Search PubMed⌕ Search

Biomedical subjects

H Funahashi

Publications and source records attributed to H Funahashi.

At least 91 records · Page 5Linked to original sources

Chlortetracycline fluorescence patterns and in vitro fertilisation of frozen-thawed boar spermatozoa incubated under various bicarbonate concentrations.

Porcine oocyte-cumulus complexes were cultured in bovine serum albumin (BSA)-free North Carolina State University (NCSU) 23 medium containing porcine follicular fluid (10%), cysteine (0.1 mg/ml) and hormonal supplements (eCG and hCG: 10 IU/ml each) for 22h. They were then cultured in the same medium but without hormonal supplements for an additional 22 h. After culture, cumulus cells were removed and oocytes were co-incubated with frozen-thawed ejaculated boar spermatozoa in tissue culture medium (TCM) 199 containing caffeine (5 mM), fetal calf serum (FCS; 10%) and varying concentrations (26-56 mM) of NaHCO3 for 9 h (experiment 1). In experiment 2, chlortetracycline (CTC) was used to assess the functional state of spermatozoa incubated under different NaHCO3 concentrations. Experiment 3 examined the effect of FCS (1% and 10%) and NaHCO3 (26 and 46 mM) on fertilisation parameters. Compared with 26 mM, penetration rate was significantly higher (p < 0.05) at 36-56 mM NaHCO3. Polyspermy showed a similar pattern although no difference was observed between 26 and 36 mM. At 46 mM NaHCO3, the mean number of spermatozoa (MNS) penetrated per oocyte increased significantly (p < 0.05). A significantly higher proportion of spermatozoa were capacitated and acrosome reacted at 46 and 56 mM NaHCO3, respectively. The fertilisation medium containing 46 mM NaHCO3 and 1% FCS showed a higher penetration rate (84%) with a relatively low incidence of polyspermy (39%). The results indicate that NaHCO3 stimulates capacitation and/or the acrosome reaction of boar spermatozoa in a dose-dependent manner and thus affects fertilisation parameters.

Animals↗

Increased level of circulating adhesion molecules in the sera of breast cancer patients with distant metastases.

The adhesion of circulating cancer cells to the vascular endothelium is an important at step in the hematogenous metastasis of cancer. E-selectin expressed on endothelial cells and carbohydrate ligands expressed on cancer cells mediate this adhesion. We investigated the clinical significance of such cell adhesion molecules in breast cancer. The cytosol concentration of sialyl Lewis(x) was found more elevated in cancerous tissue than that in adjacent non-cancerous tissue. In the serum, sialyl Lewis(x) and soluble E-selectin were seen elevated in patients with advanced and recurrent breast cancer, especially in those with distant metastases. From the above, we have concluded that sialyl Lewis(x) and soluble E-selectin could be used as tumor markers with a close relationship to the metastasis of breast cancer.

Biomarkers, Tumor↗

Developmental changes in the intracellular Ca2+ release mechanisms in porcine oocytes.

The presence of different intracellular Ca2+ release mechanisms in porcine oocytes and their involvement in mediating Ca2+ transients in different developmental stages were investigated. Metaphase II arrested oocytes showed an increase in intracellular Ca2+ concentration after injection of inositol 1,4,5-trisphosphate (InsP3), the InsP3 receptor agonist. Similar Ca2+ spikes could be detected after injection of ryanodine and cyclic ADP ribose, the ryanodine receptor agonists. The InsP3-induced Ca2+ release was inhibited by heparin, the InsP3 receptor antagonist, whereas procaine, the ryanodine receptor antagonist, blocked the Ca2+ transients generated by ryanodine and cyclic ADP ribose. In germinal vesicle-stage oocytes, intracellularly stored Ca2+ could also be mobilized by agonist treatment, though the effective concentration to generate the Ca2+ spikes was higher. After in vitro fertilization, repetitive Ca2+ transients were generated in oocytes starting 2.5-3 h after insemination. They ceased around the time of pronuclear formation when the oocytes entered first interphase. At this stage, the receptors were still capable of mediating Ca2+ release upon agonist treatment; in many cases these spikes were of longer duration, suggesting that in interphase it takes a longer time for the Ca2+ stores to resequester the mobilized Ca2+ from the cytosol. These results suggest that porcine oocytes possess both InsP3 and ryanodine Ca2+ channel receptors and that the properties of the Ca2+ release mechanisms change during oocyte development.

