• Title/Summary/Keyword: fertilization and development

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Influence of Sperm Fertilizing Capacity on Embryonic Development and Pregnancy in In Vitro Fertilization (체외수정시술에서 정자의 수정능력이 배아의 발생능 및 임신율에 미치는 영향)

  • Pang, Myung-Geol;Jung, Byeong-Jun;Moon, Shin-Yong
    • Clinical and Experimental Reproductive Medicine
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    • v.30 no.1
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    • pp.105-109
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    • 2003
  • Objective s: To assess the fertilizing capacity using sperm penetration assay (SPA) to predict the outcome of the in vitro fertilization-embryo transfer (IVF-ET) outcome. Materials and Methods: Semen samples were provided by 129 patients undergoing IVF. We attempted to correlate the extent of sperm penetration under enhanced SPA protocol with the results of fertilization, cleavage, preimplantation embryo development, and pregnancy. Results: Univariate analysis demonstrated a statistically significant correlation between fertilizing capacity and motility, kinetics, fertilization, cleavage and embryo development, and pregnancy rate. By logistic regression analysis, fertilizing capacity was found to be the only variable that was statistically significant with respect to pregnancy rate. Fertilizing capacity, cleavage rate and pregnant rate were significantly higher in pregnant group. However, the fertilization rates was comparable with both group. Conclusions: Lower fertilizing capacity could denote a poorer prognosis for establishing a pregnancy, even after satisfactory fertilization rate is achieved.

Understanding the Effects of Deep Fertilization on Upland Crop Cultivation and Ammonia Emissions using a Newly Developed Deep Fertilization Device (신개발 심층시비장치를 이용한 심층시비의 밭작물 재배 효과)

  • Sung-Chang Hong;Min-Wook Kim;Jin-Ho Kim;Seong-Jik Park
    • Korean Journal of Environmental Agriculture
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    • v.42 no.1
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    • pp.28-34
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    • 2023
  • Nitrogen fertilizers applied to agricultural lands for crop cultivation can be volatilized as ammonia. The released ammonia can catalyze the formation of ultrafine dust (particulate matter, PM2.5), classified as a short-lived climate change pollutant, in the atmosphere. Currently, one of the prominent methods for fertilizer application in agricultural lands is soil surface application, which comprises spraying the fertilizers onto the soil surface, followed by mixing the fertilizers with the soil. Owing to the low nitrogen absorption rate of crops, when nitrogen fertilizers are applied in this manner, they can be lost from land surfaces through volatilization. Therefore, investigating a new fertilization method to reduce ammonia emissions and increase the fertilizer utilization efficiency of crops is necessary. In this study, to develop a method for reducing ammonia emissions from nitrogen fertilizers applied to soil surfaces, deep fertilization was conducted using a newly developed deep fertilization device, and ammonia emissions from barley, garlic, and onion fields were examined. Conventional fertilization (surface application) and deep fertilization (soil depth of 25 cm) were conducted for analysis. The fertilization rate was 100% of the standard fertilization rate used for barley, and deep fertilization of N, P, and K fertilizers was implemented. Ammonia emissions were collected using a wind tunnel chamber, and quantified subsequently susing the indole-phenol blue method. Ammonia emissions released from the basal fertilizer application persisted for approximately 58 d, beginning from approximately 3 d after fertilization in conventional treatments; however, ammonia was not released from deep fertilization. Moreover, barley, garlic, and onion yields were higher in the deep fertilization treatment than in the conventional fertilization treatment. In conclusion, a new fertilization method was identified as an alternative to the current approach of spraying fertilizers on the soil surface. This new method, which involves injecting nitrogen fertilizers at a soil depth of 25 cm, has the potential to reduce ammonia emissions and increase the yields of barley, garlic, and onion.

Utilization of Hydrogel Chamber for Fertilization and In Vivo Culture (Hydrogel Chamber를 이용한 수정 및 배양)

  • 김명철
    • Journal of Embryo Transfer
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    • v.5 no.2
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    • pp.45-55
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    • 1990
  • The in-vitro fertilization in human clinic and animal reproduction is a very important technique but the rate of success is still low. When the in-vitro fertilization and culture of gametes or embryos were done under the condition which Hema hydrogel chamber were implanted into the peritoneal cavity of mouse, the in-vitro fertilization and development of embryos could be significantly improved and the cell-block under in-vitro culture could be overcome. Also, the Rema hydrogel chamber was very useful for the protection of isolated blastomeres. It is concluded that the polymerized Hema (pHema) hydrogel chamber may be effectively used in the fields of embryo transfer and in vitro fertilization.

