1.Improvement in Ovarian Tissue Quality with Supplementation of Antifreeze Protein during Warming of Vitrified Mouse Ovarian Tissue.
Hyun Sun KONG ; Eun Jung KIM ; Hye Won YOUM ; Seul Ki KIM ; Jung Ryeol LEE ; Chang Suk SUH ; Seok Hyun KIM
Yonsei Medical Journal 2018;59(2):331-336
Ice easily recrystallizes during warming after vitrification, and antifreeze protein (AFP) can inhibit the re-crystallization. However, no study has evaluated the effect of AFP treatment only thereon during warming. This study sought to compare AFP treatment protocols: a conventional protocol with AFP treatment during vitrification and first-step warming and a new protocol with AFP treatment during the first-step warming only. According to the protocols, 10 mg/mL of LeIBP (a type of AFP) was used. Five-week-old B6D2F1 mouse ovaries were randomly divided into a vitrified-warmed control and two experimental groups, one treated with the conventional AFP treatment protocol (LeIBP-all) and the other with the new AFP treatment protocol (LeIBP-w). For evaluation, ratios of ovarian follicle integrity, apoptosis, and DNA double-strand (DDS) damage/repairing were analyzed. The LeIBP-treated groups showed significantly higher intact follicle ratios than the control, and the results were similar between the LeIBP-treated groups. Apoptotic follicle ratios were significantly lower in both LeIBP-treated groups than the control, and the results were not significantly different between the LeIBP-treated groups. With regard to DDS damage/repairing follicle ratio, significantly lower ratios were recorded in both LeIBP-treated groups, compared to the control, and the results were similar between the LeIBP-treated groups. This study demonstrated that both protocols with LeIBP had a beneficial effect on maintaining follicle integrity and preventing follicle apoptosis and DDS damage. Moreover, the new protocol showed similar results to the conventional protocol. This new protocol could optimize the mouse ovary vitrification-warming procedure using AFP, while minimizing the treatment steps.
Animals
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Antifreeze Proteins/*pharmacology
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Apoptosis/drug effects
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Cryopreservation
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Cryoprotective Agents/pharmacology
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Female
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Mice
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Ovarian Follicle/cytology/drug effects
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Ovary/cytology/drug effects/*physiology
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*Vitrification/drug effects
2.Telomerase: the expression and regulatory mechanisms in preovulatory ovarian granulosa cells.
Jing ZHANG ; Yue-Hui ZHENG ; Li-Ping ZHENG
Acta Physiologica Sinica 2005;57(6):714-718
The objective of this study was to analyze the expression of telomerase in granulosa cells and the influential factors in telomerase expression. TRAP-ELISA (telomeric repeat amplification protocol-enzyme linked immunoadsordent assay) method was used to study the expression and control of telomerase in rat preovulatory ovary. We also used radioimmunoassay (RIA) to determine the expression of estradiol (E(2)) and progesterone (P(0)). Furthermore we used MTT to study the proliferation of ovarian granulosa cells. Telomerase activity was significantly enhanced by human chorionic gonadotropin (HCG), follicle-stimulating hormone (FSH), verapamil and dbcAMP, and was significantly reduced by antisense-c-myb oligodeoxynucleotide (anti-c-myb ODN) treatment. RIA was used to determine the secretion of P(0) and E(2) in all these cell culture media. We found that the secretion of these two hormones was increased when verapamil and FSH were added; no change after adding HCG and dbcAMP; and reduced when anti-c-myb was added. In MTT assay, we found that the antisense hTERT ODN significantly inhibited the proliferation of ovarian granulosa cells. These results demonstrate that telomerase activity is present in ovary antral granulosa cells and its activity is controlled by FSH, HCG, verapamil and anti-c-myb, and is directly related with the function of proliferation.
Animals
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Cell Proliferation
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Cells, Cultured
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Chorionic Gonadotropin
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pharmacology
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Female
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Follicle Stimulating Hormone
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pharmacology
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Granulosa Cells
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cytology
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enzymology
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Humans
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Ovary
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enzymology
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physiology
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Rats
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Rats, Sprague-Dawley
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Telomerase
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drug effects
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physiology
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Verapamil
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pharmacology
3.Hydrogen-rich Water Exerting a Protective Effect on Ovarian Reserve Function in a Mouse Model of Immune Premature Ovarian Failure Induced by Zona Pellucida 3.
Xin HE ; Shu-Yu WANG ; Cheng-Hong YIN ; Tong WANG ; Chan-Wei JIA ; Yan-Min MA
Chinese Medical Journal 2016;129(19):2331-2337
BACKGROUNDPremature ovarian failure (POF) is a disease that affects female fertility but has few effective treatments. Ovarian reserve function plays an important role in female fertility. Recent studies have reported that hydrogen can protect male fertility. Therefore, we explored the potential protective effect of hydrogen-rich water on ovarian reserve function through a mouse immune POF model.
