The lichen rock tripe (Lasallia pustulata) as survival food: effects on growth, metabolism and immune function in Balb/c mice.

N G Ilbäck, S Källman
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Abstract

The present study was performed to investigate whether the lichen rock tripe (Lasallia pustulata) can be used as food during survival situations. The effects of 30% lichen supplementation given to female Balb/c mice were studied on growth rate, metabolism and immune functions. After 3 weeks on this diet, it was found that the lichen supplementation did not affect the growth rate or the well-being of the animals. The growth rate tended to be higher in the lichen group when compared to control mice. Food consumption was similar in both groups, but with a trend towards slightly higher intake (12%) in the lichen group. The heart, liver, kidney and lymphoid organ (spleen and thymus) weights were not affected by the lichen. Histological hematoxylin eosin staining showed that all these organs were normal. Plasma glucose levels were unchanged, but plasma urea levels decreased by 24% (p < 0.05) with the lichen diet. Red and white blood cells and the number of lymphoid cells in the thymus and spleen were normal. The activity of thymocytes and spleen T-lymphocytes were not affected by the lichen diet, but spontaneous cell-mediated cytotoxicity (NK cells) tended (n.s.) to increase and spleen B-lymphocyte activity increased by 40% (p < 0.05). This study shows that the lichen rock tripe has immune stimulating effects important for host defence reactions and can be used as food in survival situations without any adverse effects on the metabolism.

生存食物地衣岩肚对Balb/c小鼠生长、代谢和免疫功能的影响。
本研究旨在探讨地衣岩肚(Lasallia pustulata)在生存状态下是否可以作为食物。研究了添加30%地衣对Balb/c雌性小鼠生长速率、代谢和免疫功能的影响。饲喂这种饲料3周后,发现添加地衣不会影响动物的生长速度或健康状况。与对照组相比,地衣组的生长速度往往更高。两组的食物消耗量相似,但地衣组的摄入量有略高的趋势(12%)。心脏、肝脏、肾脏和淋巴器官(脾脏和胸腺)的重量未受地衣影响。组织苏木精伊红染色显示这些器官均正常。饲粮添加地衣后,血浆葡萄糖水平不变,血浆尿素水平降低24% (p < 0.05)。胸腺、脾脏红细胞、白细胞及淋巴样细胞数量正常。地衣饲粮对胸腺细胞和脾脏t淋巴细胞活性无显著影响,但自发性细胞毒性(NK细胞)有升高的趋势,脾脏b淋巴细胞活性提高了40% (p < 0.05)。本研究表明,地衣对宿主防御反应具有重要的免疫刺激作用,在生存情况下可以作为食物使用,而不会对代谢产生不良影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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