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Effects of In Vitro Fertilization Conditions of In Vitro Matured Cumulus-Intact Pig Oocytes on Embryo Development

  • Kim, Jae-Young;Lee, Eun-Ji;Park, Jin-Mo;Lee, Hong-Cheol;Park, Hum-Dai;Kim, Jae-Myeong
    • Journal of Embryo Transfer
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    • v.26 no.2
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    • pp.117-122
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    • 2011
  • In this study, we examined the effectiveness of in vitro fertilization of porcine immature oocytes on the embryo development of blastocysts or hatched blastocysts and the number of cells according to the in vitro fertilization conditions. In the in vitro fertilization of in vitro matured porcine oocytes, there were no significant differences between treatment groups regarding fertilization rate, blastocyst rate, and embryo development of hatched blastocysts according to the storage periods of liquid sperm of 24, 48, and 72 hours. The embryo development rate of hatched blastocysts after the fertilization according to different spermatozoa concentrations ($0.4{\times}10^5$, $1.2{\times}10^5$, and $3.6{\times}10^5$ cells/ml) showed the highest rate in the group with a spermatozoa concentration of $1.2{\times}10^5$ cells/ml; in particular, this rate was significantly higher than that in the $0.4{\times}10^5$ cells/ml group (p<0.05). The total number of blastocysts cells as well as trophectoderms (TE) that developed in each treatment group were also significantly higher in the $1.2{\times}10^5$ cells/ml group than in any other groups (p<0.05). In contrast, the embryo development rate of blastocysts according to different co-incubation periods of sperm and oocyte (1, 3, and 6 hr) was high in the 6-hour group; in particular, the rate was significantly higher than that of the I-hour group (p<0.05). Furthermore, the total number of oocytes cells and TEs that developed was significantly higher in the 6-hour group than any other group (p<0.05). In this study, the most effective treatment conditions for porcine embryo development and high cell number were found to be as follows: a sperm storage period of less than 72 hours, a spermatozoa concentration of $1.2{\times}10^5$ cells/ml, and a 6-hour co-incubation period for sperm and ooocyte.

Mouse Embryo Culture as Quality Control for Human In Vitro Fertilization (생쥐 체외수정 정도관리의 유용성에 관한 실험적 연구)

  • Lim, Young-Kyung;Park, Hyun-Jeong;Lee, Yu-Il
    • Clinical and Experimental Reproductive Medicine
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    • v.18 no.1
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    • pp.49-53
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    • 1991
  • The development of 2-cell mouse embryos to the blastocyst stage in vitro has been used as a quality control for the media empolyed for human in vitro fertilization. There was a comparison between the quality control data of the culture medium as ascertained by 2-cell mouse embryos development and sperm motility and the data from fertilization and cleavage of human oocytes. However, there was no obvious association between fertilization and cleavage of human oocytes and the quality of the medium ascertained by mouse embryo development and sperm motility.

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Rapamycin Influences the Efficiency of In vitro Fertilization and Development in the Mouse: A Role for Autophagic Activation

  • Lee, Geun-Kyung;Shin, Hyejin;Lim, Hyunjung Jade
    • Asian-Australasian Journal of Animal Sciences
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    • v.29 no.8
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    • pp.1102-1110
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    • 2016
  • The mammalian target of rapamycin (mTOR) regulates cellular processes such as cell growth, metabolism, transcription, translation, and autophagy. Rapamycin is a selective inhibitor of mTOR, and induces autophagy in various systems. Autophagy contributes to clearance and recycling of macromolecules and organelles in response to stress. We previously reported that vitrified-warmed mouse oocytes show acute increases in autophagy during warming, and suggested that it is a natural response to cold stress. In this follow-up study, we examined whether the modulation of autophagy influences survival, fertilization, and developmental rates of vitrified-warmed mouse oocytes. We used rapamycin to enhance autophagy in metaphase II (MII) oocytes before and after vitrification. The oocytes were then subjected to in vitro fertilization (IVF). The fertilization and developmental rates of vitrified-warmed oocytes after rapamycin treatment were significantly lower than those for control groups. Modulation of autophagy with rapamycin treatment shows that rapamycin-induced autophagy exerts a negative influence on fertilization and development of vitrified-warmed oocytes.

