电致双侧对称弓状核损伤对大鼠吞噬活性及吞噬反应的影响。

A Felegean, M Junie, I Baciu
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摘要

Cluj-Napoca生理学实验室(Benetato, Baciu et al., 1945, 1946, 1947)先前的研究表明,直接电刺激狗的结节-乳房区域,在随后的几个小时内,血液多形核吞噬活性增加。相比之下,同一区域的电损伤会导致基础吞噬活动的抑制和吞噬反应的阻断(Baciu et al., 1958, 1988)。在本研究中,我们假设位于该区域的弓形核对血液中性粒细胞的吞噬活性有刺激作用。我们用阳极电流立体定向诱导6只大鼠弓形核损伤。采用6只动物作为对照组。5 d后,ig革兰氏阴性菌提取物诱导小鼠产生吞噬反应。结果表明,小鼠的吞噬活性从对照组的164.31 +/- 17个被100个中性粒细胞吞噬的细菌下降到损伤组的138 +/- 12.8个,p < 0.05。损伤组5 h后的吞噬反应明显下降(138 +/- 12.8 ~ 156.25 +/- 13.3,p < 0.05)。24小时后得到类似的结果。在对照动物中,5和24小时后反应非常显著。,分别为(p < 0.001)。综上所述,弓形核适度参与维持血液中性粒细胞的基础吞噬活性。它在吞噬反应中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of electrolytic bilateral symmetric lesions of the arcuate nucleus on the phagocytic activity and on the phagocytic response in rats.

Previous researches of Cluj-Napoca laboratories of Physiology (Benetato, Baciu et al., 1945, 1946, 1947) demonstrated that direct electrical stimulation of the tubero-mammillary area in dogs increases, in the following hours, the blood polymorphonuclears phagocytic activity. By contrast, electrical damage of the same region produces a depression of the basal phagocytic activity and a blocking of the phagocytic response (Baciu et al., 1958, 1988). In the present research we assumed there is a stimulating effect of the arcuate nucleus, located in this area, on the phagocytic activity of blood neutrophils. We used an anodal current to stereotaxically induce lesion of the arcuate nucleus in six rats. A control group of six animals was used. Five days later, phagocytic response was induced with a Gram negative bacterial extract given i.v. The results demonstrated a decrease of the phagocytic activity from 164.31 +/- 17 bacteria engulfed by 100 neutrophils in controls, to 138 +/- 12.8 in the lesioned group p < 0.05. Phagocytic response after five hours appears depressed in the lesioned group (138 +/- 12.8 to 156.25 +/- 13.3, p < 0.05). Similar results were obtained after 24 hours. In control animals the response is very significant after 5 and 24 hrs., respectively, (p < 0.001). In conclusion, the arcuate nucleus is moderately involved in sustaining the basal phagocytic activity of blood neutrophils. It has an important role in phagocytic response.

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