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L Lambotte

Publications and source records attributed to L Lambotte.

At least 19 recordsLinked to original sources

Molecular events associated with accelerated proliferative response in rat livers when partial hepatectomy is preceded by a sham operation.

BACKGROUND: When a sham operation is performed 6 h before partial hepatectomy (PH), the regenerative response is accelerated suggesting that sham operation itself contributes to cellular events leading to proliferation. MATERIALS AND METHODS: In order to examine the mechanisms implicated in this acceleration, we compared the activation of several factors associated with the progression through the cell cycle at various times after PH and after PH preceded by sham operation (S6 h + PH). The effect of a single sham (S) and two combined sham operations (S6 h + S) was also examined. Nonoperated rats were used as controls (C). RESULTS: The early factors NF-kappaB and Stat3 were activated after S6 h + PH and S6 h + S. C-jun expression was increased 0.5 h and 2 h after PH and 6 h after sham. There was no further increase in S6 h + PH and S6 h + S. In contrast, c-myc expression returned to baseline levels after S6 h and a new increase was observed 2 h after S6 h + PH but not after S6 h + S. P53 mRNA was significantly expressed 6 h after S6 h + PH, but at a level similar than that observed 6 and 12 h after PH alone. An earlier increase in c-Ha-ras mRNA and cyclin E protein was found in S6 h + PH, in comparison with PH alone. CONCLUSIONS: The first divergent response between the two combined models involved c-myc expression. However, major differences related to the accelerated liver regenerative response observed after S6 h + PH were found at late time points associating an earlier expression of c-Ha-ras and nuclear cyclin E.

Animals↗

Expression of presumed specific early and late factors associated with liver regeneration in different rat surgical models.

Experiments performed on the portal branch ligation (PBL) model indicate that early changes observed after surgery are not related to the regenerative process because they also occur in atrophying lobes. To further confirm the lack of specificity of the early events and to exclude the influence of circulatory factors released by proliferating lobes on their occurrence, we investigated this response after sham operation (SO) and portacaval shunt (PCS), a model characterized by liver atrophy. We also attempted to determine expression of later events associated specifically with regeneration, ie, expression of p53 or c-Ha-ras, or inhibition of proliferation, ie, interleukin-1beta (IL-1beta) and transforming growth factor-beta1 (TGF-beta1) after partial (PH) and temporary partial (TPH) hepatectomy, SO and PCS. Nuclear factor-kappaB (NF-kappaB) and signal transducer and activator of transcription 3 (STAT3) DNA binding were assessed by electrophoretic mobility shift assay (EMSA), interleukin-6 (IL-6) mRNA by reverse transcription-polymerase chain reaction (RT-PCR), c-myc and c-jun mRNAs by Northern blot analysis at 0.5 and 2 hours, p53 and c-Ha-ras mRNAs by Northern blot analysis at 8 and 24 hours, and IL-1beta and TGF-beta1 by RT-PCR at 24 hours. The early response including an increase of NF-kappaB, STAT3, IL-6, and immediate-early genes expression was present after PH, PCS, and SO. In SO, slight differences were observed in comparison with PH: no NF-kappaB p65/p50 DNA binding was observed, only three of six SO rats were positive for IL-6, and immediate-early genes induction showed differences in the intensity of the response. At later times, p53 mRNA increased at 8 hours after PH and TPH, c-Ha-ras mRNA at 24 hours after PH, and IL-1beta mRNA at 24 hours after PCS. Early events are not specifically associated with the reduction of liver mass or with the regenerative process, are not predictive of future cell fate, and are most likely related to surgical stress. p53 and c-Ha-ras induction is closely associated with cell cycle progression whereas IL-1beta, but not TGF-beta1, appears to be one of the negative growth regulators that might play an important role in atrophy.

Animals↗

After portal branch ligation in the rat, cellular proliferation is associated with selective induction of c-Ha-ras, p53, cyclin E, and Cdk2.