Stage-specific Expression of Lanosterol 14${\alpha}$-Demethylase in Mouse Oocytes in Relation to Fertilization and Embryo Development Competence

  • Song, Xiaoming;Ouyang, Hong;Tai, Ping;Chen, Xiufen;Xu, Baoshan;Yan, Jun;Xia, Guoliang;Zhang, Meijia
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.3
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    • pp.319-327
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    • 2009
  • Follicular fluid meiosis-activating sterol (FF-MAS) has been suggested as a positive factor which could improve the oocyte quality and subsequent embryo development after in vitro fertilization. However, FF-MAS is a highly lipophilic substance and is hard to detect in studying the relationship between MAS and quality of oocyte maturation. The present study focused on the expression of lanosterol 14${\alpha}$-demethylase (LDM), a key enzyme that converts lanosterol to FF-MAS, on mouse oocyte maturation and its potency on development. LDM expression was strong in gonadotropin-primed germinal vesicle stage oocytes, weak after germinal vesicle breakdown (GVBD), and then strong in MII stage oocytes. The LDM-specific inhibitor azalanstat significantly inhibited oocyte fertilization (from 79.4% to 68.3%, p<0.05). Also, azalanstat (5 to 50 ${\mu}M$) decreased the percentage of blastocyst development dosedependently (from 78.7% to 23.4%, p<0.05). The specific inhibition of sterol ${\Delta}14$-reductase and ${\Delta}7$-reductase by AY9944 accumulates FF-MAS and could increase blastocyst development rates. Additionally, in the AY9944 group, the rate of inner cell mass (ICM)/ total cells was similar to that of in vivo development, but the rate was significantly decreased in azalanstat treatment. In conclusion, LDM, the key enzyme of FF-MAS production, may play an important role in fertilization and early development of the mouse embryo, especially in vitro.

Studies on In Vitro Fertilization and Development of In Vitro Matured Porcine Follicular Oocytes I. Effect of Media and Capacitation Procedure on In Vitro Fertilization (체외성숙 돼지난포란의 체외수정과 배발달에 관한 연구 I. 배양액, 수정능획득 방법이 체외성숙 난포란의 체외성숙에 미치는 영향)

  • 정형민;엄상준;승경록;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.2
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    • pp.103-111
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    • 1993
  • These experiments were undertaken to establish the optimal culture systems for in vitro maturation, fertilization and subsequently embryonic development of porcine immature follicular oocytes isolated from the ovary of slaughtered pigs. Porcine ovaries were brought to the laboratory from local slaughter house within 1 hour after slaughtering and cumulus oocytes complexes were recovered from antral follicles (3~5mm) with 23 gauge needle. To maturate follicular oocytes, cumulus oocytes complexes were washed three times with TCM-199 containing 25mM HEPES and incubated (39$^{\circ}C$, 5% CO2 in air) for 42hrs. Ejaculated and liquid storaged boar spermatozoa capacitated with different sperm capacitation methods and media were prepared forfertilizaing of matured follicular oocytes in vitro. Fertilization was performed by adding 5~10${mu}ell$ of capacitated spermatozoa containing 1~5$\times$105 sperm/ml to droplets. Eighteen to twenty-eight hours after sperm insemination, fertilized eggs were washed three times with culture media and transferred to the culture media. The fertilization rates of in vitro matured follicular oocytes cultured in B. O., TCM-HEPES, m-KRB, and TALP-II media were 61.3%, 83.0%, 88.9% and 89.2%, respectively. In addition, the polyspermy rates were 60.7%, 66.5%, 53.8%, and 43.9%, respectively. These data indicated that the highest of fertilization and the lowest of polyspermy rate was shown in TALP-II medium. Spermatozoa capacitated by caffeine, heparin, and percoll density gradient treatment in the 4 different media, the fertilization rates were 33.0~57.2%, 39.9~90.2%, and 52.6~92.8%, respectively, showing the lowest rate in caffeine treatment. The development rate of follicular oocytes, fertilized with the spermatozoa capacitated by caffeine, heparin, and percoll gradient in the TALP-II medium, upto 2 to 4-cell stages were 32.6%, 74.5% and 70.9%, respectively. Finally, fertilization rates of follicular oocytes cultured with follicular fluid containing medium from 10 to 100% were 61.2~94.1% and the rates (90~94%) with 10~20% follicular fluids were significantly higher than those (85.3%) of cultured in the media without follicular fluid. In addition, the rates of pronucleus formation were also higher in follicular fluid treated group (73.1~83.0%) than those (64.7%) of oocytes cultured without follicular fluid. The highest fertilization and pronucleus formation rates was found in oocytes cultured with 10% follicular fluid. These results suggest that the addition of heparin or percoll density gradient method is better capacitation method. Furthermore, the addition of porcine follicular fluid to the fertilization medium may improve the fertilization rates and formation of pronucleus.

