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Biomedical subjects

D Z Xu

Publications and source records attributed to D Z Xu.

At least 19 recordsLinked to original sources

[Effects of antiviral effects of agents and prognosis of chronic hepatitis B.].

BACKGROUND: To analyze the effects of difference antiviral agents and the effects of the treatments on long-term prognosis. METHODS: Retrospective research method was applied. RESULTS: About 40% of the patients were treated with interferon or lamivudine. After the treatment, in lamivudine group, the negative rate of HBV DNA was the highest. In the interferon group, the sero conversion rates of HBeAg/HBeAb were 22.9%. In the antiviral treatment patients, the disease progression and the occurrence of cirrhosis and liver cancer were much lower than those of the control groups. The mortality of cirrhosis and liver cancer in the HBeAg/HBeAb sero converted group was much lower than that of the group without HBeAg/HBeAb sero conversion groups (P less than 0.05). CONCLUSION: The antiviral effects of interferon and lamivudine were better than those of the other drug groups. The antiviral drugs could relieve the disease progression and reduce the mortality of cirrhosis and liver cancer.

Antiviral Agents↗

Role of placental tissues in the intrauterine transmission of hepatitis B virus.

OBJECTIVE: The purpose of this study was to determine the mechanism of intrauterine transmission of hepatitis B virus. STUDY DESIGN: Placental tissues from 158 pregnant women who tested positive for hepatitis B surface antigen were examined for hepatitis B virus markers, Fc gamma receptors, and hepatitis B surface antigen-anti-hepatitis B surface antigen in different layers of cells. RESULTS: It was shown that the hepatitis B virus infection rate among different layers of placental cells gradually decreased from the maternal side to the fetal side. Furthermore, the closer the infected cell layer was to the fetal side, the higher the risk of intrauterine hepatitis B virus infection. Fc gamma receptors were found on cells of both hepatitis B surface antigen positive and negative placentas; Fc gamma receptors III were found on trophoblastic cells and villous mesenchymal cells, and Fc gamma receptors II were found on only villous mesenchymal cells. Hepatitis B surface antigen-antibodies to hepatitis B surface antigen was detected in the cytoplasm and on the membrane of trophoblastic cells and villous mesenchymal cells in 2 hepatitis B surface antigen-positive placentas. CONCLUSION: The results support the hypothesis that intrauterine hepatitis B virus transmission could be caused through "cellular transfer" in the placenta. One of the means of cellular transfer could be through Fc gamma receptor III-mediated entry of hepatitis B surface antigen-antibodies to hepatitis B surface antigen into cells.

Adolescent↗

A time course study of the protective effect of mesenteric lymph duct ligation on hemorrhagic shock-induced pulmonary injury and the toxic effects of lymph from shocked rats on endothelial cell monolayer permeability.

BACKGROUND: We have previously documented that lymphatic duct division protects against shock-induced lung injury when tested 3 hours post-shock and that lymph collected at 3 hours post-shock increases endothelial cell monolayer permeability. However, whether lymph collected at other time points post-shock also increases endothelial cell permeability is not known. We tested the protective effects of lymphatic division on lung permeability at 6, 12, and 24 hours post-shock and the ability of lymph collected before, during, and hourly (up to 6 hours) after shock to increase endothelial cell monolayer permeability. METHODS: At 3, 6, 12, or 24 hours after sham or actual shock (30 mm Hg for 90 min), lung permeability was measured by using Evans blue dye in rats subjected to sham or actual mesenteric duct ligation. In separate experiments, the ability of lymph collected from rats subjected to shock or sham shock to increase human umbilical vein endothelial cell (HUVEC) monolayer permeability to a 40 kd dextran rhodamine permeability probe. Lymph was tested at 10% and 1% concentrations. RESULTS: Hemorrhagic shock induced a 3- to 4-fold increase in lung permeability compared with sham-shock rats when tested at 3, 6, 12, or 24 hours post-shock. Lymphatic division prevented this increase in lung permeability at each of these time points. Sham shock lymph did not increase HUVEC permeability, while lymph from the shocked rats did, whether tested at 1% or 10%. Lymph samples collected during the shock period and hourly for 6 hours post-shock all increased HUVEC permeability; however, the greatest relative increase in HUVEC permeability was observed in the 3- and 6- hour post-shock samples. CONCLUSIONS: Lung injury after hemorrhagic shock appears to be caused by toxic factors carried in the mesenteric lymph, and factors capable of increasing HUVEC permeability initially appear in the lymph during the shock period and increase over time.

