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Effect of L-Dopa and the catechol-O-methyltransferase inhibitor Ro 41-0960 on sulfur amino acid metabolites in rats.

L-Dopa is the most effective drug known for the treatment of Parkinson's disease. However, the large doses required to treat this neurodegenerative disorder can significantly affect tissue concentrations of sulfur amino acid metabolites due to peripheral and central O-methylation. These effects include decreases in tissue concentrations of the biochemical methyl donor S-adenosylmethionine (SAM), increases in tissue concentrations of the methylation inhibitor S-adenosylhomocysteine (SAH), and increases in plasma concentrations of homocysteine, recently identified as an independent risk factor for vascular disease. In the present study, the ability of the catechol-O-methyltransferase inhibitor Ro 41-0960 to prevent L-Dopa-induced changes in SAM, SAH, and homocysteine concentrations was determined in rats. Rats were injected intraperitoneally with Ro 41-0960 or vehicle 30 min prior to an intraperitoneal injection of L-Dopa or vehicle. One hour after the second injection, the rats were killed and their brains, livers, spleens, kidneys, and plasma collected. SAM and SAH concentrations were then determined in discrete brain regions and peripheral tissues, and total homocysteine concentrations were determined in plasma. In the rats treated with only L-Dopa, decreased SAM concentrations and increased SAH concentrations were found in all brain regions and peripheral tissues measured, and increased homocysteine concentrations were found in plasma, consistent with previous reports. In rats pretreated with Ro 41-0960, however, these L-Dopa-induced effects on sulfur amino acid metabolite concentrations were attenuated or prevented entirely. It remains to be determined if this sparing effect of Ro 41-0960 on sulfur amino acid metabolites has clinical significance.

Animals↗

Role of epidermal growth factor in protection and repair of gastric mucosal injury.

A role of epidermal growth factor (EGF) in protection and repair of gastric mucosal injury caused by p.o. administration of 0.6 N HCl was investigated in male Wistar rats. Previous to the study on the role of EGF in gastric mucosal protection and repair, changes of gastric mucosal EGF level was determined sequentially by RIA for 180 min after treatment with 0.6 N HCl and intraperitoneal injection of recombinant hEGF. Concentration of incorporated hEGF into the gastric mucosa reached the peak level at 30 min after injection of hEGF. On the other hand, the gastric endogenous EGF level fell remarkably immediately after treatment with 0.6 N HCl. Successively, an association with the mucosal levels of incorporated hEGF and gastric ulcer indices was investigated in the rats in which hEGF was injected intraperitoneally 30 min prior to or at the same time as oral administration of 0.6 N HCl. In conclusion, pretreatment with hEGF protected significantly against gastric mucosal injury with 0.6 N HCl, whereas simultaneous administration of hEGF could not protect against mucosal injury but indicated possible stimulation of the repair process from acute gastric mucosal damage.

Animals↗

Pioglitazone prevents acute liver injury induced by ethanol and lipopolysaccharide through the suppression of tumor necrosis factor-alpha.

