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L D Shultz

Publications and source records attributed to L D Shultz.

At least 109 records · Page 6Linked to original sources

Multiple defects in innate and adaptive immunologic function in NOD/LtSz-scid mice.

The scid mutation was backcrossed ten generations onto the NOD/Lt strain background, resulting in an immunodeficient stock (NOD/LtSz-scid/scid) with multiple defects in adaptive as well as nonadaptive immunologic function. NOD/LtSz-scid/scid mice lack functional lymphoid cells and show little or no serum Ig with age. Although NOD/(Lt-)+/+ mice develop T cell-mediated autoimmune, insulin-dependent diabetes mellitus, NOD/LtSz-scid/scid mice are both insulitis- and diabetes-free throughout life. However, because of a high incidence of thymic lymphomas, the mean lifespan of this congenic stock is only 8.5 mo under specific pathogen-free conditions. After i.v. injection of human CEM T-lymphoblastoid cells, splenic engraftment of these cells was fourfold greater in NOD/LtSz-scid/scid mice than in C.B17/Sz-scid/scid mice. Although C.B-17Sz-scid/scid mice exhibit robust NK cell activity, this activity is markedly reduced in both NOD/(Lt-)+/+ and NOD/LtSz-scid/scid mice. Presence of a functionally less mature macrophage population in NOD/LtSz-scid/scid vs C.B-17Sz-scid/scid mice is indicated by persistence in the former of the NOD/Lt strain-specific defect in LPS-stimulated IL-1 secretion by marrow-derived macrophages. Although C.B-17Sz-scid/scid and C57BL/6Sz-scid/scid mice have elevated serum hemolytic complement activity compared with their respective +/+ controls, both NOD/(LtSz-)+/+ and NOD/LtSz-scid/scid mice lack this activity. Age-dependent increases in serum Ig levels (> 1 micrograms/ml) were observed in only 2 of 30 NOD/LtSz-scid/scid mice vs 21 of 29 C.B-17/Sz-scid/scid animals. The multiple defects in innate and adaptive immunity unique to the NOD/LtSz-scid/scid mouse provide an excellent in vivo environment for reconstitution with human hematopoietic cells.

Agammaglobulinemia↗

Thymic epithelial cell abnormalities in (NZB x H-2u)F1 mice.

Thymic maturation processes including MHC restriction and self-recognition require intimate association of thymocytes and stromal cells. Compared to the thymic architecture of various "normal" control strains of mice, defects in the thymic microenvironment have been demonstrated in New Zealand black (NZB) mice. Moreover, it is well known that NZB(H-dd) mice, when crossed with NZW(H-2u) mice, (NZB x NZW)F1, display a unique spectrum of autoimmune disease manifestations, including murine SLE. Using an extensive panel of monoclonal antibodies that define the thymic microenvironment, we examined two additional strains of (NZB x H-2u)F1 mice: (NZB x C57BL/10.PL)F1 and (NZB x PL/J)F1 mice to investigate the contributions of the H-2 and non-H-2 loci to the thymic abnormalities previously documented to occur in murine lupus. NZB, NZW, and (NZB x NZW)F1 mice were studied concurrently as were two additional control strains C57BL/6 and C57BL/10Sn. NZW mice had a normal thymic architecture as did the other H-2u mice and the control strains. In contrast, (NZB x NZW)F1 mice had a significantly altered thymic microenvironment; mild thymic abnormalities were also found in (NZB x PL/J)F1 but not in (NZB x C57BL/10.PL)F1. As expected, (NZB x NZW)F1 mice developed elevated titers of autoantibodies to DNA, proteinuria, and decreased life span. Interestingly, only (NZB x PL/J)F1 mice had increased levels of IgM antibodies to dsDNA, but did not manifest IgG anti-DNA or reduced survival. Defects in thymic stromal cells are associated directly to autoimmunity and their origin appears to be determined by non-H-2 loci.

Animals↗

In the absence of a CD40 signal, B cells are tolerogenic.

When B cells are deprived of signaling through CD40, they exhibit the ability to induce T cell tolerance. The in vivo administration of anti-gp39 and allogeneic B cells diminished the ability of mice to mount an allogeneic response. Tolerance induction was specific for the haplotype expressed on the allogeneic B cells. Selective allospecific unresponsiveness was induced in the CD8 and CD4 compartments by the administration of anti-gp39 and class II-deficient B cells or class I-deficient B cells, respectively. As predicted by studies with anti-gp39 treatment, diminished allospecific responsiveness was induced by the administration of B cells to mice genetically deficient in gp39. Taken together, these data are consistent with the premise that deprivation of CD40 signaling engenders B cells with enhanced tolerogenicity. These studies provide insights into the tolerogenic capacity of resting B cells and outlines a practical approach to exploit this function.

