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Schizophrenia-Like Behaviors Arising from Dysregulated Proline Metabolism Are Associated with Altered Neuronal Morphology and Function in Mice with Hippocampal PRODH Deficiency
Journal article
Yao, Yuxiao, Jin, Chenchen, Liao, Yilie, Huang, Xiang, Wei, Ziying, Zhang, Yahong, Li, Dongwei, Su, Huanxing, Han, Weiping, Qin, Dajiang. Schizophrenia-Like Behaviors Arising from Dysregulated Proline Metabolism Are Associated with Altered Neuronal Morphology and Function in Mice with Hippocampal PRODH Deficiency[J]. Aging and Disease, 2024, 15(4), 1952-1968.
Authors:
Yao, Yuxiao
;
Jin, Chenchen
;
Liao, Yilie
;
Huang, Xiang
;
Wei, Ziying
; et al.
Favorite
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TC[WOS]:
2
TC[Scopus]:
2
IF:
7.0
/
7.1
|
Submit date:2024/09/03
Hippocampus
Metabolism
Neuron
Prodh
Proline
Schizophrenia
MYC Oncogene: A Druggable Target for Treating Cancers with Natural Products
Journal article
Chan, Ka Iong, Zhang, Siyuan, Li, Guodong, Xu, Yida, Cui, Liao, Wang, Yitao, Su, Huanxing, Tan, Wen, Zhong, Zhangfeng. MYC Oncogene: A Druggable Target for Treating Cancers with Natural Products[J]. Aging and Disease, 2024, 15(2), 640-697.
Authors:
Chan, Ka Iong
;
Zhang, Siyuan
;
Li, Guodong
;
Xu, Yida
;
Cui, Liao
; et al.
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TC[WOS]:
17
TC[Scopus]:
14
IF:
7.0
/
7.1
|
Submit date:2023/08/31
Myc
Cancer
Immune Response
Multidrug Resistance
Natural Product
Herbal Medicine
Healthy Human Fecal Microbiota Transplantation into Mice Attenuates MPTP-Induced Neurotoxicity via AMPK/SOD2 Pathway
Journal article
Xie, Zhenchao, Zhang, Mahui, Luo, Yuqi, Jin, Dana, Guo, Xingfang, Yang, Wanlin, Zheng, Jialing, Zhang, Hongfei, Zhang, Lu, Deng, Chao, Zheng, Wenhua, Tan, Eng King, Jin, Kunlin, Zhu, Shuzhen, Wang, Qing. Healthy Human Fecal Microbiota Transplantation into Mice Attenuates MPTP-Induced Neurotoxicity via AMPK/SOD2 Pathway[J]. Aging and Disease, 2023, 14(6), 2193-2214.
Authors:
Xie, Zhenchao
;
Zhang, Mahui
;
Luo, Yuqi
;
Jin, Dana
;
Guo, Xingfang
; et al.
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|
TC[WOS]:
25
TC[Scopus]:
26
IF:
7.0
/
7.1
|
Submit date:2024/01/18
Ampk/sod2
Fecal Microbiota Transplantation
Gut Microbiota
Neuroinflammation
Parkinson's Disease
Pericytes
Oxyphylla a promotes degradation of α-synuclein for neuroprotection via activation of immunoproteasome
Journal article
Zhou,Hefeng, Li,Shengnan, Li,Chuwen, Yang,Xuanjun, Li,Haitao, Zhong,Hanbing, Lu,Jia Hong, Lee,Simon Ming Yuen. Oxyphylla a promotes degradation of α-synuclein for neuroprotection via activation of immunoproteasome[J]. Aging and Disease, 2020, 11(3), 559-574.
Authors:
Zhou,Hefeng
;
Li,Shengnan
;
Li,Chuwen
;
Yang,Xuanjun
;
Li,Haitao
; et al.
Favorite
|
TC[WOS]:
14
TC[Scopus]:
17
IF:
7.0
/
7.1
|
Submit date:2021/03/01
Parkinson's Disease
Α-synuclein
Degradation
Proteasome
Neuroprotection