1.Research on the Practice of High-Level Talent Management System in the National Children's Regional Medical Center
Yingying YU ; Chongchen ZHOU ; Hetuan HUANG ; Yongtao DUAN ; Jie ZHANG ; Xingxue YAN ; Haobin CHEN ; Shuying LUO
Chinese Hospital Management 2024;44(2):91-93,96
The presence of high-level talents plays a crucial role in ensuring the successful establishment of national regional medical centers.It presents the high-level talent management experience of Henan Children's Hospital,aiming to facilitate the coordinated development of pediatrics in Central China.To address the practical challenges and difficulties encountered in high-level talent management within hospitals,lean talent management is achieved by standardizing the management structure,clarifying management objectives,refining the management mechanism,establishing a performance appraisal incentive system,and implementing an integrated'induction and utilization'management approach.These measures effectively facilitate the development of national children's regional medical centers.
2.Research progress of cerebral organoid technology and its application in stroke treatment
Kexin SUN ; Yuqian XIAO ; Jun WAN ; Shuying CHEN ; Limin CHEN ; Yan WANG ; Yanjie BAI
Tianjin Medical Journal 2024;52(1):38-43
Cerebral organoids are three-dimensional nerve cultures induced by embryonic stem cells(ESCs)or induced pluripotent stem cells(iPSCs)that mimic the structure and function of human brain.With the continuous optimization of cerebral organoid culture technology and the combination with emerging technologies such as organ transplantation,gene editing and organoids-on-chip,complex brain tissue structures such as functional vascular structures and neural circuits have been produced,which provides new methods and ideas for studying human brain development and diseases.This article reviews the latest advances in brain organoid technology,describes its application in neurological diseases and advances in stroke modeling and transplantation treatment.
3.Research progress of RNA m6A methylation in post-stroke cognitive impairment
Yuqian XIAO ; Kexin SUN ; Jun WAN ; Shuying CHEN ; Limin CHEN ; Yan WANG ; Yanjie BAI
Tianjin Medical Journal 2024;52(3):331-336
Post-stroke cognitive impairment(PSCI)is mainly manifested as learning and memory disorders.Highly enriched RNA m6A methylation modification in mammalian brain is involved in glial cell-mediated neuroinflammation.Given that neuroinflammation is the main mechanism for neural damage and spatial and memory impairment of PSCI,it is speculated that RNA m6A methylation modification can regulate the inflammatory response of glial cells after stroke to improve PSCI.This review summarizes and analyzes the role of RNA m6A methylation modification in the development of PSCI and analyzes its detailed mechanism of regulating glial cell-mediated inflammation,which will provide reference for researchers in this field.
4.Mechanism of action and related signaling pathways of long non-coding RNAs in neuroimmuno-inflammatory response after ischemic stroke
Jun WAN ; Yanjie BAI ; Yan WANG ; Shuying CHEN ; Limin CHEN ; Yuqian XIAO ; Kexin SUN
Chinese Journal of Tissue Engineering Research 2024;28(20):3265-3271
BACKGROUND:Long non-coding RNAs(lncRNAs),as important regulators of the inflammatory response,are involved in the immune-inflammation-brain crosstalk mechanism after ischemic stroke and have the potential to become a therapeutic agent for neurological dysfunction after ischemic stroke. OBJECTIVE:To analyze and summarize the molecular mechanism of lncRNA acting on glial cells involved in the neuroimmuno-inflammatory cascade response after ischemic stroke and the associated signaling pathways,pointing out that lncRNAs have the potential to regulate inflammation after ischemic stroke. METHODS:PubMed was searched using the search terms of"ischemic stroke,long non-coding RNA,neuroinflammation,immune function,signal pathway,microglia,astrocytes,oligodendrocyte,mechanism,"and 63 relevant documents were finally included for review. RESULTS AND CONCLUSION:In the early stage of ischemic stroke,the death of nerve cells due to ischemia and hypoxia activates the innate immune response of the brain,promoting the secretion of inflammatory factors and inducing blood-brain barrier damage and a series of inflammatory cascades responses.As an important pathogenesis factor in ischemic stroke,the neuroimmuno-inflammatory cascade has been proved to seriously affect the prognosis of patients with ischemic stroke,and it needs to be suppressed promptly in the early stage.Neuroinflammation after ischemic stroke usually induces abnormal expression of a large number of lncRNAs that mediate a series of neuro-immune-inflammatory crosstalk mechanisms through regulating the polarization of microglia,astrocytes and oligodendrocytes to exert post-stroke neuroprotective effects.LncRNAs,as important regulatory factors of the inflammatory response,inhibit the neuroimmuno-inflammatory cascade response after ischemic stroke through regulating nuclear factor-κB,lncRNA-miRNA-mRNA axis,Rho-ROCK,MAPK,AKT,ERK and other signaling pathways to effectively improve neurological impairment after ischemic stroke.Most of experimental studies on the interaction between lncRNAs and ischemic stroke are based on a middle cerebral artery occlusion model or a cerebral ischemia-reperfusion injury model,but no clinical trials have been conducted.Therefore,it remains to be further explored about whether lncRNAs can be safely applied in clinical practice.At present,there are many therapeutic drugs for the treatment of ischemic stroke,but there are relatively few studies on the application of lncRNAs,exosomes and other transplantation technologies for the treatment of ischemic stroke using tissue engineering technology,which need to be further explored.lncRNA has become an important target for the treatment of ischemic stroke with its relative stability and high specificity.In future studies,more types of inflammatory lncRNAs that function under ischemic-hypoxia conditions should continue to be explored,in order to provide new research directions for the treatment of neuroinflammation after ischemic stroke.
