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Inhibition of prostaglandin F(2alpha) by selective cyclooxygenase 2 inhibitors accounts for reduced rat leukocyte migration.

To investigate whether selective COX 2 inhibitors (celecoxib, rofecoxib) would play a role in a model of leukocyte migration in rats. Bacterial endotoxin (Escherichia coli LPS) was intraperitoneally injected at time zero in rats that were previously treated with unspecific and selective cyclooxygenase inhibitors. LPS induced a dose and time-dependent increase in leukocyte number, which was predominantly related to the presence of PMN neutrophils. Only rats treated with selective COX 2 inhibitors and indomethacin showed a significant reduction in leukocyte numbers following LPS administration. Prostaglandins E(2) and F(2alpha) were injected into the peritoneum and the chemoatractant effect was studied. Only PGF(2alpha) was able to induce neutrophil increase following injection. Intraperitoneal reposition of PGF(2alpha) restored the abrogated leukocyte response to LPS, shown by rats pretreated with rofecoxib. It can be concluded that COX 2, through PGF(2alpha) release, is the isoform responsible for neutrophil recruitment in the rat model of LPS-induced inflammation.

Animals↗

Biochemical studies on the effect of S-1,3-butanediol of diabetes induced rats.

The biochemical effect of S-1,3-butanediol on streptozotocin induced diabetic rats was studied. Rats were made diabetic by the intraperitoneal injection of 40 mg/kg body weight streptozotocin in sodium citrate buffer. A dosage of 25 mmol/kg body weight of S-1,3-butanediol was injected intraperitoneally for treatment. The streptozotocin induced diabetic rats showed a marked increase in blood glucose level, and significant increase in the level of cholesterol, triglycerides and free fatty acids. The glycogen levels in liver and kidney were greatly decreased in diabetic rats. Treatment with butanediol normalised the glucose and glycogen level but had no significant effect on protein and lipid levels.

Animals↗

Possible involvement of 1,2-diacetylbenzene in diethylbenzene-induced neuropathy in rats.

The role of 1,2-diacetylbenzene (1,2-DAB) in the peripheral nerve toxicity of 1,2-diethylbenzene (1,2-DEB) was investigated in rats. Gas chromatography-mass spectrometry identified 1,2-DAB in the urine samples of rats given 165 mg kg-1 1,2-DEB orally on four consecutive days. 1,2-DAB shared not only the ability of 1,2-DEB to cause bluish discoloration of skin, internal organs and urine, but unlike 1,2-DEB it turned hair blue at the site of intraperitoneal injection. Intraperitoneal administration of 10 mg kg-1 and 20 mg kg-1 1,2-DAB to groups of 12 rats, 4 days a week for 11 and 6 weeks, caused a dose- and time-dependent decrease in mean sensory and motor conduction velocities. Recovery in a 5-week post-exposure period was gradual but consistent. The effect of 1,2-DAB on the amplitude of the sensory action potential was ambiguous. The findings support the hypothesis that the formation of 1,2-diacetylbenzene derivatives contributes to the neurotoxicity of 1,2-DEB.

Acetophenones↗

Impaired glucocorticoid receptor function evolves in aberrant physiological responses to bacterial endotoxin.

The consequences of glucocorticoid receptor (GR) dysfunction for neuroimmunoendocrine responses to an inflammatory challenge were studied in transgenic mice expressing antisense RNA directed against the GR [GR-impaired (GR-i) mice]. Mice were implanted intraperitoneally with a biotelemetry transmitter to monitor body temperature and locomotion. GR-i mice showed decreased locomotion and body temperature during the dark phase of the diurnal cycle. Intraperitoneal administration of saline caused a rapid increase in body temperature in control mice, which was terminated within 90 min. In GR-i mice, however, body temperature remained elevated for about 6 h. Intraperitoneal injection of endotoxin (10 micrograms/mouse) produced a biphasic fever in control mice. However, in endotoxin-injected GR-i mice, body temperature was not significantly different from their saline-injected controls during the first 6 h. Body temperature then increased and remained elevated during the night period. Both strains showed hypolocomotion after endotoxin. In a second experiment, mice were injected intraperitoneally with saline or endotoxin and killed after 1, 3, 6 or 24 h. In GR-i mice, endotoxin caused an augmented rise in plasma ACTH, but not in corticosterone levels. The endotoxin-induced increase in serum levels of interleukin-1 beta and interleukin-6 was not different between the strains. However, whereas in control mice tumour necrosis factor-alpha levels were below detection at the time points studied, substantial levels of this cytokine were found in the serum of GR-i mice 1 h after endotoxin administration. It may be concluded that life-long impairment of GR evolves in aberrant physiological and humoral responses to an acute inflammatory challenge. These findings expand our understanding about the neuroendocrine and physiological disturbances associated with stress-related disorders.