BACKGROUND: Peroxisome proliferator-activated receptor-gamma (PPAR-gamma), which is a ligand-dependent transcriptional factor, forms a heterodimer with retinoid X receptor (RXR) and controls many genes that are relevant to the regulation of lipid metabolism and insulin sensitization. Recent studies have shown that stimulation of PPAR-gamma inhibits the production of inflammatory cytokines in monocytes and macrophages. Alcohol and lipopolysaccharide (LPS) have already been shown to induce liver injury through the activation of many inflammatory cytokines. Thus, the activation of PPAR-gamma by its ligand may represent a potential effect causing liver injury. In this study, we investigated the effects of pioglitazone, a ligand for PPAR-gamma, on acute liver injury induced by ethanol and LPS. METHODS: Female Sprague-Dawley rats that weighed 300 g were given ethanol (5 g/kg body weight) intragastrically and received an intraperitoneal injection of LPS 24 hr later. Subsequently, pioglitazone (1 mg/kg body weight) or vehicle alone was injected intraperitoneally 10 min and 24 hr after ethanol administration. Plasma levels of aspartate transaminase and alanine aminotransferase were measured by spectrophotometer. Plasma levels of tumor necrosis factor-alpha (TNF-alpha) were also determined using an enzyme-linked immunosorbent assay. Plasma and hepatic levels of lipid peroxide were measured, and the histologic findings of the liver were examined. Reverse transcription-polymerase reaction analysis of TNF-alpha, PPAR-gamma, RXR-alpha, and beta-actin mRNA was performed. Western blot analysis using the p65 subunit of NF-kappaB was also performed. RESULTS: Pioglitazone prevented increase in plasma aspartate transaminase, alanine aminotransferase, and TNF-alpha levels but had no effect on plasma and hepatic levels of lipid peroxide. Pioglitazone also prevented hepatic inflammation and necrosis induced by ethanol and LPS. Ethanol and LPS induction of TNF-alpha mRNA in the liver was blunted by pioglitazone; however, RXR-alpha mRNA was not affected. PPAR-gamma mRNA levels were suppressed by ethanol and LPS but recaptured by pioglitazone. Western blot analysis showed that pioglitazone did not inhibit translocation of NF-kappaB to nuclei. CONCLUSION: These results suggest that pioglitazone may prevent liver injury induced by ethanol and LPS through the suppression of TNF-alpha.

Animals↗

Blood-CSF barrier function in the rat embryo.

Blood-cerebrospinal fluid (CSF) barrier function and expansion of the ventricular system were investigated in embryonic rats (E12-18). Permeability markers (sucrose and inulin) were injected intraperitoneally and concentrations measured in plasma and CSF at two sites (lateral and 4th ventricles) after 1 h. Total protein concentrations were also measured. CSF/plasma concentration ratios for endogenous protein were stable at approximately 20% at E14-18 and subsequently declined. In contrast, ratios for sucrose (100%) and inulin (40%) were highest at the earliest ages studied (E13-14) and then decreased substantially. Between E13 and E16 the volume of the lateral ventricles increased over three-fold. Decreasing CSF/plasma concentration ratios for small, passively diffusing molecules during embryonic development may not reflect changes in permeability. Instead, increasing volume of distribution appears to be important in this decline. The intracellular presence of a small marker (3000 Da biotin-dextranamine) in plexus epithelial cells following intraperitoneal injection indicates a transcellular route of transfer. Ultrastructural evidence confirmed that choroid plexus tight junctions are impermeable to small molecules at least as early as E15, indicating the blood-CSF barrier is morphologically and functionally mature early in embryonic development. Comparison of two albumins (human and bovine) showed that transfer of human albumin (surrogate for endogenous protein) was 4-5 times greater than bovine, indicating selective blood-to-CSF transfer. The number of plexus epithelial cells immunopositive for endogenous plasma protein increased in parallel with increases in total protein content of the expanding ventricular system. Results suggest that different transcellular mechanisms for protein and small molecule transfer are operating across the embryonic blood-CSF interface.

Albumins↗

Effect of dexamethasone and endogenous corticosterone on airway hyperresponsiveness and eosinophilia in the mouse.

