• 제목/요약/키워드: Semen preservation

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Antioxidant Supplementation Enhances the Porcine Semen Preservation Capacity

  • Chung, Ki-Hwa;Kim, In-Cheul;Son, Jung-Ho
    • Reproductive and Developmental Biology
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    • 제39권1호
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    • pp.7-11
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    • 2015
  • Preservation of liquid semen is an important factor for breeding management in swine industry. Oxidative stress of spermatozoa during liquid preservation has a detrimental effect on sperm quality and decreases fertility. Objective of this study was to determine the effect of antioxidant, Quercetin, on capability of porcine liquid semen preservation. Freshly collected porcine semen from boars (n=3), having proven fertility was counted, diluted to $3{\times}10^7/mL$ and divided into 5 different semen extenders. Aliquots of diluted semen with different extenders were subjected to measure the pH, motility, viability and sperm DNA structure status on elapse time after preservation for 10 days. For the first 3 days, semen preserved in all 5 different extenders maintained their initial pH and either gradually decreased or increased thereafter, indicating lipid peroxidation has started. Sperm motility (r=0.52, p=0.01) and viability (r=0.55, p=0.03) had positive correlation with semen pH. Sperm motility was maintained well (p<0.05) in especially 2 extenders containing Tris and antioxidant compared to other extenders, suggesting both Tris and antioxidant worked as pH regulator and had beneficial effects on sperm characteristic during preservation. Sperm DNA structure status accessed by sperm chromatin structure assay on elapsed time after preservation, tended to be higher in semen preserved without antioxidant. Taken together, addition of antioxidant to extender prevents the sperm from oxidative stress during storage in mechanism by which antioxidant slows the lipid peroxidation, and thus reduced the reactive oxygen species in preserved porcine semen resulted in maintaining semen pH, sperm motility and viability for 7~10 days.

Storage of Bull and Boar Semen: Novel Concepts Derived Using Magnetized Water and Antioxidants

  • Lee, Sang-Hee;Cheong, Hee-Tae;Yang, Boo-Keun;Park, Choon-Keun
    • Reproductive and Developmental Biology
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    • 제38권1호
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    • pp.1-8
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    • 2014
  • Artificial insemination technique has been contributed immensely for production of livestock worldwide as a critical assisted reproductive technique to preserve and propagate excellent genes in domestic animal industry. In the past decade, methods for semen preservation have been improved mostly in liquid preservation method for boar semen and freezing method for bull semen. Among many factors affecting semen quality during preservation, reactive oxygen species, produced by aerobic respiration in sperm for survival and motility, are unfavorable to sperm physiology. In mammalian cell as well as in the sperm, antioxidant system plays a role in degradation of reactive oxygen species. Magnetized water forms smaller stabilizing water clusters, resulting in high absorption and permeability of the cell for water, implicating its application for semen preservation. Therefore, this review focuses on preservation methods of boar and bull semen with respect to improvement of extender and reduction of reactive oxygen species by using magnetized water and supplementation of antioxidants.

한국 진도견 정액의 성상 및 보존성에 관한 연구 (The Studies on the Semen Property and Preservation of Korean Jindo Dogs)

  • 박병권;박창식;이성호;박영석
    • 한국가축번식학회지
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    • 제21권4호
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    • pp.405-409
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    • 1997
  • This study was carried out to investigate the general characteristics such as semen volume, pH, sperm motility and sperm concentration of the semen collected from Korean Jindo dogs by the mothod of Digital manipulation of penis, and the effect of temperature and preservation time on motility of fresh semen. Multiple ejaculates were collected from four male Korean Jindo dogs. The results obtained in this experiment were as follows : 1. Average semen volume per ejaculate, semen pH, sperm motility and sperm concentration of the second fraction and the small volume of third fraction from the ejaculate were 3.29ml, 6.30, 96.70% and 1.64$\times$108 cells/ml, respectively. 2. Average semen volume per ejaculate, semen pH, sperm motility and sperm concentration of the first fraction from the ejaculate were 1.16ml, 6.10, 6.67% and 5.07$\times$105cells/ml. Average semen volume per ejaculate, semen pH, sperm motility and sperm concentration of the second fraction from the ejaculate were 2.30ml, 6.33, 97.66% and 1.92$\times$108cells/ml. Average semen volume per ejaculate, semen pH, sperm motility and sperm concentration of the third fraction from the ejaculate were 3.24ml, 6.51, 93.33% and 3.13$\times$107cells/ml. 3. Motility of fresh semen during preservation were higher at 17$^{\circ}C$ than at 5$^{\circ}C$ or 36$^{\circ}C$. When preservation temeprature was 17$^{\circ}C$, motility were 95.75% at 1 h, 90.00% at 6 h, 84.25% at 12 h, 68.00% at 18 h, 36.25% at 24 h and 28.75% at 30 h, respectively.