BACKGROUND: In liver regeneration after portal branch ligation we previously showed that early cellular changes are observed in both the proliferating and atrophying liver lobes. They are therefore not indicative of future proliferative response. In this study we attempted to define precisely, in the same model, the time at which the cellular processes diverge between the lobes by measuring various parameters associated with cellular proliferation. We also investigated the possible role of inhibitors of cell proliferation in the absence of progression towards the S phase in the atrophying lobes. AIMS: Expression of p53, c-Ha-ras, cyclin E, cyclin dependent kinase (Cdk2), transforming growth factor (TGF)-beta, and interleukin (IL)-1alpha and IL-1beta were assessed in relation to their potential role in proliferating and atrophying cellular phenomenons. METHODS: Immunohistochemistry, northern blotting, western blotting, and reverse transcription-polymerase chain reaction were performed, mainly at time points corresponding to mid-G1/S phase progression (8-24 hours after surgery). RESULTS: The common and thus most likely non-specific response was still evident 5-8 hours after surgery and included an increase in IL-1 mRNA as well as p53 and cyclin E proteins. From 12 hours onwards, p53, c-Ha-ras, cyclin E, and Cdk2 were selectively induced in proliferating lobes whereas IL-1beta was predominantly activated in atrophying lobes. No changes in TGF-beta or IL-1alpha expression were observed at the same time points in any of the liver lobes. CONCLUSIONS: The initial response to portal branch ligation and thus probably to partial hepatectomy seems to be non-specific for at least eight hours. Thereafter, p53, c-Ha-ras, cyclin E, and Cdk2 seem to drive cellular proliferation while IL-1beta is associated with cellular atrophy. In contrast, TGF-beta and IL-1alpha do not seem to play a role in determining the commitment of cells towards atrophy or proliferation.

Animals↗

The compensatory hyperplasia (liver regeneration) following ligation of a portal branch is initiated before the atrophy of the deprived lobes.

BACKGROUND/AIMS: In rats, partial ligation of portal branches produces atrophy of the deprived lobes and hypertrophy of the intact lobes. The hepatocyte proliferation observed in the nondeprived lobes is viewed as a compensatory hyperplasia, implying that the atrophy somewhat precedes the initiation of the proliferative response. As this has not been demonstrated, the time course and magnitude of those two sequences of events were investigated and compared with the well-defined response to a partial hepatectomy. METHODS: The portal branch feeding the anterior liver lobes was ligated in male Wistar rats. One-third and two-thirds partial hepatectomies were also performed. Liver weight, the aminopyrine demethylation rate, an index of the liver mass, the DNA content and various indices of cell proliferation were measured. RESULTS: Resection of the anterior lobes (PH) or ligation of their portal blood supply (PBL) induced a marked DNA synthesis in the posterior lobes (3H-thymidine incorporation) reaching its maximum 24 h after both interventions. This response can even be accelerated by performing a sham operation 6 h before the PBL. The process leading to DNA synthesis thus seems to start as early after PBL as after a PH, although the weight of the liver or the aminopyrine demethylation rate was nearly unchanged 2 h following PBL. The initiation of the proliferative response clearly precedes and is thus independent of the reduction of the liver mass. On the other hand, the progressive reduction of the liver mass seems to determine the magnitude of the proliferative response, which is, for instance, greatly increased following the excision of the deprived lobes, as late as 10 h after ligation of their portal branches. In comparison with the results obtained after a 113 PH, the peak of DNA synthesis at the 24th hour is greater than predicted by the liver weight loss, but this parameter could underestimate the reduction of the functional liver mass. CONCLUSION: The proliferative response following a PBL can be divided into an early phase occurring independently of the reduction of the liver mass and a late phase controlled by this reduction. The paradox of the proliferative response which seems to start before the atrophy to be compensated is resolved by this hypothesis.

