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| 1 | Current perspectives on in vitro maturation and its effects on oocyte genetic and epigenetic profiles显示文摘In vitro maturation(IVM), the maturation in culture of immature oocytes, has been used in clinic for more than 20 years.Although IVM has the specific advantages of low cost and minor side effects over controlled ovarian stimulation, the prevalence of IVM is less than 1% of routine in vitro fertilization and embryo transfer techniques in many reproductive centers. In this review, we searched the MEDLINE database for all full texts and/or abstract articles published in English with content related to oocyte IVM mainly between 2000 and 2016. Many different aspects of the IVM method may influence oocyte potential,including priming, gonadotrophin, growth factors, and culture times. The culture conditions of IVM result in alterations in the oocyte or cumulus cell transcriptome that are not observed under in vivo culture conditions. Additionally, epigenetic modifications, such as DNA methylation or acetylation, are also different between in vitro and in vivo cultured oocytes. In sum,current IVM technique is still not popular and requires more systematic and intensive research to improve its effects and applications. This review will help point our problems, supply evidence or clues for future improving IVM technique, thus assist patients for fertility treatment or preservation as an additional option. | Cuiling Lu Yaoyao Zhang Xiaoying Zheng Xueling Song Rui Yang Jie Yan Huailiang Feng Jie Qiao | 2018 | Science China(Life Sciences)2018,61,6: | 10 |
| 2 | Lactobacillus rhamnosus GG reduces hepatic TNFα production and inflammation in chronic alcohol-induced liver injury显示文摘 | Yuhua Wang Yanlong Liu Irina Kirpich Zhenhua Ma Cuiling Wang Min Zhang Jill Suttles Craig McClain Wenke Feng | 2013 | The Journal of Nutritional Biochemistry2013,,: | 4 |
| 3 | Baicalin inhibits inflammation of lipopolysaccharide-induced acute lung injury via toll like receptor-4/myeloid differentiation primary response 88/nuclear factor-kappa B signaling pathway显示文摘OBJECTIVE:To explore the effect and mechanism of baicalin in the treatment of acute lung injury(ALI)by in vivo and in vitro experiments.METHODS:ALI was induced by instilling 10 mg/m L lipopolysaccharide(LPS)into the airway of rats.Different doses of baicalin(50 and 100 mg·kg^(-1)·d^(-1 ))were administered by gavage one day before modeling.RESULTS:Baicalin significantly reduced the permeability of the alveolocapillary membrane,alleviated tissue injury and inflammatory infiltration,and inhibited the secretion of inflammatory factors and the infiltration of neutrophils.The decline in these inflammations was related to the inhibition of the toll like receptor-4(TLR4)/myeloid differentiation factor 88(My D88)/nuclear factor-kappa B(NF-κB)/nod-like receptor pyrin containing 3(NLRP3)signaling pathway and the mitogen-activated protein kinase(MAPK)signaling pathway.CONCLUSIONS:Baicalin inhibits the secretion of inflammatory factors by inhibiting the TLR4-My D88-NF-κB/NLRP3 pathway and the MAPK signaling pathway.Thus,it reduces lung bronchial epithelial layer,alveolar damage,and pulmonary edema as detected in the in vivo and in vitro experiments.Therefore,baicalin may be a potential preventive and therapeutic drug for ALI. | ZHU Changle FENG Cuiling FENG Feng Yao Xiaoqin WANG Guishu SHI Liangtian ZHENG Jiakun | 2022 | Journal of Traditional Chinese Medicine2022,42,2: | 3 |
| 4 | NAC1 regulates root ground tissue maturation by coordinating with the SCR/SHR-CYCD6;1 module in Arabidopsis显示文摘Precise spatiotemporal control of the timing and extent of asymmetric cell divisions(AcDs)is essential for plant development.In the Arabidopsis root,ground tissue maturation involves an additional AcD of the endo-dermis that maintains the inner cell layer as the endodermis and generates the middle cortex to the outside.Through regulation of the cell cycle regulator CYCLIND6;1(CYCD6;1),the transcription factors SCARECROW(SCR)and SHORT-ROOT(SHR)play critical roles in this process.In the present study,we found that loss of function of NAC1,a NAC transcription factor family gene,causes markedly increased periclinal cell divisions in the root