Composition capable of bidirectional adjusting gastrointestinal smooth muscle contraction
A two-way regulation, gastrointestinal technology, applied in the direction of drug combination, hydrocarbon compound active ingredients, medical preparations containing active ingredients, etc., to achieve the effect of easy standardization and reduce the possibility of side effects
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experiment example 1~3
[0046] Conditions taken in Experimental Examples 1-3:
[0047] Drug groups (compounds):
[0048] Paeoniflorin (purity of 98wt%) was purchased from Kunming Changchunhua Technology Co., Ltd.; naringin (purity of 98wt%) and synephrine (purity of 98wt%) were purchased from Shaanxi Xuhuang Plant Technology Development Co., Ltd.; hesperidin (purity 98wt%) was purchased from Chengdu Huakang Chengdu Huakang Biological Engineering Co., Ltd.; neohesperidin (purity 95wt%) was purchased from Guilin Laiyin Biological Products Co., Ltd.; limonene (purity 98wt%) was purchased from Shanghai Meishuang trade co., LTD.
[0049] Using the principle of statistics, the 6 compound components were combined according to the orthogonal experiment grouping. For the sake of accuracy, each group of monomers is divided into three levels: full amount, half amount, and no amount. Design according to L18(36) orthogonal table.
[0050] Table 1 Orthogonal design table for the experiment of Fructus Fructus P...
experiment example 1
[0056] Effects of the combination of different drug monomers on the propulsion rate of carbon powder in healthy mice
[0057] The experimental results are shown in Figure 1 below. Results Statistical analysis found that synephrine significantly inhibited the propulsion rate of carbon powder in healthy mice.
experiment example 2
[0059] Effects of the combination of different drug monomers on the propulsion rate of carbon powder in atropine-induced mice
[0060] The experimental results are shown in Figure 2 below. Results Statistical analysis found that synephrine significantly inhibited the propulsion rate of carbon powder in healthy mice. Paeoniflorin and hesperidin can significantly promote the propulsion rate of charcoal powder in healthy mice.
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