Animals↗

Early down-regulation of cytochrome P450 3A and 2E1 in the regenerating rat liver is not related to the loss of liver mass or the process of cellular proliferation.

AIMS/BACKGROUND: Conflicting data have been reported concerning the modification of cytochrome P450 expression in the regenerating liver. Ligation of branches of the portal vein (PBL) perfusing 70% of the liver parenchyma, which produces regeneration and atrophy within the same liver, constitutes an ideal model to study the relative specificity of the early events in the regenerating liver and their relationship to the loss of liver mass. METHODS: In this PBL model and in sham models, we studied the expression and the metabolic activities of two major cytochromes, CYP3A and CYP2E1, and the expression of inducible nitric oxide synthase protein (iNOS). They were simultaneously measured in the atrophying and regenerating liver lobes following PBL using Western Blot and HPLC methods. RESULTS: The metabolic activities of both cytochromes were transiently and simultaneously down-regulated in the regenerating and atrophying lobes during the first 2-5 h after PBL. No significant modification was observed at the protein level. In contrast, iNOS protein was significantly induced in both lobes. Similar results were observed after sham operation. CONCLUSIONS: The reduction of these CYP activities in both lobes after PBL and in sham livers suggests that other mechanisms than the regenerating process itself or the reduction of the liver mass might account for such down-regulation during the early phase of liver regeneration. The activation of nitric oxide (NO) and/or pro-inflammatory cytokine production provides clues to pathways liable to affect the CYP activities in the regenerating liver.

Animals↗

After portal branch ligation in rat, nuclear factor kappaB, interleukin-6, signal transducers and activators of transcription 3, c-fos, c-myc, and c-jun are similarly induced in the ligated and nonligated lobes.

Several studies have emphasized the involvement of transcription factors, cytokines, and proto-oncogenes in initiating the regenerative process after partial hepatectomy. To assess whether these events do specifically occur in a cellular system undergoing regeneration, we studied the induction of nuclear factor kappaB (NFkappaB), interleukin-6 (IL-6), signal transducers and activators of transcription 3 (Stat3), c-fos, c-myc, c-jun, after portal branch ligation (PBL), which produces atrophy of the deprived lobes (70% of the liver parenchyma), whereas the perfused lobes undergo compensatory regeneration. Nuclear extracts and total RNA were prepared from control livers as well as from atrophying and regenerating lobes at 0.5, 1, 2, 5, and 8 after PBL. NFkappaB and Stat3 induction were studied by electrophoretic mobility shift assays and Western blotting. IL-6 and proto-oncogenes expressions were assessed by reverse transcription polymerase chain reaction and Northern blotting, respectively. Assays were also performed after a sham operation. NFkappaB and Stat3 protein expression and DNA binding were rapidly and similarly induced in nuclear extracts from the atrophying and regenerating lobes. IL-6 was elevated in both lobes from 1 to 8 hours after PBL as well as c-fos, c-myc, and c-jun during the first 2 hours. IL-6 and Stat3 but not NFkappaB were also elevated after a sham operation. These findings suggest that the cellular and molecular changes occurring early in a regenerating liver are nonspecific, possibly stress-induced, cellular responses. They do not indicate the future evolution towards atrophy or regeneration.

Animals↗

Saccharomyces boulardii upgrades cellular adaptation after proximal enterectomy in rats.

