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六味地黄汤活性成分组合改善颅脑照射小鼠的成年海马神经发生及神经发生微环境

Active Fraction Combination From Liuwei Dihuang Decoction Improves Adult Hippocampal Neurogenesis and Neurogenic Microenvironment in Cranially Irradiated Mice.

作者信息

Wei Mingxiao, Feng Shufang, Zhang Lin, Wang Chen, Chu Shasha, Shi Tianyao, Zhou Wenxia, Zhang Yongxiang

机构信息

School of Life Science and Biopharmaceutics, Shenyang Pharmaceutical University, Shenyang, China.

State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Institute of Pharmacology and Toxicology, Beijing, China.

出版信息

Front Pharmacol. 2021 Sep 23;12:717719. doi: 10.3389/fphar.2021.717719. eCollection 2021.

Abstract

Cranial radiotherapy is clinically used in the treatment of brain tumours; however, the consequent cognitive and emotional dysfunctions seriously impair the life quality of patients. LW-AFC, an active fraction combination extracted from classical traditional Chinese medicine prescription Liuwei Dihuang decoction, can improve cognitive and emotional dysfunctions in many animal models; however, the protective effect of LW-AFC on cranial irradiation-induced cognitive and emotional dysfunctions has not been reported. Recent studies indicate that impairment of adult hippocampal neurogenesis (AHN) and alterations of the neurogenic microenvironment in the hippocampus constitute critical factors in cognitive and emotional dysfunctions following cranial irradiation. Here, our research further investigated the potential protective effects and mechanisms of LW-AFC on cranial irradiation-induced cognitive and emotional dysfunctions in mice. LW-AFC (1.6 g/kg) was intragastrically administered to mice for 14 days before cranial irradiation (7 Gy γ-ray). AHN was examined by quantifying the number of proliferative neural stem cells and immature neurons in the dorsal and ventral hippocampus. The contextual fear conditioning test, open field test, and tail suspension test were used to assess cognitive and emotional functions in mice. To detect the change of the neurogenic microenvironment, colorimetry and multiplex bead analysis were performed to measure the level of oxidative stress, neurotrophic and growth factors, and inflammation in the hippocampus. LW-AFC exerted beneficial effects on the contextual fear memory, anxiety behaviour, and depression behaviour in irradiated mice. Moreover, LW-AFC increased the number of proliferative neural stem cells and immature neurons in the dorsal hippocampus, displaying a regional specificity of neurogenic response. For the neurogenic microenvironment, LW-AFC significantly increased the contents of superoxide dismutase, glutathione peroxidase, glutathione, and catalase and decreased the content of malondialdehyde in the hippocampus of irradiated mice, accompanied by the increase in brain-derived neurotrophic factor, insulin-like growth factor-1, and interleukin-4 content. Together, LW-AFC improved cognitive and emotional dysfunctions, promoted AHN preferentially in the dorsal hippocampus, and ameliorated disturbance in the neurogenic microenvironment in irradiated mice. LW-AFC ameliorates cranial irradiation-induced cognitive and emotional dysfunctions, and the underlying mechanisms are mediated by promoting AHN in the dorsal hippocampus and improving the neurogenic microenvironment. LW-AFC might be a promising therapeutic agent to treat cognitive and emotional dysfunctions in patients receiving cranial radiotherapy.

摘要

颅脑放疗在临床上用于治疗脑肿瘤;然而,随之而来的认知和情感功能障碍严重损害了患者的生活质量。LW-AFC是从经典中药方剂六味地黄汤中提取的活性成分组合,可改善多种动物模型中的认知和情感功能障碍;然而,LW-AFC对颅脑照射诱导的认知和情感功能障碍的保护作用尚未见报道。最近的研究表明,成年海马神经发生(AHN)受损以及海马中神经发生微环境的改变是颅脑照射后认知和情感功能障碍的关键因素。在此,我们的研究进一步探讨了LW-AFC对小鼠颅脑照射诱导的认知和情感功能障碍的潜在保护作用及机制。在颅脑照射(7 Gy γ射线)前14天,对小鼠灌胃给予LW-AFC(1.6 g/kg)。通过量化背侧和腹侧海马中增殖神经干细胞和未成熟神经元的数量来检测AHN。采用情境恐惧条件反射试验、旷场试验和悬尾试验评估小鼠的认知和情感功能。为了检测神经发生微环境的变化,采用比色法和多重微珠分析来测量海马中的氧化应激水平、神经营养和生长因子以及炎症。LW-AFC对受照射小鼠的情境恐惧记忆、焦虑行为和抑郁行为产生了有益影响。此外,LW-AFC增加了背侧海马中增殖神经干细胞和未成熟神经元的数量,显示出神经发生反应的区域特异性。对于神经发生微环境,LW-AFC显著增加了受照射小鼠海马中超氧化物歧化酶、谷胱甘肽过氧化物酶、谷胱甘肽和过氧化氢酶的含量,降低了丙二醛的含量,同时脑源性神经营养因子、胰岛素样生长因子-1和白细胞介素-4的含量增加。总之,LW-AFC改善了认知和情感功能障碍,优先促进了背侧海马中的AHN,并改善了受照射小鼠神经发生微环境的紊乱。LW-AFC改善了颅脑照射诱导的认知和情感功能障碍,其潜在机制是通过促进背侧海马中的AHN和改善神经发生微环境来介导的。LW-AFC可能是治疗接受颅脑放疗患者认知和情感功能障碍的一种有前景的治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a523/8495126/3886d4ac314c/fphar-12-717719-g001.jpg

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