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B A Croy

Publications and source records attributed to B A Croy.

At least 19 recordsLinked to original sources

Analysis of cytokine regulators inducing interferon production by mouse uterine natural killer cells.

In mice and women, terminal differentiation of uterine natural killer (uNK) cells commences during endometrial decidualization. Both proliferation and interferon (IFN)-gamma are induced. Uterine NK cell precursors appear to home from secondary lymphoid organs to decidualizing uteri and localize mesometrially to the central decidua basalis, the site of maternal arterial modification at Gestation Days (gd) 9.5-10. In mice, genetic absence of uNK cells results in absence of pregnancy-induced spiral artery modification. Administration of IFN-gamma to uNK-negative pregnant females induces arterial modifications without fetal loss. In this study, we investigated the roles of cytokines, known in other tissues to differentiate and activate NK cells, in induction of IFN-gamma production in normal mouse implantation sites. Fecundity evaluation, implantation site morphometry, and IFN-gamma quantification in interleukin (IL)-12p40(0/0), IL-18(0/0), dual IL-12p40(0/0)/IL-18(0/0) and congenic strains revealed the importance of both IL-12 and IL-18 in the induction of spiral artery modification and IFN-gamma synthesis. Immediately after implantation, IL-18 was localized transiently to decidual cells, but by gd8, IL-18 was produced solely by uNK cells, suggesting that early uNK cells are activated by stroma and lymphocyte-derived signals maintain later uNK cell activation. Mesometrial tissue of C57Bl/6J mice was examined by reverse transcription polymerase chain reaction assay in virgin, early postimplantation, and midgestation females for expression of the heterodimeric cytokines IL-23 (composed of IL-12p40 and a novel alpha chain), IL-27 (composed of two IL-12-related chains) and IL-27R. No expression was detected in virgin uteri. The four genes were induced by gd6, and uNK cells isolated from midgestation transcribed IL-23alpha and IL-27R. This study advances the understanding of uNK cell activation during normal pregnancy.

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Functional analysis of murine uterine natural killer cells genetically devoid of oestrogen receptors.

Uterine Natural Killer (uNK) cell differentiation in vivo requires oestrogen (E) priming prior to progesterone (P). Hybridomas between uNK precursor and SP2/0 cells express message for E receptor (ER)alpha but nor PR. However, mature, rodent and human uNK cells lack these receptors. To functionally assess requirements for uNK cell expression of ERalpha or ERbeta during precursor differentiation, marrow was transplanted from either ERalpha(o/o) (alphaERKO) or ERbeta(o/o) (betaERKO) mice into alymphoid RAG-2(o/o)/gammac(o/o) females. Recipients were mated and their implantation sites were examined by light microscopy, morphometry and ultrastructure. High numbers of uNK cells were established from each donor strain. Graft-derived uNK cells were similar in number and morphology to uNK cells of normal mice, suggesting that neither alpha- nor beta-ER is required for uNK precursor cell differentiation. Induction of spiral artery modification in the transplant recipients indicated that graft-derived uNK cells had functional properties. A novel technique for rapid isolation of highly purified uNK cells from normal mice using Dolichos biflorus agglutinin (DBA) lectin-conjugated magnetic beads was employed to obtain RNA. Expression of alpha- and beta-ER was absent by RT-PCR from NK cells isolated from the uterus, supporting the conclusions from the in vivo study.

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Production of capsular material by equine trophoblast transplanted into immunodeficient mice.

