• Title/Summary/Keyword: Sperm freezing

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Clinical Outcome of Transfer of Cryopreserved-Thawed Embryos Obtained after Intracytoplasmic Sperm Injection: Comparison with Conventional In Vitro Fertilization (난자 세포질내 정자 주입술 후 동결보존 배아이식: 고식적 체외수정시술과의 비교 연구)

  • Kim, S.H.;Jee, B.C.;Jung, B.J.;Kim, H.S.;Ryu, B.Y.;Pang, M.G.;Oh, S.K.;Shon, C.;Suh, C.S.;Choi, Y.M.;Kim, J.G.;Moon, S.Y.;Lee, J.Y.
    • Clinical and Experimental Reproductive Medicine
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    • v.24 no.3
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    • pp.281-292
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    • 1997
  • The objective of this study was to compare retrospectively the survival and pregnancy rates(PR) of cryopresered-thawed embryos obtained from intracytoplasmic sperm injection (ICSI) or conventional in vitro fertilization (IVF). Ninety-six cycles of cryopresered-thawed embryo transfer (ET) were performed in 79 patients from June, 1996 to September, 1997 and grouped as followings: 20 cycles (16 patients) inseminated by ICSI (ICSI Group) and 76 cycles (63 patients) by conventional IVF (IVF Group). Slow-freezing and rapid-thawing protocol was used with 1.5M propanediol (PROH) and 0.1M sucrose as cryoprotectant. All embryos were frozen-thawed at the two pronuclear (2 PN) stage excluding four cycles in which the early cleavage stage embryos were frozen, and allowed to cleave in vitro for one day before ET. The duration from freezing to thawing was comparable in both groups ($mean{\pm}SD$, $112.1{\pm}80.0$ vs. $124.8{\pm}140.1$ days). The age of female ($31.2{\pm}3.4$ vs. $32.6{\pm}3.3$ years) and the endometrial thickness prior to progesterone injection ($9.4{\pm}2.0$ vs. $9.3{\pm}1.8$ mm) were also comparable in both groups. There was no significant difference in the outcomes of cryopreserved-thawed ET between two groups: survival rate ($85.2{\pm}16.1%$ vs. $82.2{\pm}19.7%$), cleavage rate ($96.9{\pm}6.7%$ vs. $94.7{\pm}13.0%$), cumulative embryo score (CES, $54.5{\pm}31.1$ vs. $49.0{\pm}20.0$), preclinical loss rate (5.0% vs. 5.3%), clinical miscarriage rate (0% vs 29.4%), clinical PR per transfer (35.0% vs. 22.4%), implantation rate (9.9% vs. 5.6%), and multifetal PR (42.9% vs. 17.6%). In conclusion, human embryos resulting from ICSI can be cryopreserved-thawed and transferred successfully, and the survival rate and PR are comparable to conventional IVF.

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Effects of Mitochondria-targeted Antioxidant MitoTEMPO on the Kinetic Characteristics of Frozen-Thawed Boar Sperm (동결-융해 정자의 운동학적 특성에 대한 MitoTEMPO의 영향)

  • Cho, Eun Seok;Kim, Jeong A;Jeong, Yong Dae;Choi, Yo Han;Hong, Jun Ki;Kim, Young Sin;Chung, Hak Jae;Baek, Sun Young;Sa, Soo Jin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.3
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    • pp.199-205
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    • 2020
  • Cryopreservation of semen is useful for animal breeding via artificial insemination (AI). However, the use of frozen-thawed boar semen is limited due to cryodamage. The aim of this study was to investigate the effects of different concentrations of MitoTEMPO (a mitochondria-targeted antioxidant) in lactose-egg yolk (LEY) extenders on kinetic characteristics of frozen-thawed boar sperms. Semen samples were collected from mature Duroc boars (2~3 years old) and cryopreserved in LEY extenders containing 0, 0.5, 5, 50, and 500 μM MitoTEMPO. The kinetic characteristics of frozen-thawed sperms were determined 0 and 30 min after thawing using computer-assisted sperm analysis (CASA). Results indicated that sperm motility immediately after thawing was significantly higher with 5 and 50 μM (50.46±2.71% and 46.96±2.66%, respectively) than with 500 μM MitoTEMPO (35.40±2.95%) (P<0.05). However, there were no significant differences in other kinetic characteristics except motility. In conclusion, the addition of MitoTEMPO to the sperm freezing extender may have a beneficial effect on motility of post-thawed boar semen.

