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Inconsistent susceptibility to autoimmunity in inbred LEW rats is due to genetic crossbreeding involving segregation of the arthritis-regulating gene Ncf1.

We recently identified a single-nucleotide polymorphism in the Ncf1 gene, a component of the NADPH oxidase complex, to be the cause of one of the strongest identified loci for arthritis severity in rats. This polymorphism was found to be naturally occurring in a collection of inbred rat strains as well as in wild rats. Among the inbred strains we found that different LEW substrains (LEW/Ztm and LEW/Mol), originating from different breeders, showed an allelic discrepancy in Ncf1, suggesting an impact on arthritis susceptibility between these substrains. In fact, the LEW/Mol strain was completely resistant to pristane-induced arthritis, in contrast to the LEW/Ztm strain, which was susceptible. Moreover, the LEW/Mol strain had higher production of radical oxygen species in peripheral blood leukocytes, a phenomenon most likely regulated by the polymorphisms in the Ncf1 gene. However, the phenotypic difference between LEW/Mol and LEW/Ztm is most likely a combination of several genes, of which Ncf1 is suggested to be the major regulating gene. This has also been confirmed by previous linkage analyses involving the LEW/Ztm strain which shows that a QTL on chromosome 12, most likely caused by polymorphism of Ncf1, is the major regulatory gene but that other loci are contributing. That more genes are likely to contribute was shown by a complete genome comparison of the LEW/Ztm and the LEW/Mol rat strains that uncovered an introduction of approximately 37% non-LEW genome into the LEW/Mol strain, which probably was caused by past crossbreeding. Therefore, the LEW/Mol should be regarded as a recombinant inbred strain.

Animals↗

Induction of immunity and oral tolerance with polymorphic class II major histocompatibility complex allopeptides in the rat.

We studied the immunogenicity and tolerogenicity of class II major histocompatibility complex (MHC) allopeptides in the rat. Inbred LEW (RT1l) rats, used as responders, were immunized in the foot pad with a mixture of eight synthetic class II MHC allopeptides emulsified in complete Freund's adjuvant. These sequences represent the full-length second domain of RT1.Bu and RT1.Du (WF) beta chains. In vitro, responder lymphocytes harvested from popliteal and inguinal lymph nodes of immunized animals exhibited significant proliferation to the MHC allopeptide mixture. In addition, these responder lymphocytes had significantly increased proliferation to allogeneic WF (RT1u) stimulator cells, when compared to naive controls in the standard one-way mixed lymphocyte response. In vivo, peptide-immunized LEW animals were challenged in the ear 2 weeks after immunization with the allopeptide mixture, the individual allopeptide sequences, or allogeneic WF splenocytes. When compared to controls, these animals had significant delayed-type hypersensitivity responses to the allopeptide mixture, to the beta-pleated sheet allopeptide sequences, and to allogeneic WF splenocytes but not to the alpha-helix allopeptide sequences, to syngeneic LEW splenocytes, or to third party allogeneic BN splenocytes. Oral administration of the allopeptide mixture to LEW responder rats daily for 5 days before immunization effected significant reduction of delayed-type hypersensitivity responses both to the allopeptide mixture and to allogeneic splenocytes. This reduction was antigen-specific, since there was no reduction of delayed-type hypersensitivity responses to mycobacterium tuberculosis. These data demonstrate that lymphocytes from animals immunized with polymorphic class II MHC allopeptides can recognize and proliferate to the same amino acid sequences on allogeneic cell surface MHC molecules. In addition, oral administration of these peptides down-regulates the systemic cell-mediated immune response in a specific fashion. Synthetic MHC allopeptides should allow the study of alloimmunity in vivo, including induction of immune tolerance.

Amino Acid Sequence↗

Bone marrow transplantation following total lymphoid irradiation. I. Correlation with field size and suppressor cell induction.

