• 제목/요약/키워드: first polar body

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Polar Body: Indicator of Oocyte's Maturation, Have Any Function on Oocyte?

  • Dibyendu, Biswas;Hyun, Sang-Hwan
    • 한국수정란이식학회지
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    • 제24권4호
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    • pp.249-251
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    • 2009
  • Polar body was usually used as a determinant of oocyte's maturation. Polar body morphology could reflect the embryo quality and implantation competence. This review only focuses on morphology of the first polar body and embryo developmental rate in the presence or absence of polar body. However, it is very difficult to describe whether polar body has any effects on embryo development in vitro or in vivo. Further intensive research is needed to determine its function on embryo development.

Brilliant Cresyl Blue 염색방법과 극체 방출 여부에 따른 돼지 체외수정용 난포란 선별 방법이 배발달에 미치는 영향 (Different Developmental Competence of Porcine Oocytes Selected by Brilliant Cresyl Blue Staining and Polar Body Extrusion)

  • 김연수;김철욱;김인철;곽대오;정기화
    • Reproductive and Developmental Biology
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    • 제33권1호
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    • pp.29-33
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    • 2009
  • The brilliant cresyl blue (BCB) has been used to select the developmental competent oocytes in pigs, goats and cows. Growing oocytes have a higher level of active glucose-6-phosphate dehydrogenase(G6PDH) compare to mature oocytes and are rarely stained compared to mature oocytes, because G6PDH converts BCB to colorless. First polar body extrusion regard as a guideline of meoisis completion. Selection of polar body extrude oocyte is more developmental competent to blastocyst than unselected. This study was conducted to compare the BCB test to the polar body extrusion on selection of developmental competent porcine oocytes for the production of blastocyst. Cumulus-Oocytes complex were exposed to 26uM BCB stain diluted in NCSU-23 for 90 min. There was no significant difference embryo development to blastocysts between BCB treated and not treated($19.58{\pm}1.99$ vs $18.75{\pm}2.27%$), which means there was no detrimental effect of BCB exposure to oocytes. Normal fertilization is not differed among treatment groups from 70.0 to 78.4% development to blastocyst, beside polyspermy did not. To compare two different selection methods, BCB test and polar body extrusion, evaluate the developmental competent of IVP embryos. BCB+PB+(blue stained and polar body extruded, $20.71{\pm}0.45%$) and BCB-PB+(colorless and polar body extruded, $20.04{\pm}l.29%$) groups are significantly (p<0.05) higher developed than those of BCB+PB-(blue stained and no polar body, $13.24{\pm}0.73%$) and BCB-PB-(colorless and no poladbody, $7.25{\pm}0.77%$). These results showed that selection of polar body extruded oocytes method is more efficient than that of BCB test.

돼지 난포액내 난구세포 난자복합체 팽창 억제 성분 (Cumulus Oocyte Complex Expansion Inhibiting Ingredient in Porcine Follicular Fluid)

  • 오현주;김은희;손채은;이은주;박영식
    • 한국수정란이식학회지
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    • 제15권3호
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    • pp.203-210
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    • 2000
  • The objective of this study was to identify a follicular fluid ingredient inhibiting the cumulus oocyte complex (COC) expansion. Thus, follicular fluid or liquid chromatographic fractions of follicular fluid was supplemented in COC culture medium. And COCs were incubated for 48 hours to investigate about cumulus expansion and also the first polar body extrusion. The results obtained were as follows; 1. The fluid of medium follicle significantly inhibited the COC expansion. 2. The fluid of large follicle inhibited the COC expansion. 3. Follicular fluid showed six major fractions at retention volumes (RVs) 1.83, 1.91, 2.15, 2.34, 2.53 and 2.74 ml after separation with Superose 12 column. Of the major fractions, fractions RV2.15, RV2.34, RV2.53 and RV2.74 inhibited both COC expansion and polar body extrusion. Especially, fractions of RV2.15 and RV2.53 significantly inhibited COC expansion, oocyte denudation and polar body extrusion. In conclusion, porcine follicular fluid contained a COC expansion inhibiting ingredient (CEI) that may be contained largely in fractions RV2.15 and RV2.53. And CEI may inhibit oocyte maturation by inhibition of oocyte denudation and extrusion of the first polar body.