Adenosine Diphosphate Ribose↗

Stage-specific requirement of cysteine during in vitro maturation of porcine oocytes for glutathione synthesis associated with male pronuclear formation.

The present study was designed to clarify the duration of maturation of porcine oocytes when cysteine promotes male pronuclear (MPN) formation through oocyte glutathione (GSH) synthesis. When cumulus-oocyte complexes (COCs) were cultured in a serum-free maturation medium supplemented or not supplemented with 0.57 mM cysteine, about 90% of oocytes reached metaphase I (M-I) to metaphase II (M-II) and M-II at 36 and 48 h of culture, respectively. When cysteine was added to medium at 0, 12, 24, and 36 h of culture and COCs were cultured for a total of 48 h, oocyte GSH concentrations at the end of culture and the incidence of MPN formation after sperm penetration in vitro were both higher than the values in oocytes cultured for 48 h without cysteine. In contrast, the GSH concentration at 48 h and the incidence of MPN formation were not increased when cysteine was present only during the first 24 h of maturation culture. When cysteine was added to medium every 3 h from 36 h of culture on, a higher incidence of MPN formation was obtained in oocytes cultured in the presence of cysteine from 36 to 42 h than from 36 to 45 h of culture, although GSH concentrations were higher in oocytes cultured with cysteine from 36 to 42 h than from 39 to 42 h of culture. These results suggest that the presence of cysteine in maturation medium is critical only between 42 and 48 h of culture when porcine oocytes are in the late M-I to M-II stage of development. At that time cysteine is utilized for GSH synthesis, which is subsequently instrumental in the formation of MPN after sperm penetration in vitro.

Animals↗

Synchronization of meiosis in porcine oocytes by exposure to dibutyryl cyclic adenosine monophosphate improves developmental competence following in vitro fertilization.

The effect of stage of maturation of the germinal vesicle of porcine oocytes at the time of in vitro maturation on subsequent developmental competence was examined. A large variation exists in the germinal vesicle morphology of oocytes at the time of collection of cumulus-oocyte complexes (COCs) and after culture in the absence of dibutyryl cAMP (dbcAMP) for 20 h. However, the morphology of the germinal vesicle was synchronized to a specific stage after culture in the presence of 1 mM dbcAMP for 20 h. There was no difference in germinal vesicle breakdown rate (total mean, 75.0 +/- 5.4%) or in maturation rate (total mean, 82.1 +/- 2.1 %) at 28 and 44 h of culture, respectively. However, differences in meiotic progress of oocytes were observed (p < 0.05) at 36 h of culture when COCs were exposed to dbcAMP for the first 20 h of maturation, as compared to controls. The incidence of embryos that developed to the blastocyst stage after in vitro fertilization was higher (p < 0.05) when COCs were exposed to dbcAMP (21.5 +/- 2.5%) as compared to controls (9.2 +/- 1.6%). After transfer of experimental embryos to four recipient gilts, the three pregnant recipients delivered 19 live piglets. These results indicate that exposure of COCs to dbcAMP for the first 20 h of culture for maturation increases the homogeneity of oocyte nuclear maturation and improves the efficiency of in vitro production of swine embryos.

Animals↗

Advances in in vitro production of pig embryos.

A series of integrated, effective techniques is required to produce pig embryos from follicular oocytes in vitro. The failure to form a male pronucleus and polyspermy have been serious problems in efforts to produce embryos efficiently in vitro from pig oocytes. The former problem is now considered to be due to oxidative stress and the latter has been partially solved by reducing the number of capacitated spermatozoa reaching the oocytes. By the use of new technology for in vitro production of embryos, an acceptable rate of blastocyst formation and the birth of live piglets has been achieved. However, even with the use of these improved in vitro maturation (IVM) and fertilization (IVF) conditions, the efficiency of production of in vitro blastocysts and offspring still remains relatively low. More recently the developmental competence of embryos matured and fertilized in vitro has been investigated through modification of culture conditions of oocytes during the germinal vesicle stage. Oocyte competence for early embryonic development appears to be achieved by active communication between the oocyte and follicular cells. Since the ovarian oocytes available for IVM are primarily those present in mid-size antral follicles of prepubertal gilts, more research is needed to gain an improved understanding of the culture conditions required to induce developmental competence in oocytes from both preantral and antral follicles as well as additional modifications in IVF systems to overcome the problem of polyspermic penetration.

Animals↗

Native structure and arrangement of inositol-1,4,5-trisphosphate receptor molecules in bovine cerebellar Purkinje cells as studied by quick-freeze deep-etch electron microscopy.