Total lymphoid irradiation (TLI) induces a unique state of immunosuppression. Although permanent bone marrow chimerism has been obtained in rodents prepared by TLI, uniform marrow engraftment has been more difficult to obtain in larger mammals. Accordingly, studies were performed to assess the immunologic perturbations induced by TLI in inbred LEW rats, and to explore the effect of altering field size of irradiation on the induction of suppressor cells and the success of allogeneic bone marrow transplantation. Additional abdominal shielding to protect a single kidney (right) from irradiation during TLI presented successful of bone marrow engraftment (WF leads to LEW, N = 5) but chimerism was uniformly obtained (N = 3) using the full irradiation field (P less than .05) Lymphopenia and a relative monocytosis were noted in all rats subjected to TLI. Although TLI using the full irradiation field eliminated alloreactivity of nylon-wool-purified spleen cells, significant, if reduced, alloreactivity was noted in rats subjected to TLI using smaller irradiation fields. Irradiated (1500 rads) nylon-wool-purified splenic T cells of rats subjected to TLI using the full field effected significantly greater suppression (P less than .001) of a normal mixed lymphocyte culture than did cells from rats subjected to TLI with right kidney shields in place (relative response reduced to 15.2 +/- 5.7% versus 64.3 +/- 11.7%). Success of bone marrow engraftment in rats prepared by TLI was correlated, therefore, with the induction of a profound lymphopenia, elimination of alloreactivity, and the development of a potent splenic suppressor system.

Animals↗

Immune reactivity and immunosuppressive intervention (TLI) in experimental nephritis. I. Immunopathologic correlates in the accelerated autologous form of nephrotoxic serum nephritis.

The progression of histologic changes observed in the accelerated autologous form of nephrotoxic serum nephritis (AA-NTSN) in the inbred LEW rat, ranging from minimal endocapillary proliferation to marked endo- and extra-capillary proliferation together with fibrin deposition and necrosis of glomerular tufts, was closely correlated (day 8) with parallel measures of albuminuria (1.6 leads to 280 mg/24 hr). In the induction phase of AA-NTSN (day 0) a direct linear correlation (r = 0.72, p less than 0.05) was obtained between anti-SGG antibody levels and 24-hr urine albumin excretion. Subsequent observations (day 7) yield an inverse correlation between anti-SGG antibody and albuminuria (r = -0.54, p less than 0.01), and this change was shown to be related to the loss of specific antibody in the urine (r = 0.59, p less than 0.025). Although splenic T cells of rats with AA-NTSN manifest a specific proliferative response to the inducing antigen SGG, and although the magnitude of this proliferative response (day 7) correlates directly with parallel measures of urine albumin excretion (r = 0.71, p less than 0.02), delayed-type hypersensitivity (DTH) to SGG measured by radiometric ear assay was inversely correlated with albuminuria in this model of experimental nephritis (r = 0.80, p less than 0.01). Additional data are presented that strongly suggest that persistent albuminuria at 1 mo after induction of AA-NTSN is independent of ongoing immunopathologic processes. Thus, glomerular injury in AA-NTSN, previously linked to prominent glomerular macrophage accumulation, is shown to be primarily dependent on a brisk antibody response to the planted heterologous (sheep) immunoglobulin, whereas cellular immunity, readily demonstrated in the splenic T cell compartment, is likely to be of lesser import in the pathogenesis of this lesion in the intact animal.

Albuminuria↗

[Characterization of inbred strains of rats by microsatellite analysis].

Microsatellite analysis was applied to identify the inbred rat strains LEW, SHR and WKY. Of a set of seven commercially available primer pairs three pairs were used individually and two times two in duplex polymerase chain reactions (PCR). The products were analyzed in ethidium bromide stained agarose gels. The resulting banding patterns clearly demonstrated the homogeneity within strains and the differences between strains.

Animals↗

The origin of the autoimmune disease-resistant LER rat: an outcross between the buffalo and autoimmune disease-prone Lewis inbred rat strains.

