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B A Croy

Publications and source records attributed to B A Croy.

At least 37 records · Page 2Linked to original sources

A preliminary study on the usefulness of huIL-8 in cervical relaxation of the ewe for artificial insemination and for embryo transfer.

The efficacy of using human interleukin 8 (huIL-8) as an agent for inducing cervical relaxation in estrous and diestrous sheep was assessed in a small pilot study. Multiparous, estrus-synchronized ewes were treated for either 2 or 5 consecutive days with vaginal suppositories with or without 5 micrograms cytokine. Cervical penetration with an insemination instrument was then assessed in vivo. After euthanasia, physical, histological and enzymological properties of the cervix were examined. Treatment of diestrous sheep with huIL-8 did not result in recruitment of neutrophils into the cervix. Treatment of estrous sheep with huIL-8 usually led to neutrophil recruitment to the cervix and to either full or partial penetration of the cervix. However, some animals receiving placebo treatment had neutrophil infiltration of both the vagina and cervix and, in one of these, partial penetration of the cervix was also achieved. Thus, treatment with IL-8 as the sole agent in the vaginal suppository was not sufficient to relax the cervix of the nonpregnant ewe in this study.

Animals↗

Interferon-gamma contributes to the normalcy of murine pregnancy.

Uterine natural killer (uNK) cells are transient, large, heavily granulated, maternal lymphocytes present on the mesometrial side of the pregnant mouse uterus. These cells contribute to normal implantation site development. Cytokine production, particularly interferon (IFN)-gamma, is a major function of most NK cell subsets. In this study, uNK cells were assessed for IFN-gamma production. Local concentrations of IFN-gamma were measured in the mesometrial regions of murine implantation sites between Days 6 and 16 of gestation. IFN-gamma was detected by ELISA at all days studied in a random-bred (CD1) and an inbred (BALB/c) strain of immune-competent mouse and in two immune-deficient strains, SCID (NK(+), T(-), B(-)) and tgepsilon26 (NK(-), T(-), B(+)). Concentrations of IFN-gamma per implantation site peaked at Day 10 of gestation in NK(+) strains but were low and relatively constant in NK(-) mice. To evaluate the functions of IFN-gamma at murine implantation sites, pregnancy was studied in homozygously mated IFN-gamma(-/-) and IFN-gammaRalpha(-/-) mice and their congenic controls. Primiparous but not multiparous IFN-gamma(-/-) mice experienced significant fetal loss. Primiparous IFN-gammaRalpha(-/-) carried full litters to term. Implantation site pathology was demonstrated in both strains of gene-deleted mice by light microscopy and ultrastructurally. This included elevated numbers of uNK cells that contained fewer and smaller granules and, after Day 10 of gestation, progressive necrosis and loss of decidua. The presence of a fetus able to produce IFN-gamma did not modify the phenotype of pregnant IFN-gamma(-/-) mice. This study indicates that during murine pregnancy, uNK cells are the main source of IFN-gamma on the mesometrial side of the uterus and that IFN-gamma contributes to normal health of the midgestational decidua. Furthermore, evidence is presented that IFN-gamma-producing cells exist in mesometrial regions of implantation sites that are neither NK nor T cells.

Animals↗

Evaluation of three lines of immunodeficient mice for the study of spontaneous metastatic tumors.

Various immunodeficient animals have been used as transplantation recipients for studying the growth of human tumors. We have been assessing the value of immunodeficiencies for the study of naturally arising tumors, using a model system of transgenic mice that spontaneously develop cancer of the pancreas as a result of elastase promoter-driven expression of the large tumor antigen gene of simian virus 40. We previously reported the establishment of transgenic mice that carried the SCID and/or beige mutations, eliminating B- and T-cell function and reducing lytic NK cell activity, respectively. In SCID beige animals, metastasis rates and target organs for metastases were similar to those observed in humans with pancreatic cancer. We describe here analysis of subsequent more highly inbred generations of these mice. The data show that inbreeding has almost negated the value of these immunodeficiencies for enhancing disease progression, and we observe high rates of metastasis even in immunocompetent animals. The data suggest that SCID and beige immunodeficiencies may not always have the same value for the modeling of spontaneous tumors as they do for the study of xenografts.

Adenocarcinoma↗

Uterine natural killer cells are targets for a trophoblast cell-specific cytokine, prolactin-like protein A.

