首页> 外文期刊>Teratogenesis, carcinogenesis, and mutagenesis >Implantation of MNNG crystals into a Triturus intact limb affects mitotic and labeling indices, regeneration rate, and morphogenesis in the contralateral, regenerating limb.
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Implantation of MNNG crystals into a Triturus intact limb affects mitotic and labeling indices, regeneration rate, and morphogenesis in the contralateral, regenerating limb.

机译:在完整的Triturus肢体中植入MNNG晶体会影响对侧再生肢体的有丝分裂和标记指数,再生速率和形态发生。

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Experimental administration of chemical carcinogens to various mammals is highly effective in inducing malignant tumors. In contrast, treatment of regeneration-competent animals even with much higher doses of the same drugs only exceptionally leads to tumor-like growth. Usually, carcinogenic materials implanted or injected into a regenerating limb of urodele amphibia interfere with the regenerative process and frequently lead a) to growth retardation or arrest of regeneration, b) to development of a great variety of abnormal regenerates, and c) to generation of accessory, limb-like structures. Autonomous or experimental incidence of carcinogenesis is extremely low in animals endowed with strong regenerative capabilities. Of exceptional biological significance is the fact that such induced tumors usually regress spontaneously. This unique property of the regeneration-competent animals to resist carcinogenesis provides opportunities to compare non-cancerous alterations in the differentiated state of adult cells to those occurring in neoplasia. The mode of action of the chemical carcinogens on limb regeneration has not yet been clarified with certainty at the cellular and the molecular level. Several scientists claim that the above-mentioned effects might be attributed to local toxic influences of the drugs; therefore the present study was designed to investigate whether the administration of the carcinogen MNNG can affect cell proliferation, histogenesis, and morphogenesis at a region distant from the site of its implantation, even after a relatively long time period. To this end, 40 animals of the species Triturus cristatus had their right hindlimb surgically removed at the distal zeugopod. Then, a small microcrystal (approximately 5 micro g) of MNNG was inserted under the ventral aspect of the skin of the left tarsus in 20 of these animals (groups T and A; see below). Two months later, nine of the MNNG-treated animals were injected intraperitoneally with tritiated thymidine. After 2 h, six of these animals had their right hindlimb amputated at the distal zeugopod, whereas the rest were left to regenerate. The results were evaluated by camera lucida drawings, clearing in methyl benzoate, classical histology, and autoradiography. It was revealed that administration of MNNG at a somatic region (left hindlimb) reduces DNA synthesis and mitosis at a distant place (right hindlimb) even 2 months after MNNG implantation. Despite this, the rate of limb elongation is not substantially reduced. Classical histology revealed normal tissue structure throughout. All regenerated limbs displayed several teratogenic abnormalities. Teratogenesis Carcinog. Mutagen. 22:473-483, 2002.
机译:对各种哺乳动物进行化学致癌物的实验给药在诱导恶性肿瘤方面非常有效。相反,即使使用高剂量的相同药物治疗具有再生能力的动物,也只能异常地导致肿瘤样生长。通常,植入或注射到两栖类urodele的再生肢中的致癌物质会干扰再生过程,并经常导致a)发育迟缓或停止再生,b)导致多种异常再生的发生,以及c)产生附件,四肢状结构。在具有强大再生能力的动物中,自主或实验的致癌发生率极低。具有特殊生物学意义的是这样的诱导的肿瘤通常自发消退的事实。具有再生能力的动物的这种独特的抗癌性的特性为将成年细胞的分化状态的非癌性变化与瘤形成中的非癌性变化进行比较提供了机会。化学致癌物对肢体再生的作用方式尚未在细胞和分子水平上明确阐明。几位科学家声称,上述影响可能归因于该药物的局部毒性影响。因此,本研究旨在研究即使在相对较长的时间后,施用致癌物MNNG是否也可以影响远离其植入部位的区域的细胞增殖,组织发生和形态发生。为此,通过外科手术在右足足类动物的远端切除了40种Triturus cristatus动物。然后,在其中的20只动物(T和A组;见下文)中,在左骨皮肤的腹侧下方插入一个小的MNNG微晶(约5微克)。两个月后,对九只经MNNG处理的动物进行了tri化胸腺嘧啶的腹膜内注射。 2小时后,这些动物中有6只在后足足类动物的右后肢被截肢,而其余的则要再生。结果通过照相机lucida图纸,苯甲酸甲酯清除,经典组织学和放射自显影进行评估。揭示了在MNNG植入后2个月,在体区(左后肢)施用MNNG减少了远处(右后肢)的DNA合成和有丝分裂。尽管如此,肢体伸长率并未显着降低。古典组织学显示整个组织结构正常。所有再生的肢体均显示出数种致畸异常。致癌作用。诱变剂。 22:473-483,2002。

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