• Title/Summary/Keyword: Follicular Growth

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A Study on Culture Environments of In Vitro Matured/In Vitro Fertilized Bovine Embryos I. Influence of Somatic Cells, Growth Factors or Culture Media on In Vitro Maturation of Bovine Oocytes (소 체외수정란의 발생배양에 적합한 배양환경 조성 연구 I. 체세포, 성장인자 또는 배양액 종류가 난포란의 체외성숙에 미치는 효과)

  • 이명식;박수봉;박진기;장원경;민관식;백광수;성환후;박용윤
    • Korean Journal of Animal Reproduction
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    • v.22 no.1
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    • pp.95-99
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    • 1998
  • Three experiments were conducted with follicular oocytes, to compare some somatic cells, growth factors and media for in vitro maturation of bovine oocytes. In the first experiment, the type of somatic cells had no effects on in vitro maturation of bovine follicular ooctyes. In the second experiment, oocytes were matured in TCM199 su, pp.emented with growth factors on IVM of bovine follicular oocytes, then all were co-cultured with cumulus cells. The proportion of used oocytes that developed to expanding blastocysts was 22.2%, 20.2%, 17.7%, 22.2%, 24.4% and 20.2% after maturation in TCM199 su, pp.emented with control, insulin, IGF-I, IGF-Ⅱ, FGF and EGF, respectively. In the third experiment, oocytes were matured in BO, Ham's F10 and TCM199, then all were fertilized in BO, and embryos cultured in BO, Ham's F10 and TCM199, respectively. Cleavage rates in BO were 90%, had higher than in Ham's F10(80%) or in TCM199(64%). But production of expanding blastocysts in TCM199(21%) or Ham's F10(20.6%), had higher than in BO(4.6%).

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Mechanism of Follicular Atresia: (I) Morphological and Functional Changes (난포의 폐쇄기작:(I) 형태적, 기능적 변화)

  • 유용달
    • Journal of Embryo Transfer
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    • v.5 no.1
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    • pp.1-20
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    • 1990
  • Follicular atresia is a universal and characteristic phenomenon of both non-mammalian and mammalian vertebrates. Generally it is estimated that greater than 99% of follicles become atretic in higher domestic animals and human. The number of selected follicles developing to the preovulatory stage are thus fewer. Follicles can become atretic at any stage of development. The previous studies emphasized on descriptive and retrospect aspects of a limited population of the fully grown preovulatory follicle. The main efforts in ovarian physilogical researches are focused on follicular development culminating in ovulation but recent advances have resulted in a better understanding of atresia. Nowadays, recent studies are concentrated on the induction of atresia in a selected population of follicles and of the associated cellular, endocrine, biochemical and molecular changes. The factors initiating atresia and follicle selections are worthy of investigations. Another intriguing question is whether one can predict when a follicle will become atretic, i.e., what biochemical markers indicate that a follicle is destined for atresia. It is generally agreed that atretic process may vary even in antral follicles at different stages of their differentiations and among species. The dicisive factors are follicular responsiveness and the hormonal milieu. Some generalizations can be made on the basis of experimental induction of atresia. Alteration of the pattern of follicular steroid production is associated with the initiation stage of atretic process. Atresia appears to be a process unfolding gradually and affecting progressively in increasing number of functions and components of the follicle. The oocyte may be the latest to be afflicted in the atretic process. The high steroidogenic activity of atretic follicles lends support to the notion that atresia is not necessarily a degenerative process and that atretic follicles may play an essential role in ovarian physiology. The simultaneous occurence of growth and atretic processes may render the search for regulatory mechanisms involved in atresia difficult extremely. The questions such as how follicles are selected to undergo ovulation rather than atresia or what the mechanism of atresia is remain unanswered. However, the factors regulating or modifying ovarian hormonal milieu for the initiation of follicular growth and maturation or of atresia are being elucidated.