Adrenocorticotropic Hormone↗

Inhibition of choroidal neovascularization by a peptide inhibitor of the urokinase plasminogen activator and receptor system in a mouse model.

OBJECTIVES: To determine the role played by the urokinase plasminogen activator (uPA) and urokinase plasminogen activator receptor (uPAR) system in choroidal neovascularization (CNV) and whether inhibition of this system can suppress the extent of CNV in an animal model. METHODS: Choroidal neovascularization was induced in mice by laser photocoagulation using the slitlamp delivery system. Reverse transcriptase-polymerase chain reaction and immunocytochemical analysis were performed on the retina choroids of these animals to examine the expression of uPAR. For 2 weeks following laser treatment, animals were injected intraperitoneally with a novel peptide inhibitor of the uPA-uPAR system (100 mg/kg twice a day every day, every other day, and once a week). Control laser-treated animals receive an intraperitoneal injection of phosphate-buffered saline every day. Following treatment, animals were perfused with fluorescein-labeled dextran, eyes were removed, and the areas of new vessels were examined in the retina-choroid whole mounts by fluorescence microscopy and quantitated using image analysis software. RESULTS: In this study, uPAR was found to be up-regulated in the choroidal tissues of mice with laser-induced CNV. The uPAR was localized to the endothelial cells of the fibrovascular tissue within the CNV complex. Systemic administration of the peptide inhibitor of the uPA-uPAR system resulted in a significant reduction of CNV (up to 94%). The response was found to be frequency-of-dose dependent. No toxic effects or tissue destruction was noted following the peptide treatment. CONCLUSIONS: Our results strongly suggest that up-regulation of the uPA-uPAR system is an important step during CNV, and significant inhibition of CNV was seen when cell surface-associated uPA-uPAR activity was prevented with the peptide inhibitor. Clinical Relevance Inhibition of the protease system (uPA-uPAR) may prove to be a potential novel antiangiogenic therapy for CNV as seen in age-related macular degeneration.

Animals↗

Down-regulation of Th1-mediated pathology in experimental arthritis by stimulation of the Th2 arm of the immune response.

OBJECTIVE: To assess whether systemic administration of recombinant interferon-gamma (rIFN gamma), a proinflammatory cytokine that influences the differentiation of naive T cells into Th1 cells, promotes the induction of arthritis in DBA/1 mice immunized with type II collagen (CII) in Freund's incomplete adjuvant (IFA) and to determine the antiarthritic effect of treatment with CII in IFA. METHODS: DBA/1 mice were immunized with CII in IFA and injected intraperitoneally with rIFN gamma (8,000 units/mouse/day) or with recombinant interleukin-12 (rIL-12; 100 ng/mouse/day). In another experiment, mice were immunized with CII in Freund's complete adjuvant (CFA) and treated with a single dose of CII in IFA on the day of immunization or on the day of disease onset. Mice were monitored to assess the effect of the treatment on the severity of disease. Th1/Th2 cytokines and anti-CII antibodies were measured by enzyme-linked immunosorbent assay. RESULTS: The administration of rIL-12 or rIFN gamma to mice immunized with CII in IFA restored the Th1 response and resulted in the development of arthritis. We then determined whether immunization with CII in IFA had the capacity to prevent and/or ameliorate collagen-induced arthritis. A single intraperitoneal injection of CII in IFA prevented arthritis when given at the time of immunization with CII in CFA and reduced disease severity when given at the time of arthritis onset. The administration of CII in IFA resulted in a profound down-regulation of IFN gamma production and an up-regulation of IL-10 in cultures of draining lymph node cells. CONCLUSION: These findings demonstrate that it is possible to deflect an ongoing pathogenic Th1 response to an antigen by reimmunization of the same antigen with a Th2-polarizing adjuvant.

