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5篇 您的检索式:作者名="Chae Mi Hong"
    题名 作者 年代 出处 被引量
1Change in Antibiotic Resistance of Helicobacter pylori Strains and the Effect of A2143G Point Mutation of 23S rRNA on the Eradication of H. pylori in a Single Center of Korea显示文摘Tae Jun Hwang Nayoung Kim Hong Bin Kim Byoung Hwan Lee Ryoung Hee Nam Ji Hyun Park Mi Kyoung Lee Young Soo Park Dong Ho Lee Hyun Chae Jung In Sung Song 2010Journal of Clinical Gastroenterology2010,,8:5
2Benefit of Early Statin Therapy in Patients With Acute Myocardial Infarction Who Have Extremely Low Low-Density Lipoprotein Cholesterol显示文摘Ki Hong Lee Myung Ho Jeong Ha Mi Kim Youngkeun Ahn Jong Hyun Kim Shung Chull Chae Young Jo Kim Seung Ho Hur In Whan Seong Taek Jong Hong Dong Hoon Choi Myeong Chan Cho Chong Jin Kim Ki Bae Seung Wook Sung Chung Yang Soo Jang Seung Woon Rha Jang Ho Bae Jeo 2011Journal of the American College of Cardiology2011,,16:1
3Change in Antibiotic Resistance of Helicobacter pylori Strains and the Effect of A2143G Point Mutation of 23S rRNA on the Eradication of H. pylori in a Single Center of Korea显示文摘Tae Jun Hwang Nayoung Kim Hong Bin Kim Byoung Hwan Lee Ryoung Hee Nam Ji Hyun Park Mi Kyoung Lee Young Soo Park Dong Ho Lee Hyun Chae Jung In Sung Song 2010Journal of Clinical Gastroenterology2010,,8:1
4Novel endogenous endoplasmic reticulum transmembrane protein SURF4 suppresses cell death by negatively regulating the STING-STAT6 axis inmyeloid leukemia显示文摘Dear Editor,Myeloid differentiation was shown to be associated with reduced leukemic cell burden and leukemia-initiating cells and improved survival[1].Reactive oxygen species(ROS)are associated with leukemia and can induce endoplasmic reticulum(ER)stress.ER stress induces several mechanisms,including cell death[2].The stimulator of interferon genes(STING)is also an ER transmembrane protein and promotes anti-tumor immunity by linking innate and adaptive immunity[3].Signal transducer and activator of transcription 6(STAT6)plays a prominent role in adaptive immunity by transducing signals fromextracellular cytokines and inducing apoptosis in cancer cells[4].Jayoung Kim Hansong Lee Chae Mi Hong Ji Ho Nam Hye Ju Yeo Woo Hyun Cho Hyung-Sik Kim Changwan Hong Yun Hak Kim Dongjun Lee 2023Cancer Communications2023,43,3:0
5Application of extracellular vesicles from mesenchymal stem cells promotes hair growth by regulating human dermal cells and follicles显示文摘BACKGROUND Dermal papillae(DP)and outer root sheath(ORS)cells play important roles in hair growth and regeneration by regulating the activity of hair follicle(HF)cells.AIM To investigate the effects of human mesenchymal stem cell-derived extracellular vesicles(hMSC-EVs)on DP and ORS cells as well as HFs.EVs are known to regulate various cellular functions.However,the effects of hMSC-EVs on hair growth,particularly on human-derived HF cells(DP and ORS cells),and the possible mechanisms underlying these effects are unknown.METHODS hMSC-EVs were isolated and characterized using transmission electron microscopy,nanoparticle tracking analysis,western blotting,and flow cytometry.The activation of DP and ORS cells was analyzed using cellular proliferation,migration,western blotting,and real-time polymerase chain reaction.HF growth was evaluated ex vivo using human HFs.RESULTS Wnt3a is present in a class of hMSC-EVs and associated with the EV membrane.hMSC-EVs promote the proliferation of DP and ORS cells.Moreover,they translocateβ-catenin into the nucleus of DP cells by increasing the expression ofβ-catenin target transcription factors(Axin2,EP2 and LEF1)in DP cells.Treatment with hMSC-EVs also promoted the migration of ORS cells and enhanced the expression of keratin(K)differentiation markers(K6,K16,K17,and K75)in ORS cells.Furthermore,treatment with hMSC-EVs increases hair shaft elongation in cultured human HFs.CONCLUSION These findings suggest that hMSC-EVs are potential candidates for further preclinical and clinical studies on hair loss treatment.Ramya Lakshmi Rajendran Prakash Gangadaran Mi Hee Kwack Ji Min Oh Chae Moon Hong Young KwanSung Jaetae Lee Byeong-Cheol Ahn 2022World Journal of Stem Cells2022,14,7:0
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