The Lewis (LEW) rat strain is highly susceptible to a large number of experimentally induced inflammatory and autoimmune diseases. The Lewis resistant (LER) rat strain, which reportedly arose as a spontaneous mutation in a closed colony of LEW rats, is resistant to many of these disorders. The mechanism of resistance is not yet clear. We report the analysis of 19 simple dinucleotide repeat polymorphisms in 13 rat strains including the LEW/N and LER/N rat strains. The LEW/N and LER/N alleles were the same in only 42% of cases. For all of the other polymorphisms, the LER/N and Buffalo (BUF/N) rat strain alleles were identical. These data provide evidence that the LER strain did not arise as a spontaneous mutation in the LEW strain but is the result of an outcross between the LEW and BUF rat strains. The LER rat strain is now a recombinant inbred rat strain. This information should facilitate the genetic analysis of the loci responsible for resistance to experimental autoimmune disease in the LER rat.

Alleles↗

Effect of BCG on alloimmune cell-mediated cytotoxicity in (C57BL/6Jfemale x A/Jmale)F1 mice. II. Correlation with BCG activity in syngeneic tumor systems.

The effectiveness of selected BCG regimens to produce an activation of cell-mediated cytotoxicity (CMC) in an allogeneic tumor system was compared with its ability to cause tumor regression in syngeneic tumor systems. In the tumor system selected in both inbred LEW rats and inbred C57BL/6J and (C57BL/6Jfemale x A/Jmale)F1 mice, a correlation was observed in that BCG treatments that caused marked CMC activation in the allogeneic tumor systems also effectively caused tumor regression and increased animal survival in syngeneic systems. It was concluded that the allogeneic CMC reaction can be used to predict the capacity of BCG to cause tumor rejection.

Animals↗

Vein to artery allografts: experimental evidence of immunological sensitivity in rats.

Vein allografts were studied in rats using the major histocompatibility complex-incompatible DA (RTIa) and LEW (RTI1) inbred strains. Allografts from DA rats were inserted in to 22 LEW hosts, and vice versa, by interposing a 5 mm segment of donor iliolumbar vein into a defect in the host's iliac artery (1 mm in diameter), using microsurgical techniques. Grafts were left in situ for 6 weeks and were then tested for evidence of sensitization by the insertion of an allogeneic fetal heart from the donor strain into the host's foot pad. The fetal heart beat was recorded with an ECG and the time of rejection determined by the cessation of ECG activity. As controls, allogeneic donor fetal hearts were implanted into 40 host rates (20 of each strain) which had not previously received a donor vein allograft. These were monitored by ECG, as above. Control LEW host rats rejected DA fetal hearts in a mean time of 8.45 days. Control DA hosts rejected LEW fetal hearts in 8.70 days. DA hosts with LEW vein allografts did not reject donor fetal hearts significantly sooner (mean 8.33 days) than the controls. However, LEW host rats with allografted DA veins rejected subsequent DA fetal hearts in 7.18 days, which was significantly sooner than in controls (8.45 days). These data provide evidence of sensitization of the rejection response by vein allografts.

Animals↗

Evaluation of two genetic animal models in behavioral tests of anxiety and depression.

Anxiety- and depression-related disorders often appear associated and may be affected by common genetic factors. The inbred rat strains Lewis (LEW) and spontaneously hypertensive rats (SHR) and the outbred rat lines Floripa H and L, which were selectively bred for high and low locomotion in the central area of the open field (OF) test, respectively, have been proposed as experimental tools to study anxiety. The main goal of the present study was to characterize the behavior of these animals in two models of anxiety, elevated plus-maze (EPM) and OF, in two models of depression, forced swim test (FST) and tail suspension test (TST) and in their home-cages. Emotionality-related differences between LEW and SHR rats and between Floripa H and L rats were found in the EPM, OF and FST. Those lines showing low anxiety-like profiles in the EPM and OF (SHR and Floripa H) also showed low immobility in the FST. The TST failed to unveil any line differences. Factor analysis involving all tests revealed three independent factors with one of them associating anxiety-related measures from the OF and EPM to immobility in the FST. When observed in their home-cages, LEW and SHR rats showed no differences in general activity, but when acutely treated with imipramine (15mg/kg), only LEW rats were sensitive to its antidepressant effects. These results suggest the existence of a genetic link between two tests used in the screening of anxiolytic drugs and one test of antidepressant activity. Moreover, the LEW and SHR rat strains were shown to be an interesting model to study the comorbidity between anxiety- and depression-related disorders.

Animals↗

Morphological reaction in transplanted small intestines using immunogenetically defined rat strain combinations.