Animals↗

Inflammatory response and degradation of three types of calcium phosphate ceramic in a non-osseous environment.

The cellular response and inflammatory reaction to three types of calcium phosphate ceramic spheres, namely fluorapatite (FA), hydroxyapatite (HA), and beta-tricalcium phosphate (TCP), were investigated. The degradation at ultrastructural level of these ceramics was also studied. The mouse peritoneal cavity was used as a model compartment for this study. To minimize the influence of a wound reaction, the spheres were implanted by injection. Intraperitoneal injection of latex beads of 6.4 and 25.7 microns showed that an inflammatory reaction is influenced by the size of injected particles; therefore, ceramic spheres with the same average diameter (11.3 microns) were used. After 2 and 4 days and 1, 2, 4, 8, 12, and 24 weeks, the spheres were harvested. All materials gave rise to a short, mild inflammatory reaction. The ceramic spheres aggregated rapidly, and foreign body granulomas were formed within 2 weeks. Degradation of all materials was observed in this study, and degradation products were frequently seen both intracellularly and extracellularly. After 2 weeks TCP and HA showed the formation of crystals at their surface and between individual grains of the spheres. This was most prominently seen with TCP. At 4 weeks, HA and TCP granulomas showed the formation of extracellular, globular deposits between macrophages or multinucleated giant cells and fragments of the ceramic. They consisted of an organic matrix containing apatite-like crystals and iron, and had an average diameter of 10 microns. The number of deposits was the highest for TCP. For FA, calcium phosphate precipitation and the formation of deposits was not observed before the 8-week interval and remained at a low level.

Animals↗

Evidence for a role of free radicals by synthesized scavenger, 2-octadecylascorbic acid, in cerulein-induced mouse acute pancreatitis.

To define the role of free radicals and of lipid peroxide involvement during the progress of cerulein-induced acute pancreatitis in mice, we evaluated the effect of a novel free radical scavenger, 2-octadecylascorbic acid (CV-3611), on pancreatic edema formation, and the levels of serum enzymes (amylase, lipase) and of lipid peroxide in pancreatic tissue. Mice were divided into three groups: control group, intraperitoneal injection of saline only; pancreatitis group, cerulein 50 micrograms/kg injected intraperitoneally six times at 1-hr intervals; treatment groups, CV-3611 10 mg/kg subcutaneously just after intraperitoneal cerulein injection. After the cerulein injection, the degree of pancreatic edema formation, serum amylase and lipase levels, and the amount of lipid peroxide in pancreatic tissue increased significantly during the observation period of 12 hr. Treatment with CV-3611 resulted in significant reduction in pancreatic edema formation at 3.5 hr (P less than 0.05) and 9 hr (P less than 0.05), serum amylase and lipase levels at 3.5 hr (P less than 0.05) and 12 hr (P less than 0.05), and lipid peroxide levels at 3.5 hr (P less than 0.05), 6 hr (P less than 0.05) and 12 hr (P less than 0.05). These results indicate that a novel free radical scavenger, CV-3611, has a strong therapeutic effect during the development of acute pancreatitis and suggest that oxygen-derived free radicals play an important role in the pathogenesis of acute pancreatitis.

Acute Disease↗

Port-site metastasis after CO2 pneumoperitoneum: role of adhesion molecules and prevention with antiadhesion molecules.