BACKGROUND: Saccharomyces boulardii is a non-pathogenic yeast which exerts trophic effects on human and rat small intestinal mucosa. AIMS: To examine the effects of S boulardii on ileal adaptation after proximal enterectomy in rats. METHODS: Wistar rats, aged eight weeks, underwent 60% proximal resection or transection and received by orogastric intubation either 1 mg/g body wt per day lyophilised S boulardii or the vehicle for seven days. The effects on ileal mucosal adaptation were assessed eight days after surgery. RESULTS: Compared with transection, resection resulted in mucosal hyperplasia with significant decreases in the specific and total activities of sucrase, lactase, and maltase. Treatment of resected animals with S boulardii had no effect on mucosal hyperplasia but did upgrade disaccharidase activities to the levels of the transected group. Enzyme stimulation by S boulardii was associated with significant increases in diamine oxidase activity and mucosal polyamine concentrations. Likewise, sodium dependent D-glucose uptake by brush border membrane vesicles, measured as a function of time and glucose concentration in the incubation medium, was significantly (p<0.05) increased by 81% and three times respectively in the resected group treated with S boulardii. In agreement with this, expression of the sodium/glucose cotransporter-1 in brush border membranes of resected rats treated with S boulardii was enhanced twofold compared with resected controls. CONCLUSION: Oral administration of S boulardii soon after proximal enterectomy improves functional adaptation of the remnant ileum.

Adaptation, Physiological↗

Early hepatocyte, endothelial, and bile duct cell injury after pediatric liver transplantation from cadaveric or living-related donors.

BACKGROUND: When compared with cadaveric grafts (Cad), the potential advantages of pediatric orthotopic liver transplantation (OLT) from living-related (LR) donors may include better graft quality, shorter ischemic time, appropriate preparation of the recipient, and better immunologic compatibility. METHODS: The aim of this study was to analyze early hepatocyte, endothelial, and bile duct cell injury following pediatric OLT using LR (n=15) or uncomplicated Cad reduced-size (n=10) grafts. Median (range) total ischemic times were 190 min (105-261) versus 760 min (418-948) in LR and Cad groups, respectively (P<0.001). RESULTS: The post-OLT cytolytic profile, assessed daily during the first 7 days using both plasma glutamate-pyruvate transaminase and serum alpha-glutathione S-transferase, showed significantly higher levels of both parameters for the 10 uncomplicated Cad cases when compared with the 15 LR grafts (P<0.001). The evaluation of hepatic endothelial cell function during the first week after OLT, using serum hyaluronic acid levels, suggested lower endothelial injury in the LR grafts, when compared with the Cad grafts (P=0.059). Bile duct cell injury, as assessed using plasma gamma-glutamyl transferase levels, was similar in both groups, with a progressive increase at the end of the first week after OLT, which was correlated with a similar incidence of early acute rejection in both groups (80% in the LR group vs. 62% in the Cad group, NS). CONCLUSION: (1) The hepatocellular and endothelial cell damage was reduced after OLT with LR grafts, which may be related to shorter ischemic time when compared with Cad grafts; (2) the putative immunologic advantage for LR grafts was not confirmed in terms of incidence of acute rejection.

Adult↗

Effect of sialoadenectomy and epidermal growth factor administration on liver regeneration after partial hepatectomy.

Epidermal growth factor (EGF), a mitogen in vitro for hepatocytes, produces in various cell lines changes similar to those observed very rapidly in hepatocytes after partial hepatectomy (PH). These changes include ion movements, membrane hyperpolarization and proto-oncogene expression. A stimulatory effect of EGF on liver regeneration can therefore tentatively be associated with the events occurring within the first 3 hours after a PH, sometimes referred to as the "priming phase." To assess this hypothesis, we examined in Wistar rats the effect of EGF deprivation produced by sialoadenectomy (SX) performed before or after a PH of 70%. SX at the time of PH significantly decreased the 3H-thymidine uptake in the DNA 24 hours later (147 +/- 14 DPM per microgram of DNA, mean +/- SE) compared with a simple PH (322 +/- 16; P < .01), but also compared with results obtained when PH is combined with a sham sialoadenectomy (SSX) or in rats pair-fed with the sialoadenectomized rats. This incomplete inhibition was confirmed by a decreased rise in thymidine kinase (TK) activity and by reduced proliferating cell nuclear antigen (PCNA) labeling and mitotic indices 30 hours after PH. By contrast, SX did not inhibit the early expression of c-jun and c-fos, or of c-myc, 30 or 120 minutes after PH, respectively. A reduction of DNA synthesis was also obtained when SX was performed 3 hours after PH (127 +/- 15 DPM per microgram of DNA vs. 350 +/- 21 in SSX; P < .001) but not when SX was delayed until the 6th or the 17th hour after PH. It was sufficient to administer EGF (40 microg) from the third to the ninth hour to correct the reduction of [3H]thymidine uptake in rats sialoadenectomized before PH. These results indicate that the diminished EGF availability following SX decreases or at least delays liver regeneration, and that the effect of EGF on liver regeneration does not seem related to the early changes of proto-oncogene expression, but rather to events occuring later, at the time of reported internalization and binding of EGF to its nuclear receptors.