1. Mice were sensitized by 7 intraperitoneal injections of ovalbumin without adjuvant (10 micrograms in 0.5 ml of sterile saline) on alternate days and after 3 weeks exposed to either ovalbumin (2 mg ml-1 in sterile saline) or saline aerosol for 5 min on 8 consecutive days. One day before the first challenge, animals were injected intraperitoneally on a daily basis with vehicle (0.25 ml sterile saline), dexamethasone (0.5 mg kg-1) or metyrapone (30 mg kg-1). 2. In vehicle-treated ovalbumin-sensitized animals ovalbumin challenge induced a significant increase of airway responsiveness to metacholine both in vitro (27%, P < 0.05) and in vivo (40%, P < 0.05) compared to saline-challenged mice. Virtually no eosinophils could be detected after saline challenge, whereas the numbers of eosinophils were significantly increased (P < 0.01) at both 3 and 24 h after the last ovalbumin challenge (5.48 +/- 3.8 x 10(3) and 9.13 +/- 1.7 x 10(3) cells, respectively). Furthermore, a significant increase in ovalbumin-specific immunoglobulin E level (583 +/- 103 units ml-1, P < 0.05) was observed after ovalbumin challenge compared to saline challenge (201 +/- 38 units ml-1). 3. Plasma corticosterone level was significantly reduced (-92%, P < 0.001) after treatment with metyrapone. Treatment with metyrapone significantly increased eosinophil infiltration (17.4 +/- 9.93 x 10(3) and 18.7 +/- 2.57 x 10(3) cells, P < 0.05 at 3 h and 24 h, respectively) and potentiated airway hyperresponsiveness to methacholine compared to vehicle-treated ovalbumin-challenged animals. Dexamethasone inhibited both in vitro and in vivo hyperresponsiveness as well as antigen-induced infiltration of eosinophils (0, P < 0.05 and 0.7 +/- 0.33 x 10(3) cells, P < 0.05 at 3 h and 24 h, respectively). Metyrapone as well as dexamethasone did not affect the increase in ovalbumin-specific immunoglobulin E levels after ovalbumin challenge (565 +/- 70 units/ml-1; P < 0.05; 552 +/- 48 units ml-1, P < 0.05 respectively). 4. From these data it can be concluded that exogenously applied corticosteroids can inhibit eosinophil infiltration as well as airway hyperresponsiveness. Vise versa, endogenously produced corticosteroids play a down-regulating role on the induction of both eosinophil infiltration and airway hyperresponsiveness.

Animals↗

Effects of different cyclophosphamide treatment schedules on collagen and collagenolytic activity in granulation tissue.

Cyclophosphamide was injected intraperitoneally into rats in doses of 6 or 10 mg/kg/day. The controls had daily intraperitoneal injections of physiological saline. After 14 days of treatment, granulation tissue was produced by subcutaneous implantation of viscose cellulose sponges. The treatment with cyclophosphamide and physiological saline was continued in different sequences for a further one or two 14-day periods. The rats were killed 14 or 28 days after the sponge implantation. Cyclophosphamide caused a decrease in body weight, in the number of leucocytes, in granuloma dry weight and in the granuloma content of free OH-proline while the water percentage increased. Ten mg/kg/day of cyclophosphamide had a more pronounced effect than 6 mg/kg/day. The results are consistent with an inhibitory effect of cyclophosphamide on granuloma formation and on the degradation of collagen. Accordingly, measurements of collagenolytic activity in granulation tissue after culture in vitro suggested an inhibition of collagenolysis after cyclophosphamide treatment. No effect of pretreatment was observed, and the effect of cyclophosphamide was independent of whether cyclophosphamide was given during the early or late phase of granulation tissue production.

Animals↗

A study on the aetiology of reserpine ulceration and the antiulcer action of solcoseryl in rat stomach.

The aetiology of reserpine-induced gastric ulcer formation and the antiulcer effects of solcoseryl were studied in rats. Intraperitoneal injection of reserpine produced severe ulceration, as well as mast cell and histamine depletion, in the gastric glandular mucosa. Mepyramine and cimetidine markedly antagonized the gastric lesions, but did not influence the reduced mast cell count; atropine pretreatment significantly inhibited both parameters. Intramuscular injection of solcoseryl lessened ulcer severity and prevented the decreased mast cell counts and histamine levels in reserpine-treated rats. However, the same dose of solcoseryl injected intraperitoneally was ineffective. Solcoseryl, irrespective of the route of administration, did not influence the gastric secretory activities of reserpine. It is concluded that reserpine ulceration is both cholinergic- and histamine-mediated, and that the antiulcer effects of solcoseryl appear to be due to prevention of histamine depletion in the gastric mucosa.

