[给药水螅肽形态素后甲状腺的形态计量学和组织化学特征]。

V V Kulayeva, V L Bykov
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引用次数: 0

摘要

研究了水螅肽形态原(HPM)对甲状腺(TG)定量组织化学和形态计量学参数的影响。实验选用40只体重20 ~ 25 g的远交系白化雄性小鼠,以100 μg/kg体重/ d的剂量腹腔注射HPM,连续5 d。利用体视学方法在TG横切面上测定上皮(E),包括其滤泡(E(f))、滤泡间(E(i))成分和胶体(C)所占的相对体积。计算E(f)/E(i)和E/C比值分别作为毛囊组织和TG活性的指标。甲状腺细胞的有丝分裂活性也被评估。表征甲状腺细胞代谢活性的酶:nadh -脱氢酶,琥珀酸脱氢酶和乳酸脱氢酶在材料的低温切片上被证明,在液氮中冷冻,并用细胞光度法评估它们的活性。结果表明,HPM给药导致甲状腺上皮相对体积显著增加,同时胶体体积减少。E(f)/E(i)比值与对照组无显著差异。HPM还能显著提高甲状腺细胞增殖率和所研究的酶的活性。总的来说,获得的定量组织酶学和形态计量学数据表明HPM对TG功能活性和甲状腺细胞增殖的刺激作用。
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[MORPHOMETRIC AND HISTOCHEMICAL CHARACTERISTICS OF THE THYROID GLAND AFTER ADMINISTRATION OF HYDRA PEPTIDE MORPHOGEN].

The effect of Hydra peptide morphogen (HPM) on quantitative histochemical and morphometric parameters of the thyroid gland (TG) was studied. The experiments were conducted on 40 outbred albino male mice weighing 20-25 g, which were injected intraperitoneally with HPM at the dose of 100 μg/kg of body weight per day for 5 days. Relative volumes occupied by the epithelium (E), including its follicular (E(f)), interfollicular (E(i)) components, and colloid (C) were determined using stereological method on TG transverse sections. E(f)/E(i) and E/C ratios were calculated as the indices of follicular organization and TG activity, respectively. Mitotic activity of thyrocytes was also evaluated. The enzymes, characterizing the metabolic activity of thyrocytes: NADH-diaphorase, succinate- and lactate dehydrogenases were demonstrated on cryostat sections of material, frozen in liquid nitrogen and their activity was assessed cytophotometrically. The results demonstrated that HPM administration lead to a significant increase in relative volume of thyroid epithelium with a concomitant reduction of the volume of the colloid. E(f)/E(i) ratio was not significantly different from that in the control. HPM also induced a significant increase of thyrocyte proliferation rate and of the activity of enzymes studied. Collectively, the quantitative histoenzymological and morphometric data obtained indicate the stimulating effect of HPM on TG functional activity and thyrocyte proliferation.

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