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S Heyner

Publications and source records attributed to S Heyner.

At least 37 records · Page 2Linked to original sources

Applications of a microfabricated device for evaluating sperm function.

Mesoscale structures (microns dimensions, nL-pL volumes) have been designed and fabricated in silicon for use in various analytical tasks. We studied sperm motility and performed sperm selection in channels (80 microns wide x 20 microns deep), branching structures (40 microns wide x 20 microns deep, eight bifurcations), and channels containing barriers (7 microns feature size). Sperm-cervical mucus and sperm-hyaluronic acid interactions were assessed by using appropriate microchannel-chamber structures filled with either cervical mucus or hyaluronic acid. Simultaneous assessment of the potency of different spermicides (e.g., nonoxynol-9, C13G) and spermicide concentrations was achieved with structures comprising chambers containing spermicide connected via channels to a central chamber into which semen was introduced. Semen was also tested for the presence of sperm-specific antibodies by using microchannels filled with human anti-IgG antibody-coated microbeads.

Humans↗

Gene expression in pre-implantation mammalian embryos.

The pre-implantation mammalian embryo is initially under the control of maternal informational macromolecules that are accumulated during oogenesis. Subsequently, the genetic program of development becomes dependent upon new transcription derived from activation of the embryonic genome. Several embryonic transcripts including those that encode growth factors, cell junction components and plasma membrane ion transporters are required for normal progression of the embryo to the blastocyst stage. The pattern of genes expressed and the overall program of development is subject to the influences of genomic imprinting as well as external influences encountered by the embryo within the maternal reproductive tract.

Animals↗

Insulin, insulin-like growth factors and glucose transporters: temporal patterns of gene expression in early murine and bovine embryos.

mRNA phenotyping by the reverse transcription-polymerase chain reaction (RT-PCR) method was used to compare the patterns of expression of insulin and insulin-like growth factor (IGF) ligand and receptor genes in preimplantation bovine embryos with those established previously for preimplantation murine embryos. In the early bovine embryo, transcripts for IGF-I, IGF-II and mRNAs encoding receptors for insulin, IGF-I and IGF-II were all detectable at all embryo stages from the 1-cell zygote to the blastocyst. In the mouse, IGF-II ligand and receptor mRNAs were not expressed until the 2-cell stage, and the insulin and IGF-I receptor mRNAs were not detectable until the 8-cell stage. Since transcriptional activation of the embryonic genome occurs at the 8- to 16-cell stage in the bovine embryo and at the 2-cell stage in the murine embryo, it is suggested that these transcripts are products of both the maternal and embryonic genomes in the bovine embryo whereas in the mouse they are present only after activation of the embryonic genome. Transcripts for insulin were not detected in preimplantation embryos of either species. Colloidal-gold immunocytochemistry with antibodies directed against the insulin receptor, IGF-I receptor and IGF-I ligand has confirmed the presence of these molecules in bovine blastocysts. RT-PCR and indirect immunofluorescence procedures demonstrated that the glucose transporter (GLUT) isoform 1 is present in murine embryos from the oocyte to blastocyst stage whereas GLUT 2 expression begins at the 8-cell stage.

Animals↗

Developmental expression and cellular localization of glucose transporter molecules during mouse preimplantation development.

Two general mechanisms mediate glucose transport, one is a sodium-coupled glucose transporter found in the apical border of intestinal and kidney epithelia, while the other is a sodium-independent transport system. Of the latter, several facilitated transporters have been identified, including GLUT1 (erythrocyte/brain), GLUT2 (liver) and GLUT4 (adipose/muscle) isoforms. In this study, we used Western-blot analysis and high resolution immunoelectron microscopy (IEM) to investigate the stage-related expression and cellular localization of GLUT1, 2 and 4. The Western blot results demonstrate that GLUT1 is detectable in the oocyte and throughout preimplantation development. GLUT2 isoforms were not detectable until the blastocyst stage, while the GLUT4 isoform was undetectable in the oocyte through blastocyst stages. The present findings confirm previous studies at the molecular level which demonstrated that mRNAs encoding the same GLUT isoforms are detectable at corresponding developmental stages. GLUT1 and GLUT2 display different cellular distributions at the blastocyst stage as shown by IEM studies. GLUT1 has a widespread distribution in both trophectoderm and inner cell mass cells, while GLUT2 is located on trophectoderm membranes facing the blastocyst cavity. This observation suggests a different functional significance for these isoforms during mouse preimplantation development.

Animals↗

Glass-bead column separation of motile and nonmotile human spermatozoa.

Glass-bead columns were tested for their efficiency in concentrating motile human spermatozoa from frozen semen samples. The data show that glass-bead filtration concentrates the motile gametes in each sample and is significantly more efficient than the swim-up method for obtaining populations of motile spermatozoa. The data suggest that this method can be applied clinically to obtain motile spermatozoa from poor-quality semen for use in in vitro fertilization.

Cell Count↗

Functional differentiation of mouse uterine epithelial cells grown on collagen gels or reconstituted basement membranes.