Actihaemyl↗

Potential therapeutic role of cationic peptides in three experimental models of septic shock.

The therapeutic efficacies of buforin II, indolicidin, and KFFKFFKFF were investigated in three rat models of septic shock: (i) rats injected intraperitoneally with 10 microg of Escherichia coli O111:B4 lipopolysaccharide, (ii) rats given an intraperitoneal injection of 2 x 10(10) CFU of Escherichia coli ATCC 25922, and (iii) rats in which intra-abdominal sepsis was induced via cecal ligation and single puncture. All animals were randomized to receive parenterally isotonic sodium chloride solution, 1 mg of buforin II per kg of body weight, 1 mg of indolicidin per kg, 1 mg of KFFKFFKFF per kg, and 20 mg of imipenem per kg. The main outcome measures were bacterial growth in abdominal exudate and plasma, endotoxin and tumor necrosis factor alpha (TNF-alpha) concentrations in plasma, and lethality. Treatment with all peptides resulted in significant reductions in plasma endotoxin and TNF-alpha concentrations compared with those resulting from the imipenem and saline treatments. On the other hand, imipenem treatment significantly reduced the levels of bacterial growth compared with the reductions achieved with the peptide and saline treatments. All compounds reduced the rates of death compared to that for the controls. Although the peptides demonstrated lower levels of antimicrobial activity than imipenem, they exhibited the dual properties of antimicrobial and antiendotoxin agents.

Animals↗

Antitumor activity of a Brucella abortus preparation.

Mice injected intraperitoneally with sarcoma-180 cells develop ascites and eventually die. Intraperitoneal injection of a nonviable, aqueous... ether-extracted Brucella abortus preparation (BRU-PEL) as early as 7 days before or as late as 7 days after injection of tumor cells significantly inhibited development of ascites and protected against death. BRU-PEL was not effective if injected after ascites was grossly apparent. BRU-PEL was significantly more active than a Corynebacterium parvum preparation administered in the same way.

Animals↗

Lobar pneumonia in rats produced by clinical isolates of Klebsiella pneumoniae.

Transtracheal instillation of clinical isolate Klebsiella pneumoniae serotype 1 (KP1) into the lungs of rats resulted in the production of a characteristic, chronic lobar pneumonia. To further examine this phenomenon, two variants of this organism were employed in this experimental model. These variants differed markedly in capsule size, colony morphology, and in virulence, as determined by mouse lethality tests. The ability of these strains to establish a lobar pneumonia in rats correlated with the virulence of the respective organisms as monitored by intraperitoneal injection in mice. The 50% lethal doses in mice were 4.9 x 10(1) colony-forming units (CFU) for the more virulent KP1 strain (KP1-O) and 1.42 x 10(5) CFU for the less virulent variant (KP1-T). In the rat lung model, marked lung pathology was evident by day 6 with a KP1-O inoculum of 5 x 10(2) CFU, whereas KP1-T caused little or no lung pathology when delivered transtracheally at a concentration of 7 x 10(6) CFU. Two relatively nonvirulent variants of K. pneumoniae serotype 2 were also used in this rat lung model and were found not to produce a lobar pneumonia even when delivered in large doses. These results indicate that a chronic lobar pneumonia can be established in a rat model if the appropriate organism is employed and the virulence of K. pneumoniae injected intraperitoneally into mice is an excellent indicator of an organism's potential to cause lobar pneumonia in rats.

Animals↗

Influence of Escherichia coli lipopolysaccharide on histamine-forming capacity and antibody formation in lymphoid tissues.

Mice were injected intraperitoneally with 50 mug of Escherichia coli lipopolysaccharide (LPS). The spleen tissue exhibited increased histamine-forming capacity (HFC) 4 hr later. When this increased HFC was produced within 12 hr after intraperitoneal injection of sheep red blood cells (SRBC), there was an enhanced anti-SRBC antibody response in the spleen. In mice experiencing an increased spleen HFC at 36 hr after injection of SRBC, there was a significant decrease in the number of antibody-producing cells. The injection of histidine decarboxylase inhibitors simultaneously with the LPS greatly reduced the stimulation of HFC and also the adjuvant activity of the LPS.