METHODSTo set up immune POF model, fifty female BALB/c mice were randomly divided into four groups: Control (mice consumed normal water, n = 10), hydrogen (mice consumed hydrogen-rich water, n = 10), model (mice were immunized with zona pellucida glycoprotein 3 [ZP3] and consumed normal water, n = 15), and model-hydrogen (mice were immunized with ZP3 and consumed hydrogen-rich water, n = 15) groups. After 5 weeks, mice were sacrificed. Serum anti-Müllerian hormone (AMH) levels, granulosa cell (GC) apoptotic index (AI), B-cell leukemia/lymphoma 2 (Bcl-2), and BCL2-associated X protein (Bax) expression were examined. Analyses were performed using SPSS 17.0 (SPSS Inc., Chicago, IL, USA) software.
RESULTSImmune POF model, model group exhibited markedly reduced serum AMH levels compared with those of the control group (5.41 ± 0.91 ng/ml vs. 16.23 ± 1.97 ng/ml, P = 0.033) and the hydrogen group (19.65 ± 7.82 ng/ml, P = 0.006). The model-hydrogen group displayed significantly higher AMH concentrations compared with that of the model group (15.03 ± 2.75 ng/ml vs. 5.41 ± 0.91 ng/ml, P = 0.021). The GC AI was significantly higher in the model group (21.30 ± 1.74%) than those in the control (7.06 ± 0.27%), hydrogen (5.17 ± 0.41%), and model-hydrogen groups (11.24 ± 0.58%) (all P < 0.001). The GC AI was significantly higher in the model-hydrogen group compared with that of the hydrogen group (11.24 ± 0.58% vs. 5.17 ± 0.41%, P = 0.021). Compared with those of the model group, ovarian tissue Bcl-2 levels increased (2.18 ± 0.30 vs. 3.01 ± 0.33, P = 0.045) and the Bax/Bcl-2 ratio decreased in the model-hydrogen group.
CONCLUSIONSHydrogen-rich water may improve serum AMH levels and reduce ovarian GC apoptosis in a mouse immune POF model induced by ZP3.
Animals ; Anti-Mullerian Hormone ; blood ; Apoptosis ; drug effects ; Female ; Granulosa Cells ; cytology ; Hydrogen ; chemistry ; pharmacology ; Mice ; Mice, Inbred BALB C ; Ovarian Reserve ; drug effects ; physiology ; Ovary ; drug effects ; metabolism ; Primary Ovarian Insufficiency ; blood ; metabolism ; prevention & control ; Proto-Oncogene Proteins c-bcl-2 ; metabolism ; Water ; administration & dosage ; chemistry ; pharmacology ; Zona Pellucida ; drug effects ; physiology ; bcl-2-Associated X Protein ; metabolism
4.Effects of echinomycin on endothelin-2 expression and ovulation in immature rats primed with gonadotropins.
Zhengchao WANG ; Zhenghong ZHANG ; Yanqing WU ; Liyun CHEN ; Qianping LUO ; Jisen ZHANG ; Jiajie CHEN ; Zimiao LUO ; Xiaohong HUANG ; Yong CHENG
Experimental & Molecular Medicine 2012;44(10):615-621
Echinomycin is a small-molecule inhibitor of hypoxia-inducible factor-1 DNA-binding activity, which plays a crucial role in ovarian ovulation in mammalians. The present study was designed to test the hypothesis that hypoxia-inducible factor (HIF)-1alpha-mediated endothelin (ET)-2 expressions contributed to ovarian ovulation in response to human chorionic gonadotropin (hCG) during gonadotropin-induced superuvulation. By real-time RT-PCR analysis, ET-2 mRNA level was found to significantly decrease in the ovaries after echinomycin treatment, while HIF-1alpha mRNA and protein expression was not obviously changed. Further analysis also showed that these changes of ET-2 mRNA were consistent with HIF-1 activity in the ovaires, which is similar with HIF-1alpha and ET-2 expression in the granulosa cells with gonadotropin and echinomycin treatments. The results of HIF-1alpha and ET-2 expression in the granulosa cells transfected with cis-element oligodeoxynucleotide (dsODN) under gonadotropin treatment further indicated HIF-1alpha directly mediated the transcriptional activation of ET-2 during gonadotropin-induced superuvulation. Taken together, these results demonstrated that HIF-1alpha-mediated ET-2 transcriptional activation is one of the important mechanisms regulating gonadotropin-induced mammalian ovulatory precess in vivo.
Animals
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Cells, Cultured
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Chorionic Gonadotropin/*pharmacology
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Echinomycin/*pharmacology
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Endothelin-2/genetics/*metabolism
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Female
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Gonadotropins, Equine/*pharmacology
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Granulosa Cells/drug effects/metabolism
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Humans
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Hypoxia-Inducible Factor 1, alpha Subunit/*antagonists & inhibitors/genetics/metabolism/physiology
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Oligonucleotides/genetics
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Ovary/cytology/drug effects/physiology
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Rats
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Rats, Sprague-Dawley
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Superovulation/*drug effects
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Transcriptional Activation