[Medicinal properties and mechanisms of p-cymene with mild and warm nature based on deficiency-cold and deficiency-heat syndrome models].

Q3 Pharmacology, Toxicology and Pharmaceutics
Xiao-Fang Wu, Yi Li, Xing-Yu Zhao, Lin-Ze Li, Qi Zhang, Yin-Ming Zhao, Ying-Li Zhu, Chun Wang, Jian-Jun Zhang, Lin-Yuan Wang
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引用次数: 0

Abstract

This paper aims to study the effect of p-cymene on mice with deficiency-cold syndrome induced by hydrocortisone and deficiency-heat syndrome induced by dexamethasone and explore the medicinal properties and mechanism of p-cymene with mild and warm nature based on the dominant characteristics of the two-way applicable conditions of mild drugs. A total of 80 KM mice were randomly divided into blank group, deficiency-cold syndrome model group, deficiency-cold syndrome + ginseng group, and deficiency-cold syndrome + low-dose and high-dose p-cymene groups, as well as blank group, deficiency-heat syndrome model group, deficiency-heat syndrome + American ginseng group, and deficiency-heat syndrome + low-dose and high-dose p-cymene groups. Hydrocortisone and dexamethasone solution were intragastrically administered for 14 consecutive days to prepare deficiency-cold syndrome and deficiency-heat syndrome models. Except for the blank group and the model group intragastrically administered with normal saline, the other groups were intragastrically administrated with drugs for 14 days. The levels of cyclic adenosine monophosphate(cAMP), cyclic guanosine monophosphate(cGMP), triiodothyronine(T3), thyroxine(T4), total cholesterol(TC), triglyceride(TG), immunoglobin G(IgG), and immunoglobin M(IgM) in serum, as well as the activity of Na~+-K~+-ATPase in liver tissue were detected. The expression of transient receptor potential melastatin 8(TRPM8), transient receptor potential vanilloid 1(TRPV1), and uncoupling protein 1(UCP1) in brown adipose tissue of deficiency-cold syndrome model after intervention with p-cymene was studied. The results showed that p-cymene could effectively improve the levels of cAMP, cAMP/cGMP, TC, IgM, and IgG in serum and the activity of Na~+-K~+-ATPase in liver tissue of mice with deficiency-cold syndrome and reduce the content of cGMP. The effects on T3, T4, and TG were not statistically significant. At the same time, p-cymene could reduce the levels of cAMP, cAMP/cGMP, and T4 in serum and the activity of Na~+-K~+-ATPase in liver tissue of mice with deficiency-cold syndrome and increase the levels of cGMP, IgM, and IgG, and it had no effect on T3, TC, and TG. In addition, p-cymene could up-regulate the expression of TRPV1 and UCP1 in brown fat of mice with deficiency-cold syndrome and down-regulate the expression of TRPM8. In summary, p-cymene could significantly regulate the syndrome indexes of mice with deficiency-cold syndrome, and some indexes of mice with deficiency-heat syndrome could be improved, but the effects on lipid metabolism and energy metabolism indexes were not obvious, indicating that the regulation effect of p-cymene on deficiency-cold syndrome model was more prominent and that the medicinal properties of p-cymene were mild and warm. The regulation of TRPV1/TRPM8/UCP1 channel expression may be the molecular biological mechanism of p-cymene with mild and warm nature affecting the energy metabolism of the body.

[基于虚寒虚热证模型的温热性对伞花香的药性及作用机理]。
本研究旨在研究对伞花素对氢化可的松致虚寒证和地塞米松致虚热证小鼠的影响,并基于温和药物双向适用条件的优势特点,探讨对伞花素温和性和温性的药性及其作用机制。将80只KM小鼠随机分为空白组、虚寒证模型组、虚寒证+人参组、虚寒证+低、高剂量对伞花素组,以及空白组、虚热证模型组、虚热证+西洋参组、虚热证+低、高剂量对伞花素组。采用氢化可的松、地塞米松溶液灌胃,连续14 d制备虚寒证和虚热证模型。除空白组和模型组灌胃生理盐水外,其余各组均灌胃给药14 d。检测各组大鼠血清中单磷酸环腺苷(cAMP)、单磷酸环鸟苷(cGMP)、三碘甲状腺原氨酸(T3)、甲状腺素(T4)、总胆固醇(TC)、甘油三酯(TG)、免疫球蛋白G(IgG)、免疫球蛋白M(IgM)水平及肝组织中Na~+-K~+- atp酶活性。研究了对花素干预后,虚寒证模型棕色脂肪组织中瞬时受体电位美拉抑素8(TRPM8)、瞬时受体电位香素1(TRPV1)、解偶联蛋白1(UCP1)的表达。结果表明,对伞花素能有效提高虚寒证小鼠血清cAMP、cAMP/cGMP、TC、IgM、IgG水平及肝组织Na~+-K~+- atp酶活性,降低cGMP含量。对T3、T4和TG的影响无统计学意义。同时,对伞花素能降低虚寒证小鼠血清cAMP、cAMP/cGMP、T4水平和肝组织Na~+-K~+- atp酶活性,提高cGMP、IgM、IgG水平,对T3、TC、TG无影响。p-聚伞花素可上调虚寒证小鼠棕色脂肪中TRPV1和UCP1的表达,下调TRPM8的表达。综上所述,对伞花素能显著调节虚寒证小鼠的证候指标,对虚热证小鼠的部分指标有改善作用,但对脂质代谢和能量代谢指标的影响不明显,说明对伞花素对虚寒证模型的调节作用更为突出,说明对伞花素的药性偏温温和。对TRPV1/TRPM8/UCP1通道表达的调控可能是温热性对花香精影响机体能量代谢的分子生物学机制。
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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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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