• Title/Summary/Keyword: Ovarian Function

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Mesenchymal stem cells for restoration of ovarian function

  • Yoon, Sook Young
    • Clinical and Experimental Reproductive Medicine
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    • v.46 no.1
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    • pp.1-7
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    • 2019
  • With the progress of regenerative medicine, mesenchymal stem cells (MSCs) have received attention as a way to restore ovarian function. It has been reported that MSCs derived from bone marrow, adipose, umbilical cord blood, menstrual blood, and amniotic fluid improved ovarian function. In light of previous studies and advances in this field, there are increased expectations regarding the utilization of MSCs to restore ovarian function. This review summarizes recent research into potential applications of MSCs in women with infertility or primary ovarian insufficiency, including cases where these conditions are induced by anticancer therapy.

Establishment of Effective Mouse Model of Premature Ovarian Failure Considering Treatment Duration of Anticancer Drugs and Natural Recovery Time

  • Lee, Eun hee;Han, Si Eun;Park, Min Jung;Kim, Hyeon Jung;Kim, Hwi Gon;Kim, Chang Woon;Joo, Bo Sun;Lee, Kyu Sup
    • Journal of Menopausal Medicine
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    • v.24 no.3
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    • pp.196-203
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    • 2018
  • Objectives: This study was aimed to establish the most effective premature ovarian failure (POF) mouse model using Cyclophosphamide (CTX), busulfan (Bu), and cisplatin considering treatment duration of anticancer drugs and natural recovery time. Methods: POF was induced by intraperitoneally injecting CTX (120 mg/kg)/Bu (12 mg/kg) for 1 to 4 weeks or cisplatin (2 mg/kg) for 3 to 14 days to C57BL/6 female mice aged 6 to 8 weeks. Controls were injected with equal volume of saline for the same periods. Body weight was measured every week, and ovarian and uterine weights were measured after the last injection of anticancer drug. To assess ovarian function, POF-induced mice were superovulated with pregnant mare serum gonadotropin and human chorionic gonadotropin, and then mated with male. After 18 hours, zygotes were retrieved and cultured for 4 days. Finally, the mice were left untreated for a period of times after the final injection of anticancer drug, and the time for natural recovery of ovarian function was evaluated. Results: After 2 weeks of CTX/Bu injection, ovarian and uterine weights, and ovarian function were decreased sharply. Cisplatin treatment for 10 days resulted in a significant decrease in ovarian and uterine weight, and ovarian function. When POF was induced for at least 2 weeks for CTX/Bu and for at least 10 days for cisplatin, ovarian function did not recover naturally for 2 weeks and 1 week, respectively. Conclusions: These results suggest that CTX/Bu should be treated for at least 2 weeks and cisplatin for at least 10 days to establish the most effective primary ovarian insufficiency mouse model.

Gonadotrophin Releasing Hormone Analogues for Ovarian Function Preservation in Young Females Undergoing Chemotherapy

  • Bansal, Anshuma;Patel, Firuza Darius;Rai, Bhavana;Dhanireddy, Bhaswanth;Sharma, Suresh Chand
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.5
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    • pp.2185-2190
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    • 2014
  • Chemotherapy has significantly improved the prognosis of cancer patients with various malignancies. However, female patients, especially those whoich are premenopausal, suffer from significant chemotherapy induced ovarian function impairment, which decreases their quality of life. Many new techniques for ovarian preservation have been established in recent years. Although the use of gonadotrophin releasing hormone analogues (GnRHa) for this purpose is not a new concept, its effectiveness in protection of ovarian function is still debatable. This article deals with studies and metaanalyses which have been undertaken in the past, demonstrating the impact of GnRHa in ovarian function preservation, and whether their use can be implemented in routine practice.

Effects of Repeated Ovarian Stimulation on Ovarian Function and Aging in Mice

  • Whang, Jihye;Ahn, Cheyoung;Kim, Soohyun;Seok, Eunji;Yang, Yunjeong;Han, Goeun;Jo, Haeun;Yang, Hyunwon
    • Development and Reproduction
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    • v.25 no.4
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    • pp.213-223
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    • 2021
  • Controlled ovarian hyperstimulation (COH) is routinely used in the in vitro fertilization and embryo transfer (IVF-ET) cycles to increase the number of retrieved mature oocytes. However, the relationship between repeated COH and ovarian function is still controversial. Therefore, we investigated whether repeated ovarian stimulation affects ovarian aging and function, including follicular development, autophagy, and apoptosis in follicles. Ovarian hyperstimulation in mice was induced by intraperitoneal injection with pregnant mare serum gonadotropin (PMSG) and human chorionic gonadotropin (hCG). Mice subjected to ovarian stimulation once were used as a control group and 10 times as an experimental group. Repeated injections with PMSG and hCG significantly reduced the number of primary follicles compared to a single injection. The number of secondary and antral follicles increased slightly, while the number of corpus luteum increased significantly with repeated injections. On the other hand, repeated injections did not affect apoptosis in follicles associated with follicular atresia. The expression of autophagy-related genes Atg5, Atg12, LC3B, and Beclin1, cell proliferation-related genes mTOR, apoptosis-related genes Fas, and FasL was not significantly different between the two groups. In addition, the expression of the aging-related genes Dnmt1, Dnmt3a, and AMH were also not significantly different. In this study, we demonstrated that repeated ovarian stimulation in mice affects follicular development, but not autophagy, apoptosis, aging in ovary. These results suggest that repetition of COH in the IVF-ET cycle may not result in ovarian aging, such as a decrease in ovarian reserve in adult women.

