased ODC activity and polyamine content in both the proximal and distal gut mucosa of burned rats preceded restoration of mucosal weight and DNA content that occurred at 48 hours postburn; these responses were prevented by DFMO treatment. Spermidine administration failed to accelerate gut mucosal recovery after burn injury alone, but oral administration of spermidine reversed the inhibitory action of DFMO on gut mucosal repair. These data suggest that the early increases of gut ODC activity and polyamine levels after burn injury are crucial cellular events for the repair of subsequent gut mucosa.

Adaptation, Physiological↗

Comparative effects of neurotensin and neuromedin N on growth of human pancreatic cancer, MIA PaCa-2.

Neurotensin (NT), an important regulatory hormone of the gut, stimulates growth of the human pancreatic cancer cell line MIA PaCa-2 in vitro. The purpose of our study was to compare the stimulatory effects of NT and neuromedin N (NMN), a structurally related hexapeptide, on the growth of MIA PaCa-2. In addition, the effects of NT on the growth of MIA PaCa-2 xenografts and normal GI tissues were assessed in athymic nude mice. MIA PaCa-2 cells, plated in serum-free media, were treated with either NT (10(-12)-10(-6) M) or NMN (10(-11)-10(-7) M) and cells were counted. For the in vivo study, MIA PaCa-2 cells were inoculated sc into 30 athymic nude mice and then randomized to two groups to receive either NT (600 micrograms kg-1, sc, tid) or vehicle. At sacrifice (day 35), the xenografted tumours, as well as normal host pancreas, jejunum and ileum were removed, weighed, and assayed for DNA, RNA and protein. Both NT and NMN stimulated the growth of MIA PaCa-2 cells in vitro with maximal (approximately 30%) increases occurring with dosages of 10(-9) M. In vivo, NT had a transient effect on xenografted MIA PaCa-2 tumour area with increases noted on days 21 and 25 of the study. Conversely, NT significantly stimulated the growth of jejunum and ileum, with a more pronounced effect noted in the jejunum. NT and NMN have similar growth-stimulatory effects on MIA PaCa-2 cells in vitro, which suggests an interaction through the same receptor.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Accidental poisoning of a group of yearling cattle by the organophosphate insecticide trichloronat.

Eight yearling cattle were accidentally poisoned with the agricultural organophosphate insecticide trichloronat. One animal showed signs of acute organophosphate poisoning and died. The others showed signs of chronic organophosphate poisoning (organophosphate-induced delayed neuropathy) after 2-3 weeks and one animal died from renal failure at 12 weeks. High levels of trichloronat were measured in fat samples at 6 1/2 weeks. The remaining animals still showed signs of ataxia, possibly due to distal axonopathy, 1 year later but no trichloronat was detected in fat samples at this time.

Journal Article↗

Neurotensin regulates growth of human pancreatic cancer.

OBJECTIVE: The effect of neurotensin (NT) on in vitro-growth of human pancreatic cancer cells (MIA PaCa-2) was examined. Furthermore, the intracellular signal-transduction pathways by which neurotensin regulates growth of MIA PaCa-2 cells were determined. SUMMARY BACKGROUND DATA: NT is trophic for normal rat pancreas, but the effect of NT on growth of human pancreatic cancer is not known. METHODS: Effects of NT (10(-12) to 10(-6) mol/l) on growth of MIA PaCa-2 cells were determined by both count of cell numbers and 3H-thymidine incorporation. Action of NT on phosphatidylinositol (PI) hydrolysis, cyclic AMP production, and intracellular calcium level were determined by conventional methods. The effects of 8-bromo-cyclic AMP and prostaglandin E2 on cell growth were determined. RESULTS: Low concentrations of NT (10(-12) to 10(-9) mol/l) stimulated growth in a dose-dependent manner, but higher concentrations of NT (10(-8) to 10(-6) mol/l) did not stimulate growth of MIA PaCa-2 cells. NT (10(-12) to 10(-6) mol/l) stimulated PI hydrolysis and increased intracellular calcium levels in a dose-dependent manner. High concentrations of NT (10(-8) to 10(-6) mol/l) stimulated production of cyclic AMP in a dose-dependent manner. 8-bromo-cyclic AMP inhibited growth of MIA PaCa-2 cells; prostaglandin E2 did not affect growth of MIA PaCa-2 cells. CONCLUSIONS: NT stimulates growth of MIA PaCa-2 cells through stimulation of PI hydrolysis and mobilization of calcium. Stimulation of the cyclic AMP pathway by high concentrations of NT abolishes the growth-stimulatory effect of NT that is mediated through PI hydrolysis or calcium mobilization.

Calcium↗

Progressive loss of pancreatic function in chronic pancreatitis is delayed by main pancreatic duct decompression. A longitudinal prospective analysis of the modified puestow procedure.

OBJECTIVE: This study evaluated the effect of operative drainage of the main pancreatic duct (MPD) on functional derangements associated with chronic pancreatitis (CP). SUMMARY BACKGROUND DATA: The author previously reported delayed functional impairment in an evaluation of the impact of operative drainage in patients with CP. The author now reports on a prospective study of 143 patients with this diagnosis. METHODS: Each patient underwent 1) ERCP, 2) the Bentiromide PABA, 3) 72-hour fecal fat test, 4) oral glucose tolerance test (OGTT) and 5) fat meal (LIPOMUL)--stimulated pancreatic polypeptide release (PP). All patients were stratified as mild/moderate (M/M) or severe CP on the basis of a 5-point system that was developed by the author. Patients were studied at 16-month intervals. RESULTS: All 143 patients underwent initial and follow-up evaluations in a mean follow-up of 47.3 months; 83 of 143 patients had M/M grade at initial evaluation. Eighty-seven patients underwent (MPD) decompression to relieve abdominal pain. In a separate prospective 17 patients with a diagnosis of CP, a grade of M/M and non-disabling abdominal pain were randomized to operative or non-operative treatment; 9 of these randomized patients were operated upon and 8 were not. No patient improved their grade during follow-up; 47 of 83 M/M patients had operative drainage and 36 did not. This grade was preserved in 41 of 47 (87%) operated patients but in only 8 of the 36 non-operated patients (22%). In the randomized trial, seven of nine operated patients retained their functional status in follow-up, whereas only two of eight patients (25%) randomized to non-operation preserved their functional grade. CONCLUSIONS: These data in this large study as well as among a previous randomized sample, support a policy of early operative drainage before the development of irreversible functional impairment in patients with chronic pancreatitis and associated dilation of the main pancreatic duct.

Adult↗

Developmental expression of the neurotensin gene in the rat liver.

OBJECTIVE: This study determined whether the neurotensin gene is expressed during early development of the liver. SUMMARY BACKGROUND DATA: Neurotensin (NT), a gut tridecapeptide localized mainly to the distal small bowel and brain of adults, is an important hormone regulating gut motility, secretion and mucosal growth. Expression of NT peptide and the gene is found in fibrolamellar hepatocarcinomas, a variant of hepatocellular carcinoma, but not in the normal adult liver. METHODS: Northern and in situ hybridization techniques were used to determine expression of the neurotensin gene (NT/N) in the normal developing liver. RESULTS: NT/N is expressed in the fetal and early postnatal rat liver, but expression is repressed in the liver of the adult. In situ hybridization confirms the authors' Northern data and demonstrates a random distribution of NT/N expression in the fetal and 3-day postnatal liver. CONCLUSIONS: The authors conclude from this study that NT/N is expressed during early development of the rat liver with subsequent repression in the adult. NT/N may be reexpressed with malignant transformation of the liver.

Age Factors↗