From the inbred rat stains F344, LEW and Brown-Norway (BN), the following combinations were formed: syngeneic (LEW--LEW), weakly allogeneic (F344--LEW) and strongly allogeneic (BN--LEW). A small intestine segment was transplanted using the by-pass technique; after 10 days the graft was removed and histologically investigated. The strongest rejection was found in the lymphatic tissue and the epithelium of the small intestinal transplant. The immunogenetical difference is significant for the survival of the graft: the greater the immunogenetical difference between donor and host, the more severe the morphologically demonstrable rejection reaction.

Animals↗

Evidence for a female-specific effect of a chromosome 4 locus on anxiety-related behaviors and ethanol drinking in rats.

Previous studies using the inbred rat strains Lewis (LEW) and spontaneously hypertensive rats (SHR) led to the mapping of two quantitative trait loci, named Ofil1 (on chromosome 4 of the rat) and Ofil2 (on chromosome 7), for open-field inner locomotion, a behavioral index of anxiety. Studies using other strains showed that the region next to Ofil1 influences measures of not only anxiety but also ethanol consumption. In view of the high prevalence of psychiatric disorders such as anxiety and alcoholism, as well as the comorbidity between them, the present study was designed to better characterize the contribution of these two loci to complex emotional and consummatory responses. Rats deriving from an F2 intercross between the LEW and the SHR strains were selected according to their genotype at markers flanking the loci Ofil1 and Ofil2 and bred to obtain lines of rats homozygous LEW/LEW or SHR/SHR for each of the two loci, thus generating four genotypic combinations. These selected animals as well as purebred LEW and SHR rats of both sexes were submitted to a battery of tests including measures of locomotor activity, anxiety, sweet and bitter taste reinforcement and ethanol intake. Lewis rats displayed more anxiety-like behavior and less ethanol intake than SHR rats. Ofil1 (on chromosome 4) affected both the activity in the center of the open field and ethanol drinking in females only. These results suggest that Ofil1 contains either linked genes with independent influences on anxiety-related responses and ethanol drinking or a pleiotropic gene with simultaneous effects on both traits.

Alcohol Drinking↗

Common variations in the pretest environment influence genotypic comparisons in models of anxiety.

The behavioral characterization of rodent strains in different studies and laboratories can provide unreplicable results even when genotypes are kept constant and environmental control is maximized. In the present study, the influence of common laboratory environmental variables and their interaction with genotype on the results of behavioral tests of anxiety/emotionality were investigated. To this end, the inbred rat strains Lewis (LEW) and spontaneously hypertensive rats (SHR), which are known to differ for numerous emotionality-related behaviors, were tested in the open field (OF), elevated plus maze (EPM) and black/white box (BWB), while three environmental factors were systematically controlled and analyzed: (1) the experimenter handling the animal (familiar or unfamiliar); (2) the position of the home cage (top or bottom shelf of the rack) and (3) the behavioral state of the animal immediately before the test (arousal or rest). Experimenter familiarity did not alter the behavior of rats in the OF. Cage position, on the other hand, influenced the behavior in the OF and BWB, with rats housed in top cages appearing less anxious than those housed in the bottom. In the BWB (but not in the OF), these effects were genotype dependent. Finally, the behavioral state of the animals prior to testing altered the results of the EPM in a strain-dependent manner, with some anxiety-related genotypic differences being found only among rats that were aroused in their home cages. This study showed that common variations in the laboratory environment interact with genotype in behavioral tests of anxiety/emotionality. Recognizing and understanding such variations can help in the design of more effective experiments.

Analysis of Variance↗

Preferential synthesis of IgE reaginic antibodies in rats immunized with alum-adsorbed antigens.

The reaginic antibody response to alum-precipitated ovalbumin (OA) and the dialyzed water-soluble extracts of ragweed (DWSR) and Alternaria tenuis (DWST) in several strains of rats appeared to be wholly an IgE response. There was no evidence of a heat-stable (IgGa) antibody to OA, DWSR and DWST in the sera of the rats immunized with these antigens suspended in alum. Wistar-Furth and Lew inbred and hooded outbred rats produced comparable amounts of reaginic antibody after immunization with DWST, but BN inbred rats failed to generate a reaginic response to this antigen. The amount of antigen-induced histamine release from rat peritoneal mast cells did not always correlate with the level of circulating IgE-specific antibody.