Animals↗

Factors larger than 100 kd in post-hemorrhagic shock mesenteric lymph are toxic for endothelial cells.

BACKGROUND: Post-shock mesenteric lymph kills and injures endothelial cells (ECs), but neither the mechanism nor the mediators of lymph's toxic effect are known. Thus, in these studies we investigated and characterized potential factors that may be involved in lymph's toxic effect on ECs. METHODS: Lymph was collected hourly from rats before shock, during the shock period, and for 6 hours post-shock and processed in several ways-including removal of cellular elements, freezing, heating, or separation by molecular weight-after which they were tested for toxicity (lactate dehydrogenase as a marker of cell injury and trypan blue as a marker of cell viability). RESULTS: Controls consisting of medium, pre-shock lymph, and post-shock portal vein plasma had no EC toxicity. Lymph collected 1 to 3 hours post-shock resulted in the death of 90% to 95% of ECs and caused an 8- to 10-fold increase in lactate dehydrogenase release; however, this toxic effect waned by 4 hours post-shock. Endotoxin neutralization and immune cell removal did not decrease lymph cytotoxicity but complement inactivation did. By fractionating the toxic lymph samples by size, it appears that the putative EC cytotoxic mediator(s) is larger than 100,000 d. CONCLUSIONS: Mesenteric lymph collected 1 to 3 hours after hemorrhagic shock is toxic to ECs, but this effect is lost by 4- to 5-hours post-shock and is not dependent on the presence of immune cells or endotoxin but does involve complement and other putative mediators of greater than 100,000 d.

Cell Death↗

The female gender protects against pulmonary injury after trauma hemorrhagic shock.

BACKGROUND: Previously, we have documented that lung injury after trauma-hemorrhagic shock (T/HS) is related to gut injury and that females are more resistant to T/HS-induced lung injury than males. However, it is not known if the estrus cycle stage at the time of injury influences the female rat's resistance to T/HS-induced lung injury. Therefore, the goal of this study was to determine if the protective effect of the female gender on lung injury after T/HS is estrus cycle stage-specific. To test this hypothesis, female rats were subjected to trauma (laparotomy) and hemorrhagic shock (T/HS) during different stages of the estrus cycle. Female animals subjected to trauma with sham hemorrhagic shock served as the control. METHODS: Female Sprague-Dawley rats during the proestrus, estrus, metestrus, or diestrus stages of the menstrual cycle were subjected to a midline laparotomy (trauma) and either hemorrhagic shock (MAP = 30 mm Hg x 90 min) or sham shock. The total volume of blood necessary to induce and maintain the shock state was recorded. At the end of the shock period, the animals were resuscitated with their shed blood. At 6 h postresuscitation, the animals were sacrificed and lung permeability was measured using the Evans blue dye technique and by determining the bronchoalveolar (BALF) to plasma protein ratio. Additionally, pulmonary leukosequestration was quantitated by measuring pulmonary myeloperoxidase levels. RESULTS: T/HS-induced lung injury and increased pulmonary leukosequestration were not observed in female rats in the proestrus or estrus stages of the menstrual cycle. In contrast, pulmonary permeability was increased significantly in the diestrus stage animals after T/HS. That is, the diestrus females subjected to T/HS had increased pulmonary permeability to Evans blue dye than sham or T/HS proestrus, estrus, and metestrus rats (6.49 +/- 1.33% versus 1.7 +/- 0.87%, 1.57 +/- 0.54%, 1.78 +/- 0.82%, 3.33 +/- 0.68%, p < 0.01, respectively). Similar results were obtained with the BALF protein/plasma protein ratio (0.15 +/- 0.017 versus 0.09 +/- 0.009, 0.09 +/- 0.03, 0.08 +/- 0.022, 0.11 +/- 0.029 p < 0.05, respectively). Although the T/HS metestrus rats had mildly increased lung permeability, this increase in T/HS-lung permeability did not reach statistical significance. Pulmonary myeloperoxidase levels after T/HS displayed a similar trend, with diestrus rats subjected to T/HS having the highest level of MPO (p < 0.05 versus sham or T/HS proestrus and estrus but not metestrus groups). Linear regression analysis of MPO versus Evans blue dye leak revealed a significant correlation between pulmonary neutrophil sequestration and lung leak (r = 0.9549; p < 0.0001). CONCLUSION: Protection against T/HS-induced lung injury was greatest during the estrus and proestrus stages of the menstrual cycle and decreased with progression to diestrus. During the diestrus stage of the menstrual cycle when gonadal hormone levels are lowest, the rats are more sensitive to T/HS-induced lung injury, indicating that gonadal hormones modulate T/HS-induced lung injury.