BACKGROUND: Port-site metastasis is a continuing problem in laparoscopic cancer surgery. To clarify the role of adhesion molecules in the development of port-site metastasis, particularly with regard to prevention, we performed experiments in which port-site metastasis was inhibited using antibodies against extracellular matrix proteins or the active Arg-Gly-Asp (RGD) peptide after CO2 pneumoperitoneum in a murine model. METHODS: We examined the development of port-site metastasis under the following conditions: (1) CO2 pneumoperitoneum with or without hyaluronic acid and anti-integrin or anti-CD44 antibody and (2) CO2 pneumoperitoneum and a RGD peptide or pseudo-RGD sequence peptide (FC-336). BALB/c mice ( n = 130) were injected with 5 x 10(5) human gastric cancer cells (MKN45) and either antibody or peptide, treated with CO2 pneumoperitoneum, and injected intraperitoneally with antibody or peptide for 5 days. Three weeks after CO2 pneumoperitoneum, the frequency and weight of port-site metastatic tumors were determined. RESULTS: Anti-integrin antibody significantly decreased the weight of port-site metastatic tumors without hyaluronic acid (control vs anti-integrin: 8.2 +/- 7.1 vs 3.6 +/- 4.5 mg; p < 0.05) but not the frequency of port-site metastases. With hyaluronic acid, the frequency of port-site metastasis and the weight of port-site metastatic tumors were significantly decreased both by anti-integrin and by anti-CD44 antibody (control vs anti-integrin and anti-CD44; 95% and 8.5 +/- 7.2 mg vs 50% and 3.1 +/- 4.3 mg and 55% and 3.3 +/- 5.1 mg, respectively; p < 0.05). RGD peptide and FC-336 also inhibited port-site metastasis in a dose-dependent manner. CONCLUSION: Cell adhesion molecules integrin and CD44 play an important role in the development of port-site metastasis after laparoscopic cancer surgery. Intraperitoneal injection of RGD peptide or pseudo-RGD sequence peptide (FC-336) can prevent port-site metastasis.

Animals↗

Evidence for histaminergic arousal mechanisms in the hypothalamus of cat.

Polygraphic 23-hr recordings were carried out in 25 adult cats in order to examine the effects of both systemic and local injections of various histaminergic and antihistaminergic drugs on sleep-waking cycles. alpha-Fluoromethylhistidine (alpha-FMH), a specific inhibitor of histidine decarboxylase, when injected intraperitoneally at a dose of 20 mg/kg, induced a significant increase in deep slow wave sleep (S2) and a decrease in wakefulness (W), without modifying light slow wave sleep (S1) and paradoxical sleep (PS). Intraperitoneal injections of mepyramine (1 mg and 5 mg/kg), a well-known histamine H1-receptor antagonist, increased deep slow wave sleep and decreased wakefulness, as well as paradoxical sleep. Bilateral injections of alpha-FMH (50 micrograms/1 microliter) into the ventrolateral posterior hypothalamus, where histamine immunoreactive neurones have been recently identified, resulted in a significant decrease in wakefulness and increase in deep slow wave sleep. Similarly, injections of mepyramine (120 micrograms/1 microliter) in the same structures caused a significant decrease in wakefulness and an increase in deep slow wave and paradoxical sleep as well. In contrast, local injections of SKF-91488 (50 micrograms/1 microliter), a specific inhibitor of histamine-N-methyltransferase, led to a significant increase in wakefulness and decrease in both slow wave sleep (SWS) and paradoxical sleep. Injections of histamine, at doses of 5, 30 and 60 micrograms/1 microliter, also increased wakefulness and decreased slow wave sleep dose dependently, while these effects were completely blocked by pretreatment with mepyramine. The results suggest that histaminergic systems in the hypothalamus play an important role in arousal mechanisms and their actions are mediated through H1-receptors.

Animals↗

Hepatic-portal infusion reduces the satiating potency of CCK-8.

If a satiating effect of endogenous cholecystokinin (CCK) is produced through a circulating hormonal mechanism, then administration of exogenous CCK into the hepatic-portal vein should decrease meal size. We report here that when doses of CCK-8 are injected intraperitoneally, they are at least four times more potent at reducing food intake than equivalent doses infused into the hepatic-portal vein. Intraportally administered CCK-8 at a dose of 32 micrograms.kg-1 had an equivalent satiating potency to 4 micrograms.kg-1 administered intraperitoneally. In contrast, intraportal infusions of the putative satiety hormone, tetradecapeptide bombesin, were equally as effective as intraperitoneal injections for reducing food intake. Bombesin is apparently protected from significant hepatic uptake by its larger size. We conclude that the primary reason for the ineffectiveness of portally administered CCK-8 for reducing food intake is hepatic uptake. These findings support the hypothesis that any satiating effect of endogenous CCK-8 is likely to act primarily through a paracrine mechanism.