GBA inhibition suppresses ovarian cancer growth, survival and receptor tyrosine kinase AXL-mediated signaling pathways

  • Gang Wang;Baisha Ouyang;Fang Jing;Xiaoyan Dai
    • The Korean Journal of Physiology and Pharmacology
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    • v.27 no.1
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    • pp.21-29
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    • 2023
  • The poor outcome of advanced ovarian cancer under conventional therapy necessitates new strategies to improve therapeutic efficacy. β-glucosidase (encoded by GBA) is a lysosomal enzyme and is involved in sphingolipids metabolism. Recent studies revealed that β-glucosidase plays a role in cancer development and chemoresistance. In this work, we systematically evaluated the expression and role of GBA in ovarian cancer. Our work demonstrates that inhibition of β-glucosidase has therapeutic potential for ovarian cancer. Gene Expression Profiling Interactive Analysis database, western blot and immunohistochemistry analyses of patient samples demonstrated that GBA mRNA and protein expression levels were significantly increased in ovarian cancer compared to normal tissues. Functional studies using gainof-function and loss-of-function approaches demonstrated that GBA overexpression did not affect growth and migration but alleviated cisplatin's efficacy in ovarian cancer cells. In addition, GBA depletion resulted in growth inhibition, apoptosis induction, and enhancement of cisplatin's efficacy. Of note, we found that GBA inhibition specifically decreased receptor tyrosine kinase AXL level, leading to the suppression of AXL-mediated signaling pathways. Our data suggest that GBA represents a promising target to inhibit AXL signaling and overcome cisplatin resistance in ovarian cancer.

SIRT7 Exhibits Oncogenic Potential in Human Ovarian Cancer Cells

  • Wang, Hong-Ling;Lu, Ren-Quan;Xie, Su-Hong;Zheng, Hui;Wen, Xue-Mei;Gao, Xiang;Guo, Lin
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.8
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    • pp.3573-3577
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    • 2015
  • Background: Sirtuin7 (SIRT7) is a type of nicotinamide adenine dinucleotide oxidized form (NAD+)-dependent deacetylase and the least understood member of the sirtuins family; it is implicated in various processes, such as aging, DNA damage repair and cell signaling transduction. There is some evidence that SIRT7 may function as a tumor trigger for human malignancy. Here, we aimed to explore the biological function of SIRT7 in ovarian carcinoma cells and its potential mechanism. Materials and Methods: Expression of SIRT7 in ovarian cancer cell lines was detected by western blotting. Transduced cell lines with SIRT7 knockdown or overexpression were constructed. Cell viability, cologenic, apoptosis-associated and motility assays were performed to elucidate the biological function of SIRT7 in ovarian cancer cells. Results: SIRT7 demonstrated a higher level in ovarian cancer cell lines compared with normal cells. On the one hand, down-regulation of SIRT7 significantly reduced ovarian cancer cell growth, repressed colony formation and increased cancer cell apoptosis; on the other hand, up-regulation promoted the migration of cancer cells. Additionally, repression of SIRT7 also induced change in apoptosis-related molecules and subunits of the NF-${\kappa}B$ family. Conclusions: In the present study, our data indicated that SIRT7 might play a role of oncogene in ovarian malignancy and be a potential therapeutic target.

A Case of Recovery of Ovarian Function in Woman Who was diagnosed as Premature Ovarian Failure (조기난소기능부전 환자 치험 1례)

  • Zhang, Kyung-Ho;Kim, Sang-Woo;Ko, Yu-Mi
    • The Journal of Korean Obstetrics and Gynecology
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    • v.15 no.4
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    • pp.193-201
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    • 2002
  • Purpose : Premature ovarian failure, characterized by amenorrhea or oligomenorrhea, estrogen defieciency and elevated gonadotropins in woman less than 40 years of age, affects approximately 1% of woman and is associated with autoimmune phenomena or genetic abnormalities, but mostly idiopathic. This disease is loss of ovarian function seems not to be always permenent. Method : We investigated herb medication was effective in patient of premature ovarian failure. Results: Signs and symtoms of estrogen deficiency were improved and mensturation occurred monthly and the elevated during treatment of herb medication. As a result of our case recovering of ovarian function, we hope more investigtions about treating premature ovarian failure by oriental medicine will be gained.