We used quick-freeze deep-etch replica electron microscopy to visualize the native structure of inositol-1,4,5-trisphosphate receptor (IP3R) in the cell. In the dendrites of Purkinje neurons of bovine cerebellum there were many vesicular organelles whose surfaces were covered with a two-dimensional crystalline array of molecules. Detailed examination of the cytoplasmic true surface of such vesicles in replica revealed that the structural unit, identified as IP3R by immunocytochemistry and subsequent Fourier analysis, is a square-shaped assembly and is aligned so that the side of the square is inclined by approximately 20 degrees from the row-line of the lattice. Comparison with the ryanodine receptor (RyaR), another intracellular Ca2+ channel on the endoplasmic reticulum, suggested that IP3R, unlike RyaR, has a very compact structure, potentially reflecting the crucial difference in the function of the cytoplasmic portion of the molecule.

Animals↗

Adhesion of Human Breast Cancer Cells to Vascular Endothelium Mediated by Sialyl Lewis &supx; /E-selectin.

The adhesion molecules involved in the attachment of breast cancer cells to endothelial cells were investigated in vitro. All six human breast cancer cell lines expressed sialyl Lewis &supx; antigen(s-Le &supx;). Only two cell lines expressed sialyl Lewis&supa; antigen. A correlation was found between the degree of s-Le&supx; expression and the attachment of cancer cells to human umbilical vein endothelial cells (HUVECs) activated by IL-1beta. Monoclonal antibodies against s-Le &supx; or E-selectin inhibited this adhesion. These findings suggest that s-Le &supx; on the surface of cancer cells and E-selectin on the surface of endothelial cells play roles in adheision of breast cancer cells to vascular endothelium.

Journal Article↗

Detection of ret homodimers in MEN 2A-associated pheochromocytomas.

Using transfection of NIH 3T3 cells, we have recently demonstrated that multiple endocrine neoplasia (MEN) 2A mutations activate the c-Ret protein by inducing its disulfide-linked homodimerization on the cell surface. To investigate whether the homodimers are present in original tumors, the expression of the c-Ret protein was analyzed in eight sporadic and two MEN 2A-associated pheochromocytomas, the latter two of which contained mutations in cysteine 618 or 634 of Ret. The c-Ret protein was expressed at variable levels in all pheochromocytomas examined. By labeling the c-Ret protein immunoprecipitated from tumor tissues with [gamma-32P]ATP in vitro, its homodimers were detected in pheochromocytomas from MEN 2A patients but not in a sporadic tumor. This result represents the first demonstration of Ret homodimers in original tumors.

Drosophila Proteins↗

Suppressive effect of iodine on DMBA-induced breast tumor growth in the rat.

Concerning the suppressive effect of inorganic iodine on the growth of 7,12-dimethyl-benz(a)anthracene (DMBA)-induced breast tumor in female Sprague-Dawley (SD) rats, we previously reported that although iodine itself had a suppressive effect on the tumor growth, its effect was not as strong as that of MPA (medroxy-progesterone acetate). However, the combined medication of iodine at a low concentration + MPA showed a stronger effect than MPA alone. The purpose of the present study is to elucidate this mechanism of action by determining the uptake of the administered iodine into breast tumor tissue. Breast tumors were induced with DMBA in female SD rats, and these animals were treated with MPA + inorganic iodine at various concentrations for 4 weeks to determine tumor growth and tumor iodine content. In the comparison of tissue iodine content in growth-suppressive tumors with that in nonsuppressive tumors, the former showed a much higher iodine content. This suggests that direct uptake of inorganic iodine by breast tumors led to the suppression of tumor growth.

9,10-Dimethyl-1,2-benzanthracene↗

Microtubule and microfilament dynamics in porcine oocytes during meiotic maturation.