Animals↗

Hematopoietic failure after hemorrhagic shock is mediated partially through mesenteric lymph.

OBJECTIVE: To determine whether hemorrhagic shock-induced bone marrow failure is mediated by the gut through the production of toxic mesenteric lymph and whether shock-induced bone marrow failure could be prevented by division of the mesenteric lymphatics. DESIGN: Prospective, controlled study. SETTING: University surgical research laboratory. SUBJECTS: Male Sprague-Dawley rats. INTERVENTIONS: Rats were divided into five groups: unmanipulated controls (n = 12), hemorrhagic shock with laparotomy (n = 8), hemorrhagic shock with mesenteric lymph duct ligation (n = 10), sham shock with laparotomy (n = 6), and sham shock with mesenteric lymph duct ligation (n = 7). At either 3 or 6 hrs after resuscitation, bone marrow was obtained for determination of early (cobblestone forming cells) and late (granulocyte-macrophage colony forming unit and erythroid burst forming unit) hematopoietic progenitor cell growth. Parallel cultures were plated with plasma (1% and 2% v/v) from all groups to determine the effect of lymphatic ligation on hematopoiesis. MEASUREMENTS AND MAIN RESULTS: Bone marrow cellularity, cobblestone forming cells, granulocyte-macrophage colony forming unit, and erythroid burst forming unit growth in rats subjected to hemorrhagic with lymph duct ligation were similar to those observed in sham-treated animals and significantly greater than in rats subjected to shock and laparotomy without lymphatic duct ligation. Plasma from rats subjected to shock without lymph ligation was inhibitory to hematopoietic progenitor cell growth. In contrast, this shock-induced inhibition was not observed with plasma obtained from shocked rats that underwent mesenteric lymph ligation. CONCLUSIONS: Hemorrhagic shock suppresses bone marrow hematopoiesis as measured by a decrease in early and late progenitor cell growth. This suppression appears mediated through mesenteric lymph as the effect is abrogated by mesenteric lymph duct ligation. These data clearly demonstrate a link between the gut and bone marrow failure after hemorrhagic shock

Animals↗

Entry of gut lymph into the circulation primes rat neutrophil respiratory burst in hemorrhagic shock.

OBJECTIVE: Endothelial cell injury by polymorphonuclear neutrophil (neutrophil [PMN]) respiratory burst after trauma and hemorrhagic shock (T/HS) predisposes subjects to acute respiratory distress syndrome and multiple organ failure. T/HS mesenteric lymph injures endothelial cell and lymph duct ligation (LDL) before T/HS prevents pulmonary injury. We investigated the role of mesenteric lymph in PMN priming by T/HS. DESIGN: Prospective experiment in rats. SETTING: University hospital laboratory. SUBJECTS: Adult male rats. INTERVENTIONS: Mesenteric lymph was obtained from rats undergoing T/HS (30 mm Hg, 90 mins) or sham shock (T/SS). Plasma was harvested from uninstrumented control (UC), T/HS, T/SS, and T/HS+LDL rats. PMNs were isolated from UC, T/HS, and T/HS+LDL rats. MEASUREMENTS AND MAIN RESULTS: PMNs from UC rats were incubated in buffer, 1% T/HS lymph, and 1% T/SS lymph. PMNs from UC rats were incubated in UC, T/HS, T/SS, and T/HS+LDL plasma. PMN respiratory burst was initiated by using macrophage inflammatory protein (MIP)-2/platelet-aggregating factor (PAF) or phorbol myristate acetate. Cytosolic calcium ([Ca2+]i) responses to MIP-2/PAF were assayed in PMN from UC, T/HS, and T/HS+LDL rats. PMN preincubated in T/HS lymph showed significant elevations in MIP/PAF-elicited respiratory burst compared with T/HS lymph or buffer only (p <.05; analysis of variance/Tukey's test). T/HS lymph incubation also increased (p <.05) phorbol myristate acetate elicited respiratory burst compared with buffer or T/SS. Preincubation in T/HS plasma increased MIP-2/PAF-elicited respiratory burst (p <.05) compared with UC or T/SS plasma. LDL blocked T/HS priming of respiratory burst. Control PMN [Ca2+]i responses to MIP-2 and PAF were low. T/SS PMN were significantly more responsive, but the T/HS PMN showed still higher responses (p <.01). LDL reversed the priming of [Ca2+]i responses by T/HS (p <.01). CONCLUSIONS: PMNs are primed by T/HS lymph but not T/SS lymph and by T/HS plasma but not T/SS plasma. LDL before shock prevents T/HS plasma from priming PMN. The magnitude of respiratory burst found here paralleled the [Ca2+]i responses seen to receptor dependent initiating agonists. Mesenteric lymph is both necessary and sufficient to prime PMN after T/HS in the rat, and it primes PMN in part by enhancing [Ca2+]i responses to G-protein coupled chemoattractants. Mesenteric lymph mediates postshock PMN dysfunction.