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세포조작 기술을 이용한 새로운 축산개량증식 체계 개발 I. 소 난포란의 성숙시기가 제 1극체 출현율과 핵제거율에 미치는 영향 (Development of a New Improvement and Multiplication System in Domestic Animals Using a Embryonic Manipulation Technique I. Effect of Maturation Time on the Extrusion Rate of First Polar Body and the Enucleation Rate of Bovine Follicular Oocytes)

  • 임경순;김현종;오성종;양보석
    • 한국가축번식학회지
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    • 제19권3호
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    • pp.181-189
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    • 1995
  • In this study, methods on fabrication of microtool and setting of micromanipulator were examined and relationship between first polar body extrusion rate and maturation time of follicular oocyte, enulceation rae and repetition of trial, and enucleation rate and maturation period were investigated. The results are as follows: 1. Suitable outside diameter of micropipette tube was 1mm. Holding pipette with less than diameter of oocyte was fitred for manipulation, and zona dissection needle was easily operated when its sharp-point had diameter of about 8 ${\mu}{\textrm}{m}$ and length of 300${\mu}{\textrm}{m}$. The injection pipette with 20~35${\mu}{\textrm}{m}$ outside diameter was adequate for injection of blastomere into perivitelline space. 2. Separation of blastomere was effective when zona pellucida had cut with zonadissection needle and the embryo was pipetted gently with the pipette that had narrower diameter than that of embryo until separation of blastomeres had completed. 3. The extrusion rate of first polar body was 78% during 20~24% hours incubation for maturation. 4. According to repetitions of micromanipulation, the enucleation rate was increased to 85% and the time required for enucleation of a oocyte was shortened to 3 min. 5. The extrusion rate of first polar body and enucleation rate were 82 and 76% respectively, in the group of the oocytes cultured for 22 hours. However in the group cultured for 24 hours, the extrusion rate of first polar body and enucleation rate were 53 and 100% respectively.

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생쥐 난자의 체외 성숙에 미치는 Nicotine의 영향 (The Effects of Nicotine on the Mouse Oocyte Maturation In vitro)

  • 성기청;배인하
    • Clinical and Experimental Reproductive Medicine
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    • 제28권1호
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    • pp.1-12
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    • 2001
  • Objective: The present study was done to clarify the effects of nicotine and nicotine tartrate on the mouse oocyte maturation in vitro. Methods: GV (germinal vesicle) oocytes were isolated from Graafian follicle of ovaries with sharp needles under a stereomicroscope from female mouse of ICR strain (4 weeks old). Collected oocytes were cultured for 17 hours at $37^{\circ}C$, 5% $CO_2$ in air and 100% humidified condition in incubator. New MHBS was the basic medium used in which nicotine, nicotine tartrate, and mecamylamine (antagonist of nicotinic acetylcholine receptor) were added depending on the experimental group. GV oocytes were cultured in one of these media. Results: Nicotine ($300{\mu}M{\sim}5mM$) had no effects on GVBD (germinal vesicle breakdown) compared to the control, but increasing concentration of nicotine led to an decrease in the first polar body formation. However, nicotine ($10{\sim}500{\mu}M$) induced GVBD in a dose-dependent manner of GV oocytes in a medium containing dbcAMP. Nicotine tartrate ($50{\mu}M{\sim}5mM$) had no effects on GVBD compared to the control but, increasing concentration of nicotine tartrate led to an decrease in the first polar body formation. Mecamylamine $10{\mu}M$ added to the medium containing nicotine ($300{\mu}M{\sim}5mM$) showed higher percentage of the first polar body formation compared to the nicotine ($300{\mu}M{\sim}5mM$) treatment group. Mecamylamine $10{\mu}M$ added to the medium containing nicotine tartrate ($50{\mu}M{\sim}5mM$) showed higher percentage of the first polar body formation compared to the nicotine tartrate ($50{\mu}M{\sim}5mM$) treatment group. Conclusion: The present study suggest that nicotine and nicotine tartrate have the harmful effects on the meiotic maturation of the mouse oocytes in vitro. However, mecamylamine block harmful effects of nicotine and nictine tartrate.