Microtubule and microfilament organization in porcine oocytes during maturation in vivo and in vitro was imaged by immunocytochemistry and laser scanning confocal microscopy. At the germinal vesicle stage, microtubules were not detected in the oocyte. After germinal vesicle breakdown, a small microtubule aster was observed near the condensed chromatin. During the prometaphase stage, microtubule asters were found in association with each chromatin mass. The asters then elongated and encompassed the chromatin at the metaphase-I stage. At anaphase-I and telophase-I microtubules were detected in the meiotic spindle. Microtubules were observed only in the second meiotic spindle at the metaphase-II stage. The meiotic spindle was a symmetric, barrel-shaped structure containing anastral broad poles, located peripherally and radially oriented. Taxol, a microtubule-stabilizing agent, did not induce microtubules in oocytes at the germinal vesicle stage. After germinal vesicle breakdown, numerous cytoplasmic foci of microtubules were formed in the entire oocyte when oocytes were incubated in the presence of taxol. Microfilaments were observed as a relatively thick uniform area around the cell cortex and were also found throughout the cytoplasm of oocytes at the germinal vesicle stage. After germinal vesicle breakdown, the microfilaments were concentrated close to the female chromatin. During prometaphase, microfilaments were chromatin moved to the peripheral position. At metaphase-I, two domains, a thick and a thin microfilament area, existed in the egg cortex. Chromosomes were located in the thick microfilament domain of the cortex. In summary, these results suggest that both microtubules and microfilaments are closely involved with chromosomal dynamics after germinal vesicle breakdown and during meiotic maturation in porcine oocytes.

Actin Cytoskeleton↗

gamma-Glutamyl transpeptidase of spermatozoa may decrease oocyte glutathione content at fertilization in pigs.

The presence of gamma-glutamyl transpeptidase (GGT) in boar spermatozoa and the potential role of the GGT at sperm penetration were examined using in vitro matured porcine oocytes. In the first experiment, GGT of boar spermatozoa was examined using a histochemical stain. GGT was detected in the midpiece and the acrosome regions of boar spermatozoa. In the second experiment, porcine oocytes matured in vitro were injected with approximately 40 pl of 10 mM HEPES solution alone or HEPES containing 0.5 U/ml GGT or 1 mM guanosine-5'-O-(3'-thiotriphosphate) (GTP-gamma-S; G-protein activator). When GGT was injected into oocytes, the incidence of oocytes activated (23.7 +/- 1.4%) was not different (P > 0.05) from HEPES-injected controls (24.9 +/- 1.3%) at 6 h after injection. Injected GTP-gamma-S, however, activated 76.0 +/- 5.3% of oocytes at 6 h after injection, but extrusion of the second polar body was very low (2.8 +/- 4.8%). Total content of glutathione (GSH) and glutathione disulfide (GSSG) did not differ (P > 0.05) between GTP-gamma-S injected oocytes (4.2 +/- 0.7 pmol/oocyte) and noninjected oocytes (4.0 +/- 0.1 pmol/oocyte) at 6 h after injection. However, the total content of GSH and GSSG was lower (P < 0.01) in GGT-injected oocytes (2.1 +/- 0.2 pmol/oocyte) than HEPES-injected oocytes (3.4 +/- 0.2 pmol/oocyte) at 6 h after injection. In the third experiment, in vitro matured porcine oocytes were injected with about 40 pl of 10 mM HEPES solution alone or HEPES containing 0.5 U/ml GGT and then inseminated. At 12 h after insemination, the incidence of male pronuclear formation was significantly lower in oocytes injected with GGT as compared with injected control oocytes. These results demonstrated that (1) GGT was present on the surface of spermatozoa, (2) total oocyte content of GSH and GSSG was decreased by microinjection of GGT but not by that of GTP-gamma-S, and (3) male pronuclear formation was inhibited in GGT-injected oocytes. These results suggest that sperm GGT may be a limiting factor for male pronuclear formation in polyspermic oocytes.

Animals↗

Adrenalectomy for treatment of Cushing syndrome: results in 122 patients and long-term follow-up studies.

Patients with Cushing syndrome (n = 122) who underwent adrenalectomy from 1957 through 1993 were reviewed for survival and complications. Of the 122 patients, 70 had adrenocortical adenoma, 30 Cushing's disease, 6 primary pigmented nodular adrenocortical disease (PPNAD), 7 other types of primary nodular hyperplasia, 5 adrenocortical carcinoma, and 4 ectopic ACTH syndrome. Sixty-five patients with adrenocortical adenoma are alive, and the survival rate was equal to the age-matched control population, when patients who died of the postoperative complication were excluded. Of the patients with Cushing's disease, 20 are alive; and 10 of 16 patients (63%) who were followed-up and evaluated had skin pigmentation. Four of sixteen patients (25%) developed Nelson's syndrome. Four PPNAD patients and five with other types of nodular hyperplasia are alive. Most of these patients underwent bilateral total adrenalectomy, but some patients remitted after unilateral adrenalectomy. All of five adrenocortical carcinoma patients and four with ectopic ACTH syndrome died within 2 years after operation. The prognosis for patients with adrenocortical adenoma after unilateral adrenalectomy is excellent, though it is important to avoid operative complications. The rapid cure of signs and symptoms of glucocorticoid excess after total adrenalectomy is ensured, and prognosis is satisfactory under careful glucocorticoid replacement, making total adrenalectomy an alternative treatment for Cushing's disease.