Animals↗

The monoethylglycinexylidide test does not correctly evaluate lidocaine metabolism after ischemic liver injury in the rat.

Although the monoethylglycinexylidide (MEGX) test defined as a single determination of MEGX plasma concentration after lidocaine injection has been proposed as a liver function test, some discrepancies appeared in assessing the quality of liver donor for transplantation as well as the severity of liver disease. The present study used a severe ischemia-reperfusion liver injury (IRI) in rat to evaluate the various factors able to influence the level of MEGX. The metabolism of lidocaine was studied on microsomes isolated from intact rats and from rats submitted to this liver injury. A significant reduction of the various pathways transforming lidocaine but also MEGX was demonstrated. Lidocaine inhibited the MEGX transformation both in intact and injured liver microsomes. In vivo, plasma MEGX concentrations, determined by high-performance liquid chromatography (HPLC), were lower in IRI than in controls up to 80 minutes after lidocaine injection but not later. By contrast, using the usual commercial fluorescence polarization immunoassay (FPIA), MEGX concentrations were paradoxically higher in IRI than in controls. Moreover, MEGX values obtained using FPIA were threefold higher in controls and ninefold higher in IRI than with HPLC. It was shown that these differences were related to the detection by FPIA of free and mainly of conjugated hydroxy-MEGX that accumulated in plasma from rats submitted to an IRI. These data emphasize the complexity of factors influencing the appearance and disappearance of MEGX because of delayed MEGX formation with liver injury but also to inhibition of its further metabolization. The choice of the sampling time for MEGX determination is critical and has to be optimized in every type of liver injury. Moreover, a specific technique, such as HPLC, will avoid cross-reactivity with other metabolites, which may be particularly abundant when the biliary excretion is impaired.

Animals↗

Control of rate and extent of the proliferative response after partial hepatectomy.

To examine the role of the early changes occurring in the liver within the first hours after a partial hepatectomy and in an attempt to demonstrate the involvement of subsequent regulatory mechanisms, the size of the remnant liver was modified at various times and by different surgical techniques. Male Wistar rats were submitted to a two-thirds "temporary partial hepatectomy" produced by a 3-h occlusion of the pedicle of the anterior lobes protected by local hypothermia. Various indexes of cell proliferation ([3H]thymidine uptake and 5-bromo-2'-deoxyuridine and proliferating cell nuclear antigen labeling) were not increased despite a c-myc expression as high as that observed after a two-thirds partial hepatectomy. The temporary partial hepatectomy and a sham operation induced modifications of the hepatocytes, allowing rapid DNA synthesis after a subsequent two-thirds partial hepatectomy. After this initial nonspecific response, the extent of the regenerative response is determined according to the size of the liver mass present approximately from the 10th to the 18th hour after the initial stimulus. For instance, when a one-third partial hepatectomy was converted into a two-thirds partial hepatectomy at the 10th hour, the DNA synthesis at the 24th hour reached the value observed after a straightforward two-thirds partial hepatectomy. Inversely, the regenerative response was significantly reduced when additional liver lobes were connected to neck vessels between the 14th and the 18th hour after a two-thirds partial hepatectomy. In conclusion, the actual liver mass present during the period corresponding to mid- to late G1 appears to control the magnitude of the proliferative response, which is not the simple consequence of the early changes following a partial hepatectomy.