Animals↗

Chemopreventive effects of sage oil on skin papillomas in mice.

Salvia libanotica (sage) extract is a popular plant remedy used by Middle Eastern people to treat common complaints such as colds and abdominal pain. In this study, the chemopreventive effects of sage oil on 7,12 dimethylbenz[a]anthracene (DMBA)-initiated and 12-O-tetradecanoylphorbol-13-acetate (TPA)-promoted skin papillomas was investigated. Furthermore, its growth inhibitory and cytotoxic effects on a mouse papilloma-derived cell line (SP-1) were studied using 3H-thymidine incorporation, cell count and trypan blue dye exclusion assays. Sage oil was either applied topically to mouse skin at concentrations of 5, 50 and 100% in acetone, injected intraperitoneally at concentrations of 4 (37 mg/ml) and 8% (75 mg/ml) in saline or given by gavage at 100% twice per week for 20 weeks, 20 minutes prior to each promotion treatment with TPA. The topically applied 100% oil extract delayed tumor appearance by 4 weeks and inhibited tumor incidence and yield by 19 and 61%, respectively, at week 20. Topical application of 50% and 5% sage oil inhibited tumor yield by 41% at week 20. Tumor weight was decreased by 75% and 80% following treatment of mouse skin with 50% and 100% oil, respectively. Intraperitoneal injections and gavage treatments failed to inhibit the promotion of tumors in mouse skin, but significantly decreased tumor weight and volume. Sage oil displayed strong growth inhibitory effects on the SP-1 papilloma derived cell line following 24 hrs of treatment with estimated IC50 of 50 microg/ml. This observed growth inhibition was due to cytostatic and not cytotoxic effects. Our results suggest that the oil extract of the sage plant has potent suppressive activities against tumor promotion in mouse skin and thus could be an effective chemopreventive agent against skin cancer.

9,10-Dimethyl-1,2-benzanthracene↗

Adenovirus 5 E1a-mediated gene therapy for human ovarian cancer cells in vitro and in vivo.

The aim of this study was to investigate therapeutic efficacy of adenovirus-mediated E1a gene therapy for ovarian cancer in vitro and in vivo. Recombinant replication-deficient adenoviral vectors were prepared by superinfection of 293 cells, and then purified. The efficacy of the adenovirus vector system to infect ovarian cells was tested using different multiplicity of infection (MOI) and different times (1-4) of Ad.RSVlacZ. SKOV-3 cells (10(3) per well) were infected once with 2 x 10(4) adenovirus. The cells were harvested and counted on different days for 7 days to generate the in vitro growth curve. Tumor-bearing mice were injected intraperitoneally with ovarian cancer cells and treated by intraperitoneal injection of 100 microl (2.5 x 10(8) PFU) viral solution containing either replication-deficient Ad.E1a(+); control virus Ad.E1a(-) which is the same adenovirus as Ad.E1a(+) except for E1a deletion, or just phosphate buffered solution. The transduction efficacy increased with higher MOI and reached a plateau at the 20:1 ratio. When Ad.E1a(+) was used to transduce the HER-2/neu overexpressing human ovarian cancer cell line SKOV-3, tumor cell growth in vitro was greatly inhibited by E1a transduction. Also, Ad.E1a+ greatly inhibited tumor growth of SKOV-3-bearing mice. Immunohistochemistry analysis indicated that Ad.E1a protein was expressed in tumor tissue and expression of HER-2/neu p185 protein was suppressed. Very strong beta-gal staining was detected in tumors, and beta-gal activity in small intestine, lung, heart, stomach, liver, and kidney was detected. No beta-gal activity was detected in the tumor and other organs in control mice injected with Ad.E1a(-) or PBS. Adenovirus-type 5 E1a gene can efficaciously inhibit HER-2/neu-overexpressing ovarian cancer, and this promising procedure could greatly benefit ovarian cancer patients with high expression of HER-2/neu.

