• 제목/요약/키워드: exencephaly

검색결과 7건 처리시간 0.017초

Combined Effects of Ionizing Radiation and Ultrasound on Malformation in ICR Mice at Organogenesis stage

  • 구연화;하세가와 다케오;모리 다케히코;야마모토 요우치;구사마 토모코
    • Journal of Radiation Protection and Research
    • /
    • 제24권1호
    • /
    • pp.23-30
    • /
    • 1999
  • 태생 8일째인 임신한 생쥐에 137-Cs 감마선과 초음파를 조사하였다. 복합조사의 경우 임신한 생쥐는 1.5 Gy 방사선과 $1.0W/cm^2$ 초음파로 -1, 0, 1, 3, 6 시간 간격으로 조사하였다. 사망과 외부 기형은 태생 18일에 검진하였다. 방사선에 의한 태생 8일의 사망 임계값은 0.5에서 1.0 Gy사이였으며, 초음파는 1.0에서 $1.5W/cm^2$ 사이였다. 태생 후반기의 사망은 방사선과 초음파의 복합 치료에 의해 상승적으로 증가되었다. 방사선에 의한 뇌탈출기형 및 무안구증의 임계값은 각각 0.5에서 1.0Gy사이와 1.0에서 1.5Gy 사이였다 초음파에 의한 뇌탈출기형과 무안구증의 임계값은 각각 1.0에서 $1.5W/cm^2$ 사이와 $1.5W/cm^2$ 이상이었다. 복합치료의 경우는 뇌 탈출기형과 무안구증의 빈도가 상승적으로 증가하였다. 한 시간 간격으로 두 가지 치료를 받은 생쥐에서 뇌 탈출기형과 무안구증의 빈도가 최고치에 도달하였다.

  • PDF

랫드에서 Butylated Hydroxyanisole에 의한 Glutathione S-Transferases 유도 및 Cyclophosphamide로 유발된 기형에 대한 예방효과 (Effects of Butylated Hydroxyanisole on Glutathione S-Transferases Activity and Cyclophosphamide-Induced Teratogenicity in Rats)

  • 강현구;이창희;이기창;이지은;김하정;최은경;윤영원;김윤배
    • Toxicological Research
    • /
    • 제19권3호
    • /
    • pp.181-187
    • /
    • 2003
  • Effects of repeated treatment with butylated hydroxyanisole (BHA) on the induction of glutathione S-transferases (GSTs) and teratogenicity of cyclophosphamide were investigated in rats. Pregnant rats were orally treated with BHA (50 mg/kg) for 7 days, from days 6 to 12 of gestation, and intraperitoneally challenged with cyclophosphamide (15 mg/kg) 2 hr after the final treatment. On day 20 of gestation, the maternal and fetal abnormalities were examined. Separately, a part of rats was sacrificed for the assay of hepatic and placental GSTs activities on day 12 of gestation following 7-day treatment with BHA. Cyclophosphamide, administered on day 12 of gestation, induced 43.2% of fetal death and resorption, and 100% of malformations in live fetuses, in contrast to low fetal resorption (8.7%) and malformations (8%) in control group. The malformations include cranial defect and exencephaly (100%), micrognathia and tongue extrusion (100%), limb defects (40%), renal pelvic dilatation (39%), and cleft palate (15%). Interestingly, BHA induced GSTs activities by 62% and 46% over the control in liver and placenta, respectively, and remarkably reduced the fetal resorption (13.9%) and malformations, resulting in 62% of cranial defect and exencephaly, 68% of micrognathia and tongue extrusion, 29% of limb defects, and 14% of renal pelvic dilatation. Taken together, it is suggested that a long-term pretreatment with BHA could substantially prevent fetuses from abortion and malformations following intrauterine exposure to teratogens including cyclophosphamide by inducing phase II antioxidant enzymes such as GSTs.