Animals↗

Prior ligation of portal branches improves survival after a 90% portal hepatectomy in the rat.

The ligation of portal branches is known to induce an atrophy of the deprived lobes and a hypertrophy of the nonligated lobes. In this work, we examined if this response occurs when the ligation affects 90% of the liver mass and if it is able to influence the survival rate after a hepatectomy of this magnitude. In male Wistar rats, major portal branches were ligated, keeping open only a small branch supplying the papillary lobes. The ligated lobes underwent a progressive weight loss and their DNA synthesis remained at the level of the controls. The nonligated lobes started to gain weight on the first postoperative day and had increased about 5-fold by the 14th day. The DNA synthesis in these lobes was greatly enhanced with a peak increase at 24 h. Two weeks after a similar ligation of portal branches, the ligated lobes, representing initially 90% of the liver mass, were resected and 80% of the rats survived. In the control group submitted only to a sham operation 2 weeks before, all rats died within 48 h after resection of the corresponding lobes. These results demonstrate that ligation of portal branches feeding 90% of the liver mass can be well tolerated and induces an atrophy of the ligated lobes and a hypertrophy of the nonligated lobes. This procedure, which improves the survival rate after an extended hepatectomy performed 2 weeks later, could find some clinical application.

Animals↗

[Prevention of acute hepatic failure after "90%" hepatectomy by portal branch ligation in rats].

In this study, ligation of portal branches feeding 90% liver mass was performed in rats. After the ligation, 10% liver mass with portal blood perfusion underwent a progressive hypertrophy. It gained weight against the control by about 5-fold at the 14th day. The measurement of incorporation rate of H3-thymidine showed that the DNA synthesis increased rapidly in the liver tissue keeping portal blood supply. It reached a peak at 24 hours and retumed to normal at 7 days after the ligation. The ligated liver lobes under-went an atrophy gradually. With the pretreatment of such portal branch ligation 2 weeks before, 80% rats survived from the resection of ligated liver lobes which composed of 90% preceding liver mass. In the control group of sham portal branch ligation, all rats died within a short period of time after 90% hepatectomy. This study demonstrated that a secondary extended hepatectomy following the ligation of portal branches feeding 90% liver mass could prevent acute hepatic failure induced by primary 90% hepatectomy in rats.

Animals↗

14C-Propoxyphene demethylation in the rat. An example of differences between liver and intestinal drug-presystemic metabolism.

Presystemic metabolism is believed to occur mainly in the liver with some minor intestinal participation. The aim of this study was to investigate the respective part of each of these two organs in the metabolism of the analgesic d-propoxyphene (DP). Pharmacological doses of DP were given in the duodenum (ID), the portal vein (IP), and the femoral vein (IV) of male Wistar rats. A tracer dose of 14C-DP was also administered either in IV, IP, or ID as well as in hepatectomized rats or rats with bile duct diversion. In vitro demethylation occurring in liver and intestinal microsomes was also studied. Absolute DP bioavailability obtained after oral administration was two times higher than that observed after portal administration (48.9% vs. 23.2%, respectively), an result opposite (i.e. a lower bioavailability) of that expected on the basis of the existence of a liver enzyme saturation phenomenon. The 14CO2 cumulative excretion after 14C-DP administration was significantly lower after IV or ID administration than after injection in the portal vein as a bolus or within 20 min. The biliary excretion of the labeled compound varied in the opposite direction, being greater after IV or ID than after IP administration, suggesting that the metabolism of DP in the liver is influenced by an extrahepatic transformation. This most likely occurs in the gut since the production of 14CO2 after IV administration was similar to that after ID administration. This transformation did not prohibit DP detection in the systemic blood but was sufficient to increase the part eliminated with bile and to decrease the part demethylated into NP. Demethylation mainly occurs in the liver since the production of 14CO2 was nearly abolished in hepatectomized rats. Furthermore, microsomes of hepatic but not of intestinal origin were able to demethylate DP. Our data suggest that the transformation of DP occurring in gut after oral administration is responsible for changes in the hepatic metabolism of the drug.