Analysis of Variance↗

Hemorrhagic shock induced up-regulation of P-selectin expression is mediated by factors in mesenteric lymph and blunted by mesenteric lymph duct interruption.

BACKGROUND: Previous studies have shown that mesenteric lymph duct interruption prevents lung injury and decreases lung neutrophil sequestration after hemorrhagic shock (HS). Since endothelial cells rapidly express P-selectin after ischemia/reperfusion injury and HS-induced lung injury appears to involve neutrophil-endothelial cell interactions, we tested the following two hypotheses. First, that HS increases endothelial cell P-selectin expression and that interruption of mesenteric lymph flow in vivo would diminish this expression. Second, that incubation of human umbilical vein endothelial cells with post-HS mesenteric lymph but not sham shock (SS) lymph or postshock portal vein plasma would up-regulate P-selectin expression. METHODS: Pulmonary microvascular P-selectin expression was measured in male rats subjected to 90 minutes of HS (30 mm Hg), SS, or HS with lymphatic ligation, with a dual radiolabeled monoclonal antibody technique. The lungs from these animals were subsequently harvested and P-selectin expression was expressed as mean +/- SEM nanograms of monoclonal antibody per gram of tissue. RESULTS: Pulmonary P-selectin expression was 2.0 +/- 0.4 after SS, 9.7 +/- 3.0 after HS, but decreased to 2.3 +/- 0.3 after HS with lymph interruption (p < 0.05 HS vs. SS or HS plus lymph ligation). Incubation of human umbilical vein endothelial cells with shock lymph collected 3 to 4 hours after shock resulted in a nearly fivefold increase in P-selectin expression (p < 0.001) as compared with SS lymph, lymph collected 6 hours after shock, or postshock portal vein plasma. CONCLUSION: These results support the concept that gut-derived lymph promotes HS-induced lung injury through up-regulation of microvascular adhesion molecules and that intestinal lymph duct interruption may prevent distant organ injury by blunting the expression of these molecules.

Animals↗

Injury-enhanced calcium mobilization in circulating rat neutrophils models human PMN responses.

G-protein coupled (GPC) chemoattractants are important neutrophil (PMN) activators in human shock and sepsis, acting in part by increasing cytosolic calcium ([Ca2+]i). Rats are widely used as laboratory models of shock and sepsis, but reports of [Ca2+]i flux in circulating rat PMN are rare. Moreover, the [Ca2+]i values reported often differ markedly from human systems. We developed study methods where basal [Ca2+]i values in circulating rat PMN were comparable to human PMN, but rat PMN still mobilized calcium poorly after stimulation. Trauma (laparotomy) did not change rat PMN basal [Ca2+]i, but induced brisk [Ca2+]i responses to chemokine and lipid mediators that approximated human PMN responses. This was associated with marked loading of microsomal calcium stores. Formyl peptides still mobilized calcium less well in rat than human PMN. Normal rat PMN appear to circulate in a less mature or primed form than human PMN. A very limited injury rapidly converts rat PMN to a more activated phenotype. PMN thus activated act quite similar to human PMN in terms of GPC receptor-mediated calcium mobilization. Trauma enhances rat PMN responses to GPC agonists at least in part by loading cell calcium stores.

Animals↗

Hypoxia combined with Escherichia coli produces irreversible gut mucosal injury characterized by increased intestinal cytokine production and DNA degradation.