Animals↗

Engraftment of immune-deficient mice with primitive hematopoietic cells from beta-thalassemia and sickle cell anemia patients: implications for evaluating human gene therapy protocols.

Permanent correction of genetic deficiencies of the hematopoietic system requires gene transfer into stem cells and long-term lineage specific expression after autologous transplantation. However, progress to develop gene therapy protocols has been hampered by the absence of in vivo assays that detect genetically deficient human hematopoietic stem cells and their diseased differentiated progeny. The establishment of systems to transplant human cells into immune-deficient SCID mice provides such an assay. We report that primitive bone marrow cells from beta-thalassemia major and sickle cell anemia patients engraft immune-deficient mice, giving rise to high levels of human erythroid and myeloid cells in response to treatment with human cytokines. The bone marrow of transplanted mice contained the entire erythroid lineage from BFU-E to mature erythrocytes expressing human gamma, beta or beta s-globin. Moreover, human erythroid cells from mice transplanted with sickle cell anemia bone marrow showed characteristic sickling under reducing conditions in an in vitro assay. This model provides a powerful in vivo system that can be used to evaluate the efficiency of globin gene transfer into primitive human hematopoietic cells, lineage-specific expression in mature erythrocytes, and ultimately correction of the cellular defect found in the erythroid lineage.

Anemia, Sickle Cell↗

High levels of human peripheral blood mononuclear cell engraftment and enhanced susceptibility to human immunodeficiency virus type 1 infection in NOD/LtSz-scid/scid mice.

Inbred C.B-17-scid/scid mice accept human peripheral blood mononuclear cell (PBMC) xenografts and are susceptible to human immunodeficiency virus type 1 (HIV-1) infection, but low levels of PBMC engraftment impede use of this system in HIV research. This report describes the effect of host strain background on human PBMC engraftment and HIV infectivity in scid mice. Back-crossing the scid mutation to the NOD/Lt strain (designated NOD/LtSz-scid/scid) increased the percentage of engrafted human PBMC in recipient spleens by 5- to 10-fold compared with that in C.B-17-scid/scid stock. Four weeks after human PBMC-injected mice were infected with HIV-1, 79% of NOD/LtSz-scid/scid spleens harbored replicating virus compared with only 39% of spleens in C.B-17-scid/scid mice. The NOD/LtSz-scid/scid mouse may provide a useful small animal model for studies of HIV-1.

Animals↗

Emv30null NOD-scid mice. An improved host for adoptive transfer of autoimmune diabetes and growth of human lymphohematopoietic cells.

When used as hosts in passive transfer experiments, a stock of NOD/Lt mice congenic for the severe combined immunodeficiency (scid) mutation have provided great insight to the contributions of various T-cell populations in the pathogenesis of autoimmune insulin-dependent diabetes mellitus (IDDM). Moreover, NOD-scid mice support higher levels of human lymphohematopoietic cell growth than the C.B-17-scid strain in which the mutation originated. However, the ability to perform long-term lymphohematopoietic repopulation studies in the NOD-scid stock has been limited by the fact that most of these mice develop lethal thymic lymphomas beginning at 20 weeks of age. These thymic lymphomas are characterized by activation and subsequent genomic reintegrations of Emv30, an endogenous murine ecotropic retrovirus unique to the NOD genome. To test the role of this endogenous retrovirus in thymomagenesis, we produced a stock of Emv30null NOD-scid mice by congenic replacement of the proximal end of chromosome 11 with genetic material derived from the closely related NOR/Lt strain. Thymic lymphomas still initiate in Emv30null NOD-scid females, but their rate of progression is significantly retarded since the frequency of tumors weighing between 170 and 910 mg at 25 weeks of age was reduced to 20.8% vs. 76.2% in Emv30% segregants. The thymic lymphomas that did develop in Emv30null NOD-scid mice were not characterized by a compensatory increase in mink cell focus-forming proviral integrations, which initiate thymomagenesis in other susceptible mouse strains. Significantly, the ability of standard NOD T-cells to transfer IDDM to the Emv30null NOD-scid stock was not impaired.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Islet-infiltrating lymphocytes from prediabetic NOD mice rapidly transfer diabetes to NOD-scid/scid mice.