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Alpha-Linolenic Acid: It Contribute Regulation of Fertilization Capacity and Subsequent Development by Promoting of Cumulus Expansion during Maturation

  • Lee, Ji-Eun;Hwangbo, Yong;Cheong, Hee-Tae;Yang, Boo-Keun;Park, Choon-Keun
    • Development and Reproduction
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    • v.22 no.4
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    • pp.297-307
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    • 2018
  • The objective of this study was to evaluate the effects of alpha-linolenic acid (ALA) during in vitro maturation (IVM) on cumulus expansion, nuclear maturation, fertilization capacity and subsequent development in porcine oocytes. The oocytes were incubated with 0, 25, 50, and $100{\mu}M$ ALA. Cumulus expansion was measured at 22 h, and gene expresison and nuclear maturation were analyzed at 44 h after maturation. Then, mature oocytes with ALA were inseminated, and fertilization parameters and embryo development were evaluated. In results, both of cumulus expansion and nuclear maturation were increased in $50{\mu}M$ ALA groups compared to control groups (p<0.05). However, expression of gap junction protein alpha 1 (GJA1, cumulus expansion-related gene), delta-6 desaturase (FADS1, fatty acid metabolism-related gene), and delta-5 desaturase (FADS2) mRNA in cumulus cells were reduced by $50{\mu}M$ ALA treatment (p<0.05). Cleavage rate was enhanced in 25 and $50{\mu}M$ ALA groups (p<0.05), especially, treatment of $50{\mu}M$ ALA promoted early embryo develop to 4 and 8 cell stages (p<0.05). However, blastocyst formation and number of cells in blastocyst were not differ in 25 and $50{\mu}M$ ALA groups. Our findings show that ALA treatment during maturation could improve nuclear maturation, fertilization, and early embryo development through enhancing of cumulus expansion, however, fatty acid metabolism- and cumulus expansion-related genes were down-regulated. Therefore, addition of ALA during IVM of oocytes could improve fertilization and developmental competence, and further studies regarding with the mechanism of ALA metabolism are needed.

Responses of weed community and soil biota to cessation of fertilization

  • Eo, Jin-U
    • Journal of Ecology and Environment
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    • v.33 no.4
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    • pp.317-323
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    • 2010
  • Nutrient availability is a critical component of agroecosystems, and is relevant to both above- and below- ground interactions. The principal objective of this study was to determine how the cessation of fertilization affects the communities of weeds and soil organisms in a corn/wheat field. Changes in dominant weed species, substrate-induced respiration, and the population density of nematodes and microarthropods were evaluated. Microbial substrate-induced respiration (SIR) and the population density of microarthropods decreased following the cessation of fertilization and were partly correlated with the aboveground weed biomass. The cessation of organic fertilizer application but continuing application of inorganic fertilizer reduced the population density of nematodes. In response to the cessation of fertilization, weed communities were dominated by species with little dependency on fertilization. Amaranthus retroflexus was identified as the most dominant species in the corn field; however, it was replaced by Digitaria ciliaris after the cessation of fertilization. In the wheat field, the cessation of fertilization led to a rapid reduction in the biomass of most weeds, except for Vicia angustifolia, supposedly as the result of symbiotic nitrogen fixation. Additionally, the fact that weed biomass was partially correlated with SIR or the population density of microarthropods may reflect a mutual feedback between soil organisms and weeds. The results indicate that the cessation of fertilization alters communities of weeds and soil organisms through changes in weed biomass and interactions with symbiotic microorganisms.