A novel xenogeneic transplantation approach was used to determine whether it is embryonic or maternal tissue that produces the material that gives rise to the mucin-like glycoprotein of the equine embryonic capsule. Endometrial biopsy samples and conceptuses from six mares at days 13-15 after ovulation were prepared as 1 mm(3) grafts of endometrium, trophoblast and capsule for transplantation, alone or in combination, into various sites in 88 immunodeficient (severe combined immunodeficient or RAG2/gamma(c) double mutant) mice. The overall recovery rate of grafts was over 50%, reaching 100% with experience and use of the renal subcapsular space exclusively. Periodic acid-Schiff (PAS) staining demonstrated capsule-like extracellular glycoprotein secretions at the graft site in 11 of 22 sites examined. Strong PAS-positive reactions (5-7 microm thick) were found in four of six sites containing trophoblast alone, five of six endometrium plus trophoblast sites, and zero of eight grafts of endometrium alone. Two recovered grafts of capsule were also PAS-positive. The secreted glycoprotein was identified as equine embryonic capsule material by using a monoclonal antibody (mAb) specific to equine capsule (mAb OC-1) in two experiments. In the first, in cryosections, this antibody bound to 19 of 19 recovered trophoblast graft secretions (including those in 12 from mice that had not received endometrium at any site), ten of ten recovered endometrium plus trophoblast grafts, and zero of 12 recovered endometrial grafts from mice in which trophoblast had been grafted to the same site or another site in the same mouse. In the second experiment, in paraformaldehyde-fixed sections of grafts from 11 mice, specific staining, identical to that shown by grafted capsule, was obtained with grafts of trophoblast (both alone and in combination with endometrium) but not with grafts of endometrium. These results support the contention that trophoblast is the principal source of equine embryonic capsule. In addition, they demonstrate that xenogeneic grafting is a useful means of culturing endometrium and conceptus tissues outside the mare when in vitro techniques do not suffice.

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Functions of uterine natural killer cells are mediated by interferon gamma production during murine pregnancy.

The dominant lymphocytes in healthy human and murine implantation sites are pregnancy-associated uterine natural killer (uNK) cells. These cells produce 90% of pregnancy-induced, uterine interferon (IFN)- gamma, a cytokine that regulates expression of more than 0.5% of the mouse genome. Implantation sites in uNK cell-deficient and IFN- gamma -signal-disrupted mice display anomalies in decidua and its spiral arteries. Reconstitution of uNK cell-deficient females with bone marrow containing normal NK cell progenitors, establishes uNK cells and reverses the anomalies. Grafts from IFN- gamma(-/-)mice are restored uNK cells, but the uNK cells did not reverse the phenotypes. This review focuses on the functions of uNK cell-derived IFN- gamma and the genes that it may regulate in the pregnant uterus.

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A study on the density and distribution of uterine Natural Killer cells at mid pregnancy in mice genetically-ablated for CCR2, CCR 5 and the CCR5 receptor ligand, MIP-1 alpha.

Several chemoattractants mediate Natural Killer (NK) cell migration. The CC-chemokines, monocyte inflammatory protein (MIP)-1 alpha, regulated upon activation, normal T cell expressed and secreted (RANTES) and macrophage chemotactic protein (MCP)-1 are the most potent. Peripheral NK cells express the CC-chemokine receptor CCR2, for MCP-1 and CCR5, for MIP-1 alpha and RANTES. These chemokines are detected in the uterus during the estrous cycle and become elevated during pregnancy. To assess the roles of CCR2, CCR5 and MIP-1 alpha in NK cell migration to the uterus and localization within implantation sites, histological analysis was conducted on implantation sites from mice genetically-ablated for CCR2, CCR5, MIP-1 alpha or CCR2 and MIP-1 alpha. Uterine NK (uNK) cell densities in both the decidua basalis and mesometrial lymphoid aggregate of pregnancy (MLAp) of all mutant strains matched wildtype controls. Ratios of vascular: non-vascular uNK cell position were identical in mutants and controls. In the decidua basalis, 25-35% and in the MLAp, 15-20% of uNK cells were perivascular. Intravascular uNK cells were observed in the decidua basalis but not in the MLAp and were more numerous at gestation day 10 than 12. Two measures of uNK cell activation, cell diameter and cytoplasmic granule number, were similar in the mutants and controls. Thus, migration, distribution and activation of NK cells within the pregnant uterus are independent of CCR2, CCR5 and MIP-1 alpha.

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Selection of genetically modified chicken blastodermal cells by magnetic-activated cell sorting.