endodermis.Importantly,NAC1 directly represses the transcription of CYCD6;1 by recruiting the co-repressor TOPLESS(TPL),creating a fine-tuned mechanism to maintain proper root ground tissue patterning by limiting production of middle cortex cells.Biochemical and genetic analyses further showed that NAC1 physically interacts with SCR and SHR to restrict excessive periclinal cell divisions in the endo-dermis during root middle cortex formation.Although NAC1-TPL is recruited to the CYCD6;1 promoter and represses its transcription in an SCR-dependent manner,NAC1 and SHR antagonize each other to regu-late the expression of CYCD6;1.Collectively,our study provides mechanistic insights into how the NAC1-TPL module integrates with the master transcriptional regulators SCR and SHR to control root ground tissue patterning by fine-tuning spatiotemporal expression of CYCD6;1 in Arabidopsis. | Chuantian Xie Cuiling Li Fengxia Wang Feng Zhang Jiajia Liu Junxia Wang Xiansheng Zhang Xiangpei Kong Zhaojun Ding | 2023 | Molecular Plant2023,16,4: | 1 |
| 5 | Lactobacillus rhamnosus GG reduces hepatic TNFα production and inflammation in chronic alcohol-induced liver injury显示文摘 | Yuhua Wang Yanlong Liu Irina Kirpich Zhenhua Ma Cuiling Wang Min Zhang Jill Suttles Craig McClain Wenke Feng | 2013 | The Journal of Nutritional Biochemistry2013,,: | 1 |
| 6 | A feedback regulation between ARF7-mediated auxin signaling and auxin homeostasis involving MES17 affects plant gravitropism显示文摘Gravitropism is an essential adaptive response of land plants.Asymmetric auxin gradients across plant organs,interpreted by multiple auxin signaling components including AUXIN RESPONSE FACTOR7(ARF7),trigger differential growth and bending response.However,how this fundamental process is strictly maintained in nature remains unclear.Here,we report that gravity stimulates the transcription of METHYL ESTERASE17(MES17)along the lower side of the hypocotyl via ARF7-dependent auxin signaling.The asymmetric distribution of MES17,a methyltransferase that converts auxin from its inactive form methyl indole-3-acetic acid ester(MeI AA)to its biologically active form free-IAA,enhanced the gradient of active auxin across the hypocotyl,which in turn reversely amplified the asymmetric auxin responses and differential growth that shape gravitropic bending.Taken together,our findings reveal the novel role of MES17-mediated auxin homeostasis in gravitropic responses and identify an ARF7-triggered feedback mechanism that reinforces the asymmetric distribution of active auxin and strictly controls gravitropism in plants. | Feng Zhang Cuiling Li Xingzhen Qu Jiajia Liu Zipeng Yu Junxia Wang Jiayong Zhu Yongqiang Yu Zhaojun Ding | 2022 | Journal of Integrative Plant Biology2022,64,7: | 0 |
| 7 | Inductive effect of hydroxyl safflower yellow-A on apoptosis in abnormal HUVEC via the mitochondrial pathway显示文摘Objective:To investigate the mechanism by which hydroxyl safflower yellow A,an active component of safflower (Carthamus tinctorius L.),promotes apoptosis in abnormal human umbilical vein endothelial cells (HUVECs).Methods:Supernatant of BGC-823 was used to stimulate HUVECs to establish a model of abnormal proliferation of HUVECs.After determining an ideal concentration of HSYA by MTT assay,apoptosis was detected with flow cytometry and TUNEL assay.Mechanism of apoptosis was assessed using quantitative real-time polymerase chain reaction,Western blot,and ELISA.Results:A range of concentrations of HSYA inhibited proliferation and promoted apoptosis of abnormal HUVECs.As the rate of apoptosis increased,mRNA expression of caspase-3 increased while expression of mutant p53 decreased.HSYA had no effect on Fas gene expression.Analogously,protein expression of Bax was increased while those of Bcl-2,Fas,and Fas-L were decreased.Conclusions:HSYA appears to induce apoptosis of HUVECs with the stimulation of the supematant of tumor cells.The mechanism of apoptosis by HSYA may involve activation of the mitochondrial apoptotic pathway and regulation of the expressions of Bcl-2,Bax,and p53. | Na Si Jingjing Wang Yingying Xu Lintao Liu Xu Wang Hongmei Sun Zong Lin Xixi Wang Li Liu Qi Zhang Qian Zhang Cuiling Feng | 2015 | Journal of Traditional Chinese Medical Sciences2015,2,1: | 0 |