中国水产科学
中國水產科學
중국수산과학
Journal of Fishery Sciences of China
2014年
3期
621-628
,共8页
杨星%刘文枝%肖汉兵%孟彦%高正勇%张辉%曾令兵
楊星%劉文枝%肖漢兵%孟彥%高正勇%張輝%曾令兵
양성%류문지%초한병%맹언%고정용%장휘%증령병
嗜水气单胞菌%灭活疫苗%大鲵%血细胞数量%吞噬活性%凝集抗体效价%相对免疫保护率
嗜水氣單胞菌%滅活疫苗%大鯢%血細胞數量%吞噬活性%凝集抗體效價%相對免疫保護率
기수기단포균%멸활역묘%대예%혈세포수량%탄서활성%응집항체효개%상대면역보호솔
Aeromonas hydrophila%inactivated vaccine%Andrias davidianus%haematocyte%phagocytic activity%agglutinating antibody titers%relative percent survival
以福尔马林灭活的嗜水气单胞菌(Aeromonas hydrophila)作为免疫原(F-AH),通过腹腔注射免疫健康大鲵(Andrias davidianus),分别于免疫后的第1、4、7、14、21、28天采集血液样品,进行大鲵外周血液的血细胞计数与白细胞组成分析,测定吞噬细胞的吞噬活性以及血清中和抗体效价,于免疫28 d后进行攻毒感染试验。结果表明,与对照组相比,在免疫后第4、7、14和第21天,免疫大鲵外周血中血细胞数量显著增加,其中,红细胞和白细胞数量均于第4天达峰值,分别为7.83×107个/mL和6.74×106个/mL;嗜中性粒细胞百分比也在第4天达峰值,为28.60%,单核细胞百分比在第7天达峰值,为10.53%;吞噬细胞活性显著提高,且吞噬百分比和吞噬指数均在第4天达到最高值,分别为34.09%和3.73。随后,淋巴细胞百分比和中和抗体效价显著增加,均在第21天达峰值,分别为75.30%和1︰426.67。攻毒感染实验结果表明,免疫组的相对免疫保护率为69.23%。由此可见, F-AH免疫原能够通过促进血细胞数量的增加、吞噬细胞吞噬活性增强以及特异性抗体的产生等方式提高大鲵的免疫保护力。
以福爾馬林滅活的嗜水氣單胞菌(Aeromonas hydrophila)作為免疫原(F-AH),通過腹腔註射免疫健康大鯢(Andrias davidianus),分彆于免疫後的第1、4、7、14、21、28天採集血液樣品,進行大鯢外週血液的血細胞計數與白細胞組成分析,測定吞噬細胞的吞噬活性以及血清中和抗體效價,于免疫28 d後進行攻毒感染試驗。結果錶明,與對照組相比,在免疫後第4、7、14和第21天,免疫大鯢外週血中血細胞數量顯著增加,其中,紅細胞和白細胞數量均于第4天達峰值,分彆為7.83×107箇/mL和6.74×106箇/mL;嗜中性粒細胞百分比也在第4天達峰值,為28.60%,單覈細胞百分比在第7天達峰值,為10.53%;吞噬細胞活性顯著提高,且吞噬百分比和吞噬指數均在第4天達到最高值,分彆為34.09%和3.73。隨後,淋巴細胞百分比和中和抗體效價顯著增加,均在第21天達峰值,分彆為75.30%和1︰426.67。攻毒感染實驗結果錶明,免疫組的相對免疫保護率為69.23%。由此可見, F-AH免疫原能夠通過促進血細胞數量的增加、吞噬細胞吞噬活性增彊以及特異性抗體的產生等方式提高大鯢的免疫保護力。
이복이마림멸활적기수기단포균(Aeromonas hydrophila)작위면역원(F-AH),통과복강주사면역건강대예(Andrias davidianus),분별우면역후적제1、4、7、14、21、28천채집혈액양품,진행대예외주혈액적혈세포계수여백세포조성분석,측정탄서세포적탄서활성이급혈청중화항체효개,우면역28 d후진행공독감염시험。결과표명,여대조조상비,재면역후제4、7、14화제21천,면역대예외주혈중혈세포수량현저증가,기중,홍세포화백세포수량균우제4천체봉치,분별위7.83×107개/mL화6.74×106개/mL;기중성립세포백분비야재제4천체봉치,위28.60%,단핵세포백분비재제7천체봉치,위10.53%;탄서세포활성현저제고,차탄서백분비화탄서지수균재제4천체도최고치,분별위34.09%화3.73。수후,림파세포백분비화중화항체효개현저증가,균재제21천체봉치,분별위75.30%화1︰426.67。공독감염실험결과표명,면역조적상대면역보호솔위69.23%。유차가견, F-AH면역원능구통과촉진혈세포수량적증가、탄서세포탄서활성증강이급특이성항체적산생등방식제고대예적면역보호력。
Formalin-killed Aeromonas hydrophila cells (F-AH) were used as an antigen to immunize healthy giant salamander (Andrias davidianus) via intraperitoneal injection. Peripheral blood samples were collected from im-munized and control giant salamanders at 1, 4, 7, 21 and 28 d post-immunization for the measurement of immu-neresponses by counting and classifying blood cells, determining the phagocytic percentage and index and serum agglutinating antibody titers. Compared to the control group, the number of erythrocytes and leucocytes in the peripheral blood of immunized animals increased significantly at 4, 7, 14 and 21 d post-immunization, and reached a maximum value of 7.83×107/mL and 6.74×106/mL at 4 d post-immunization, respectively. The percentage of neutrophils reached a maximum value of 28.60%at 4 d post-immunization and the number of monocytes reached a maximum value of 10.53%at 7 d post-immunization. The phagocytic percentage and phagocytic index increased significantly (P<0.01) and reached amaximum value of 34.09% and 3.73 at 4 d post-immunization, respectively. The number of lymphocyte and the serum agglutinating antibody titers increased significantly, and peaked at 75.30%and 1︰426.67 at 21 d post-immunization (P<0.01), respectively. The challenge test with live Aeromonas hydrophilaresulted in a relative percent survival in the immunized group of 69.23%. The results from this study demonst rated that F-AH enhanced the immunity of the giant salamander by increasing the number of erythrocytes and leucocytes in peripheral blood, improving the activity of phagocytes, enhancing the serum agglutinating anti-bodytiter and providing effective protection in the immunized animals.