ICR 마우스의 태아(胎兒)에 대(對)한 방사선(放射線)과 초음파(超音波)의 공동효과(共同效果)에 관한 실험적(實驗的) 검토(檢討) (Combined Effects of Radiation and Ultrasound on Embryonic Development in Mice)

  • 구연화
    • 대한방사선기술학회지:방사선기술과학
    • /
    • 제14권2호
    • /
    • pp.37-44
    • /
    • 1991
  • The combined effect of radiation and ultrasound has been studied in mouse embryos. Radiation and/or ultrasound were adminstered to ICR mice on day 8 of gestation. Intrauterine death, gross malformation, and fetal body weight were selected as indicators of effects. Does of whole-body ${\gamma}-irradiation$ were 0.5 to 2.5 Gy and those of ultrasound were $0.5\;W/cm^2$ to $3\;W/cm^2$. Intrautrine mortality increased with increasing radiation dose ; this trend was more remarkable in combination with ultrasound. Gross malformations such as exencephaly and anophthalmia/microphthalmia appeared frequently in the fetuses treated with both radiation and ultrasound. Decreased fetal weight was observed even in mice treated with 1.5 Gy of radiation or $1\;W/cm^2$ of ultrasound. There was a linear relationship between dose and reduction of fetal weight. The fetal weight was sensitive, precise and easy-to-handle indicator for the effects of growth retardation. Intrauterine mortality and frequencies of exencephaly and anophthalmia/microphthalmia were higher than the sum of those induced by radiation and by ultrasound. The results indicatied that the combined action of radiation and ultrasound on intrauterine death and malformations was synergistic.

  • PDF

Cell cycle-related kinase is a crucial regulator for ciliogenesis and Hedgehog signaling in embryonic mouse lung development

  • Lee, Hankyu;Ko, Hyuk Wan
    • BMB Reports
    • /
    • 제53권7호
    • /
    • pp.367-372
    • /
    • 2020
  • Cell cycle-related kinase (CCRK) has a conserved role in ciliogenesis, and Ccrk defects in mice lead to developmental defects, including exencephaly, preaxial polydactyly, skeletal abnormalities, retinal degeneration, and polycystic kidney. Here, we found that Ccrk is highly expressed in mouse trachea and bronchioles. Ccrk mutants exhibited pulmonary hypoplasia and abnormal branching morphogenesis in respiratory organ development. Furthermore, we demonstrated that Ccrk mutant lungs exhibit not only impaired branching morphogenesis but also a significant sacculation deficiency in alveoli associated with reduced epithelial progenitor cell proliferation. In pseudoglandular stages, Ccrk mutant lungs showed a downregulation of Hedgehog (Hh) signaling and defects in cilia morphology and frequency during progenitor-cell proliferation. Interestingly, we observed that activation of the Hh signaling pathway by small-molecule smoothened agonist (SAG) partially rescued bud morphology during branch bifurcation in explants from Ccrk mutant lungs. Therefore, CCRK properly regulates respiratory airway architecture in part through Hh-signal transduction and ciliogenesis.

The Effects of MRI on Mouse Embryos During Fetal Stage

  • Nakamura, Takashi;Ryu, Myung-Sun;Sakazaki, Takahiko;Itokawa, Yuka;Maenaka, Toshihiro;Masubuchi, Takashi;Sekimoto, Hiroyuki;Kanehara, Masayuki;Kang, Young-Nam;Gu, Yeun-Hwa
    • Journal of Radiation Protection and Research
    • /
    • 제31권2호
    • /
    • pp.91-96
    • /
    • 2006
  • The effects of Magnetic resonance imaging (MRI) on mouse embryos at the early stage of organogenesis were investigated. Pregnant ICR mice were exposed on day 8 of gestation to MRI at 0.5 T for 0.5 hour to 3 hours. The mortality rates of embryos or fetuses, the incidence of external malformations, fetal body weight and sex ratio were observed at day 18 of gestation. A significant increase in embryonic mortality was observed after exposure to either 0.5 T MRI for 0.5 hour or 2 hours. However, the exposure to MRI for 1 hour or 3 hours did not induce any significant increase in embryonic mortality when compared with control. External malformations such as exencephaly, cleft palate and anomalies of tail were observed in all experimental groups exposed to each MRI. A statistically significant increase of external malformations was observed in all groups treated with 0.5 T MRI for 0.5 hour and 3 hours. The incidence of external malformations in the mice group exposed to 0.5 T MRI for 0.5-hour was found to be higher than those of mice group exposed to 0.5 T MRI for 2 hours. The effects of MRI on the external malformations might not to be dose-dependent. There was no statistically significant difference in fetal body weight and sex ratio among each MRI exposure groups.