The objective of the present study was to determine whether hypoxia/reoxygenation in the absence or presence of intestinal bacteria would affect the integrity of the gut mucosal epithelium (as evidenced by histologic changes) and increase the local production of cytokines (interleukin 6 [IL-6] and tumor necrosis factor [TNF]). Rat ileal mucosal membranes were harvested and their electrophysiologic properties and barrier function were measured ex vivo in the Ussing chamber system. Membranes were exposed to normoxia, normoxia + Escherichia coli, hypoxia for 40 min followed by normoxia, or hypoxia for 40 min + E. coli followed by normoxia for 3 h. IL-6 and TNF levels were measured using cytokine-dependent cellular assays. Morphological changes and the degree of DNA fragmentation were used as quantitative markers of gut mucosal injury. Mucosal integrity was maintained in the normoxia group. The addition of bacteria increased the IL-6 response and reduced mucosal integrity. During the hypoxic period, a transient decline in resistance (R) occurred and cytokine production was reduced. In the hypoxic ileal membranes not exposed to E coli, reoxygenation reversed the change in R and increased IL-6 production. The combination of hypoxia/reoxygenation plus E. coli bacterial challenge resulted in the greatest extent of gut mucosal injury and increase in TNF production. The results of this study support the hypothesis that the combination of increased intestinal bacterial levels superimposed on an ischemia/reperfusion injury increases the magnitude of gut mucosal injury and the production and subsequent release of proinflammatory cytokines.

Animals↗

Mesenteric lymph from rats subjected to trauma-hemorrhagic shock are injurious to rat pulmonary microvascular endothelial cells as well as human umbilical vein endothelial cells.

Previously, we have documented that gut-derived lymph from rats subjected to trauma/hemorrhagic shock (T/HS) is injurious to human umbilical vein endothelial cells (HUVEC). To verify these findings in an all rat systems, the ability of T/HS lymph to increase rat pulmonary microvascular endothelial cell (RPMVEC) monolayer permeability and kill RPMVEC was compared with that observed with HUVECs. RPMVEcs isolated from male rats or HUVECs were grown in 24-well plates for the cytotoxicity assays or on permeable filters in a two-chamber system for permeability assays. Mesenteric lymph was collected from male rats subjected to trauma (laparotomy) plus hemorrhagic shock (T/HS group) or to a laparotomy plus sham-shock (T/SS group). The T/HS group had their mean arterial pressure decreased to 30 mmHg and kept there for 90 min. Lymph samples centrifuged to remove the cellular component were incubated with the RPMVECs or HUVECs at a 10% concentration. Neither T/SS lymph nor post-T/HS portal vein plasma was toxic to or increased the permeability of the RPMVECs or HUVECs. The pattern of cytotoxicity observed in the HUVECs incubated with T/HS mesenteric lymph was similar to that observed in the RPMVECs, as reflected by trypan blue dye exclusion, with more than 95% of the HUVECs and RPMVECs being killed after a 16-h incubation with T/HS mesenteric lymph. However, at earlier time points the amount of LDH released from the HUVEC cells incubated with T/HS lymph was greater than that observed with the PRMVEC, although trypan blue dye exclusion was similar. Similarly, incubation with 10% T/HS lymph increased the permeability of both HUVEC and RPMVEC monolayers more than 2-fold, even with an incubation period as short as 1 h. In conclusion, these results provide further evidence that T/HS lymph, but not T/SS lymph or post-T/HS portal vein plasma, is injurious to endothelial cells and that RPMVECs are as susceptible to injury as HUVECs. Additionally, these studies support the emerging concept that gut-induced distant organ injury is mediated by factors contained in mesenteric lymph.

Animals↗

Identification of the epitopes on HCV core protein recognized by HLA-A2 restricted cytotoxic T lymphocytes.

AIM: To identify hepatitis C virus(HCV) core protein epitopes recognized by HLA-A2 restricted cytotoxic T lymphocyte (CTL). METHODS: Utilizing the method of computer prediction followed by a 4h(51)Cr release assay confirmation. RESULTS: The results showed that peripheral blood mononuclear cells (PBMC) obtained from two HLA-A2 positive donors who were infected with HCV could lyse autologous target cells labeled with peptide "ALAHGVRAL (core 150-158)". The rates of specific lysis of the cells from the two donors were 37.5% and 15.8%, respectively. Blocking of the CTL response with anti-CD4 mAb caused no significant decrease of the specific lysis. But blocking of CTL response with anti-CD8 mAb could abolish the lysis. CONCLUSION: The peptide (core 150-158) is the candidate epitope recognized by HLAA2 restricted CTL.

Amino Acid Sequence↗

Chronic hepatitis B virus infection in Asian countries.