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Human embryos derived from first polar body nuclear transfer exhibit comparatively abnormal morphokinetics during development

  • Leila Heydari;Mohammad Ali Khalili;Azam Agha Rahimi;Fatemeh Shakeri
    • Clinical and Experimental Reproductive Medicine
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    • 제50권3호
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    • pp.177-184
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    • 2023
  • Objective: Reconstructed oocytes after polar body genome transfer constitute a potential therapeutic option for patients with a history of embryo fragmentation and advanced maternal age. However, the rescue of genetic material from the first polar body (PB1) through introduction into the donor cytoplasm is not yet ready for clinical application. Methods: Eighty-five oocytes were obtained following in vitro maturation (IVM) and divided into two groups: PB1 nuclear transfer (PB1NT; n=54) and control (n=31). Following enucleation and PB1 genomic transfer, PB1 fusion was assessed. Subsequently, all fused oocytes underwent intracytoplasmic sperm injection (ICSI) and were cultured in an incubator under a time-lapse monitoring system to evaluate fertilization, embryonic morphokinetic parameters, and cleavage patterns. Results: Following enucleation and fusion, 77.14% of oocytes survived, and 92.59% of polar bodies (PBs) fused. However, the normal fertilization rate was lower in the PB1NT group than in the control group (56.41% vs. 92%, p=0.002). No significant differences were observed in embryo kinetics between the groups, but a significant difference was detected in embryo developmental arrest after the four-cell stage, along with abnormal cleavage division in the PB1NT group. This was followed by significant between-group differences in the implantation potential rate and euploidy status. Most embryos in the PB1NT group had at least one abnormal cleavage division (93.3%, p=0.001). Conclusion: Fresh PB1NT oocytes successfully produced normal zygotes following PB fusion and ICSI in IVM oocytes. However, this was accompanied by low efficiency in developing into cleavage embryos, along with an increase in abnormal cleavage patterns.

마우스 난 성숙과정에서의 Thymeleatoxin의 영향 (Effect of Thymeleatoxin on Mouse Oocyte Maturation)

  • 임은아;신지현;최태생
    • Reproductive and Developmental Biology
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    • 제28권3호
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    • pp.187-190
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    • 2004
  • PKC는 그들의 cofactor-requirments에 따라 cPKC, nPKC 그리고 aPKC, 3그룹으로 나어진다. 마우스 난 성숙과정에 있어서 cPKC 및 nPKC의 activators인 PMA의 영향에 대한 많은 결과가 보고되었다. 그러나 각각의 그룹에 대한 차별화된 영향에 대하여는 밝혀져 있지 않다. Mezerein의 analog인 thymeleatoxin은 cPKC의 특이적인 activator로 보고되어져 있다. 본 연구에서는 specific cPKC activator인 thymeleatoxin의 마우스 난 성숙과정에의 영향을 제1감수분열 재개 능(germinal vesicle break down, GVBD)과 제1 극체 형성 능(1st polar body extrusion)을 조사하여 cPKC및 nPKC activator인 PMA와 비교 검토하였다. 그 결과 GVBD IC50는 thymeleatoxin에서 ~400nM, PMA에서는 ~50nM이었으며, 제1극체 방출의 IC50는 thymeleatoxin에서 ~200nM, PMA에서는 ~20nM이었다. 이들 결과는 Thymeleatoxin의 GVBD나 1st polar body extrusion 저해효과가 PMA에 비하여 1/8~1/10인 것으로 나타났다. 이들 결과는 GVBD나 제1극체 형성을 포함하는 난 성숙과정에서 cPKC보다 상대적으로 nPKC의 관여가 깊음을 보여 준다.

돼지 난모 세포의 Ethanol 처리에 의한 단위 발생에 있어서 극체 방출란과 분할란 선별에 따른 배발달율 비교 (Prediction of Parthenogenetic Developmental Potential by Polar Body Extrusion and First Cleavage on In Vitro Maturation and Development of Porcine Follicular Oocytes)