착상전기(着床前期)에 있어서 ICR Mouse의 태아(胎兒)에 대한 방사선(放射線) 개체(個體) Level 영향(影響)의 연구(硏究) (The Developmental Effects of Radiation on ICR Mouse Embryos in Preimplantation Stage)

  • 구연화
    • Journal of Radiation Protection and Research
    • /
    • 제21권4호
    • /
    • pp.273-284
    • /
    • 1996
  • 착상전기(着床前期}의 태아(胎兒)는 방사선(放射線)을 비롯한 많은 환경요인(環境要因)에 대하여 감수성(感受性)이 높은 개체(個體)임에도 불구하고 특히 이 시기는 임신부(姙娠婦)가 자각(自覺)적으로 임신을 감지할 수 없는 시기이기에 이러한 여러 환경유해요인으로부터 의도적으로 피할 수가 없다. 그러므로 착상전기의 영향을 충분히 검토한 후에 의료행위를 취할 것이며 이에 대한 방어(防禦)대책도 검토할 필요가 있다. 종래 까지 방사선에 대한 태아영향에 관한 많은 연구결과에 의하면 방사선 및 그 외의 유해요인에 대한 착상전기의 영향은 배사망(胚死亡)(유산(流産))만이 일어나며 기형(奇形)은 유발(誘發)하지 않는다고 하여 발생학(發生學)등 여러 교과서에서 기형은 기관형성기(器官形戚期)만이 국한(局限)해서 일어나는 영향이라고 단정되어 왔었다. 그러나 이 연구결과 착상전기에 있어서도 기형이 유발하여 오히려 기관형성기((器官形成期)보다도 감수성이 높다는 것이다. 또한 착상전기에서도 기형유발의 시기특이성을 가지며 여러 종류의 기형이 발생한다는 것이 본 연구로부터 밝혀졌다. 실험동물은 ICR Mouse를 사용했다. ICR Mouse는 일반적으로 태아사망 및 기형실험에 널리 사용되는 것이다. 사육조건은 Conventional 한 조건하에서 사육했으며 Mating 방법(方法)은 Female 마우스의 발정기(Sexual Excitement period)에 있는 mouse 질(膣)을 육안 적으로 관찰하여 $AM 6:00{\sim}AM 9:00$시까지 3시간만 mate시켰다. AM9:00시에 Vaginal Plug를 관찰하여 임신을 확인했다. Plug가 확인 된 마우스는 AM8:00시에 수정(Conception)된 것으로 가정하고 이 시점을 임신 0일 0시로 수정 난의 태아연령을 산정했다. 방사선조사는 $^{135}Cs\;{\gamma}-$선을 사용하였으며 임신 마우스의 전신조사를 실시하고 조사한 시기는 각 2, 48, 72, 96hpc이며 조사한 방사선 선량 군은 $0.1{\sim}2.5Gy$이다. 태아영향 관찰지표는 태아 연령은 mate일 오전 8:00시를 임신 0일 0시로 환산하여 태아연령 18일에 임신마우스를 Cervical vertebral dislocation에 의해 도살했다. 도살 후 해부하여 각 임신 마우스별로 관찰했다. 착상 율을 관찰하기 위하여 황체수를 세었고, 태아사망과 생존태아를 구별했다. 자궁 내 사망의 분류는 태아사망을 1) preimplantation death 2) Embryonic death 3) Fetal death로 분류했다. 착상전사망은 수정후 $0{\sim}4.5$일(1세포기${\sim}$배반포후기 부화까지)까지의 사망으로써 난소의 황체수(배란 수)와 착상태아(생존태아, 착상흔, 태반유잔, 흡수태아, 침연태아의 합계)로부터 구할 수 있다. Embonic death는 수정 후 $4.5{\sim}13$일까지의 사망으로써 Implantation sites, Placental remnants, Resorption of fetus로 관찰된 것이다. Fetal death는 수정후 $14{\sim}18$일까지의 사망으로써 Maceration of fetus로 관찰되는 것이다. 통계학적 분석은 각 Group의 착상 을과 자궁 내 사망 율을 산출할 때에는 각 임신마우스에 따라 발생빈도가 크게 다르기 때문에 통계처리에는 Non parametric 검정인 Kluskal Wallis 검정을 사용하여 분석하였다. 또한 개체 Level 영향인 착상을, 태아사망, 기형의 threshold dose의 산정에 대해서는 SAS-Logistic 검정에 따라 통계 분석을 하여 $5%(Ld_5,\;ED_5)$$10%{\times}2/3$점을 threshold dose로 판단했다. 태아체 중에 대해서는 parametric검정인 t-test검정에 의하여 분석했다. 그 결과 착상전기에서도 기형이 유발하며 특히 시기에 따라 일어나는 때와 일어나지 않는 때가 있음을 본 연구로부터 밝혀졌다. 또한 착상전기의 영향으로써 유발되는 기형은 여러 종류의 기형이 발생함이 밝혀졌다. 특히 이시기는 착상전 사망 및 배(胚)사망은 방사선 선량에 따라 크게 일어나나 태아사망(Fetal death) 및 태아체중은 유의차(有意差)가 없었다.