The use of chicken blastodermal cells (CBC) in the production of transgenic chickens requires incorporation of the desired stable genetic modification into CBC. With greater proportions of stably transfected blastodermal cells in the embryo inoculum, the frequency of intermediate chimeric birds is greater. Magnetic-activated cell sorting (MACS) was evaluated as a method for enrichment of transfected CBC. This approach requires surface expression of a molecule that can be recognized by an antibody. Chicken blastodermal cells from fertilized Barred Plymouth Rock eggs were coelectroporated with pmiwZ and pMACS Kk and were sorted magnetically by expression of the mouse H-2Kk molecule on the surface of successfully transfected cells. The effectiveness of sorting was assessed using X-gal staining to detect lacZ expression from the pmiwZ plasmid. After 48 h of culture, lacZ-positive cells appeared to be enriched 1.4-fold in the MACS selected population. Cells from this enriched pool contributed to extra-embryonic and intra-embryonic tissues of 72-h White Leghorn recipient embryos with a marginal increase in levels of intra-embryonic contribution. Our demonstration that transfected, cultured, and magnetically sorted CBC maintain their ability to contribute to ectodermal and mesodermal lineages of intra-embryonic tissues illustrates the potential value of this technique for introducing genetic modifications into birds.

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Primer for non-immunologists on immune-deficient mice and their applications in research.

Studies of immune deficiencies have a history as long as that of immunology. However, reports of two key spontaneous recessive mutations in mice (nude in 1966-1968 and scid in 1983) laid the foundations for widespread application of immune-deficient rodents to a broad range of research topics. More recently, technologies modifying the mouse genome by transgenesis, gene ablation and crossbreeding for lines with multiple immune deficits have provided a large number of new types of immunologically impaired mice. The primary goals of this overview are to help non-immunologists understand key differences between some of the immunodeficient strains, develop an appreciation for the value of information derived from immunodeficient mouse-based research and to encourage expanded, creative use of these specialized research animals. Secondary goals are to promote greater awareness of unexpected outcomes that can arise when working with genetically immune-deficient mice, the need for vigilance in maintaining these research animals, and the care required in interpretation of the data that immune-deficient modeling provides. Two illustrations on developing appropriate immune deficient animal models for a new research application conclude the review.

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Interferon gamma contributes to initiation of uterine vascular modification, decidual integrity, and uterine natural killer cell maturation during normal murine pregnancy.

The dominant lymphocytes in human and murine implantation sites are transient, pregnancy-associated uterine natural killer (uNK) cells. These cells are a major source of interferon (IFN)-gamma. Implantation sites in mice lacking uNK cells (alymphoid recombinase activating gene [RAG]-2(-/)- common cytokine receptor chain gamma [gamma(c)](-/)-) or IFN-gamma signaling (IFN-gamma(-/)- or IFN-gammaRalpha(-/)-) fail to initiate normal pregnancy-induced modification of decidual arteries and display hypocellularity or necrosis of decidua. To investigate the functions of uNK cell-derived IFN-gamma during pregnancy, RAG-2(-/)-gamma(c)(-/)- females were engrafted with bone marrow from IFN-gamma(-/)- mice, IFN-gamma signal-disrupted mice (IFN-gammaRalpha(-/)- or signal transducer and activator of transcription [Stat]-1(-/)-), or from mice able to establish normal uNK cells (severe combined immunodeficient [SCID] or C57BL/6). Mated recipients were analyzed at midgestation. All grafts established uNK cells. Grafts from IFN-gamma(-/)- mice did not reverse host vascular or decidual pathology. Grafts from all other donors promoted modification of decidual arteries and decidual cellularity. Grafts from IFN-gammaRalpha(-/)- or Stat-1(-/)- mice overproduced uNK cells, all of which were immature. Grafts from IFN-gamma(-/)-, SCID, or C57BL/6 mice produced normal, mature uNK cells. Administration of murine recombinant IFN-gamma to pregnant RAG-2(-/)-gamma(c)(-/)- mice initiated decidual vessel modification and promoted decidual cellularity in the absence of uNK cells. These in vivo findings strongly suggest that uNK cell-derived IFN-gamma modifies the expression of genes in the uterine vasculature and stroma, which initiates vessel instability and facilitates pregnancy-induced remodeling of decidual arteries.