PRL-like protein A (PLP-A) is a member of the PRL family expressed in trophoblast cells coincident with establishment of the chorioallantoic placenta. The purpose of this investigation was to identify targets for PLP-A. Using an alkaline phosphatase-tagging strategy, we show that PLP-A specifically interacts with a population of natural killer (NK) lymphocytes within the mesometrial compartment of decidua from pregnant and pseudopregnant rats. These observations are supported by the codistribution of PLP-A targets with cells expressing the rat NK cell surface marker, gp42, the absence of PLP-A binding in conceptuses from NK cell-deficient tg epsilon26 mice, and the specific interaction of PLP-A with a rat NK cell line, RNK-16. We have further demonstrated that PLP-A effectively suppresses RNK-16 cell cytolytic activities. Our results provide evidence for a new paradigm of embryonic-maternal communication involving a PLP-A signaling pathway between trophoblast cells and uterine NK lymphocytes.

Alkaline Phosphatase↗

Engraftment of bone marrow from severe combined immunodeficient (SCID) mice reverses the reproductive deficits in natural killer cell-deficient tg epsilon 26 mice.

A large, transient population of natural killer (NK) cells appears in the murine uterine mesometrial triangle during pregnancy. Depletion of uterine (u) NK cells, recently achieved using gene-ablated and transgenic mice, results in pathology. Pregnancies from matings of homozygous NK and T cell-deficient tg epsilon 26 mice have <1% of normal uNK cell frequency, no development of an implantation site-associated metrial gland, and an edematous decidua with vascular pathology that includes abnormally high vessel walls/lumens ratios. Fetal loss of 64% occurs midgestation and placentae are small. None of these features are seen in pregnant T cell-deficient mice. To confirm the role of the NK cell deficiency in these reproductive deficits, transplantation of tg epsilon 26 females was undertaken using bone marrow from B and T cell-deficient scid/scid donors. Engrafted pregnant females have restoration of the uNK cell population, induced metrial gland differentiation, reduced anomalies in the decidua and decidual blood vessels, increased placental sizes, and restoration of fetal viability at all gestational days studied (days 10, 12, and 14). Thus, uNK cells appear to have critical functions in pregnancy that promote decidual health, the appropriate vascularization of implantation sites, and placental size.

Animals↗

Histological studies of gene-ablated mice support important functional roles for natural killer cells in the uterus during pregnancy.

Maternal lymphocytes having a large and granulated morphology accumulate at healthy implantation sites in normal mice. Insight into the functions of these cells has come from a previous study of two independent lines of mice deficient in natural killer (NK) cells. In pregnant Tg epsilon 26 mice, vascular pathology was found that led to the major complications of either fetal death or intrauterine growth retardation. In pregnant p56lck null x IL-2R beta null mice, extensive distension of the decidua was observed that separated the placenta from the myometrium and appeared to be interstitial edema. To strengthen assignment of uterine large granulated lymphocytes to the NK cell lineage and to understand which aspects of NK cell biology may be important for a uterine-based, pregnancy-associated subset, mid-gestation implantation sites from a new series of mice having gene deletions which alter NK cells (IL-2R gamma null, Stat4 null, IL-12 p40 null, beta 7 integrin null and Muc-1 null) have been examined histologically. The findings support the assignment of pregnancy-associated large granulated cells of mice to the NK cell lineage and suggest that the primary functions of these tissue-based NK cells are to support normal development of the decidua and/or its vasculature using pathways that involve IL-12 mediated signal transduction.

Animals↗

Xenogeneic (bovine) peripheral blood leukocytes engrafted into severe combined immunodeficient mice retain primary immune function.

The immune responsiveness of xenogeneic PBL engrafted into SCID mice was investigated using the bovine PBL-reconstituted SCID mouse model system (PBL-SCID-bo). Bovine PBL-reconstitution and B-cell activity were monitored by bovine serum Ig production. Bovine T-cell function was demonstrated by an antigen-specific immune response to bovine transplantation antigens provided by bovine skin allografts. Bovine allograft rejection was clearly evident in > 65% PBL-SCID-bo that received a bovine PBL inoculum either 30 days after bovine skin grafting, or 7-52 days before bovine skin grafting. Bovine allograft rejection was confirmed via histological examination and was characterized primarily by a band of infiltrating bovine lymphocytes at the periphery of the graft and tissue necrosis. A secondary immune response could be elicited if bovine cells in the PBL inoculum were presensitized to Ag from the bovine skin allograft donor. This study is the first to show that bovine cells engrafted in SCID mice after i.p. injection of bovine PBL retain some aspects of immune competency. These results confirm the value of the xenogeneic PBL-reconstituted SCID mouse model in the study of primary immunity.

Adoptive Transfer↗

Characterization of the cells that migrate from metrial glands of the pregnant mouse uterus during explant culture.