Epithelial cells were isolated from mouse endometrium and cultured on two types of extracellular matrix, namely, rat-tail collagen (type I) gels and basement membrane extract (BME) derived from the Engelbreth-Holm-Swarm murine sarcoma. Cell attachment in serum-free medium during the initial 24 h after seeding was approximately twofold higher on BME compared with collagen type I. Addition of serum to the medium enhanced cell attachment on both matrices. On both collagen and BME, uterine cells grew as smooth-bordered colonies, and within a week of culture the cells became cuboidal to columnar in shape. Electron microscopy revealed the presence of apical microvilli associated with a glycocalyx, junctional complexes, tonofilaments, short strands of undilated endoplasmic reticulum, Golgi complex, and lipid droplets. However, cells on BME showed a higher degree of differentiation as assessed by occasional formation of small patches of basement membranelike structure subjacent to the flattened basal surface and formation of glandlike structures within the matrix. Proliferation of these cells as measured by radioactive thymidine incorporation into DNA was increased threefold by addition of epidermal growth factor (EGF) and insulin to the medium, but was not changed by 17 beta-estradiol. The expression of progesterone receptors by uterine epithelial cells grown on both matrices was doubled by addition of EGF and estradiol to the medium.

Animals↗

Glucose transporter gene expression in early mouse embryos.

The glucose transporter (GLUT) isoforms responsible for glucose uptake in early mouse embryos have been identified. GLUT 1, the isoform present in nearly every tissue examined including adult brain and erythrocytes, is expressed throughout preimplantation development. GLUT 2, which is normally present in adult liver, kidney, intestine and pancreatic beta cells is expressed from the 8-cell stage onward. GLUT 4, an insulin-recruitable isoform, which is expressed in adult fat and muscle, is not expressed at any stage of preimplantation development or in early postimplantation stage embryos. Genetic mapping studies of glucose transporters in the mouse show that Glut-1 is located on chromosome 4, Glut-2 on chromosome 3, Glut-3 on chromosome 6, and Glut-4 on chromosome 11.

Amino Acid Sequence↗

Is chromosome 10 a primary chromosomal abnormality in endometrial adenocarcinoma?

Seven cases of endometrial adenocarcinoma (EC) are reported. Two of these cases exhibited diploid chromosome ranges and showed simple rearrangements involving a chromosomal abnormality of chromosome 10. In four cases, the chromosome number ranged between 50 and 70; rearrangements were more complex, with many abnormalities such as homogeneously stained regions, minutes, dicentrics, and ring chromosomes. In one case, two subpopulations of cells were detected, one in a diploid chromosome range with chromosome 10 altered, and the second, very pleomorphic. These abnormalities are probably due to the evolution of a destabilized genome and represent a consequence of the advanced stage of the disease. The importance of simple abnormalities as clues to the primary chromosomal change, and the possibility that chromosome 10 represents the primary chromosomal alteration event in EC, are discussed.

Adenocarcinoma↗

Effects of ultrasound on DNA and RNA synthesis in preimplantation mouse embryos.

Ultrasound is used extensively to monitor the growth of ovarian follicles in in vitro fertilization and embryo transfer (IVF-ET) programs, as well as to follow the progress of early pregnancy. There have been scattered reports in the literature that exposure to ultrasound may have an adverse effect on reproduction in the rat (Bologne et al: CR Soc Biol 177:381-387, 1983; Demoulin et al: Ann NY Acad Sci 442:146-152, 1985), and also in humans (Demoulin et al: Ann NY Acad Sci 442: 146-152, 1985). We report here that diagnostic levels of pulsed ultrasound did not affect either the number of embryos produced, or the ability to incorporate labelled precursors into DNA and RNA, respectively. Measurements of temperature elevation of ovaries exposed to ultrasound showed that neither controls nor experimental tissue exhibited temperature elevation greater than 1 degree C.

Animals↗

Functional roles of insulin and insulinlike growth factors in preimplantation mouse embryo development.

Growth factors are known to play important roles in cellular proliferation and differentiation. However, little information is available concerning their roles in the earliest stages of mammalian development. The effect of physiologic levels of insulin, insulinlike growth factor-I, and insulinlike growth factor II (IGF-I and -II) on DNA, RNA, and protein synthesis in preimplantation stages of the mouse are described in this study. Quantitative studies of the incorporation of labeled thymidine, uridine, and methionine into trichloroacetic acid-insoluble material by different developmental stages of preimplantation mouse embryos labeled in vitro, indicate that physiologic levels of insulin stimulated DNA, RNA, and protein synthesis with significant effects observed first at the morula stage of development. In contrast, neither IGF-I nor IGF-II stimulated DNA, RNA, or protein synthesis to a significant degree under the same experimental conditions. These results suggest a functional role for insulin at the earliest stages of mammalian embryogenesis.

Animals↗

Temporally regulated expression of insulin and insulin-like growth factors and their receptors in early mammalian development.