Effect of Kind of Sugar Added in Tris-buffer on Motility of Post-thaw Spermatozoa in Canine (Tris-buffer에 첨가되는 당의 종류가 동결ㆍ융해정자의 운동성에 미치는 영향)

  • 유대중;정수룡;오인석;김흥률;이계웅;조성균;배인휴;양철주;공일근
    • Journal of Embryo Transfer
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    • v.17 no.2
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    • pp.137-143
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    • 2002
  • This study was conducted to evaluate the effect of sugar kinds and combination of various sugars, and straw size and pre-freezing time on motility of post-thaw spermatozoa in canine. In general, the extender was supplemented with fructose or glucose for semen freezing. The extender used in .this study was Tris-citric acid extender (Tris-buffer) supplemented with 20% Egg-yolk, 8% glycerol, 1% Equex STM paste, and 70 mM sugars such as monosaccharide (fructose and xylose) and disaccharide(trehalose). To evaluate of sugar combination, the sugars supplemented in Tris-buffer. were combined such as control (fructose, xylose, trehalose), two combinations (Fru+Tre, Fru+Xy1, Tre+Xy1) and three combinations (Fru+Tre+Xy1). The motility after CASA analysis in Fru+Tre+Xy1 was higher than those in fructose, trehalose, xylose, Fru+Tre, Fru+Xy1, Tre+Xy1 (69 vs. 58, 61, 50, 65, 20, 54). However, the progressive motility after CASA analysis in Fru+Tre group was higher than those in fructose, trehalose, xylose, Fru+Xy1, Tre+Xy1, Fru+Tre+Xy1 (59% vs. 47, 55, 42, 13, 49, 44%). The survival rate of post-thaw spermatozoa in 0.25 $m\ell$ straw for 10 min pre-freezing was significantly higher than those in 0.25 $m\ell$ straw for 10 min, 0.25 and 0.5 $m\ell$ for 5 min (80+0.0 vs. 65+7, 68+16, 58+8%; P<0.05). The results indicated that the progressive motility of post-thaw spermatozoa in 70 mM Fru +Tre (two combination) following CASA analysis and 0.25 ml straw for 10 min pre-freezing time could be better for freezing of semen in canine.

Cryopreservation of Zona-intact/-free Hamster Oocytes;Effect of 1-Step Equilibration and 2-Step Thawing (투명대 존재/부재 햄스터 난자의 동결보존;1-단계 평형과 2-단계 융해의 효과)

  • Chung, K.M.;Pang, M.G.;Kim, S.H.;Shin, C.J.;Kim, J.G.;Moon, S.Y.;Lee, J.Y.;Chang, Y.S.
    • Clinical and Experimental Reproductive Medicine
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    • v.19 no.2
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    • pp.143-152
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    • 1992
  • The present experiments were focussed to modify a short slow-cooling protocol used for freezing of early stage embryo(Testart et al., 1986) and also to apply the modified method for the cryopreservation of hamster oocytes with Zona or without. The protocol was modified by changing the 4-step equilibration into 1-step and the 1-step thawing into 2-step. The oocytes were added in 1.5M PROH and 0.1M Sucrose, seeded at $-7^{\circ}C$, slow cooled($0.3^{\circ}C$/min) to $-30^{\circ}C$ before plunging to $-196^{\circ}C$. The oocytes were thawed at $23-25^{\circ}C$ air(20sec/150sec) and/or 33-35 water(10sec). The survival of the frozen-thawed oocytes was determined by morphologic criteria and their fertilizing ability was also estimated by Sperm Penetration Assay(SPA) system(Chang et al, 1990) using fertile men semen sample. One-step equilibration showed slightly higher survival rate(83.9% vs. 71.0%) and fertilization rate(83.9% vs. 71.0%) compared with four-step(p>0.05). And two-step thawing(air & water exposing) of oocytes frozen after 1-step equilibration showed significantly higher survival rate(96.3%) than one-step thawing at air(85.2%) or water(65.0%) only(p<0.05). Therefore, by the modified method(l-step equilibration & 2-step thawing), Zona-intact(ZI) and Zona-free(ZF) oocytes were frozen and thawed. ZI-oocytes showed significantly higher survival rate(95.4%, 308/323 vs. 67.6%, 240/355) than ZF-oocytes(P<0.01). But the survival of ZF-oocytes was as high as ZI-oocytes in fourteen of twenty-four replicates. ZI-oocytes was also significantly higher fertilization rate($92.4{\pm}8.9%$ vs. $63.7{\pm}18.5%$) and higher mean number of penetrated sperm($6.2{\pm}4.2$ vs. $3.9{\\pm}3.3$) than ZF-oocytes, but not higher than control(fresh oocytes;$99.3{\pm}2.4%$, $8.4{\pm}4.2$)(P<0.001). Conclusively, this modified method will contribute to freeze effectively the hamster oocytes for simplifing of the logical consideration of performing SPA and also to freeze the human and other animal oocytes.