Analgesics, Opioid↗

Branched chain amino acids improve body composition and nitrogen balance in a rat model of extra hepatic biliary atresia.

Malnutrition and growth retardation remain a major complication in infants with extrahepatic biliary atresia associated cholestasis. The purpose of this study was to investigate whether oral supplementation with branched chain amino acids (BCAA) can correct malnutrition in a rat model of biliary atresia. Four groups of 15 rats, 30 d old, were used. Group A were shamoperated animals, given a normal laboratory diet (17.5% of caloric intake as proteins). Group B were cholestatic rats (biliary atresia) fed a diet enriched in BCAA (supplement of 8.5%, valine/leucine/isoleucine ratio 1:1:1). Group C were cholestatic mice fed a diet enriched in casein (supplement of 8.5%). Group D were cholestatic mice fed a normal diet. Thirty-two days after surgery, groups were compared for body weight, serum amino acid content, nitrogen balance, muscle mass, and carcass composition. The results showed that the weight of group B, C, and D animals was 85, 81, and 64% of group A (controls). Serum BCAA levels were markedly increased in group B animals. Nitrogen retention was similar in groups B and A, but reduced to 63 and 44% in groups C and D, respectively. Dry weights were similar in group A (39.1% of body weight) and B (37.7%), but reduced to 28.1 and 28.6% of body weight in groups C and D. Body proteins were higher in groups A (13.9%) and B (14.2%) than in group D (9.7%) rats. Mineral content of group B animals was 84% of those of group A, 50% in group C, and 23% in group D rats. It was concluded that an oral supplement of BCAA can correct growth, nitrogen retention, and body composition in experimental biliary atresia. Administration of BCAA supplements to cholestatic infants should be considered.

Amino Acids↗

Intestinal transport of calcium in rat biliary cirrhosis.

The characteristics of intestinal calcium transport in chronic cholestasis remain largely unknown. Using an experimental model of biliary cirrhosis in the rat, we aimed to investigate changes in calcium transport at the jejunal and ileal levels. Two methods were used: 1) uptake of 45Ca in brush border membrane vesicles and 2) measurements of transepithelial fluxes of calcium in Ussing chambers. Thirty days postsurgery, cholestatic rats presented biliary cirrhosis, with normal growth, normal daily energy, and calcium intakes, but had depressed circulating levels of 25-(OH)-vitamin D2 and 1,25-(OH)-vitamin D3. Compared with sham-operated controls, 45Ca uptake ([Ca2+] = 0.03 mmol) measured in vesicles from cholestatic rats was decreased by 3-fold in the duodenojejunum, in concordance with a lower content in brush border membrane calmodulin. Other changes in brush border membrane composition included decreases in structural proteins, microvillous enzymes, and in triglyceride content. Transepithelial fluxes of calcium measured in the ileum ([Ca2+] = 1.2 mmol) revealed in controls a net basal secretion flux (Jnet = -30.4 +/- 8.1 mmol.h-1.cm-2) that was reduced by 3-fold (p < 0.05) in vitamin D-deficient rats (Jnet = -10.4 +/- 4.8 mmol.h-1.cm-2). In response to 25-(OH)-vitamin D2 treatment, calcium uptake rates increased by 40% in the jejunum, whereas in the ileum, the secretion flux returned to basal control levels. Oral administration of taurocholate or tauroursodeoxycholate (50 mmol) depressed almost completely calcium uptake capacity in the duodenojejunum. By complexing free calcium, tauroconjugated bile acids inhibited in vitro calcium uptake proportionally to their concentration in the medium (0-40 mmol). Our data indicate that, in rat biliary cirrhosis, transport capacity of calcium in the duodenojejunum is markedly reduced in association with vitamin D deficiency and alterations in brush border membrane composition.