In an effort to study the development of diabetes in NOD mice, our laboratory developed a novel adoptive transfer model using NOD-scid/scid (NOD-scid) mice as recipients of islet-infiltrating lymphocytes from donor prediabetic female NOD mice. We first confirmed previous results that demonstrated that splenocytes of diabetic and prediabetic female NOD mice could transfer diabetes to NOD-scid mice. We demonstrated that the kinetics of disease transfer were dependent on the age of transferred lymphocytes and reiterated the kinetics of diabetes in conventional female NOD mice. We then demonstrated that islet-infiltrating lymphocytes from prediabetic female NOD mice could transfer diabetes. In contrast with the age-dependent transfer of diabetes seen using splenocytes, islet-infiltrating lymphocytes obtained from prediabetic female NOD mice aged > or = 40 days rapidly transferred diabetes to NOD-scid recipients. The time required to transfer insulin-dependent diabetes mellitus (IDDM) using islet-infiltrating lymphocytes from young prediabetic mice (25 +/- 9 days) was not statistically different from the time required to transfer IDDM using splenocytes from overtly diabetic mice (32 +/- 5 days). Cotransfer of splenocyte cells or CD4+, but not CD8+ spleen cells, from 60- to 80-day-old prediabetic female NOD mice together with either splenocytes from diabetic mice or islet-infiltrating lymphocytes from prediabetic NOD mice delayed the rapid transfer of IDDM, suggesting that CD4+ cells mediated immunoregulation. Use of the NOD-scid islet-infiltrating lymphocyte-adoptive transfer model should help elucidate the pathophysiology of the early inflammatory events leading to insulitis and subsequent beta-cell destruction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Transgenic mice expressing either bovine growth hormone (bGH) or human GH releasing hormone (hGRH) have increased splenic progenitor cell colony formation and DNA synthesis in vitro and in vivo.

To investigate the potential effects of growth hormone (GH) on the hematopoietic system, mice transgenic for bovine GH (bGH) or human growth hormone releasing hormone (hGRH) genes, each of which can result in the constitutive overproduction of GH, were analyzed for splenic and bone marrow (BM) localized hematopoietic progenitor cells. These transgenic mice had splenic hyperplasia with increased absolute numbers of splenic erythroid and megakaryocytic progenitor cells as assessed by in vitro assay and megakaryocyte development as seen in spleens. As an in vivo indication of multilineage progenitor cell effects in hGRH mice, the number of day-10 CFU-S colonies derived from the donor spleen was significantly higher than in nontransgenic littermate controls. A high proportion (54-71%) of splenic erythroid, granulocyte-macrophage, and megakaryocyte progenitors were in cycle in transgenic mice in contrast to < or = 30% in nontransgenic control littermates. Compared to controls, splenocytes from hGRH mice had a significantly higher proliferative index when infused into irradiated nontransgenic controls. With the exception of the megakaryocyte colony assay and in vivo proliferative index, none of these findings were evident when identical assays were performed on the BM from the same mice. Consistent with the BM data, peripheral blood leukocyte, erythroid, and platelet numbers were comparable in transgenic and nontransgenic control littermates. We conclude that the constitutive expression of bGH or hGRH leads largely to splenic hematopoietic effects involving progenitor cell populations from at least two lineages.

Animals↗

Improved engraftment of human spleen cells in NOD/LtSz-scid/scid mice as compared with C.B-17-scid/scid mice.

T and B lymphocyte-deficient mice homozygous for the severe combined immunodeficiency (SCID) mutation can be immunologically engrafted with human lymphocytes. However, low levels of human peripheral blood mononuclear cell engraftment are commonly observed, impeding full use of this model. We now demonstrate that strain background in mice homozygous for the scid mutation is a strong determinant of levels of human lymphocyte engraftment. NOD/LtSz-scid/scid mice support higher levels of engraftment of both human spleen and peripheral blood mononuclear cells than do C.B-17-scid/scid mice. We observed, using human spleen cell injected scid mice, 1), high levels of engraftment of the host peripheral lymphoid tissues with human CD45+ (leukocytes), CD3+ (T cells), CD4+ (helper/inducer), and CD8+ (suppressor/cytotoxic) lymphoid cells for up to 24 weeks in NOD/LtSz-scid/scid mice; 2), migration of high numbers of human lymphocytes to peripheral lymphoid and nonlymphoid organs in NOD/LtSz-scid/scid, but not in C.B-17-scid/scid mice; 3), higher levels of serum immunoglobulin of human origin in NOD/LtSz-scid/scid mice than in C.B-17-scid/scid mice; 4), histological lesions characteristic of human anti-mouse xenoreactivity in NOD/LtSz-scid/scid mice; and 5), human origin antibodies against filarial antigens after engraftment with native human spleen cells. The use of NOD/LtSz-scid/scid mice as recipients to achieve significantly enhanced human lymphopoietic cell engraftment will now enable human immunity to be more easily studied in animal models.