Adsorption↗

A novel black-hooded mutant rat (ci3) with spontaneous circling behavior but normal auditory and vestibular functions.

Abnormal circling behavior in rodents is usually attributed to vestibular dysfunction. In rats, all circling mutants described previously have inner ear defects resulting in auditory and vestibular dysfunctions. Here, we describe a new mutant rat with abnormal spontaneous circling behavior but normal auditory and vestibular functions. The new circling mutant rat was discovered in progeny of an apparently normal black-hooded (BH) rat inbred line [BH.7A(LEW)/Won] and was termed ci3, because we recently found two other mutant circling rats (ci1 and ci2) in a Lewis (LEW) inbred rat strain. The ci3 mutant is characterized by circling behavior and locomotor hyperactivity, which occur in phases or bursts either spontaneously or in response to stress, e.g., when rats are transferred to a new environment. Video monitoring of undisturbed rats in their home cage during the light and dark periods showed that circling behavior is much more intense during the dark period, i.e., during the active phase of the animals. Most ci3 rats show a lateral preference in their rotational behavior, i.e., they either rotate to the left or to the right. Brainstem auditory evoked potential testing and different tests of vestibular function did not disclose any auditory or marked vestibular defects in ci3 rats. Furthermore, no morphological abnormalities were seen during histological examination of the cochlear and vestibular nuclei in the brainstem. Neurochemical determination of dopamine and dopamine metabolite levels in striatum, nucleus accumbens and substantia nigra showed that ci3 rats have a significant asymmetry in striatal dopamine in that dopamine levels were significantly lower in the hemisphere contralateral to the preferred direction of turning. Consistent with this finding, immunohistological examination of dopaminergic neurons in substantia nigra and ventral tegmental area yielded a significant laterality in the medial part of substantia nigra pars compacta with a lower density of tyrosine hydroxylase-positive neurons in the contralateral hemisphere of mutant circling rats, while no laterality was seen in unaffected rats of the background strain [BH.7A(LEW)/Won].Thus, the novel mutant ci3 rat exhibits several features which clearly differ from previously described circling rat or mouse mutants. The behavioral phenotype occurs in the absence of auditory or obvious vestibular defects and is most likely a consequence of lateralized abnormalities found in the nigrostriatal circuit. Apart from the use of ci3 rats for studying the functional lateralization of brain functions, the ci3 mutant may serve as a new model for movement disorders with abnormal lateralization.

Animals↗

Evidence for polymorphism of alloantigenic transplantation products of the histocompatibility locus (H-4) in linkage group I of Rattus norvegicus.

An alloantigenic transplantation system linked to the gene for albinism in linkage group I of Rattus norvegicus has been identified in the congenic pair LEW--LEW.C-4A and designated H-4. Alloantigenic transplantation products of the H-4 system are relatively "weak" because the majority of skin grafts exchanged between animals of the congenic pair (LEW--LEW.C-4A) survive permanently without previous sensitization of the recipients. Presensitization of the congenic recipients with lymphoid cells results in a marked increase in the incidence and acceleration of graft rejection. The testing of F1 hybrids of the eight inbred rat strains with strains LEW and LEW.C-4A by skin or tumour transplantation shows that alleles other than H-4a or H-41 are present in three strains, thereby demonstrating polymorphism of the H-4 system with the existence of minimally three alleles.

Alleles↗

Strain and sex differences in the expression of nociceptive behavior and stress-induced analgesia in rats.