Adenoviridae↗

Therapeutic efficacy of the magainin analogue MSI-78 in different intra-abdominal sepsis rat models.

OBJECTIVES: This study was designed to investigate the antimicrobial and anti-endotoxin activity of MSI-78, a synthetic cationic peptide analogue of magainin 2. METHODS: The in vitro antimicrobial activity of MSI-78 was investigated against the commercially available quality control strain Escherichia coli ATCC 25922. In addition, three rat models of septic shock were investigated: (i) rats were injected intraperitoneally with 1 mg Escherichia coli 0111:B4 LPS; (ii) rats were given an intraperitoneal injection of 2 x 10(10) cfu of Escherichia coli ATCC 25922; (iii) intra-abdominal sepsis was induced via caecal ligation and puncture. All animals were randomized to receive after 360 min intravenously isotonic sodium chloride solution, 1 mg/kg MSI-78, or 60 mg/kg piperacillin. Main outcome measures were: abdominal exudate and plasma bacterial growth, plasma endotoxin and tumour necrosis factor alpha (TNF-alpha) concentrations, and lethality. RESULTS: Our in vitro data showed that MSI-78 possesses a strong activity against Escherichia coli. The in vivo studies showed that all compounds reduced the lethality when compared to controls. MSI-78 showed a slightly higher antimicrobial activity than piperacillin and achieved a substantial decrease in endotoxin and TNF-alpha plasma concentrations than the beta-lactam. CONCLUSIONS: Because of its strong double anti-endotoxin and antimicrobial activities MSI-78 could be an interesting compound for Gram-negative septic shock treatment.

Abdomen↗

The effect of N-acetyl serotonin on ultraviolet-radiation-induced cataracts in rats.

AIMS: To investigate the effects of ultraviolet radiation (UVR) on cataract development in rat lenses and whether or not N-acetyl serotonin has an effect on changes in these lenses. MATERIAL AND METHODS: The study was performed using 5 groups of Sprague-Dawley albino rats, with each group consisting of 15 rats. The 5th group being the control group did not receive any applications, whilst the other 4 groups received a daily dose of 0.2 J/cm(2)/day UVR (305 nm wavelength) for 60 days. A dose of 4 mg/kg/0.1 ml N-acetyl serotonin was injected intraperitoneally to group 1 and group 2 every day and on alternate days, respectively. Group 3 received an intraperitoneal injection of 0.1 ml phosphate buffer solution every day, whilst group 4 received no injection. On the 60th day, an intracardiac withdrawal of blood was performed, after the rats had been anesthetized with ether. Following the withdrawal of blood, the rats were killed using a high dose of ether and their eyes were enucleated. The lens fresh weights, plasma malondialdehyde (P-MDA), erythrocyte glutathione peroxidase (E-GSHPx), erythrocyte glutathione reductase, blood reduced glutathione (B-RGSH), erythrocyte catalase (E-CAT), lenticular malondialdehyde, lenticular superoxide dismutase (L-SOD), lenticular glutathione peroxidase (L-GSHPx) and lenticular glutathione (L-GSH) levels were all assessed. RESULTS: The lens fresh weights were determined to be lower in group 1 and in the control group in comparison with the other groups (p < 0.01). Whilst the P-MDA level was found to be lower (p < 0.001), the E-GSHPx level was higher (p < 0.01) in the control group than in the other groups. The E-GSHPx level was higher in groups 1 and 2 than in groups 3 and 4 (p < 0.01). The B-RGSH level was higher in the control group than in the other groups (p < 0.001). The E-CAT level was higher in both the control group and group 1 than in groups 2, 3 and 4 (p < 0.01), whilst it was higher in group 2 when compared to groups 3 and 4 (p < 0.01). The L-SOD levels were found to be higher in the control group and group 1 than in groups 2, 3 and 4 (p < 0.001). Whilst the L-GSHPx levels were determined to be higher only in the control group (p < 0.001), the L-GSH levels were higher in the control group and group 1 than in the other groups (p < 0.001). CONCLUSIONS: In recent years, the depletion of the atmospheric ozone layer has resulted in the penetration of more UVR to the earth, which causes various effects on different tissues of organisms. N-acetyl serotonin, a melatonin precursor, may well be effective in the prevention of the negative effects induced by the UVR upon the lens tissue, in which case the capability of melatonin to capture free radicals as well as its antioxidative properties should be taken into consideration.