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Artificial Insemination in Poultry (가금의 인공수정)

  • Howarth, Birkett
    • Korean Journal of Animal Reproduction
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    • v.7 no.2
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    • pp.57-71
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    • 1983
  • 1. Diluted chicken semen can be preserved at 2 to 5$^{\circ}C$ for 24 to 48 hr with resultant fertility of greater than 90% of that of fresh semen. Turkey semen can be preserved at 10 to 15$^{\circ}C$ for 6 to 24 hr and provide economical fertility. 2. Frozen chicken semen has given variable results; a 21 to 93% fertility ranges as compared to 92 to 94% expected with fresh semen. Highest fertility levels obtained with frozen turkey semen intravaginally inseminated have been 61 and 63% using DMSO and glycerol, respectively, as cryoprotectants. 3. The use of glycerol as a cryoprotectant reauires that its concentration in semen be reduced to less than 2% either by dialysis or centrifugation after thawing and before intravaginal insemination if optimal fertility is to be obtained. 4. The temperature at which cryoprotectants are added to semen and the time allowed for equilibration are important for subsequent fertility pre- and post-freezing. 5. The type of container used for packaging the semen, freeze or cooling rates, thaw rates and level of cryoprotectant all interact in affecting cell survival. 6. Plastic freeze straws as a packaging device for semen offers the following advantages: easy to handle, require minimal storage space, offer a wide range of freeze and thaw rates, and insemination can be made directly from them upon thawing. 7. Controlled slow cooling rates of 1 to 8$^{\circ}C$/min have thus far provided the best results for cooling chicken semen throught the transition phase change (liquid to solid) or critical temperature range of +5 to -20 or -35$^{\circ}C$. 8. Highest fertilities have been achieved with frozen chicken semen where a slow thaw rate (2。 to 5$^{\circ}C$) has been used regardless of the freeze rate. 9. To maintain a constant high level of fertility throughout a breeding season with frozen semen, a higher absolute number of spermatozoa must be inseminated (2 to 3 times as many) as compared to fresh semen since a, pp.oximately 50% are destroyed during processing and freezing. 10. The quality of semen may vary with season and age of the male. Such changes in sperm quality could be accentuated by storage effects. Thus, the correct number of spermatozoa may very well vary during the course of a breeding period. 11. As to time of insemination, it is best to avoid inseminating chicken hens within 1-2 hr after or 3-5 hr before oviposition; and turkey hens during or 7-10 hr before oviposition. 12. The physiological receptiveness of the oviduct at the time of insemination is a very important biological factor influencing fertility levels throughout the breeding season.

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Effects of Ovarian Morphology and Culture Vessel on In vitro Development and Cell Number in Embryos of Korean Native Cows

  • Park, Yong-Soo;Kim, Jae-Myeoung
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.1
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    • pp.31-35
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    • 2007
  • The main purpose of this study was to improve the efficiency and quality of in vitro embryo production in Korean Native Cows (KNC). We examined the effects of ovarian morphologies (Experiment 1) and the culture vessel (Experiment 2) on in vitro maturation (IVM). We measured the subsequent development rates and cell numbers of blastocysts. In Experiment 1, the ovaries of KNC were divided into six groups, based on follicle and corpus luteum (CL) morphology. The development rates to the 2- and 8-cell stages were similar among the six groups. The development rates to blastocyst stages were significantly higher in the group without a CL or follicle (WOCL/F) than in the groups with follicular cysts (FCs), regressive CLs (RCLs) or cystic CLs (CCLs) (p<0.05). The cell number of the inner cell mass (ICM) of blastocysts in the FCs and RCLs groups, and the number of cells in the trophectoderm (TE) in the WOCL/F group, FCs, growing CLs (GCLs) and RCLs were significantly higher than in other groups (p<0.05). The total cell number (TCN) in the WOCL/F, FC and RCL groups was also significantly higher than in other groups (p<0.05). The ICM cell number/TCN ratio was significantly higher in the FC and RCL groups than in the GCL and DF groups (p<0.05). In Experiment 2, oocyte IVM was carried out in culture dishes, in 0.25- or 0.5-ml straws used for freezing sperm. The development rate to the 2-cell stage was significantly higher in the 0.5-ml straw group than in the 0.25-ml straw group. The development rates to the blastocyst stage were similar in the dish and the two straw groups. There were no differences in the cell numbers of ICM, TE or TCN or ICM cell number/TCN ratios between groups.