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Prolonged gestation does not extend survival of uterine natural killer lymphocytes in mice deleted in the receptor for prostaglandin F2alpha.

During decidualization in mice and women, expansion of the Natural Killer (NK) cell lineage occurs within the uterus. In rodents, peak numbers of uterine (u)NK cells are reached at mid-gestation. The population then declines and residual cells are shed with the placenta. Decidualization, but not a fetus, is required to induce division and maturation of uNK cells. Mechanisms regulating the decline in uNK cells are unknown. To determine if the conceptus or its products have regulatory roles on uNK cell survival during normal gestation, a histological time course study was undertaken of implantation sites in mice ablated in the gene for the Prostaglandin F2alpha receptor (PGF2alphaR). These females experience normal gestation but fail to initiate labour and delivery. Their pregnancies extend a further 4-7 days before onset of maternal compromise. Large numbers of uNK cells were present in PGF2alphaR null mice by gestational day (gd) 10 and numbers had begun to decline at gd 14. By gd 18, very few uNK cells remained and no uNK cells were found at day 22 of extended gestation. Thus, the population history of uNK cells in PGF2alphaR null mice resembles that of uNK cells in normal mice, suggesting that the placenta, its products, the fetus and PGF2alpha are not factors that influence the rate of uNK cell decline in late gestation.

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Ultrastructural studies of implantation sites from mice deficient in uterine natural killer cells.

Implantation sites from three strains of immunodeficient mice [tgepsilon26, IL-2Rbeta nullxp56(lck)null and IL-2Rgamma null, now known as common cytokine chain gamma (gamma(c)) null], which lack uterine natural killer (uNK) cells, are histologically abnormal. The related anomalies (found from day 10 of gestation) include the absence of aggregation of lymphocytes in the mesometrial triangle, acellularity of the mesometrial decidua, decidual arteries with relatively thick walls and reduced lumen diameters, unusual prominence of the endothelium in the major decidual vessels, and an overall reduction in placental size. In this study we have characterized implantation sites in a new mouse strain (gammac(-)/RAG2(-)) that is deficient in all lymphoid lineages. We have compared implantation sites in tgepsilon26 to gammac(-)/RAG2(-)at the ultrastructural level in order to determine the earliest-time point at which implantation sites differed from those in immunocompetent mice, and the cell types affected. Implantation sites from both the uNK cell-deficient mice resemble those from random-bred, immunocompetent mice on days 6 and 7 of gestation. On day 8 of gestation, decidual cells on the mesometrial sides of implantation sites in both tgepsilon26 and gammac(-)/RAG2(-)revealed pleotrophic morphology and degeneration. In some vessels, endothelial cells were distorted or displaced from their supporting cells. Progressive changes, suggestive of loss of function of both the mesometrial decidua and endothelial cells, were seen to day 14 of gestation, the latest time-point analysed. In contrast to tgepsilon26 mice, homozygously-mated gammac(-)/RAG2(-)had normal litter sizes, with birthweights and weaning weights similar to congenic C57Bl/6J controls, and no significant perinatal loss. In both strains, the newly-documented endothelial cell lesions predict detrimental alterations to vasomotor function of the uterine vasculature. These studies add strength to the hypothesis that uNK cells may have specialized physiological, rather than classically immune, functions in the pregnant mammalian uterus.

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The 1999 Reginald Thomson Lecture. Custom-built mice: unique discovery tools in biomedical research.

The study of mouse genetics is a science in its own right. Currently, the mouse is the central platform for model building in biomedical research. Recombinant DNA technology and mouse transgenesis have provided an almost unlimited resource of new animals that is constantly expanding. Investigators, through their selection of the most appropriate type of mouse and by imaginative combinations of animals in breeding or culture experiments, have the opportunity for discovery of new information that will benefit the health of both humans and species of veterinary interest. Wider appreciation and use of the mouse as a discovery tool in veterinary research should be encouraged.

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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.

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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.

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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.

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