Recent studies of early development in a number of invertebrate and vertebrate species have suggested that growth factors and their receptors may play important roles in differentiation as well as cell proliferation. In the mouse embryo, the expression of the receptors for insulin and insulin-like growth factors I and II (IGF-I and -II) are temporally regulated. The ontogeny of receptor and ligand expression within the insulin and IGF gene family suggests that the very earliest stages of mammalian embryogenesis may be subject to regulation by autocrine and paracrine factors from maternal and embryonic sources.

Animals↗

Effects of ultrasound on ovulation in the mouse.

In vitro fertilization and embryo transfer (IVF-ET) programs use ultrasound extensively for monitoring the growth of ovarian follicles and, subsequently, for confirming the presence of a fetal sac. There have been few reports of the effects of ultrasound on ovulation rates in mammals, and we report here that following exposure to continuous wave ultrasound at a spatial average intensity of 3.0 W/cm2 for five minutes, ovulation rates measured 10 days later were significantly reduced in mice. When temperature elevation of the exposed ovary was measured with a thermocouple, hyperthermia correlated with reduction in ovulation.

Animals↗

Preimplantation mouse embryos internalize maternal insulin via receptor-mediated endocytosis: pattern of uptake and functional correlations.

High resolution microscopy in conjunction with colloidal gold-labeled insulin has been used to provide evidence that insulin is internalized by preimplantation mouse embryos by means of receptor-mediated endocytosis and concentration in coated pits. In addition, immunocytochemical analyses at the blastocyst stage, using gold-labeled anti-insulin receptor immunoglobulin (IgG) have confirmed the expression of insulin receptors on all cells of the embryo, including the inner cell mass. Immunocytochemical studies using gold-labeled anti-insulin IgG have provided evidence that the insulin internalized by the embryo is maternally derived. Functional studies show that incubating embryos in physiological levels of insulin results in increased synthesis of RNA and DNA. We conclude that insulin may play a role in early mammalian development, although the precise function of this hormone remains to be defined.

Animals↗

Temperature elevation in the rat fetus due to ultrasound exposure.

The temperature elevation resulting from sonically generated heat in rat fetuses was measured for various intensity levels. The temperature elevation produced inside the fetus was higher than that on the outside surface. In live fetuses, a portion of the heat generated was carried off by the circulating blood. The temperature elevation curves were used to estimate the absorption coefficient of rat fetuses. Absorption coefficient values range from 0.065 to 0.086 Np/cm at 1 MHz. The present results are consistent with a theoretical model of temperature elevation in a heated sphere.

Animals↗

Cytogenetics of an endometrial adenocarcinoma cell line and its implications.

Despite the fact that adenocarcinoma of the endometrium is currently the most common gynecologic malignancy in the United States, few chromosomal studies have been done to date characterizing this disease. HEC-1A, a cell line used by many laboratories as a reference cell line for endometrial carcinoma, has never been subjected to definitive karyotyping. For this reason, with the use of improved banding techniques, this has now been accomplished, and several consistent abnormalities have been identified. There was a marker chromosome formed from an insertion of 2q21, probably representing an insertion of the lacking chromosome 14. In addition, there was a translocation to the telomeric region of 1p; and trisomies of 3, 7, and 17. Many of these abnormalities are known to consistently be associated with other primary malignancies. In addition, the chromosomes in which trisomy is noted carry genes associated with epidermal growth factor and estrogen receptors, which also bear marked homology to known oncogenes. It would appear that further detailed studies of various grades and stages of endometrial carcinoma, as well as histologic types and "precursor lesions," may lead to an understanding of those chromosomal changes associated with disease initiation and progression.

Adenocarcinoma↗

Autoradiographic evidence for insulin and insulin-like growth factor binding to early mouse embryos.

Insulin binding to mouse oocytes and preimplantation embryos was assessed by light-microscopic autoradiography. Significant insulin binding was present on the cells of morulae and increased twofold at the blastocyst stage of development. Insulin binding was markedly decreased by native insulin and to a lesser extent by insulin-like growth factors (IGFs). No specific insulin binding was detected on oocytes or embryos throughout the eight-cell stage. Specific binding of IGF-I and IGF-II was also observed on the cells of blastocyst outgrowths. The findings demonstrate that specific binding of insulin and IGF is temporally expressed on the cells of pre- and peri-implantation mouse embryos. These results confirm and extend our previous immunofluorescence study.

Animals↗

Pregnancy resulting from cryopreserved human embryos using a one-step in situ dilution procedure.

In vitro fertilization and embryo transfer require the use of hormonal manipulation and surgery that may reduce the receptivity of the patient's uterus during the stimulated cycle. Cryopreservation of human embryos eliminates the need for immediate transfer, permitting them to be stored until they can be transferred during subsequent unstimulated cycles. Embryo cryopreservation is an established procedure in the breeding of laboratory and domestic animals, but has only recently been applied to humans. We report on a pregnancy using a simple cryopreservation procedure that permits embryos to be diluted out of the cryoprotectant solution without removing them from the plastic straw in which they were cryopreserved.

Adult↗