Animals↗

B lymphocytes are not required for murine resistance to the human filarial parasite, Brugia malayi.

Immunocompetent mice are resistant to the growth and development of human lymphatic filarial parasites, including the aperiodic strain of Brugia malayi. We have recently established that mice homozygous for the severe combined immunodeficiency (scid) mutation, and therefore deficient in both T and B lymphocytes, are permissive for infection. This observation suggests that components of the adaptive (antigen-specific) immune system are obligate requirements for murine resistance to B. malayi. In order to determine more precisely the component of the immune system that mediates murine resistance to B. malayi, we have used mouse strains in which individual genes involved in the maturation of specific components of the immune system have been disrupted by homologous recombination. In previous studies, we demonstrated that mice that lack either major histocompatibility (MHC) class I restricted, CD8+ T lymphocytes (beta 2-microglobulin knockout mice; beta 2M-/-) or CD4+ T lymphocytes (CD4 knockout mice; CD4-/-) are as resistant to B. malayi as intact mice. In the current study, we have used mice in which the membrane exon of the immunoglobulin (Ig) mu (heavy chain) constant region gene segment has been disrupted by homologous recombination. These mice cannot develop mature B lymphocytes and lack serum Ig. We demonstrate that such "B-less" mice are completely resistant to B. malayi. These data, taken in combination with the observation that T-cell-deficient athymic mice homozygous for the nu (nude) mutation are fully permissive for infection, suggest that B lymphocytes and their products are neither required nor sufficient to mediate resistance to B. malayi.

Animals↗

Increased B lymphopoiesis in genetically sex steroid-deficient hypogonadal (hpg) mice.

Interleukin 7 (IL-7) responsive B lineage precursors were greatly expanded in genetically hypogonadal female (HPG/Bm-hpg/hpg) mice that have a secondary deficiency in gonadal steroidogenesis. Estrogen replacement in these mice resulted in a dose-dependent reduction in B cell precursors. More modest increases were documented in genetically normal mice that were surgically castrated. These findings complement other recent observations that B lymphopoiesis selectively declines in pregnant or estrogen-treated animals. Sex steroids have long been known to influence such disparate processes as bone physiology and tumor growth, in addition to their importance for reproductive function. We now show that these hormones are important negative regulators of B lymphopoiesis.

Animals↗

Effects of macrophage colony-stimulating factor (M-CSF) on the development, differentiation, and maturation of marginal metallophilic macrophages and marginal zone macrophages in the spleen of osteopetrosis (op) mutant mice lacking functional M-CSF activity.

Immunohistochemical techniques using an anti-mouse panmacrophage monoclonal antibody and anti-mouse monoclonal antibodies specific for marginal metallophilic macrophages or marginal zone macrophages were used to detect red pulp macrophages, marginal metallophilic macrophages, and marginal zone macrophages in the spleen of op/op mice. In the mutant mice, the red pulp macrophages were reduced to about 60% of those in the normal littermates and the marginal metallophilic macrophages and marginal zone macrophages were absent. After administration of recombinant human macrophage colony-stimulating factor (rhM-CSF), numbers of red pulp macrophages increased rapidly, reaching levels found in normal littermates 1 week later. In contrast, the marginal metallophilic macrophages as well as the marginal zone macrophages appeared slowly after rhM-CSF administration and their numbers were less than half of the baseline level of normal littermates even at 12 weeks of administration. The distribution of marginal metallophilic macrophages and marginal zone macrophages appearing after M-CSF administration was irregular in the spleen of the op/op mice. These splenic macrophage subpopulations differed in their responses to rhM-CSF, suggesting that distinct mechanisms may be involved in their development and differentiation. The splenic red pulp macrophages present in unmanipulated op/op mice are an M-CSF-independent macrophage population. Although the marginal metallophilic macrophages and marginal zone macrophages are thought to be M-CSF-dependent, their development and differentiation appear to be influenced by locally produced M-CSF or other cytokines.

Animals↗

Localization of prothymocytes from wild-type and viable motheaten mice following intravenous injection into irradiated adoptive recipients.

