Junchi He
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Explore the profile of Junchi He including associated specialties, affiliations and a list of published articles.
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24
Citations
346
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Recent Articles
1.
Ren X, He J, Li S, Hu H, Kyle M, Kohsaka S, et al.
Int J Mol Sci
. 2024 Aug;
25(16).
PMID: 39201584
Monocytes are circulating macrophage precursors generated from bone marrow hematopoietic stem cells. In adults, monocytes continuously replenish cerebral border-associated macrophages under physiological conditions. Monocytes also rapidly infiltrate the brain in...
2.
Ren X, He J, Hu H, Kohsaka S, Zhao L
bioRxiv
. 2024 May;
PMID: 38798506
Monocytes are circulating macrophage precursors and are generated from bone marrow hematopoietic stem cells. In the adults, monocytes continuously replenish cerebral border-associated macrophages under a physiological condition. Monocytes also rapidly...
3.
Zhang Z, Yan J, Chen H, Zhao G, Liu L, He J, et al.
Mol Neurobiol
. 2023 Dec;
61(7):4783-4803.
PMID: 38135853
Subarachnoid hemorrhage (SAH) is a devastating disease associated with a high mortality and morbidity. Exosomes have been considered as a potential therapeutic target for SAH. However, the effect of exosomes...
4.
Liu H, He J, Wu Y, Du Y, Jiang Y, Chen C, et al.
Front Neurosci
. 2021 Mar;
15:627110.
PMID: 33679307
Background And Target: Following brain trauma, blood-brain barrier (BBB) disruption and inflammatory response are critical pathological steps contributing to secondary injury, leading to high mortality and morbidity. Both pathologies are...
5.
Wu J, Li H, He J, Tian X, Luo S, Li J, et al.
Cell Death Dis
. 2021 Mar;
12(3):233.
PMID: 33658477
No abstract available.
6.
Zhang Z, Chen H, Liu L, Zhao G, He J, Liu H, et al.
Exp Neurol
. 2021 Jan;
337:113596.
PMID: 33417892
Subarachnoid haemorrhage (SAH) is a devastating cerebrovascular disease which has a high morbidity and mortality. The phenotypic transformation of smooth muscle cells (SMCs) lead to neurovascular injury after SAH. However,...
7.
Wu J, Li H, He J, Tian X, Luo S, Li J, et al.
Cell Death Dis
. 2021 Jan;
12(1):9.
PMID: 33414448
The level of microRNA-9-5p (miRNA-9-5p) in brain tissues is significantly changed in the chronic phase after traumatic brain injury (TBI). However, the effect of miRNA-9-5p on brain function after TBI...
8.
He J, Huang Y, Liu H, Sun X, Wu J, Zhang Z, et al.
Exp Neurol
. 2020 Sep;
334:113462.
PMID: 32916173
Traumatic brain injury (TBI) has been regarded as one of the leading cause of injury-related death and disability. White matter injury after TBI is characterized by axon damage and demyelination,...
9.
He J, Russell T, Qiu X, Hao F, Kyle M, Chin L, et al.
Brain Res
. 2020 Jun;
1746:147000.
PMID: 32579949
Traumatic brain injury (TBI) is a major cause of death and disability in young adults worldwide. TBI-induced long-term cognitive deficits represent a growing clinical problem. Stem cell factor (SCF) and...
10.
Wu J, He J, Tian X, Li H, Wen Y, Shao Q, et al.
Neuroscience
. 2020 Jun;
440:160-174.
PMID: 32502567
MicroRNA-9-5p (miRNA-9-5p) is an important regulator of angiogenesis in many pathological states. However, the effect of miRNA-9-5p on angiogenesis after traumatic brain injury (TBI) has not been elucidated. In this...