Animals↗

Legionella pneumophila growth restriction in permissive macrophages cocultured with nonpermissive lipopolysaccharide-activated macrophages.

Macrophages can be activated by lipopolysaccharides (LPS) from gram-negative bacteria to evince a number of biological activities, including increased resistance to intracellular infection by opportunistic bacteria. In the present study, intraperitoneal injection of LPS into A/J mice activated peritoneal macrophages so that they resisted subsequent in vitro infection with Legionella pneumophila. Coculture of these macrophages with those from nontreated A/J mice converted the entire population of cells from permissive to nonpermissive. This effect did not appear to be mediated by soluble factors released from the LPS-treated macrophages, since the levels of interleukins-1 and -6 and tumor necrosis factor alpha produced by the macrophages were not found to be markedly elevated at the time when the macrophages from the LPS-treated mice were most effective in converting normal macrophages to nonpermissiveness. Furthermore, macrophages from mice injected intraperitoneally with either interferon or tumor necrosis factor alpha did not evince nonpermissiveness and also did not have the ability to convert normal spleen cells to nonpermissiveness. Polymyxin B, a known inactivator of LPS activity, did not inhibit the macrophages from the LPS-treated mice from inducing this resistance. It seemed unlikely that free LPS released from the macrophages mediated this effect. The results of this study thus showed that macrophages activated by LPS in vivo can evince nonpermissiveness for Legionella growth in vitro and also can induce macrophages from normal, permissive mice to become nonpermissive for Legionella growth in vitro.

Animals↗

EFFECT OF MITOCHONDRIAL STABILIZERS ON THE IMMUNOGENICITY OF THE PARTICULATE FRACTION ISOLATED FROM MYCOBACTERIUM TUBERCULOSIS.

Youmans, Anne S. (Northwestern University Medical School, Chicago, Ill.), and Guy P. Youmans. Effect of mitochondrial stabilizers on the immunogenicity of the particulate fraction isolated from Mycobacterium tuberculosis. J. Bacteriol. 87:1346-1354. 1964.-A number of substances which have been used to stabilize mammalian mitochondrial preparations were tested to determine whether they would similarly affect the immunogenicity of a particulate fraction prepared from ruptured viable attenuated mycobacterial cells. The use of 0.44 m sucrose and the presence of 3 x 10(-2)m MgCl(2) during the preparatory processes markedly increased the immunogenicity of the particulate fraction. The increase was so great that immunogenic preparations were then consistently obtained which, in adequate dosage, were more immunogenic in CF-1 male mice than were viable attenuated mycobacterial cells. On the other hand, adenosine triphosphate (ATP), citrate, and polyvinylpyrrolidone when present during the preparatory processes reduced the immunogenicity. The addition of MgCl(2), ethylene-diaminetetraacetate, or ATP to the particulate fraction after it had been prepared did not increase its immunogenicity. When the particles were prepared in the 0.44 m sucrose buffer alone, incorporated in Freund's adjuvant, and injected intraperitoneally, immunogenicity was increased. However, this increase was not significantly greater than that obtained when the particles were prepared in the sucrose buffer containing MgCl(2). The immune state engendered in mice by the intraperitoneal injection of the particulate fraction persisted for at least 12 weeks.

Adenosine Triphosphate↗

Neurotensin induces hyperplasia of the pancreas and growth of the gastric antrum in rats.