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Isolation of an Oocyte Stimulatory Peptide from the Ovarian Follicular Fluid of Water Buffalo (Bubalus bubalis)

  • Gupta, P.S.P.;Ravindra, J.P.;Nandi, S.;Raghu, H.M.;Ramesha, K.P.
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.11
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    • pp.1557-1563
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    • 2005
  • Ovarian follicular fluid contains both stimulatory and inhibitory agents that influence the growth and maturation of oocyte. In the present study, an attempt was made to isolate and study the biological properties of ovarian follicular fluid peptide(s) in buffaloes. Bubaline ovarian follicular was made steroid- and cell-free. A protein fraction was obtained by saturation (30-35% level) of the follicular fluid with ammonium sulfate. The protein fraction was purified with Sephadex-G 50 gel filtration chromatography and a single peak was obtained in the eluant volume, which was lyophilized. SDS-PAGE of the lyophilized fraction revealed a single band and the molecular weight of the peptide was 26.6 kDa. The peptide stimulated the cumulus cell expansion and in vitro maturation rate of oocytes in buffaloes in a dose dependent manner when it was incorporated at different dose levels (0, 10, 25, 50, 100 and 1,000 ng $ml^{-1}$ of maturation medium). The basic culture medium consisted of TCM 199 with Bovine serum albumin (0.3%). The in vitro maturation rates were comparable to those obtained with a positive control medium (TCM 199+20 ng EGF $ml^{-1}$+steer serum (20%)). Further purification and biological assays may throw more light on the nature and functions of this peptide.

Intraovarian vascular enhancement via stromal injection of platelet-derived growth factors: Exploring subsequent oocyte chromosomal status and in vitro fertilization outcomes

  • Wood, Samuel H.;Sills, E. Scott
    • Clinical and Experimental Reproductive Medicine
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    • v.47 no.2
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    • pp.94-100
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    • 2020
  • The inverse correlation between maternal age and pregnancy rate represents a major challenge for reproductive endocrinology. The high embryo ploidy error rate in failed in vitro fertilization (IVF) cycles reflects genetic misfires accumulated by older oocytes over time. Despite the application of different follicular recruitment protocols during IVF, gonadotropin modifications are generally futile in addressing such damage. Even when additional oocytes are retrieved, quality is frequently poor. Older oocytes with serious cytoplasmic and/or chromosomal errors are often harvested from poorly perfused follicles, and ovarian vascularity and follicular oxygenation impact embryonic chromosomal competency. Because stimulation regimens exert their effects briefly and immediately before ovulation, gonadotropins alone are an ineffective antidote to long-term hypoxic pathology. In contrast, the tissue repair properties (and particularly the angiogenic effects) of platelet-rich plasma (PRP) are well known, with applications in other clinical contexts. Injection of conventional PRP and/or its components (e.g., isolated platelet-derived growth factors as a cell-free substrate) into ovarian tissue prior to IVF has been reported to improve reproductive outcomes. Any derivative neovascularity may modulate oocyte competence by increasing cellular oxygenation and/or lowering concentrations of intraovarian reactive oxygen species. We propose a mechanism to support intrastromal angiogenesis, improved follicular perfusion, and, crucially, embryo ploidy rescue. This last effect may be explained by mRNA upregulation coordinated by PRP-associated molecular signaling, as in other tissue systems. Additionally, we outline an intraovarian injection technique for platelet-derived growth factors and present this method to help minimize reliance on donor oocytes and conventional hormone replacement therapy.

Implication of Angiogenesis and Expression of VEGF in Follicular Thyroid Tumor (여포상 갑상선종양에서 신생혈관형성 및 혈관내피성장인자(VEGF)의 발현의 의의)

  • Ryu Ki-Sun;Soh Euy-Young;Yim Hyun-Ee;Kim Myung-Wook
    • Korean Journal of Head & Neck Oncology
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    • v.14 no.1
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    • pp.70-75
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    • 1998
  • Tumor growth and metastasis depends on angiogenesis. Vascular endothelial growth factor (VEGF) is a potent mitogen for vascular endothelial cells in vitro and promotes neoangiogenesis in vivo. Objective: Follicular thyroid cancers(FTC) are a vascular tumor and traditionally metastasize via blood vessels. Likely other cancers, angiogenesis may playa important role in FTC. We, therefore, investigated the expression of VEGF and microvascular density by immunohistochemistry in FTC and follicular adenoma(FA). Materials and Methods: Findings of immunohistochemical stainings for VEGF and CD31 were measured by grading scale from +1 to 4+(strongest) and by counting the stained microvessels in 14 FTCs and 14 FAs. Results: 1) Expression of VEGF. a) FTCs have stronger expression than FAs in areas of tumor adjacent to capsule($mean{\pm}SD\:\;3.2{\pm}0.9\;vs\;2.0{\pm}0.9$, p<0.01) and in central area($2.3{\pm}0.7\;vs\;1.3{\pm}0.6$, p<0.01). b) The VEGF expression of capsular area in FTCs are higher than that of central area(p<0.05). 2) Microvascular density by CD31. a) FTCs have more microvessels than FAs in areas of adjacent to capsule($78.9{\pm}27.3\;vs\;38.7{\pm}15.6$, p<0.01) and in central area($75.5{\pm}23.3\;vs\;27.8{\pm}10.7$, p<0.01). b) In FTCs, the number of microvessels of capsular area are more than that of central tumor area, but not significant statistically(p>0.05). Conclusion: The higher expression of VEGF and microvascular density in FTC suggests angiogenesis plays an important role in progression of FTC.