Studies on In Vitro Fertilization of Follicular Oocytes of Canine using Fresh and Frozen Epididymal Sperm (개 신선 및 동결 정소상체 정액을 이용한 체외수정에 관한 연구)

  • Kim S. K.;Lee B. K.
    • Journal of Embryo Transfer
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    • v.19 no.3
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    • pp.301-306
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    • 2004
  • 본 연구는 개의 신선 및 동결 정소상체 정액과 정소상체 정액을 saline가 tris-buffer액으로 희석하고 원심분리에 의해 정장성분을 제거한 정액의 성상과 및 동결보존 시의 생존성 및 난포란과 정소상체 정자의 체외수정 후 체외수정율과 분할율에 대해 조사하였다. 개 정소상체 정액을 saline으로 희석한 정액을 20분간 배양했을 때 정자농도는 3.50$\pm$0.80${\times}$l0$^{6}$ cells/$m\ell$, 정자의 활력은 72.45$\pm$4.55%, 기형정자 수는 7.40$\pm$1.20%로 나타났으며, 대조군인 사출정액의 정자농도는 5.45$\pm$0.50${\times}$$10^{6}$cells/$m\ell$, 정자의 활력은 92.55$\pm$4.65%, 기형정자 수는 3.25$\pm$0.45%와 비교할 때 정자농도와 활력은 낮았으며, 기형정자 수는 많았다. 개 정소상체 정액과 tris-buffer로 희석한 정액을 20분간 배양했을 때 정자농도는 3.80$\pm$0.36${\times}$$10^{6}$ cells/$m\ell$, 정자활력은 78.45$\pm$3.50%, 기형정자 수는 5.54$\pm$0.85%였으며, 희석하지 않은 정소상체 정액의 성상에 비해 약간 높게 나타났다. Tris-buffer로 희석한 개 정소상체 정액을 동결 융해했을 때 생존율은 57.50$\pm$4.20%, 활력은 52.70$\pm$5.50%였으며, 희석하지 않은 대조군의 생존을 74.50$\pm$6.25%와 활력 78.50$\pm$5.20%에 비해 현저히 높게 나타났다. 개 난포란과 신선 몇 동결 정소상체 정자와 체외수정시켰을 때 체외수정율은 각각 63.10$\pm$6.45%, 49.50$\pm$4.28% 및 42.84$\pm$5.90%, 22.30$\pm$5.60%로서 신선 정자에 비해 동결 정소상체 정자로 수정시킨 군의 분할율이 유의하게 낮았다.

Studies on In Vitro Fertilization of Follicular Oocytes of Feline using Fresh and Frozen Epididymal Sperm (고양이의 신선 및 동결 정소상체 정액을 이용한 체외수정에 관한 연구)

  • Kim S. K.;Quan J. H.;Lee B. K.
    • Journal of Embryo Transfer
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    • v.19 no.3
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    • pp.307-313
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    • 2004
  • 본 연구는 고양이의 신선 및 동결 정소상체 정액과 정소상체 정액 성상과 및 동결보존시의 생존성 및 난포란과 정소상체 정자의 체외수정 후 체외수정율과 분할율에 대해 조사하였다. 고양이 정소상체 정액의 정자농도는 3.25$\pm$0.75${\times}$$10^{6}$ cells/$m\ell$, 정자의 활력은 70.85$\pm$4.20%, 기형정자 수는 8.55$\pm$1.85%로서 대조군인 사출정액의 정자농도는 5.05$\pm$0.40${\times}$$10^{6}$ cells/$m\ell$, 정자의 활력은 90.24$\pm$455%, 기형정자 수는 4.20$\pm$0.50%와 비교할 때 정자농도와 활력은 낮았으며, 기형정자 수는 많았다. 고양이 정액과 tris-buffer로 희석한 정액을 20분간 배양했을 때 정자농도는 3.50$\pm$0.40${\times}$$10^{6}$ cells/$m\ell$, 정자활력 은 75.50$\pm$2.55%, 기 형정자 수는 6.75$\pm$0.58%로서 희석하지 않은 정소상체 정액의 성상에 비해 약간 높게 나타났다. Tris-buffer로 희석한 고양이 정소상체 정액을 동결 융해했을 때 생존율은 54.50$\pm$4.45, 활력은 47.50$\pm$6.40%로서 희석하지 .않은 대조군의 생존을 74.50$\pm$6.25%와 활력 78.50$\pm$5.20%에 비해 현저히 높게 나타났다. 고양이의 난포란과 신선 및 동결 정소상체 정자를 수정시켰을 때 체외수정율과 분할율은 68.30$\pm$5.35%, 57.25$\pm$4.35% 및 48.65$\pm$4.95%, 35.65 $\pm$4.75%로서 신선 정자에 비해 동결 정소상체 정자로 수정시킨 군의 분할율이 유의하게 낮았다.