Granulated metrial gland (GMG) cells are estrogen-receptor and Interleukin 2 (IL-2) receptor positive lymphocytes of the Natural Killer cell lineage found in the murine uterus during pregnancy. Functional studies of these cells, which are now more frequently called uterine NK (uNK) cells, have been limited due to technical difficulties. The cells are difficult to isolate and their proliferation and differentiation have not been achieved in culture. In 1988, Mukhtar and Stewart (Cell Tiss. Res., 253, 413-417) reported a method for explant culture of metrial glands isolated from pregnant rodents that yielded an almost pure population of uNK cells. This major technical advance has supported most of the subsequent functional and molecular studies of rodent uNK cells. However, the quality of the cells isolated by the explant culture procedure has not been established. A cytochemical approach was used to identify and quantify the cells migrating from metrial glands. At midpregnancy, almost all (> 90%) migrating nucleated cells were NK cells. Earlier in gestation, a significant proportion (25%) of cells having lymphoid morphology could not be assigned to the lineage. The viability of cells migrating from explants was assessed by DNA isolation and electrophoresis on days 6-16 of gestation. At all times evidence for apoptosis was found, even after culture intervals as brief as 4 h. Parallel analyses of histological sections of the metrial gland, using terminal deoxytransferase labelling to detect nuclear fragmentation, did not support significant levels of uNK cell death in situ prior to day 12 of gestation. Supplementation of the explant culture medium with estrogen, IL-2, various extracellular matrices, decidual cells or combinations of these did not lead to in vitro proliferation of uNK cells and usually did not extend the short term viability of these cells in serum supplemented or serum free media. Thus, the optimal culture conditions for uNK cells remain undefined.

Animals↗

Absence of natural killer cells during murine pregnancy is associated with reproductive compromise in TgE26 mice.

Strategies of cell depletion were pursued to extend understanding of the functions of natural killer (NK) cell-like large granulated lymphocytes found in the rodent uterus during pregnancy. Repeated infusions of antibody to Ly-49G2, a surface marker thought to be expressed by the progenitor forms of these cells, removed Ly-49G2+ cells from the virgin but not the pregnant uterus. Large granulated uterine lymphocytes also differentiated during pregnancy in transgenic mice that carried a deletion in the IL-2 gene. This cell population was absent in two strains of mice, p56lck-/lck-.IL-2Rbeta-/IL-2Rbeta- and TgE26. Implantation sites in both of these strains had histopathological anomalies in the zone of decidualization. In TgE26 mice, a sudden onset of fetal loss began at Day 10 of gestation. Fetal death was associated with progressive changes in the maternal uterine arterioles, suggestive of localized arteriosclerosis associated with hypertension. TgE26 females carried immune-competent fetuses to term, apparently through preventive or compensatory mechanisms that may modify the uterine vasculature after the onset of vascular pathology. These studies are the first to suggest a vital role for large granulated lymphocytes in the promotion of fetal survival and pregnancy success.

Animals↗

Expression of the inducible nitric oxide synthase gene in mouse uterine leukocytes and potential relationships with uterine function during pregnancy.

Nitric oxide (NO), a potent and versatile free radical, is synthesized in leukocytes by the inducible form of NO synthase (iNOS). In this study, leukocytes in pregnant mouse uterus were investigated for expression of the iNOS gene. Inducible NOS mRNA, which was identified by reverse transcriptase polymerase chain reaction, was high relative to an invariant mRNA, glyceraldehyde-3-phosphate dehydrogenase, in midgestation uteri (gestation days [g.d.] 10, 12, and 14) but was low in late-gestation uteri (g.d. 16 and 18). Inducible NOS protein, identified immunohistochemically in paraformaldehyde-fixed uteri taken from g.d. 6 through 18 using rabbit antibodies generated to mouse carboxyl terminus iNOS peptides, was prominent in a few myometrial mast cells at early stages and was strongly expressed from g.d. 6 through g.d. 14 in myometrial macrophage-like cells. Inducible NOS protein was first detected in uterine (u) natural killer (NK) cells at g.d. 8. Signals peaked in this lineage at g.d. 10 and declined thereafter. Uterine leukocytes cultured in vitro expressed the iNOS gene; a hybridoma cell line derived from mouse uNK cells (GWM1-2) contained iNOS mRNA, and cells migrating from mouse metrial gland explants included iNOS/ leukocytes. Large, granular iNOS + uNK cells were absent from the uteri of homologously mated pregnant TgE26 mice, an NK cell-deficient transgenic mouse strain, but immunoreactive iNOS was detectable in trophoblast, a cell lineage that did not contain immunoreactive iNOS in NK cell-competent Swiss-Webster mice. In TgE26 mothers gestating normal embryos, the same pattern was observed. Collectively, the results of this study demonstrate that iNOS is present in mouse uterine leukocytes including mast cells, macrophage-like cells, and uNK cells, and suggest that in the absence of uNK cells, the placenta synthesizes iNOS. These findings are consistent with the postulate that leukocyte NO contributes importantly to events associated with successful pregnancy that are likely to include relaxation of vascular smooth muscle.

