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染色体的畸变分析是一种简便易行,经济的遗传毒理学方法,可用来探讨诱变物对生物遗传系统的影响。目前人们多利用鼠类、赤麂及人的培养细胞来进行染色体畸变分析,其它材料很少见,蜚蠊(俗称蟑螂)是一种重要的卫生昆虫,也是一种较好的遗传学研究材料,其分布广泛,与人的日常生活环境密切相关,能否利用它作为一种污染的监测因子呢?我们利用褐斑大蠊(Periplaneta brunnea,Burmeister 1838)进行了初步尝试。 相似文献
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In vivo genetic toxicology tests measure direct DNA damage or the formation of gene or chromosomal mutations, and are used to predict mutagenic and carcinogenic potential of compounds for regulatory purposes. These adverse genotoxic effects may be manifested in the form of gene mutations, structural chromosomal aberrations (CA), recombination, and numerical changes. The present investigation was carried to assess genotoxic effects of five different implantable biomaterials developed in different laborataries of Sree Chitra Tirunal Institute of Medical Sciences and Technology. All biomaterials were developed for clinical applications. CA and micronuclei (MN) studies are biomarkers of genotoxicity testing. Leachants from the extract of biomaterials are capable of inducing structural and numerical chromosomal changes. The studies were conducted in Swiss albino mice with the physiological saline extract of materials together with cyclophosphamide and physiological saline as positive and negative controls. Animals were administered intraperitoneally (ip) with a single injection of test, positive (cyclophosphamide), and negative (physiological saline) control and sacrificed after 24 or 48?h. Bone marrow cells were collected for CA and MN assays. Data showed that all five biomaterials did not significantly exert genotoxic effects. Hence, the study indicates that these biomaterials do not induce any chromosomal anomalies. 相似文献
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