Of the estimated 50 million new cases of hepatitis B virus (HBV) infection diagnosed annually, 5-10% of adults and up to 90% of infants will become chronically infected, 75% of these in Asia where hepatitis B is the leading cause of chronic hepatitis, cirrhosis and hepatocellular carcinoma (HCC). In Indonesia, 4.6% of the population was positive for HBsAg in 1994 and of these, 21% were positive for HBeAg and 73% for anti-HBe; 44% and 45% of Indonesian patients with cirrhosis and HCC, respectively, were HBsAg positive. In the Philippines, there appear to be two types of age-specific HBsAg prevalence, suggesting different modes of transmission. In Thailand, 8-10% of males and 6-8% of females are HBsAg positive, with HBsAg also found in 30% of patients with cirrhosis and 50-75% of those with HCC. In Taiwan, 75-80% of patients with chronic liver disease are HBsAg positive, and HBsAg is found in 34% and 72% of patients with cirrhosis and HCC, respectively. In China, 73% of patients with chronic hepatitis and 78% and 71% of those with cirrhosis and HCC, respectively, are HBsAg positive. In Singapore, the prevalence of HBsAg has dropped since the introduction of HBV vaccination and the HBsAg seroprevalence of unvaccinated individuals over 5 years of age is 4.5%. In Malaysia, 5.24% of healthy volunteers, with a mean age of 34 years, were positive for HBsAg in 1997. In the highly endemic countries in Asia, the majority of infections are contracted postnatally or perinatally. Three phases of chronic HBV infection are recognized: phase 1 patients are HBeAg positive with high levels of virus in the serum and minimal hepatic inflammation; phase 2 patients have intermittent or continuous hepatitis of varying degrees of severity; phase 3 is the inactive phase during which viral concentrations are low and there is minimal inflammatory activity in the liver. In general, patients who clear HBeAg have a better prognosis than patients who remain HBeAg-positive for prolonged periods of time. The outcome after anti-HBe seroconversion depends on the degree of pre-existing liver damage and any subsequent HBV reactivation. Without pre-existing cirrhosis, there may be only slight fibrosis or mild chronic hepatitis, but with pre-existing cirrhosis, further complications may ensue. HBsAg-negative chronic hepatitis B is a phase of chronic HBV infection during which a mutation arises resulting in the inability of the virus to produce HBeAg. Such patients tend to have more severe liver disease and run a more rapidly progressive course. The annual probability of developing cirrhosis varies from 0.1 to 1.0% depending on the duration of HBV replication, the severity of disease and the presence of concomitant infections or drugs. The annual incidence of hepatic decompensation in HBV-related cirrhosis varies from 2 to 10% and in these patients the 5-year survival rate drops dramatically to 14-35%. The annual risk of developing HCC in patients with cirrhosis varies between 1 and 6%; the overall reported annual detection rate of HCC in surveillance studies, which included individuals with chronic hepatitis B and cirrhosis, is 0.8-4.1%. Chronic hepatitis B is not a static disease and the natural history of the disease is affected by both viral and host factors. The prognosis is poor with decompensated cirrhosis and effective treatment options are limited. Prevention of HBV infection thorough vaccination is still, therefore, the best strategy for decreasing the incidence of hepatitis B-associated cirrhosis and HCC.

Asia↗

A multicenter, randomized, controlled trial of interferon alfacon-1 compared with alpha-2a-interferon in Chinese patients with chronic hepatitis C virus infection.

BACKGROUND: Alpha-interferons are the accepted therapy for patients infected with chronic hepatitis C virus (HCV) in China. However, consensus interferon (CIFN) for HCV treatment is effective in patients with chronic hepatitis C from Western countries. METHODS: This randomized, controlled trial was conducted to determine the safety and efficacy of CIFN at two doses, and to compare it with alpha-2a-interferon (IFN-alpha-2a) in Chinese patients with chronic HCV. Interferon-naive patients with chronic HCV infection (n = 187) were randomly chosen to receive 15 microg CIFN or 9 microg or 3 MU IFN-alpha-2a subcutaneously, three times a week for 24 weeks, followed by a 24 week observation period. Efficacy was evaluated by the normalization of serum alanine aminotransferase (ALT) and the non-detectability disappearance of serum HCV-RNA by using reverse-transcription-polymerase chain reaction. The safety of CIFN was evaluated by recording the type and severity of adverse effects. RESULTS: The combined ALT and HCV-RNA end-of-treatment and sustained responses were observed to be greater for treatment with 15 microg CIFN (59.0% and 55.7%, respectively) compared to IFN alpha-2a (36.1% and 39.3%, respectively; P = 0.01 for the end-of-treatment, P = 0.07 for the sustained response). The combined ALT and HCV-RNA end-of-treatment and sustained responses for treatment with 9 microg CIFN (both 49.2%) were higher than those for IFN-alpha-2a (not statistically significant). Data were analyzed by using a logistic-multiple-variate regression model, which indicated that the higher IFN dose (15 microg or 9 microg CIFN vs 3 MU IFN-alpha-2a; P < 0.01) appeared to be associated with a better sustained response. The type, frequency and severity of adverse effects were comparable across treatment groups. CONCLUSIONS: Consensus interferon appears to be safe and effective at concentrations of 9 and 15 microg, but 15 microg CIFN may be more effective than 3 MU IFN-alpha-2a, without increased toxicity.