Effect of Ethylene Glycol Concentration and Freezing Speed on Post-thawed Semen Viability and Acrosome Integrity in Korean Jeju Black Bull (제주흑우 동결정액 제조시 Ethylene Glycol의 농도와 예비 동결 조건이 정자의 생존율 및 첨체양상에 미치는 영향)

  • Choi, Sun-Ho;Ko, Min-Hee;Kang, Tae-Young;Cho, Sang-Rae;Park, Yong-Sang;Oh, Shin-Ae
    • Reproductive and Developmental Biology
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    • v.35 no.3
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    • pp.377-383
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    • 2011
  • The objective of this study was to examine effect of ethylene glycol for semen cryopreservation in Korean Jeju Black Bull. The semen was cryopreserved with extenders containing cryoprotectants (7% glycerol and 3%, 5%, 7% ethylene glycol) and packed to 0.5 ml straws. The semen straws were located above 3 cm of liquid nitrogen for 5 min, 5 cm for 10 min and 8 cm for 10 min. And then frozen straw was plunged into $LN_2$. Post-thawed sperm motility, viability and membrane integrity were significantly higher in 5% ethylene glycol ($72.5{\pm}5.00%$, $54.88{\pm}0.66%$ and $46.00{\pm}2.40%$; p<0.05). Motility and viability were similar between 7% glycerol and 5% ethylene glycol. However, the membrane integrity was significantly higher in 5% ethylene glycol ($34.69{\pm}4.64%$ vs $46.00{\pm}2.40%$; p<0.05). The viability and membrane integrity were significantly higher in 5 cm for 10 min and 8 cm for 10 min than 3 cm for 5 min (viability: $55.81{\pm}2.94$, $55.19{\pm}3.34$ vs $47.94{\pm}3.48%$; p<0.05 and membrane integrity: $44.94{\pm}3.51$, $46.06{\pm}2.25$ vs $40.38{\pm}1.03%$; p<0.05). The percentage of capacitated sperm assessed by CTC staining, percentage of F pattern was higher in 7% glycerol, 5% and 7% ethylene glycerol, and AR pattern was significantly higher in 3% ethylene glycol. F pattern was significantly increased in 5 cm for 10 min and 8 cm for 10 min (p<0.05), but AR pattern was significantly increased in 3 cm for 5 min (p<0.05).

Effect of N-Methylacetamide Concentration on the Fertility and Hatchability of Cryopreserved Ogye Rooster Semen (N-Methylacetamide 동결 보호제의 농도가 오계 동결 정액의 수정 및 부화율에 미치는 영향)

  • Kim, Sung Woo;Choi, Jin Seok;Ko, Yeoung-Gyu;Do, Yoon-Jung;Byun, Mijeong;Park, Soo-Bong;Seong, Hwan-Hoo;Kim, Chong-Dae
    • Korean Journal of Poultry Science
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    • v.41 no.1
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    • pp.21-27
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    • 2014
  • To preserve chicken genetic materials like cryopreserved spermatozoa, various kinds of freezing agents like glycerol, dimethylsuloxide, dimethylformamide or dimethylacetamide have been used for rooster semen preparation. Recently, the usage of N-methylacetamide (MA) for Ogye rooster semen preservation resulted in hatched chicken successfully. In this study, we investigated the effects of 7, 9 and 11% of MA on the viability, fertility and hatchability of frozen-thawed rooster semen using artificial insemination. The results of viability, fertility and hatchability in frozen semen with 7%, 9% or 11% MA were $35.16{\pm}6.12%$, $67.83{\pm}15.3%$ and $66.2{\pm}16.3%$ of motile sperm rate, 21.5%, 34.7% and 25% of fertility rate, and 100%, 89.5% and 87.5% of hatchability rate. The results of control group with frozen semen were 96.0% of fertility rate and 92.2% of hatchability rate. With these results, the concentration range of MA as a freezing agent of rooster semen could be 7~9% of media. The higher concentration of 9 % MA could decrease the fertility rate of thawed semen not the rate of hatchability rate. So the use of MA without affecting fertility rate would be a key point of freezing method of rooster semen for poultry genetic resource preservation.