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Effects of Different Concentrations of Escherichia coli and Days of Preservation on Boar Sperm Quality

  • Chung, Ki-Hwa;Kim, In-Cheul;Son, Jung-Ho
    • Reproductive and Developmental Biology
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    • 제37권4호
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    • pp.213-217
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    • 2013
  • The objective of this study was to investigate the effect of bacterial contamination on elapsed time after preservation on boar semen. Known numbers of Escherichia coli (E. coli) were inoculated to freshly ejaculated semen and sperm parameters such as viability, motility, agglutination, acrosome integrity and hypo-osmotic swelling test were performed during 7 days of liquid preservation. Semen samples were prepared using antibiotic free BTS extender and 4 different levels of E. coli were treated to semen with following concentrations; 3,000, 5,000, 7,000, 10,000 CFU/ml of sperms. Semen samples were preserved at $17^{\circ}C$ for 7 days in semen storage until analyzed. Aliquots were subjected to measure the sperm viability, motility and agglutination using computer assisted sperm analysis (CASA) system, acrosome integrity was performed using chlortetracycline (CTC) staining method and hypo-osmotic swelling test was performed using hypotonic solution from day 1 (day of semen collection) to 7. Detrimental effects on sperm motility and viability were observed 3 days after preservation at the level of 5,000 CFU/ml (p<0.05). Percentage of sperm abnormality was higher (p<0.05) in over 5,000 CFU/ml groups. Sperm agglutination rate was also significantly higher (p<0.05) in groups of 5,000 and 7,000 CFU/ml. The rate of acrosome reacted sperm was higher as preservation time goes in all the samples but the pattern was clearly higher among E. coli contaminated groups (p<0.05). The sperm membrane integrity in terms of hypo-osmotic test, E. coli affects little compared to other sperm parameters. The deleterious effects observed due to the bacterial contamination in semen suggest that importance of hygiene protocol to minimize the bacterial contamination during semen collection and processing.

돼지 액상정액을 위한 희석액 및 저온보존에 관한 연구 (A Study on Extender and Lower Temperature Storage for Fresh-extended Porcine Semen)

  • 김명철;김용준;조정곤;이수진;이재일;김인철;손동수
    • 한국임상수의학회지
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    • 제18권4호
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    • pp.345-349
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    • 2001
  • The aim of this study was to investigate the effect of sperm preservation according to the various kinds of commercially available semen extenders and to investigate the effect of sperm preservation according to the various temperature storages of fresh-extended porcine semen. To investigate the effect of sperm preservation according to the various kinds of commercially available semen extenders, porcine semens diluted in 3 semen extenders, Beltsville Thawing Solution(BTS), Androhep and Kiev, were cooled at $8^{\circ}C$ storage temperature with a controlled cooling rate of $2-4^{\circ}C$/h. Motility, progressive motility, normal sperm(%) and sperm morphology were assessed comparatively. In motility and progressive motility, Androhep extenders revealed better result than other extenders. In normal sperm(%) and sperm morphology, 3 semen extenders revealed similar results. To investigate the effect of sperm preservation according to the various temperature storages of fresh-extended porcine semen, porcine semens diluted in BTS extender, were cooled at 3 storage temperatures($8^{\circ}C$, $12^{\circ}C$ and $17^{\circ}C$) with a controlled cooling rate of $2-4^{\circ}C$/h. Motility, progressive motility, normal sperm(%) and sperm morphology were assessed comparatively. In motility and progressive motility, $8^{\circ}C$ treatment group revealed better result than $12^{\circ}C$ and $17^{\circ}C$ treatment groups. In normal sperm(%) and sperm morphology, 3 temperatures of treatment groups revealed similar results.