Adolescent↗

Endotoxin-induced mesenteric microvascular changes involve iNOS-derived nitric oxide: results from a study using iNOS knock out mice.

The administration of endotoxin alters intestinal blood flow, increases nitric oxide (NO) production, and induces gut barrier dysfunction. Thus, we investigated the hypothesis that microvascular reactivity and permeability of the mesenteric vascular bed are altered to a lesser degree in iNOS knock out (iNOS -/-) mice than their wild-type (iNOS +/+) litter mates after an endotoxin challenge. To test this hypothesis, we compared the microvascular response of iNOS knockout (iNOS -/-) mice after a topical or systemic endotoxin challenge against that of their wild-type litter mates (iNOS +/+). Intravital microscopy was used to measure arteriolar diameter and postcapillary venular permeability in the mouse ileum. Both parameters were determined by computer-assisted image analysis. Diameter was measured in A1, A2, and A3 arterioles (1, 2, 3 = rank of deployment). Changes in microvascular permeability were measured from changes in interstitial fluorescence caused by extravasation of fluorescein isothiocyanate (FITC)-dextran 150 (molecular weight = 150 kDa) and expressed as changes in integrated optical intensity (IOI). In the first series of experiments, endotoxin (100 microg/mL) was applied topically to the ileal segment. In the second series, endotoxin (10 mg/kg) was administered intraperitoneally (i.p.). Administration of topical or i.p.. endotoxin caused vasoconstriction and was associated with an early increase in permeability in both iNOS +/+ and -/- mice, although over time the responses of the iNOS -/- and iNOS +/+ mice diverged. Twenty minutes after topical endotoxin, the increase in permeability in iNOS -/- mice had reached a plateau whereas it continued to increase in the iNOS +/+ mice, such that at 80 min post-topical endotoxin, IOI was 27+/-7 in iNOS -/- vs. 39+/-5 in iNOS +/+ (P < 0.05). A similar permeability response was observed after i.p.. endotoxin, where the increase in post-capillary venular permeability was greater in the iNOS +/+ mice (P < 0.05). Both iNOS -/- and iNOS +/+ mice had a similar transient vasoconstrictive response after topical endotoxin challenge (reduction in A2 arteriolar diameters by -17+/-4% vs. -24+/-7%), with return to baseline values by 60-80 min post-endotoxin challenge. The iNOS +/+ but not the iNOS -/- mice manifested a secondary vasodilatory response that persisted throughout the experimental period. The arteriolar vasoreactive response of the iNOS -/- and iNOS +/+ mice to i.p.. endotoxin was similar to that of topical endotoxin, but of a lesser magnitude. In conclusion, the similarity in effects between topical and systemic endotoxin indicates that endotoxin causes microvascular dysfunction in the gut by directly on the microcirculation. In addition, our data suggest that NO production by iNOS is involved in the microvascular alterations associated with gut barrier dysfunction.

Administration, Topical↗

Mesenteric lymph duct ligation provides long term protection against hemorrhagic shock-induced lung injury.

Recently we have shown that ligation of the main mesenteric lymph (MLN) duct prior to an episode of hemorrhagic shock (HS) prevents shock-induced lung injury. Yet, ligation or diversion of intestinal lymph immediately prior to injury is not clinically feasible. Diversion of intestinally derived lymph after injury to protect against secondary insults is possible, but it is not known how long the protective effects of lymph ligation would last. Thus, we tested whether ligation of the MLN duct seven days prior to HS would still be protective. Male Sprague-Dawley rats were subjected to laparotomy with or without MLN duct ligation. Seven days later, half of the sham and actual MLN duct ligated animals randomly were selected to undergo HS (30 mmHG for 90 min). The other half of the animals was subjected to sham shock. Lung permeability, pulmonary myeloperoxidase (MPO) activity, and bronchoalveolar fluid (BALF) protein content were used to determine lung injury. Lymphatic division 7 days prior to HS continued to prevent shock induced lung injury as assessed by a lower Evans Blue dye concentration, BALF protein and MPO activity. In addition, there was no evidence of Patent Blue dye in the previously ligated MLN duct. Since ligation of the main mesenteric lymphatic duct continues to protect against shock-induced lung injury 1 week after duct ligation, it is feasible that lymphatic ligation performed after an injury remains protective against certain secondary insults for at least 1 week.