ACTH Syndrome, Ectopic↗

Effects of injecting calcium chloride into in vitro-matured porcine oocytes.

In vitro-matured porcine oocytes were given injections of 0.1 M CaCl2 and after 6 h evaluated for signs of early and late activation events. CaCl2 injection caused cortical granule exocytosis in 75% (3 of 4) of the oocytes tested. It also induced cell cycle resumption as monitored by the histone H1 kinase assay: the phosphorylation rate of histone H1 decreased to 36.7% of the original value. Treated oocytes completed meiosis, extruded the second polar body, and progressed to first interphase: 79.4% of them formed one or more pronuclei. The elevated intracellular Ca2+ level resulted in activation-related changes in the protein synthetic profile in 90% (9 of 10) of the oocytes. Furthermore, 14.7% (9 of 61) of the treated oocytes developed to the compact morula/early blastocyst stage after a 7-day culture in ligated porcine oviduct, and one blastocyst hatched from the zona pellucida. Control oocytes given injections of 0.1 M MgCl2 or carrier medium (10 mM Hepes) did not show the changes mentioned. The results strengthen the idea that Ca2+ is a cell messenger that plays a central part in oocyte activation; it is concluded that elevated intracellular Ca2+ level caused by a single injection of CaCl2 leads to both early and late events of porcine oocyte activation.

Animals↗

Microtubule organization in porcine oocytes during fertilization and parthenogenesis.

Microtubule configurations in porcine oocytes after sperm penetration or after artificial activation by electrical stimulation were imaged by immunocytochemistry and laser scanning confocal microscopy. Soon after sperm penetration, an aster was seen adjacent to the incorporated sperm head. Polyspermic penetrations led to the presence of multiple sperm asters in association with each sperm. The sperm aster enlarged and, at the time of pronuclear apposition, filled the cytoplasm. After male and female gamete union, the microtubule matrix was reduced. At the mitotic metaphase stage, microtubules were detected in the spindle, which was anastral and fusiform. At anaphase, asters assembled at each spindle pole, and at telophase, large asters filled the cytoplasm. Artificial activation by electrical stimulation induced in the cytoplasm a dense network of microtubules, which seem to be involved in proper positioning of the female pronucleus. At mitotic metaphase, microtubules were concentrated around the chromatin. The results of experiments using taxol, a microtubule stabilizing agent, suggest that maternal centrosomal material is present in the mature porcine oocyte as dispersed undetectable material that can form a microtubule network after parthenogenetic activation. However, at fertilization, the paternal centrosome collects centrosomal material to form a sperm aster. These results suggest that the functional centrosome that forms during fertilization is a result of the blending of paternal and maternal centrosomal components.

Animals↗

Presence of organic osmolytes in maturation medium enhances cytoplasmic maturation of porcine oocytes.

The effects of organic osmolytes on cytoplasmic maturation of porcine oocytes were examined in maturation medium (modified Whitten's medium) containing various NaCl concentrations. The presence of organic osmolytes, such as taurine and sorbitol, at 6 and 12 mM in maturation medium containing 68.49 or 92.40 mM NaCl increased oocyte glutathione content. Microfilament organization in oocytes was disrupted in maturation medium containing the higher level of NaCl (92.40 mM). However, supplementation with 12 mM sorbitol to the medium reduced the severity of the abnormality. Early embryonic development in vitro to the blastocyst stage was 8.3 +/- 0.9% for oocytes matured in modified Whitten's medium (68.49 mM NaCl) supplemented with 12 mM sorbitol, and 7.9 +/- 0.8% in modified NCSU23 medium (containing 108.73 mM NaCl, 7 mM taurine, 5 mM hypotaurine, and 1 mM glutamine), compared to 4.7 +/- 0.6% in modified Whitten's medium (68.49 mM Na Cl), which did not contain organic osmolytes. These results indicate that the presence of organic osmolytes, such as sorbitol and taurine, reduces the detrimental effects of high NaCl concentration in media used for the maturation of porcine oocytes. This effect is reflected by oocyte glutathione content and microfilament organization at the end of maturation and early development following in vitro maturation and in vitro fertilization.

Animals↗