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Effect of Antioxidant Fortification on Preservability of Buffalo Semen

  • Raina, V.S.;Gupta, A.K.;Singh, Kiran
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권1호
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    • pp.16-18
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    • 2002
  • During the process of freezing, spermatozoa suffer cold shock which increases their susceptibility to lipid peroxidation which plays an important role in ageing of spermatozoa, shortening their life span and affecting the preservation of semen. An experiment was therefore conducted to study the effect of addition of natural antioxidants into semen diluents on the preservability of buffalo semen. Split semen samples were extended in milk egg yolk diluents fortified with vitamin E (MYE), vitamin C (MYC) and control group (MYO); Tris-egg yolk diluents fortified with vitamin E (TYE), vitamin C (TYC) and control group (TYO) and evaluated for their preservabilities at 4-7$^{\circ}C$ and $37^{\circ}C$. Overall least squares mean of percent motility observed after 0, 24, 48, 72 and 96 h of preservation at 4-7$^{\circ}C$ were 66.70, 54.00, 36.80, 21.90 and 12.50, respectively while the estimates for semen extended in MYE, MYC, MYO, TYE, TYC and TYO were 44.80, 42.70, 38.70, 36.00, 35.20 and 33.00 percent, respectively. The results showed that motility was significantly (p<0.01) affected by extender (extender-antioxidant combination) and preservation interval. Overall least squares mean percent motility observed after 0, 4, 8, 12 and 24 h of preservation at $37^{\circ}C$ were 68.50, 58.90, 45.00, 38.10 and 18.10 percent, respectively, while the estimates for semen extended in MYE, MYC, MYO, TYE, TYC and TYO were 48.20, 49.30, 46.80, 45.30, 42.30 and 42.50 percent, respectively. Extender and storage interval were found to be significantly (p<0.01) affecting spermatozoa motility on room temperature preservation. The results indicated that the incorporation of antioxidants, especially vitamin E, had beneficial effect on preservability of buffalo semen.

돼지 액상정액 보존 일수에 따른 정액내 세균과 정자 기능의 변화 (Effects of Storage Time on Bacteria Concentration and Sperm Parameters in Boar Semen)

  • 정기화;김인철
    • Reproductive and Developmental Biology
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    • 제36권3호
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    • pp.163-166
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    • 2012
  • This study was conducted to determine the relationship between elapsed time after semen preservation on the changes of bacteria and semen quality. Semen was diluted with BTS(Beltsville Thawing Solution) extender without antibiotic for 7 days and sperm parameter and fertility were measured. Sperm motility was measured by CASA and total bacteria number was counted after 22~24 hr incubation from counting agar plate in which sperm dilute to $10{\sim}10^6$ in 0.9% saline solution and inoculate to agar. Acrosomal integrity was measured by Chlortetracycline (CTC) staining. CTC patterns were uniform fluorescence over the whole head (pattern F), characteristic of incapacitated acrosome-intact spermatozoa; fluorescence-free band in the post-acrosomal region (pattern B), characteristic of capacitated acrosome-intact spermatozoa; and almost no fluorescence over the whole head except for a thin band in the equatorial segment (pattern AR), characteristic of acrosome reacted spermatozoa. Total number of bacteria was significantly increased (p<0.0001) 3 days after preservation. Sperm motility, viability, and morphological abnormality on elapsed time after preservation were lower from 5 ($77.24{\pm}6.47$, p<0.001) and 7 days ($77.24{\pm}6.47$, p<0.001) after preservation compared to 1 ($15.71{\pm}7.18$) and 3 days($18.39{\pm}7.22$) after preservation, respectively. Sperm viability was significantly lower ($53.25{\pm}35.03$, p<0.0001) at 7 days after preservation. Morphological abnormality of sperm was lower (p<0.001) at 1 ($15.71{\pm}7.18$) and 3 ($18.39{\pm}7.22$) days compared to 5 ($21.84{\pm}7.91$) and 7 ($22.59{\pm}9.93$) days after preservation. Acrosomal integrity and capacitation rate (pattern F) were significantly lower (p<0.001) from 5 days after preservation. Based on the data we obtained from this study suggested that semen preserved more than 5 days without antibiotic would not recommend use for artificial insemination.