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A Retrospective Study on the Influence of Kamisoyo-san (Jiaweixiaoyao-san) on Improving Ovarian Function in Child-bearing Period Infertile Women with Ovarian Dysfunction (가미소요산(加味逍遙散)이 가임기 난소기능저하 불임여성의 난소기능개선에 미치는 영향에 관한 후향적 연구)

  • Lee, Han-Sung;Cho, Kwang-Ho;Kim, Tae-Kyung;Kim, Choon-Hwan;Ahn, Soo-Jung;Ahn, Kwang-Seok;Shim, Bum-Sang;Kim, Sung-Hoon;Choi, Seung-Hoon;Jung, Yun-Jae;Ahn, Kyoo-Seok
    • The Journal of Korean Medicine
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    • v.30 no.5
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    • pp.137-145
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    • 2009
  • Objectives: This study was performed to elicit the effectiveness of a herbal formula, Kamisoyo-san (Jiaweixiaoyaosan) on enhancing ovarian function in infertile woman with ovarian dysfunction. Methods: 28 patients who initially visited between November 2006 and February 2009 and were administered Kamisoyo-san until May 2009 were retrospectively evaluated for their ovarian function by means of basal FSH (b-FSH), menstrual cycle, body mass index (BMI), and body fat ratio. To identify the major factor of improving ovarian function, 28 patients were classified into two groups by criteria of patent factors, such as pre-administration b-FSH, patient age, and treatment duration, respectively. Two groups were compared in terms of pregnancy percentage, b-FSH, menstrual cycle, BMI, and body fat ratio. Results: Post-administration b-FSH significantly decreased in comparison with pre-administration (p=0.004). The higher group (b-FSH $\geq$ 25mIU/mL) in pre-administration b-FSH was more effective in decrease of post-administration b-FSH than the lower one (10mIU/mL < b-FSH < 25mIU/mL). Conclusion: Kamisoyo-san may have a therapeutic effect on the infertility of child bearing period woman with ovarian dysfunction.

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Does bilateral uterine artery ligation have negative effects on ovarian reserve markers and ovarian artery blood flow in women with postpartum hemorrhage?

  • Verit, Fatma Ferda;Cetin, Orkun;Keskin, Seda;Akyol, Hurkan;Zebitay, Ali Galip
    • Clinical and Experimental Reproductive Medicine
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    • v.46 no.1
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    • pp.30-35
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    • 2019
  • Objective: Bilateral uterine artery ligation (UAL) is a fertility-preserving procedure used in women experiencing postpartum hemorrhage (PPH). However, the long-term effects of this procedure on ovarian function remain unclear. The aim of this study was to investigate whether bilateral UAL compromised ovarian reserve and ovarian blood supply. Methods: This prospective study included 49 women aged between 21 and 36 years who had undergone a cesarean section for obstetric indications. Of these, 25 underwent uterine bilateral UAL to control intractable atonic PPH. The control group consisted of 24 women who had not undergone bilateral UAL. Standard clinical parameters, the results of color Doppler screening, and ovarian reserve markers were assessed in all participants at 6 months after surgery. The clinical parameters included age, parity, cycle history, body mass index, and previous medication and/or surgery. Color Doppler screening findings included the pulsatility index (PI) and resistance index (RI) for both the uterine and ovarian arteries. The ovarian reserve markers included day 3 follicle-stimulating hormone (FSH) levels, antral follicle count, and $anti-M\ddot{u}llerian$ hormone (AMH) levels. Results: There were no significant differences in the ovarian reserve markers of day 3 FSH levels, antral follicle count, and AMH levels between the study and control groups (p> 0.05 for all). In addition, no significant differences were observed in the PI and RI indices of the uterine and ovarian arteries (p> 0.05 for all). Conclusion: In this study, we showed that bilateral UAL had no negative effects on ovarian reserve or ovarian blood supply, so this treatment should be used as a fertility preservation technique to avoid hysterectomy in patients experiencing PPH.

Ovarian cell aggregate culture in teleost, marine medaka (Oryzias dancena): basic culture conditions and characterization

  • Jae Hoon, Choi;Seung Pyo Gong
    • Journal of Animal Reproduction and Biotechnology
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    • v.39 no.1
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    • pp.19-30
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    • 2024
  • Background: Although an understanding of the proliferation and differentiation of fish female germline stem cells (GSCs) is very important, an appropriate threedimensional (3D) research model to study them is not well established. As a part of the development of stable 3D culture system for fish female GSCs, we conducted this study to establish a 3D aggregate culture system of ovarian cells in marine medaka, Oryzias dancena. Methods: Ovarian cells were separated by Percoll density gradient centrifugation and two different cell populations were cultured in suspension to form ovarian cell aggregates to find suitable cell populations for its formation. Ovarian cell aggregates formed from different cell populations were evaluated by histology and gene expression analyses. To evaluate the media supplements, ovarian cell aggregate culture was performed under different media conditions, and the morphology, viability, size, gene expression, histology, and E2 secretion of ovarian cell aggregates were analyzed. Results: Ovarian cell aggregates were able to be formed well under specific culture conditions that used ultra-low attachment 96 well plate, complete mESM2, and the cell populations from top to 50% layers after separation of ovarian cells. Moreover, they were able to maintain minimal ovarian function such as germ cell maintenance and E2 synthesis for a short period. Conclusions: We established basic conditions for the culture of O. dancena ovarian cell aggregates. Additional efforts will be required to further optimize the culture conditions so that the ovarian cell aggregates can retain the improved ovarian functions for a longer period of time.