Animals↗

Stress triggered abortions are associated with alterations of granulated cells into the decidua.

PROBLEM: Stress is known to be abortogenic in animals and humans. An increased decidual release of cytokines such as TNF-alpha and reduction in TGF-beta 2-related immunosuppressive activity has been proposed as the triggering mechanism. Substance P release by nerves in endometrium/decidua has been found to be the key neurotransmitter in this pathway. It is still unclear which cells are stimulated by substance P to produce the increased TNF-alpha level. METHOD: As a measure of local activation, the granulation of granulated material gland (GMG) cells was measured by flow cytometry after sonic plus immobilization stress of mice or substance P treatment of GMG cells (both isolated GMG cells and GMG-cell containing decidua). TNF-alpha release from decidua and isolated GMG cells was investigated using a TNF-alpha bioassay. The degranulation of uterine mast cell, another potential source of TNF-alpha, was examined in situ by Toluidine blue staining. RESULTS: We observed a striking increase in percentage of degranulated mast cells (8% -->24%) in the uteri of stressed animals, whereas the granularity of GMG cells was decreased by stress but increased with treatment with substance P in vitro. Isolated GMG cells appeared to release in vitro cytotoxins active in the TNF-alpha bioassay, but the magnitude of this activity was not increase by stress or by substance P treatment. In contrast, disaggregated decidual tissue which is known to release increased amounts of TNF-alpha after stress, did increase activity in response to substance P in vitro. CONCLUSIONS: Uterine mast cells show activation as reflected by degranulation after stress exposure of pregnant mice and mast cells might be the cellular link between the neurotransmitter substance P and increase in decidual TNF-alpha release that leads to abortion.

Abortion, Spontaneous↗

Uterine natural killer cells do not require interleukin-2 for their differentiation or maturation.

PROBLEM: Natural Killer lymphocytes (NK cells) from the pregnant uterus and from other tissues in pregnant and nonpregnant mammals can be stimulated by interleukin-2 (IL-2) during culture to become Lymphokine Activated Killer (LAK) cells. The susceptibility of cultured trophoblast cells to lysis by LAK cells raises the enigma of why uterine (u) NK cells that are characterized by morphology and by surface phenotyping as "activated," and thus potentially damaging to the placenta, become localized to implantation sites during normal rodent gestation. METHOD: uNK cells migrating from explant cultures of the metrial gland were assessed for expression (mRNA and protein) of each chain of the IL-2 receptor (IL-2R). Implantation sites from transgenic mice lacking a functional IL-2 gene were examined histologically for the differentiation of mature, granulated uNK cells. RESULTS AND CONCLUSION: Early post-implantation, mRNA from migrating uNK cells contains transcripts for all three chains of the IL-2R. Only IL-2Rgamma was expressed at day 12 of gestation; expression of this gene was also lost by day 16. Loss of IL-2R transcription did not result in loss of protein expression; however, it did coincide with loss of uNK cell viability in vivo. Apparently normal differentiation of uNK cells occurred in IL-2(-/-) mice and in doubly mutant IL-2(-/-).beta2m(-/-) mice. Thus, despite uNK cell expression of the full IL-2R at day 8 of gestation, IL-2 is not required for the maturation of uNK cells to their fully granulated form or for normal placental development.

Animals↗

Expression of TJ6 during pregnancy.

PROBLEM: TJ6 will be one of the molecules involved in fetal-specific immune suppression during pregnancy. In the mouse and human decidua, the regulation of uterine natural killer (uNK) cells is important during pregnancy. METHOD OF STUDY: To further understand the possible functions of TJ6 during pregnancy, syngeneic, allogeneic, and mutant mice were examined for TJ6 expression. RESULTS: Immunoblotting showed that TJ6 protein was expressed on most of the placenta-associated mononuclear cells, and the size was 70-72 kDa at all stages of pregnancy. The expression of TJ6 mRNA was studied by a ribonuclease protection assay in syngeneic and allogeneic matings, and in immune-deficient mice of genotypes scid/scid and scid/scid.bg/bg. CONCLUSIONS: Genetic disparity, lack of T and B lymphocytes, and loss of NK lytic function had no significant effect on the expression of TJ6 mRNA.