Evidence indicates that genetic, gender, and emotional/attentional aspects modulate the pain sensation. The present study examined the effect of swim-stress on nociceptive responses in Lewis (LEW) and spontaneously hypertensive (SHR) inbred rats (contrasting for anxiety-related behaviors), as well as in Wistar (WIS) rats of both sexes. Furthermore, we explored possible neurochemical mechanisms involved. In addition, we investigated whether habituation in the hot-plate apparatus could modify the hypoalgesic phenotype of SHR. Male and female LEW, SHR, and WIS rats were tested immediately before and 2 min after a 3-min swim in 15 degrees C water. The swim-stress induced analgesia in LEW and WIS, but not in SHR male rats. The same stressor induced analgesia in females of all three strains. In WIS female rats, the stress-induced analgesia (SIA) seems to involve, at least partially, a nonopioid N-methyl-d-aspartate (NMDA) analgesic system. Moreover, five brief exposures (90 s; 10-min intertrial interval) to the unheated hot-plate apparatus completely abolished the differences in basal hot-plate latencies observed in SHR compared with LEW and WIS strains. The present results demonstrate genetic and gender differences in nociceptive sensitivity and in the activation of endogenous analgesic systems in rats and highlight the influence of emotional reactivity. The SHR's hypoalgesic phenotype seems to involve central cognitive processes. Therefore, the LEW and SHR inbred strains may provide an important tool for study of the molecular bases underlying nociception and its modulation and the relationship with emotional/attentional processes.

Analgesia↗

Lymphocyte nuclear refringence in two inbred strains of rat. Modifications of NRT during adjuvant arthritis.

Nuclear refringence test (NRT) was studied in two inbred strains of rats: Lewis (LEW) and Wistar AG (WAG), the first develops a severe arthritis while the later only slight inflammation. Before adjuvant injection, a good NRT to ConA, PHA and Isoprinosine was observed in LEW but a poor one in WAG. After adjuvant injection a striking difference appears between the two strains concerning ConA response: in LEW the response is significantly lower on day 14, while in WAG the initial poor response is not modified. These data suggest that in WAG the suppressor T lymphocytes are already activated in vivo and are no longer responsive in vitro. The responses to PHA and Isoprinosine are parallel in both strains, the NRT response diminishes on day 14 in LEW and on day 21 in WAG.

Animals↗

[Immunologic mechanism following liver transplantation. An experimental study in the rat].

To investigate the immunological status of hepatic grafts we transplanted livers from different inbred rats orthotopically on 58 LEW rats; rearterialization of the grafts was achieved with an hepatico aortal segment of the donor. Survival time depended on the donor strain; LBNF1-allografts survived in 67% (n = 12), WiS- in 60% (n = 20) and BUF- in 43% (n = 14) indefinitely. In the DA-to-LEW-combination we found no long-term survivor. Liver perfusates (LP) were prepared from 10 BDE and 10 LEW; after keeping the livers for 6 h at room temperature we perfused via portal vein with 2 ml/g Ringer's solution five times. The treatment of BDE-kidney recipients (LEW) with LP showed prolonged survival; at 5 days application 10.2 +/- 1.3 d (control: 6.5 +/- 0.5 d; P less than 0.001), at 10 days treatment 15.3 +/- 7.3 d. In vitro LP inhibited the PHA-stimulation of LEW lymphoid cells in more than 90% and the ConA-stimulation of LEW spleen cells in more than 95%. In MLC LP showed strong inhibitory effect (inhibition rate greater than 97%) even when different combinations of responding and stimulating cells were used. We assume that an unspecific immunosuppressive hepatic factor is released from ischemic damaged liver grafts which is able to prevent rejection in the induction phase. In WiS-liver recipients surviving for more than 4 months GvHR was tested after splenectomy with spleen cells. All tests showed a grade III reaction. Donor-specific skin grafts which were transplanted on these recipients survived indefinitely while third party skin grafts were regularly rejected (7.6 +/- 0.5 d). We therefore can conclude that the cellular immunosurveillance is intact, but the immunological response against donor-specific antigens is reduced. With transfer of serum from long-term-surviving WiS-liver recipients (greater than 6 months) WiS-kidney grafted LEW were able to survive also prolonged (20.7 +/- 3.4 d, control 6.2 +/- 1.0 d; P less than 0.001). Lymphoid cell transfer (1 X 10(8)) did did not result in significant prolongation of survival time (8.0 +/- 2.0 d). These observations suggest that in the steady phase specific humoral transfer factors are responsible for prolonged survival of hepatic grafts.

Animals↗