The Semen Property and Preservation in Shih Tzu Dogs

  • Lee, Kyung-Bon;Kim, Min-Kyu;Park, Byung-Kwon
    • 한국수정란이식학회지
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    • 제28권2호
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    • pp.121-125
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    • 2013
  • This study was carried out to investigate the general characteristics of semen such as semen volume, pH, sperm motility and sperm concentration of the semen collected from Shih Tzu dogs (age of 24 to 48 months, weight of 4 to 8 kg) by using the method of digital manipulation of the penis. The effect of preservation temperature and time on motility of fresh semen was also investigated in the present study. Semen was collected for 16 times from 4 male Shih Tzu dogs by multiple ejaculations (four times ejaculation per dog). The average of semen volume, semen pH, sperm motility and sperm concentration of the second fraction containing small volume of the initial third fraction per ejaculation were $2.11{\pm}0.31$ ml, $6.25{\pm}0.07$, $97.59{\pm}1.03%$ and $2.05{\pm}0.14{\times}10^8$ cells/ml, respectively. Average semen volume per ejaculate, semen pH, sperm motility and sperm concentration of the first fraction from the ejaculation were $1.12{\pm}0.15$ ml, $5.99{\pm}0.14$, $16.09{\pm}6.18%$ and $5.16{\pm}2.03{\times}10^5$ cells/ml, respectively. Those of second fraction were $2.07{\pm}0.29$ ml, $6.36{\pm}0.13$, $97.31{\pm}1.36%$ and $2.15{\pm}0.30{\times}10^8$ cells/ml, respectively. Those of third fraction were $2.60{\pm}0.29$ ml, $6.63{\pm}0.08$, $95.72{\pm}1.61%$ and $6.03{\pm}1.83{\times}10^7$ cells/ml, respectively. Sperm motility was significantly higher at $17^{\circ}C$ preservation temperature than at $5^{\circ}C$ or $36^{\circ}C$ during preservation period except 1 h preservation (P<0.05). When preservation temperature was $17^{\circ}C$, sperm motility was $96.69{\pm}1.49%$ at 1 h, $91.38{\pm}1.90%$ at 6 h, $88.38{\pm}2.34%$ at 12 h, $78.13{\pm}4.58%$ at 18 h, $58.44{\pm}8.57%$ at 24 h and $29.56{\pm}5.06%$ at 30 h, respectively.

Duration of Preservation Affect the Quality of Chilled Black Bengal Buck Semen

  • Pradhan, Md. Gulshan Anowar;Rahman, Md. Saidur;Kwon, Woo-Sung;Mishra, Dipendra;Kamal, Md. Mostofa;Bhuiyan, Mohammad Musharraf Uddin;Shamsuddin, Mohammed
    • 한국수정란이식학회지
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    • 제28권2호
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    • pp.113-119
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    • 2013
  • The study focuses on the quality assessment of Black Bengal buck semen preserved at chilled condition. In this in vitro trial, collected semen from Black Bengal bucks was preserved at chilling temperature ($4{\sim}5^{\circ}C$) in tris-glucosecitrate yolk medium of 1:5 ratios for four days. Artificial Vagina (AV) method was utilized to collect semen from buck. General evaluation of semen includes the color, mass activity and density were measured by direct visual examination. However, computer-assisted sperm analysis (CASA) and phase contrast microscopy were used to figure out the motility (%), hyper-activated (HYP) motility (%) and number of abnormal spermatozoa (%) initially, and at every 24 h intervals. The result revealed that spermatozoa preserved at chilling temperature showed significantly (P<0.05) lower motility and HYP motility with the progression of preservation. The number of phenotypically abnormal spermatozoa significantly (P<0.05) increased following preservation. Although significant positive correlation (r=0.945; P<0.05) was existed between % motile and % HYP motile spermatozoa however, the % of morphologically abnormal spermatozoa was negatively correlated with % motile (r=-0.997; P<0.05) and % HYP motile spermatozoa (r=-0.946; P<0.01). Therefore, we concluded that the quality of chilled semen progressively losses its viability and doesn't remain useable after certain period of preservation with respect to its motility and morphology.

Thoroughbred 정액의 액상 보존에 관한 연구 (Preservation of Extended Thoroughbred Semen at Low Temperature)

  • 고태혁;김한섭;이상호;송해범
    • 한국가축번식학회지
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    • 제14권3호
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    • pp.199-204
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    • 1990
  • Equine semen was analysed for its survival after storage under different conditions. Total 12 ejaculates from 2 Thoroughbred were analysed for general characterisitcs and preservation at low temperature. The sperm fraction, concentration, nd the rate of motile spermatozoa were 57.91ml per ejaculate, 2.18$\times$108/ml and 74.1%, respectively. The survival rate of spermatozoa was highest when diluted semen with E-Z Mixin was stored at 7~8$^{\circ}C$. The optimum survival rate(>54%) can be obtained upto 24h at 7~8$^{\circ}C$. However only 10% spermatozoa survived after 5h storage at 7~8$^{\circ}C$ without use of E-Z Mixin. Other ranges of temperature(15$^{\circ}C$ and room temperature) gave less survival rates(<25%). These results indicate that the extender could be used as a basic solution for the preservation of equine spermatozoa at low temperature. It also provides a practical method for short-term storage of collected equine semen in a simple manner.

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