Animals↗

In vivo IgM depletion by anti-mu monoclonal antibody therapy. The role of IgM in hyperacute vascular rejection of discordant xenografts.

Xenoreactive natural antibodies (XNA) and complement activation are thought to be the 2 main factors responsible for the hyperacute vascular rejection (HVR) of discordant xenografts. The aim of this work was to study the role of IgM XNA in the HVR of guinea pig to rat cardiac xenografts, a discordant model. Adult LOU/C rats were depleted of circulating IgM and therefore of IgM XNA using an anti-mu mAb (mouse anti-rat IgM mAb 7 [MARM-7]). Rats were injected with 10 mg and 5 mg of MARM-7 at days -3 and -1, respectively, and guinea pig cardiac xenografts were performed on day 0. Control animals were injected on the same days with 10 mg and 5 mg of anti-alpha mAb (MARA-1) or equivalent volumes of PBS. Xenografts were performed on day 0. Guinea pig cardiac xenograft survival time was significantly prolonged in IgM-depleted animals (62 min, P < 0.01) compared with controls using PBS (18 min) or MARA-1 mAb (12 min). This prolongation was not due to a decrease in the complement activity in IgM-depleted rats, since no significant variation of the C1q, C4, C3, and C5 complement hemolytic activity was observed between control and treated animals before HVR. Prolongation of the xenograft survival time in the MARM-7-treated group was correlated with an undetectable serum level of IgM and IgM XNA and a lack of IgM XNA deposits on the rejected xenograft vascular endothelium. Contrarily, both IgM-depleted and control animals showed C3 deposits on the rejected xenograft vascular endothelium and myocardium, as well as diffuse deposits of IgG2a XNA. Although HVR was not abrogated by the depletion of IgM XNA, our data indicate that IgM is implicated in the HVR and that the anti-mu approach is a potential therapeutic treatment for discordant xenografts. Finally, we suggest that other factors such as IgM-independent activation of complement might be one of the mechanisms responsible for the pathogenesis of HVR in the guinea pig to rat xenograft model.

Animals↗

Measurement of the vasoconstrictive substances endothelin, angiotensin II, and thromboxane B2 in cold storage solution can reveal previous renal ischemic insults.

In a rat model, the left kidney was subjected to 60 min of normothermic ischemia followed by 15 min of reperfusion, whereas the right kidney, serving as a paired control, was not rendered ischemic. Both kidneys were then perfused in situ with either Euro-Collins (EC) solution (n = 12) or University of Wisconsin (UW) solution (n = 6) for 10 min. Each kidney was then harvested and stored at 4 degrees C in its respective solution. After 24 and 48 h of cold storage, the following vasoactive substances were measured in the preservation media: endothelin (ET), angiotensin II (A-II), thromboxane (B2) (TxB2), and prostaglandin I2 (PGI2). After 24 h in EC solution, left kidneys uniformly produced significantly higher concentrations of each vasoactive substance than right kidneys: ET 1.64 +/- 0.3 pg/ml vs 0.82 +/- 0.1 pg/ml (P < or = 0.009); A-II 20.8 +/- 6.2 pg/ml vs 7.75 + 2.3 pg/ml (P < or = 0.007); TxB2 100.8 +/- 17.7 pg/ml vs 40.1 +/- 11.7 pg/ml (P < or = 0.04); PGI2 638.3 +/- 41.1 pg/ml vs 318.3 +/- 36.4 pg/ml (P < or = 0.001), respectively. At 48 h, a similar pattern of results was obtained as the kidney continued to produce TxB2 and prostacyclins during the 24-48 h period. In the UW solution, basal levels of ET and A-II were lower than those in EC solution, but similarly increased after initial ischemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