Animals↗

Acute lung injury after hemorrhagic shock is dependent on gut injury and sex.

Recent studies have established gut-derived lymph rather than portal blood as the major source of toxic mediators after hemorrhagic shock that causes distant organ injury. Similarly, emerging data have identified sex as a major modifier of the response to injury and illness. Thus we tested the hypothesis that female rats would be more resistant to shock-induced lung injury than male rats because females are more resistant to shock-induced gut injury and produce mesenteric lymph that is less toxic to endothelial cells. Male and female rats were subjected to sham or hemorrhagic shock and lung permeability was quantitated by Evans blue dye and protein extravasation into the alveolar space. Next, mesenteric lymph collected from shocked and sham-shocked rats of both sexes was incubated with human umbilical vein endothelial cells (HUVECs) and assayed for toxicity. Trypan blue dye exclusion and the release of lactate dehydrogenase assessed HUVEC viability and injury respectively. Lastly, sections of the terminal ileum were histologically examined for evidence of shock-induced mucosal injury. Male rats but not female rats subjected to hemorrhagic shock had evidence of increased lung permeability and produced mesenteric lymph that was cytotoxic to HUVECs. Shock caused gut injury in the male rats whereas histological evidence of gut injury was not observed in the female rats. Hemorrhagic shock-induced lung injury depends on gut injury and mesenteric lymph appears to be the route by which gut-derived toxic factors exit the gut to cause lung injury. The resistance of female rats to shock-induced lung injury appears to be secondary to their resistance to shock-induced gut injury.

Animals↗

The effect of hypoxia/reoxygenation on the cellular function of intestinal epithelial cells.

BACKGROUND: Previously, using in vivo models, we have demonstrated that ischemia/reperfusion can increase intestinal mucosal permeability, promote bacterial translocation, and induce gut cytokine production. Because of the cellular heterogeneity of the gut, however, studies investigating the direct effects of hypoxia/reoxygenation on intestinal epithelial cells are confounded in in vivo model systems. Consequently, this study examines oxidant-mediated enterocyte injury using an in vitro intestinal enterocyte hypoxia/reoxygenation model system. METHODS: Two intestinal epithelial cell lines, IEC-6 and Caco-2, were seeded onto 3-microm filters in a Transwell bicameral system and grown until tight junction integrity was established. Cells were subjected to hypoxia in a sealed chamber with 95% nitrogen and 5% carbon dioxide and incubated at 37 degrees C for 60 or 90 minutes. Reoxygenation was initiated by replacing the media and putting the cells in an environment of room air plus 5% carbon dioxide. Permeability and bacterial translocation were assayed by measuring the phenol red concentration and culturing the bacteria that crossed the cell monolayer and reached the basal chamber of the bicameral system. Monolayer tight junction integrity was monitored by serial measurements of transepithelial electrical resistance (TEER), and cell viability was assessed by trypan blue dye. RESULTS: IEC-6 cell monolayers subjected to 60 or 90 minutes of hypoxia showed significantly higher permeability to phenol red, with 54+/-5% and 57+/-5% of the dye crossing the monolayers, respectively, compared with normoxic control (38+/-2%; p < 0.01). Caco-2 cell monolayers also had increased permeability to phenol red, with 24+/-6% and 20+/-4% of the phenol red crossing the monolayer after 60 or 90 minutes of hypoxia, respectively, compared with 8+/-3% in the normoxic controls (p < 0.01). At 3 hours after challenge with Escherichia coli, the monolayers subjected to 60 or 90 minutes of hypoxia had significantly increased bacterial translocation (IEC-6 cells, p < 0.05; Caco-2 cells, p < 0.01) compared with controls. The increased permeability of the hypoxic Caco-2 and IEC-6 monolayers was associated with a decrease in TEER beginning as early as 1 hour after reoxygenation (p < 0.01). Cell viability, however, was not decreased. CONCLUSION: These results indicate that hypoxia/reoxygenation can directly impair cellular function as manifested by increased monolayer permeability to phenol red, increased E. coli bacterial translocation, and a decrease in TEER values.

Animals↗