  • 김현종;조상래;최창용;최선호;한만희;손동수;이승수;상병돈;류일선;김인철;김성재;김일화;김상근
    • 한국수정란이식학회지
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    • 제22권2호
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    • pp.121-126
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    • 2007
  • 본 연구에서 돼지 난포란에서 채취된 난모 세포들을 체외성숙 후 형태적으로 선별하거나 극체 방출란을 선별하여 활성화 처리 후 48시간째에 분할란을 선별할 때 배발달율이 어느정도 향상되는지를 검토하였다. 난모 세포를 48시간 성숙 배양 후 형태적 선별과 극체의 방출 유무를 검사하고, 선별된 난모 세포들을 $16{\sim}18$시간 추가 배양한 후 7% ethanol로 활성화시키고 $5{\mu}g/ml$ cytochalasin B에 5시간 노출 후 PZM-5 배 양액으로 7일간 배양하였으며, 배양 중 4일째 5% FBS를 추가하였다. 48시간 성숙 후 형태적으로 선별하였을 때, 21.9%가 제거되고 78.1%가 선별되었으며, 극체 방출란을 선별하였을 때, 32.1%가 제거되고, 67.9%가 선별되었다. 형태적으로 선별한 난자를 활성화 처리하여 48시간째에 분할율을 검사하였을 때, 15.8%가 분할하지 않았으며, 52.6%가 정상 분할하였고, 31.6%가 과분할하였으며, 극체 방출란을 선별하여 활성화 처리 후 분할율을 검사하였을 때 7.1%가 분할하지 않았으며, 73.1%가 정상 분할하였고, 19.8%가 과분할하였다. 체외 성숙된 난모세포를 형태적으로 선별하고 활성화 처리 후 분할란을 선별하지 않았을 때, 16.7%가 배반포기로 발달하였고, 형태적으로 선별하고 분할란을 추가로 선별해 배양했을 때 31.7%가 배반포기로 발달하였으며, 극체 방출란만을 선별하여 활성화 처리 후 분할란을 선별하지 않았을 때 39.0%가 배반포기로 발달하였고, 극체 선별과 분할란 선별을 하였을 때 배반포기 발달율이 49.0%에 이르렀다. 48시간째 미분할 난자와 정상 분할 난자, 과분할 난자를 배양하였을 때 48시간째 미분할 난자는 배반포기로 발달하지 못했으며, 정상 분할 난자는 42.5%, 과분할 난자는 4.5%가 배반포기로 발달하였다. 분할하는 시기를 활성화처리 후 12시간 간격으로 조사하였을 때 $0{\sim}12$시간 사이에 4.1%가 분할하였고, $12{\sim}24$시간 사이에 68.6%, $24{\sim}36$ 시간 사이에 19.1%, $36{\sim}48$시간 사이에 2.3%, 48시간까지 미분할 난자가 5.9%였으며, $0{\sim}12$시간 사이에 분할한 난자나 $36{\sim}48$시간 사이에 분할한 난자에서 배반포기로 발달한 난자는 없었으며, $12{\sim}24$시간 사이에 분할한 난자의 39.1%, $24{\sim}36$시간 사이에 분할한 난자의 9.5%가 배반포기로 발달하였다. 이상의 결과로 극체 방출란만을 선별하여 $12{\sim}36$시간 사이에 분할하는 난자들만을 선별하여 배양한다면 배발생능을 가진 난자들의 비율을 높일 수 있을 것으로 사료된다.

대형 담수산새우, Macrobrachium rosenbergii (De Man)의 생식 생현에 관한 연구 IV. 산란, 수정 및 포란 과정 (Study on the Reproductive Biology of the Giant Freshwater Prawn, Macrobrachium rosenbergii(De Man) IV. Oviposition, Fertilization and Brooding)

  • 권진수;이복규;김병기
    • 생명과학회지
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    • 제9권5호
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    • pp.518-524
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    • 1999
  • Timing of oviposition, nuclear maturation of oocytes, egg-sperm contact and brooding were observed in the giant fresh-water prawn Macrobrachium rosenbergii reared in the laboratory. When a pre-spawning molted female was transferred to the male, the female oviposited commonly at 5 to 10 hr after mating. The first polar body were extruded within 2-3 min after spawning. The egg chromosome progressed to release second polar body by 30 min and mitotic nuclear division occurred in 8 hr after spawning. Thumbtack-shaped spermatozoa were seen peneterating egg membrane with their spike directed forward. Transformation of spermatozoa and fertilization membrane could not be observed by light microscopy. The elapsed hours from oviposition to the end of brooding wee taken in 5-7 hr. Brood size for female 9 cm and 18 cm in body length was estimated to be 10,000~15,000 and 100,000 eggs, respectively and is proportional to the total length of the berried females. The ovigerous females reared at chlorinity of 2.21~4.25$\textperthousand$Cl. showed a normal egg development up to hatching.

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Effect of Mammalian Spermatozoa on In Vitro Maturation of Porcine Germinal Vesicle Oocyte in Chemically Defined Medium

  • Kang, Sung-Ryoung;Kim, Byung-Ki
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2002년도 춘계학술발표대회 발표논문초록집
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    • pp.72-72
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    • 2002
  • Oocytes maturation, characterized by germinal vesicle (GV) breakdown, formation of the first meiotic spindle, expulsion of the first polar body and arrest in metaphase of second meiotic division (MII), occurs in preovulatory follicles in response to the surge of gonadotropin and leads to an ovulated oocyte in vivo. However, meiotic resumption in vitro occurs spontaneously following removal of cumulus-oocytes complexes (COCs) from the follicle. (omitted)

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