We investigated whether chronic subcutaneous infusion of neurotensin during 14 days would affect pancreatic and gastric growth of rats. In another experiment, neurotensin (836 pmol/kg) was injected intraperitoneally three times a day for three days in 12 rats. Thereafter, pancreatic DNA and in vitro incorporation of 3H-thymidine into pancreatic DNA was determined. Long term infusion of 282 pmol/kg neurotensin induced an increase of pancreatic weight, DNA, and pancreatic polypeptide, whereas pancreatic protein, RNA, amylase and lipase contents were not increased. In relation to DNA, even these parameters were significantly depressed. Insulin remained unchanged. Neurotensin, therefore, caused hyperplasia of the pancreas. Intraperitoneal injection of neurotensin induced an increase of pancreatic DNA content and stimulated 3H-thymidine incorporation into DNA, whereas caerulein only augmented 3H-thymidine incorporation. Moreover, long term neurotensin infusion led to a rise in protein concentration and an increase in the thickness of the gastric antrum; antral DNA concentration was insignificantly stimulated. Neurotensin, therefore, can act as a trophic factor on pancreas and gastric antrum of the rat.

Animals↗

Intestinal epithelial exosomes carry MHC class II/peptides able to inform the immune system in mice.

BACKGROUND: Intestinal epithelial cells secrete exosome-like vesicles. The aim of this study was to characterise murine intestinal epithelial exosomes and to analyse their capacity to inform the immune system in vivo in mice. METHODS: Epithelial exosomes were obtained from the murine epithelial cell line MODE K incubated in the presence or absence of interferon gamma (IFN-gamma) together with pepsin/trypsin ovalbumin hydrolysate (hOVA) to mimic luminal digestion. Exosomes isolated from MODE K conditioned media (EXO-hOVA and EXO-hOVA-IFN) were characterised by western blot, peptide mapping, and mass spectrometry. They were injected intraperitoneally to C3H/HeN mice to test their immunocompetence. RESULTS: MODE K epithelial exosomes displayed major histocompatibility complex (MHC) class I and class II (upregulated by IFN-gamma) molecules and tetraspan proteins (CD9, CD81, CD82) potentially involved in the binding to target cells. A33 antigen, an Ig-like molecule highly specific for intestinal epithelial cells, was enriched in exosomes and was also found in mice mesenteric lymph nodes, suggesting exosome migration towards the gut associated lymphoid tissues. Intraperitoneal injection of EXO-hOVA or EXO-hOVA-IFN did not induce humoral or cellular tolerance to OVA in mice. In contrast, exosomes obtained after incubation with IFN-gamma (EXO-hOVA-IFN), bearing abundant MHC class II/OVA complexes, induced a specific humoral immune response. CONCLUSIONS: Epithelial exosomes are antigen presenting vesicles bearing MHC class II/peptide complexes that prime for an immunogenic rather than tolerogenic response in the context of a systemic challenge. In the intestine, both the mucosal microenvironment and local effector cells are probably key players in determining the outcome of the immune response to exosome derived epitopes.

Animals↗

Effects of endotoxemia and sepsis on bilirubin oxidation by rat brain mitochondrial membranes.

Sepsis is believed to increase the risk of bilirubin brain toxicity, but the mechanism is not known. Adult male Sprague-Dawley rats were injected intraperitoneally with either 20 mg/kg Escherichia coli lipopolysaccharide, approximately 5 x 10(9)/kg CFU Listeria monocytogenes or vehicle 48 h prior to sacrifice. Rats were killed with an intraperitoneal injection of pentobarbital. Mitochondrial membrane fractions were produced by homogenization of the brains and differential centrifugation in 0.32 M sucrose. The mitochondrial pellet was resuspended in distilled water and sonicated to rupture the mitochondria. The protein concentration of the suspension was standardized to 2.5 mg/ml. Bilirubin oxidation was assayed in a pH 8.2, 0.1 M barbital buffer containing 10 microM bilirubin, 5 mM EDTA, and 500 U/ml catalase. Optical density was measured at 440 nm before and after a 60-min incubation at 37.5 degrees C. There were no differences between the control, endotoxemic, and septic groups as far as the ability of brain mitochondrial membranes to oxidize bilirubin (bilirubin oxidation rate: 289 +/- 11 vs. 295 +/- 9 vs. 296 +/- 12 pmol/min/mg protein, mean +/- SD). We conclude that endotoxemia or sepsis do not change the ability of brain mitochondrial membranes to oxidize bilirubin. If sepsis truly increases the risk of bilirubin encephalopathy in neonatal jaundice, this is likely to involve other mechanisms.

