研究说明:断奶时间对犊牛瘤胃电解质转运的影响。

G Breves, R Zitnan, B Schröder, C Winckler, H Hagemeister, K Failing, J Voigt
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引用次数: 4

摘要

在之前的一项研究中,我们发现犊牛早期断奶与指示瘤胃发育的形态参数(即乳头的长度和宽度)呈正相关。本研究的目的是确定这种观察结果在多大程度上可以通过调节瘤胃粘膜的吸收和分泌功能来反映。为此,应用Ussing-chamber技术在体外测量了作为电致净离子通量量度的短路电流(Isc)和作为整体组织通透性量度的经上皮电导(G(T))。同时,在没有电化学梯度的情况下,测定了钠和氯通过瘤胃壁上皮的单向通量率。在这些条件下,显著的正净通量率(Jnet)清楚地表明电解质吸收的有效机制。试验选取12头7日龄荷斯坦公犊牛,随机分为3组,每组4头:乳组(1,6周龄后屠宰)、晚断奶组(2,9周龄后屠宰)和早断奶组(2,6周龄后断奶,9周龄后屠宰)。G(T)值不受日龄和饲喂的影响,Isc值受早期断奶的显著影响,但不受日龄的影响。无论断奶时间如何,9周龄动物对Na+的活性吸收往往更高,约为60%。9周龄犊牛乳中氯离子的活性吸收显著增加,早期断奶进一步促进了这一效应。综上所述,犊牛瘤胃活性Na+吸收随年龄增长而增加,不受早期断奶的影响。同样,活性氯吸收最初在出生后发育期间增加,这种效应可以通过早期断奶进一步刺激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research note: Postnatal development of electrolyte transport in calf rumen as affected by weaning time.

In a previous study we found a positive correlation between early weaning in calves and morphological parameters which were indicative of ruminal development, i.e. the length and width of the papillae. The objective of the present study was to determine to what extent this observation could be reflected by modulations of absorptive and secretory functions of the rumen mucosa. For this purpose the short-circuit currents (Isc) as a measure of electrogenic net ion fluxes and the transepithelial conductances (G(T)) as a measure of the overall tissue permeability were measured in vitro applying the Ussing-chamber technique. Simultaneously, the unidirectional flux rates of sodium and chloride across rumen wall epithelia were determined in the absence of electrochemical gradients. Under these conditions, significant positive net flux rates (Jnet) clearly indicate active mechanisms for electrolyte absorption. For the experiments 12 male Holstein calves 7 d of age were assigned to three groups of 4 animals each: milk group (I, slaughtered after 6 weeks of age), late weaning group (II, slaughtered after 9 weeks of age) and early weaning group (II, weaned after 6 weeks of age and slaughtered after 9 weeks of age). Whereas G(T) values remained unaffected by different age and feeding, Isc values were significantly affected by early weaning but were not influenced by age. Irrespective of weaning time active absorption of Na+ tended to be higher by about 60% in 9 weeks old animals. Active absorption of chloride was significantly increased in milk fed 9 weeke old calves and this effect was further stimulated by early weaning. In conclusion, the data show an increasing active Na+ absorption with age in calf rumen that could not be influenced by early weaning. Similarly, active Cl- absorption was initially increased during postnatal development and this effect could be stimulated further by early weaning.

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