Animals↗

Dual dose-related action of peripherally administered morphine on cold-stimulated thyrotropin secretion in male rats.

Cold-induced increase of thyrotropin (TSH) release was found to be inhibited after 10 or 20 mg/kg morphine sulfate (MO) injected intraperitoneally 30 min before the transfer of adult male rats from 30 to 4 degrees C for 60 min (i.e. 90 min before sacrifice). In contrast, lower doses of MO such as 2.5 and 5 mg/kg were found to stimulate the cold-induced TSH release under the same conditions. Such a cold-induced TSH release stimulated by lower doses of MO was found to be inhibited by intraperitoneal injection of 2 or 4 mg/kg naloxone (NX) 30 min before MO injection (i.e. 120 min before sacrifice) in a dose-dependent manner, while the same doses of NX were without effect on the levels of TSH after higher doses of MO. It is suggested that these effects may depend on different sensitivities of various hypothalamic loci involved in mediating either a stimulation or inhibition of TSH release.

Animals↗

Protection from endotoxemia by adenoviral-mediated gene transfer of human bactericidal/permeability-increasing protein.

Sepsis represents a growing concern in high-risk patients and there has been a lack of effective preventives and therapies. Bacterial/permeability increasing protein (BPI) is a human neutrophil granule-associated defense molecule specific for Gram-negative bacteria and their products. To develop a BPI-transgene-based prophylactic or therapeutic modality, we have developed a recombinant, replication-deficient adenoviral vector expressing full-length human BPI protein (AdhBPI). The expression of BPI is under control of a murine cytomegalovirus (CMV) promoter. Using in vitro and in vivo systems, AdhBPI-mediated gene transfer led to extracellular secretion of BPI protein, which effectively neutralized endotoxin (lipopolysaccharide [LPS]) and markedly reduced the production of proinflammatory cytokines tumor necrosis factor alpha (TNF-alpha) and macrophage inflammatory protein 2 (MIP-2) by freshly isolated murine alveolar macrophages. By using a mouse model of nonlethal sepsis elicited with LPS, we demonstrated that in vivo gene transfer of BPI was able to markedly inhibit the effect of a large dose of LPS on cytokine responses when injected intraperitoneally. Furthermore, such in vivo BPI gene transfer also improved the survival of mice suffering from lethal septic shock elicited by intraperitoneal injection of d-galactosamine and LPS. Thus, our results suggest that human BPI gene transfer vector has the potential to be used as a therapeutic agent for septic conditions.

Adenoviridae↗

In vivo radiosensitizing effect of the adenovirus E1A gene in murine and human malignant tumors.

The adenovirus E1A gene is a potent inducer of chemosensitivity and radiosensitivity through p53-dependent and independent mechanisms. We have studied the sensitivity of murine (MSC11A5, a sarcomatoid epidermoid carcinoma) and human (HeLa, human cervix carcinoma) E1A-expressing tumors, in vivo, after treatment with cisplatin or gamma-irradiation. In athymic mice, half-body irradiation was performed in an AECL Cobalt unit, at an SSD of 80 cm. Daily fractions of 300 cGy over 3 days, up to a total dose of 9 Gy. Cisplatin was injected intraperitoneally at a dose of 9 mg per kg of body weight. After gamma-irradiation or intraperitoneal injection of cisplatin, about 30% of the E1A-expressing tumors regressed completely or were associated with a marked decrease in tumorigenicity over the following weeks. We conclude that malignant tumors, when expressing adenovirus E1A, are very sensitive to treatment with DNA-damaging agents, in vivo, regardless of the p53 status of the tumors.

Adenovirus E1A Proteins↗