Animals↗

Lateralization and catecholaminergic neuroimmunomodulation: prazosin, an alpha1/alpha2-adrenergic receptor antagonist, suppresses interleukin-1 and increases interleukin-10 production induced by lipopolysaccharides.

OBJECTIVE: The brain has previously been shown to asymmetrically modulate neurochemical, neuroendocrine and immune responses to lipopolysaccharides (LPS). As these responses are reversed by a chemical sympathectomy, it can be hypothesized that the asymmetry in the functioning of the sympathetic nervous system may be one of the mechanisms by which the brain hemispheres asymmetrically modulate immune reactivity. METHODS: The effects of prazosin, an alpha1/alpha2-adrenergic receptor antagonist, on the production of interleukin (IL)-1beta and IL-10 induced by LPS was studied in mice selected for their paw preference. RESULTS: Two hours after intraperitoneal injection of 5 microg of LPS, plasma levels of IL-1beta were higher in right-pawed mice as compared to left-pawed or ambidextrous animals. No lateralization effect was observed for LPS-induced plasma IL-10 levels. Prazosin, 10 mg/kg, injected intraperitoneally half an hour before LPS, reduced plasma levels of IL-1beta and abolished the effect of lateralization. By contrast, prazosin drastically increased plasma levels of IL-10 in response to LPS and the production of corticosterone in untreated controls. CONCLUSIONS: These results suggest that the catecholaminergic modulation of immune reactivity depends on lateralization. This work further demonstrates that prazosin is endowed with anti-inflammatory properties that may be considered side effects of this drug, which is widely prescribed in the treatment of hypertension.

Adrenergic alpha-Antagonists↗

Feasibility of retroviral vector-mediated in utero gene transfer to the fetal rabbit.

OBJECTIVES: Successful treatment or prevention of severe hereditary diseases could conceivably be achieved by genetic intervention early in development. Viral vector-mediated fetal gene transfer is proving a valuable tool to test the above concept in relevant animal models. Although the pregnant rabbit is a well-recognized model for fetal therapy, few preclinical assays have used it to validate fetal gene transfer approaches. In this preliminary study we assessed for the first time the feasibility of retroviral vector-mediated in utero gene transfer in the fetal rabbit. METHODS: Different amounts of the vesicular stomatitis virus G pseudotyped MFG(nls)LacZ retroviral vector, expressing a nuclear-localized beta-galactosidase reporter protein were injected intraperitoneally and -hepatically into 20- to 22-day-old fetuses. At 8-9 days post-treatment, the pups were sacrificed and the tissues harvested for analysis. Evidence of gene transfer was obtained by PCR amplification of proviral sequences within genomic DNA isolated from the treated samples. Transgenic beta-galactosidase expression was assessed by X-gal histochemical staining. RESULTS: By intraperitoneal injection 43% of the viable fetuses treated (3/7) showed evidence of successful LacZ gene transfer and low-level beta-galactosidase expression into liver and heart, whereas by intrahepatic injection roughly 38% (3/8) of the livers were positive for LacZ gene transfer and expression. The success rate for the viable fetuses rose to 67% positive livers (4/6) when a near double amount of recombinant virus was injected using a 10-fold concentrated virus stock. In terms of short-term safety, fetal and maternal survival rates approached 80% of treated fetuses, and 100% of treated does. CONCLUSIONS: The pregnant rabbit is a useful and reliable model allowing the design of further studies to optimize the conditions for effective, safer, and persistent retroviral vector-mediated fetal gene transfer.

Animals↗