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Antrum Formation and Growth of Mouse Pre-antral Follicles Cultured in Two Different Culture Media without Hormones

  • Kim, Ju-Hwan;Kim, Hwan-Tae;Park, Kee-Sang;Song, Hai-Bum;Chun, Sang-Sik
    • Proceedings of the KSAR Conference
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    • 2001.03a
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    • pp.8-8
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    • 2001
  • Mouse follicles require the addition of gonadotropins (Gns) to complete maturation and ovulation of oocyte and antrum formation of follicles in vitro. However, we tried examination of in vitro growth of mouse pre-antral follicles in medium without Gns and physiological factors. And also, pre-antral follicles were isolated from ovaries by mechanical method. Our present studies were conducted to evaluate on the growth of follicles and intra-follicular oocytes and antrum formation in vitro of mouse pre-antral follicles in two different media. Pre-antral follicles (91-120${\mu}{\textrm}{m}$) were isolated mechanically by fine 30G needles not using enzymes from ovary of 3-6 weeks old female ICR mice. Isolated pre-antral follicles were cultured in 20 ${mu}ell$ droplets of TCM (n=17; follicles: 107.8 $\pm$ 1.58 ${\mu}{\textrm}{m}$; oocytes: 59.9$\pm$1.2 ${\mu}{\textrm}{m}$) or MEM (n=12; follicles: 109.3$\pm$2.53 ${\mu}{\textrm}{m}$; oocytes: 55.4 $\pm$1.6${\mu}{\textrm}{m}$) under mineral oil on the 60mm culture dish. All experimental media was supplemented with 10% FBS but without Gns and/or physiological factors. Pre-antral follicles were individually cultured in drops for 8 days. Antrum formation and growth of pre-antral follicles and intra-follicular oocytes were evaluated using a precalibrated ocular micrometer at $\times$200 magnifications during in vitro culture. Results between different groups were analyzed using combination of Student's t-test and Chi-square, and considered statistically significant when P<0.05. Antrum formation of pre-antral follicles had started in two culture media on day-2. On day-8, antrum formation had occurred in 58.3%(7/12) of pre-antral follicles cultured in MEM, but only in 23.5% (4/17) of those cultured in TCM (P=0.0364). Growth of pre-antral follicles and intra-follicular oocytes were observed on day-4 and -8. On day-4, follicular diameters was similar (P=0.1338) in TCM (119.4$\pm$2.58 ${\mu}{\textrm}{m}$) and MEM (125.4$\pm$4.52 ${\mu}{\textrm}{m}$). However, on day-8, diameters of pre-antral follicles cultured in MEM (168.9$\pm$17.29 ${\mu}{\textrm}{m}$) was significantly (P=0.0248) bigger than that in TCM (126.7$\pm$4.28 ${\mu}{\textrm}{m}$). On day-4 and -8, diameters of intra-follicular oocytes were similar TCM (67.1$\pm$1.3 and 72.4$\pm$0.9${\mu}{\textrm}{m}$) and MEM (65.2$\pm$1.7 and 73.3$\pm$1.5 ${\mu}{\textrm}{m}$), respectively. We can conform that medium not supplemented with Gns and/or physiological factors can be used for in vitro antrum formation and growth of mouse pre-antral follicles and intra-follicular oocytes. In conclusion, MEM supplemented with FBS can be used for growth in vitro of mouse pre-antral follicles isolated mechanically.