Animals↗

Role of uterine immune cells in early pregnancy in pigs.

The immune system discriminates 'self' from 'non-self', and eliminates that which it determines to be non-self. Mammalian pregnancy appears to represent a failure of self-non-self discrimination, yet it is a highly successful reproductive strategy. We present evidence that the immune system of the female pig responds to the challenges of both mating and the presence of conceptuses. Mating induces an influx of inflammatory leukocytes into the endometrial stroma and uterine lumen. This response, while partially under endocrine control, is amplified by as yet unidentified factors in seminal plasma. In addition to preventing microbial infection, this mating-induced immune response may enhance reproductive performance. During the first month of pregnancy when intimate contact between maternal and fetal tissues is being established, the number of uterine lymphocytes decrease in the luminal epithelium and increase in the endometrial stroma at sites of conceptus attachment. The majority of these lymphocytes express the CD2 and CD8 surface markers, consistent with either T or natural killer (NK) cell lineage. Dispersed endometrial cells obtained during early gestation exhibit a pregnancy-specific increase in NK-like lytic activity. Our ongoing efforts to determine whether these NK-like lymphocytes are the ones that localize to sites of conceptus attachment are discussed. We speculate on how the reactions of pig uterine leukocytes to seminal plasma and conceptuses might contribute to successful pregnancy.

Animals↗

Engraftment of human tumor-infiltrating lymphocytes and the production of anti-tumor antibodies in SCID mice.

We report here the placement of nondisrupted 1-mm3 pieces of fresh human lung tumor biopsy tissue into the subcutis of severe combined immunodeficient (SCID) mice results in the engraftment of tumor-infiltrating leukocytes (TIL) in all but 5 of 148 mice inoculated with 39 different biopsy tissue specimens. In mice coengrafted with tumor and TIL the normal histologic architecture of the tumor and TIL interface was maintained for up to 22 wk. The TIL in the xenograft were shown to divide and were maintained exclusively at the site of tumor inoculation. It is established here that plasma cells in the TIL population produce Abs that react in western blots with tumor cell lysates. These Abs were shown to react with high and low m.w. proteins derived from both the membrane and cytosolic fractions of tumor cell lysates. The production of human Ig was found to be T cell dependent, and immunohistochemistry and in situ hybridization of DNA, using a human-specific cDNA probe, established the human identity of the tumor and TIL. High levels of human Ig in the sera of mice inoculated with tumor biopsy tissue are associated with the growth arrest of adenocarcinoma xenografts. Our results establish the co-engraftment of human tumors and TIL into SCID mice as new animal model with which to evaluate TIL function and novel therapeutic strategies that are designed to augment TIL anti-tumor activity.

Animals↗

An analysis of the uterine lymphocyte-derived hybridoma cell line GWM 1-2 for expression of receptors for estrogen, progesterone and interleukin 2.

Characterisation of murine hybridoma cell lines derived from the fusion of lymphocytes migrating from explant cultures of early, pregnancy-associated metrial glands (days 6-8 of gestation) to SP 2/0 cells, has been extended (van den Heuvel et al., J. Reprod. Immunol., 27 (1994) 13-36). These hybridomas have been grown in culture for over 2 years and are thought to represent the only immortalized lines of murine pregnancy-associated, uterine natural killer (uNK) cells. Previous studies had shown that these hybridomas, known as GWM cells, lack uNK cell surface markers, but share with uNK cells the expression of the lytic protein perforin and the ability to lyse YAC cells, a natural killer cell target (van den Heuvel et al., J. Reprod. Immunol., 27 (1994) 13-36). We report here, the evaluation of the transcription and expression of genes encoding the estrogen receptor (ER), the progesterone receptor (PR) and the interleukin 2 receptor complex (IL 2R alpha, beta and gamma) by uNK cells at day 8 of gestation and by GWM 1-2 cells and SP 2/0 cells. Our investigations indicate that expression of these genes divides day 8 uNK cells into subsets, with the predominant population being ER+, PR-, IL 2R alpha +, IL 2R beta + and IL 2R gamma +. Like day 8 uNK cells, most GWM 1-2 cells expressed all three chains of the IL 2R complex. In addition, GWM 1-2 cells expressed the ER but the PR was not detected on this cell line. Only the IL 2R alpha was detected on the SP 2/0 myeloma cell line. These studies further validate the use of GWM hybridomas as models for pregnancy-associated uNK cells.

Animals↗