Bone marrow cells from viable motheaten (me(v)) mutant mice fail to repopulate the thymus of irradiated recipients upon i.v. adoptive transfer. This defect can be corrected by the addition of wild-type marrow to the me(v)/me(v) marrow prior to i.v. injection. The present study focused on the nature of this apparent defect in me(v)/me(v) prothymocyte activity. We established an adoptive transfer assay system that facilitated the investigation of the migration patterns of wild-type and me(v)/me(v) marrow prothymocytes in adoptive recipients. Wild-type prothymocytes were found to seed the thymus of recipients as early as 1 day after i.v. injection. This early wave of prothymocyte seeding peaked at 4 days and diminished to undetectable levels at 6 days postinjection. After an interval of no detectable wild-type precursor activity in the thymus of primary recipients, a second wave of activity was observed on Day 15. This second wave resulted in permanent engraftment and persisted throughout the observation period. In contrast, only one initial wave of me(v)/me(v) prothymocyte seeding occurred in the recipient thymus. Detection of mev/mev precursors in the recipient's thymus was dependent upon the coinjection of wild-type marrow cells. These results suggest that me(v)/me(v) prothymocytes initially seed to the thymus of adoptive recipients, but fail to proliferate and/or differentiate due to a defect in marrow-derived intrathymic accessory cell activity.

Animals↗

CD4+ T-lymphocytes are not required for murine resistance to the human filarial parasite, Brugia malayi.

Immunocompetent mice are nonpermissive for the development and maturation of the human filarial parasite, Brugia malayi. We and others have shown that the absence of T-lymphocytes, alone or in combination with B-lymphocytes, renders mice permissive to infection. In a previous study, we showed that mice lacking CD8+ T-lymphocytes are also completely nonpermissive for B. malayi, indicating that CD8+ T-lymphocytes are not an obligate requirement for resistance. In the present study, we have examined the role of CD4+ T-lymphocytes in resistance to filarial infection using two experimental systems. In the first, we used an anti-CD4 monoclonal antibody to deplete CD4+ T-cells in vivo in immunocompetent BALB/c mice. In the second system, we used mutant mice in which the gene encoding the CD4 antigen had been disrupted by homologous recombination, resulting in a lack of CD4+ T-cells. Challenge of either the anti-CD4 antibody depleted BALB/c mice or CD4 knockout mice with B. malayi infective-stage larvae demonstrated that mice lacking CD4+ T-lymphocytes were resistant to infection. These data indicate that CD4+ T-cells are not an obligate requirement for murine resistance to B. malayi.

Animals↗

Maternal influence on susceptibility of offspring to Brugia malayi infection in a murine model of filariasis.

We have used the severe combined immunodeficient C.B-17-scid/scid mouse to investigate the influences of maternal immune status and parasite burden on the susceptibility (or resistance) of offspring to infection with the human filarial parasite, Brugia malayi. C.B-17-scid/scid mice are permissive for infection while immunocompetent C.B-17(-)+/+ mice are uniformly resistant. Reciprocal matings of C.B-17-scid/scid and C.B-17(-)+/+ mice were performed. The C.B-17-scid/scid females were either naive or infected with Brugia malayi. The resulting immunocompetent C.B-17-scid/+ and C.B-17(-)+/scid progeny were challenged at weaning with an intraperitoneal injection of Brugia malayi third stage larvae known to produce patent infection in > 95% of C.B-17-scid/scid mice. We observed that 40.0%l (34/85) of the immunocompetent offspring of C.B-17-scid/scid females x C.B-17(-)+/+ males were permissive for the growth and development of Brugia malayi larvae to adults. No difference was observed in susceptibility to infection between the progeny of infected or uninfected C.B-17-scid/scid mothers mated with C.B-17(-)+/+ fathers, arguing against acquired immunological tolerance to the parasite in the former. In marked contrast, only 4.8% (2/42) of the heterozygous progeny of wild type C.B-17(-)+/+ females mated with C.B-17-scid/scid males were permissive. These observations document conversion of a 'resistant' phenotype to a 'susceptible' phenotype by manipulation of maternal immune status and provide clear evidence of maternal influence on offspring susceptibility to infection with Brugia malayi.

Alleles↗

Influence of gonadal steroids on susceptibility to Brugia malayi in scid mice.

In the present study, we demonstrate that male scid/scid mice have higher adult worm burdens than do female scid/scid mice following equal challenge doses of infective Brugia malayi L3 larvae. Gonadectomy of four week old immature mice has no effect on worm burden in either sex, suggesting that the gender dichotomy between males and females does not depend on continued presence of endogenous gonadal steroids. The worm yield from female, but not male, mice can be increased by prepubertal oophorectomy combined with administration of either estradiol or testosterone in depot form. Our results raise the possibility that prepubertal steroid pulse(s) result(s) in physiological changes in male scid/scid mice that enhance worm growth. These studies confirm earlier reports of epidemiological data in humans suggesting a sexual dimorphism in susceptibility to filarial infection. Our data suggest that this gender difference is not due simply to the presence of adult gonadal steroids, but rather to ontogenic differentiative actions of sex steroids in the host.

Animals↗