  • PDF

Evaluation of Embryotoxic Potential of Olaquindox and Vitamin A in Micromass Culture and in Rats

  • Kang, Hwan-Goo;Ku, Hyun-Ok;Jeong, Sang-Hee;Cho, Joon-Hyoung;Son, Seong-Wan
    • Toxicological Research
    • /
    • 제26권3호
    • /
    • pp.209-216
    • /
    • 2010
  • Limb bud (LB) and central nerve system (CNS) cells were prepared from 12.5 day old pregnant female Crj:CD (SD) rats and treated with olaquindox and vitamin A. Cytotoxicity and inhibition on differentiation were measured in each cell. Three doses of olaquindox (4, 21 and 100 mgkg), and 0.2 and 75 mg/kg of vitamin A were administered to pregnant rat for 11 days from $6^{th}$ to $16^{th}$ of pregnancy. $IC_{50}$ values of olaquindox for proliferation and differentiation in CNS cell were 22.74 and $28.32\;{\mu}g/ml$ and 79.34 and $23.29\;{\mu}g/ml$ in LB cell and those values of vitamin A were 8.13 and $5.94\;{\mu}g/ml$ in CNS cell and 0.81 and $0.05\;{\mu}g/ml$ in LB cell, respectively. Mean body weights of pregnant rats were decreased at high dose of olaquindox (110 mg/kg) but relative ovary weight, number of corpus lutea, and number of implantation were not changed. Resorption and dead fetus were increased at high dose of olaquindox, and relative ovary weight, the number of corpus lutea and implantation, and sex ratio of male to female were not significantly changed in all dose of olaquindox. Mean fetal and placenta weights were significantly (p < 0.01) decreased in rats of high group. Seven fetuses out of 103 showed external anomaly like bent tail, and 10 out of 114 fetuses showed visceral anomalies at high group. The ossification of sternebrae and metacarpals were significantly (p < 0.01) increased by low and middle dose of olaquindox but it was significantly (p < 0.01) prohibited by high dose of olaquindox. In rats treated with vitamin A, the resorption and dead fetus were increased by high dose. Mean fetal weights were significantly (p < 0.01) increased by low dose but significantly (p < 0.01) decreased by high dose. Thirty four fetuses out of 52 showed external anomaly; bent tail (1), cranioarchschisis (14), exencephaly (14), dome shaped head (22), anophthalmia (15), brcahynathia (10) and others (19). Forty five fetuses out of 52 showed soft tissue anomaly; cleft palate (42/52) and anophthalmia (22/52) by high dose of vitamin A. Sixty one fetuses out of 61 (85.2%) showed skull anomaly; defect of frontal, partial and occipital bone (21/61), defect of palatine bone (52/61) and others (50/61). In summary, we support that vitamin A is strong teratogen based on our micromass and in vivo data, and olaquindox has a weak teratogenic potential in LB cell but not in CNS cell. We provide the in vivo evidence that a high dose of olaquindox could have weak embryotoxic potential in rats.