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The Biochemical and Histological Studies of the Oriental Medicine Extract on Hair Growth Effect

  • Lee, Yoon-Gyeong;Kim, Jeong-Ki
    • Biomedical Science Letters
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    • v.10 no.1
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    • pp.49-54
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    • 2004
  • The hair growth effect of the oriental medicine extract which is composed of Polygoni multiflori Radix, Angelica gigantis Radix and Lycii Fructus was studied biochemically and histologically. The study was conducted dividelly into three groups, control, propecia and oriental medicine extract and three groups were compared each other in skin androgen, testosterone (T) and dihydrotestosterone (DHT), content biochemically and the number of hair follicular unit and hair follicle histologically. The oriental medicine extract and propecia decreased skin DHT conetent and increased skin total (T+DHT) content compared with control. In transverse sections of skin specimens the oriental medicine extract and propecia increased total counts of follicular units and follicles compared with control. On the basis of the result, the oriental medicine extract has same hair growth effect as propecia and it is suggested that the oriental medicne extract is capable of a therapeutic agent of alopecia.

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Lower growth factor expression in follicular fluid undergone in-vitro fertilization

  • Han, Myoung-Seok;Park, Seung-Bin;Park, Bang-Ja
    • Clinical and Experimental Reproductive Medicine
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    • v.38 no.4
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    • pp.210-215
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    • 2011
  • Objective: This study was performed to identify whether growth and differentiation factor-9 (GDF-9) and transforming growth factor-${\beta}1$ (TGF-${\beta}1$) expressions would be lower in the follicular fluid (FF) of those over age 35 who underwent IVF than under age 35. Methods: A total of 24 IVF cycles (20 patients) were included in this study. All of patients were stimulated for IVF by the GnRH short protocol and divided into two groups for analysis, according to their age: <35 group (14 cycles, 11 patients) vs. ${\geq}35$ group (10 cycles, 9 patients). The expression levels of GDF-9 and TGF-${\beta}1$ were determined by western blotting and quantitative enzyme-linked immunosorbent assay. Results: The numbers of retrieved oocytes and metaphase II oocytes were significantly lower in the ${\geq}35$ group. Lower expression of GDF-9 and TGF-${\beta}1$ by western blotting in the ${\geq}35$ group were observed as well. The mean GDF-9 and TGF-${\beta}1$ levels by enzyme-linked immunosorbent assay were lower in the ${\geq}35$ group. The values were $6,850.5{\pm}928.4$ ng/L vs. $3,333.3{\pm}1,089.2$ ng/L of GDF-9 ($p$ <0.05) and $3,844.1{\pm}571.1$ ng/L vs. $2,187.7{\pm}754.0$ ng/L of TGF-${\beta}1$ ($p$ <0.05). A negative correlation between GDF-9 and age was observed (r=-0.546, $p$=0.006). Conclusion: GDF-9 and TGF-${\beta}1$ production from stimulated ovaries during IVF appears to decrease with age.

Assessment of follicular maturation by plasma estradiol levels and ultrasound in the normal and clomiphene-stimulated menstrual cycles (정상월경주기및 클로미펜을 이용한 배란유도 월경주기에서의 난포성장에 관한 연구)

  • Chang, Y.S.;Lee, J.Y.;Moon, S.Y.;Kim, J.K.;Lim, Y.T.;Han, K.S.
    • Clinical and Experimental Reproductive Medicine
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    • v.13 no.1
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    • pp.67-75
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    • 1986
  • Follicle monitoring in the normal and clomiphene·stimulated cycles were analyzed in the Seoul IVF and ET (In vitro fertilization and embryo transfer) program. Ovarian follicular diameters were measured by the real·time sector scanner and plasma estradiol levels were assayed by radioimmunoassay methods during periovulatory period. The maximum follicular sizes of the clomiphene-stimulated and normal cycles were 21.1+-3.4mm and 19.2+-0.8mm, respectively. The peak levels of plasma estradiol in the clomiphene-stimulated and normal cycles were 10538+-553.6ng/ml and 298.3+-39.6pg/ml, respectively. Daily growth rate of the follicular diameters of the clomiphene-stimulated and normal cycles were 2.1mm and 1.9mm, respectively. Mean follicular number of the clomiphene-simulated and normal cycles were 2.28+-1.12 and 1.12+-0.21, respectively. There was a good statistical correlation between the mean follicular diameters and the plasma estradiol levels in the normal ovulatory and c1omiphene-stimulated ovulatory menstrual cycles (p<0.05). Our data revealad that the mean follicular diameter and the plasma estradiol level prior to HCG administration in IVF and program should reach at the level of 17.8+-3.0mm and 949.4+-487.1 pg/ml, respectively.

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