5.Analysis of the Influence of High-Altitude Hypoxic Cold Environment on Fe-male Menstruation and Related Risk Factors
Shuxia LI ; Shuying ZHANG ; Qing LI ; Yan WANG ; Hongmei WEI ; Heng CHANG
Journal of Practical Obstetrics and Gynecology 2024;40(1):59-63
Objective:To investigate the effect of anoxic cold environment at 4500 m altitude on female men-struation.Methods:From March 1 to March 20,2023,women in a unit at an altitude of 4500 meters were selected for reproductive health questionnaire survey,and were divided into≤6 months group,6 months to 12 months group and≥12 months group according to altitude exposure time.The changes of menstruation in each group were analyzed to explore the relevant influencing factors.Results:The total incidence of abnormal menstruation in working women in hypoxic cold environment was as high as 66.14%,and there was no statistically significant difference between the groups at different high-altitude exposure times(P>0.05).The highest incidence of dys-menorrhea among the types of menstrual changes was 61.90%,but there was no statistically significant differ-ence between the groups at different high altitude exposure times(P>0.05).There was a statistically significant difference(P<0.05)in the proportion of insufficient sleep for at least 3 days per week,nervousness and anxiety,and training during their menstrual period in the women who experienced changes in their menstrual cycle com-pared to those who did not.Conclusions:Hypoxic cold environment can lead to the change of female menstrua-tion,and it is combined with sleep deficiency,tension and anxiety,and menstrual exercise.
6.Application of three-dimensional printing in cartilage tissue engineering
Shuying YU ; Yu LI ; Xinhao CHENG ; Yijun ZHANG ; Zheng LIU ; Chengxiang YAN ; Baihui XIE ; Ximei WANG
Chinese Journal of Plastic Surgery 2024;40(1):99-106
In the past decades, significant progress has been achived in cartilage regeneration. The traditional techniques for constructing tissue engineering cartilage scaffold mainly include pore agent method (or template method), phase separation method, gas foaming method, freeze-drying method, electrospinning method, etc. Cartilage is heterogeneous, and it is difficult for traditional scaffolds to simulate the high anisotropy of cartilage. Therefore, functional regeneration of cartilage is challenging. With the progress of three-dimensional(3D) printing technology, it is possible to prepare functional bionic scaffolds with fine structure and gradient changes through co-deposition of biomaterials, cells and active biomolecules, so as to achieve functional cartilage regeneration. This article reviewed 3D printing technology of cartilage tissue engineering, and the application of 3D printing technology in cartilage regeneration at different anatomical positions (articular cartilage, auricle cartilage, nasal cartilage). In addition, the importance of preparing bionic constructs with regional structure gradient and regional composition gradient was discussed. 3D bioprinting technology, 4D printing techniques, smart biomaterials brought hope for the construction of bionic tissues and organs.
7.Application of three-dimensional printing in cartilage tissue engineering
Shuying YU ; Yu LI ; Xinhao CHENG ; Yijun ZHANG ; Zheng LIU ; Chengxiang YAN ; Baihui XIE ; Ximei WANG
Chinese Journal of Plastic Surgery 2024;40(1):99-106
In the past decades, significant progress has been achived in cartilage regeneration. The traditional techniques for constructing tissue engineering cartilage scaffold mainly include pore agent method (or template method), phase separation method, gas foaming method, freeze-drying method, electrospinning method, etc. Cartilage is heterogeneous, and it is difficult for traditional scaffolds to simulate the high anisotropy of cartilage. Therefore, functional regeneration of cartilage is challenging. With the progress of three-dimensional(3D) printing technology, it is possible to prepare functional bionic scaffolds with fine structure and gradient changes through co-deposition of biomaterials, cells and active biomolecules, so as to achieve functional cartilage regeneration. This article reviewed 3D printing technology of cartilage tissue engineering, and the application of 3D printing technology in cartilage regeneration at different anatomical positions (articular cartilage, auricle cartilage, nasal cartilage). In addition, the importance of preparing bionic constructs with regional structure gradient and regional composition gradient was discussed. 3D bioprinting technology, 4D printing techniques, smart biomaterials brought hope for the construction of bionic tissues and organs.
8.Roles of serotonin system in stress-induced impairment of hippocampal neurogenesis
Le ZHU ; Shuying LIAO ; Yan ZENG ; Yufei MEI
Chinese Journal of Pathophysiology 2024;40(5):944-949
Stress is a common risk factor for emotional and cognitive dysfunction during mammalian growth and development.The hippocampal neurogenesis,which regulates the stress response,is highly susceptible to stress stimu-li.This review focuses on the pathomechanism underlying how stress stimuli affect hippocampal neurogenesis and explores the impact of aberrant 5-hydroxytryptamine(5-HT)system,including 5-HT,5-HT receptors and 5-HT neurons,on stress-induced impairment of hippocampal neurogenesis.By summarizing existing research,we aim to provide new ideas for the treatment of post-traumatic stress disorder and depression.
9.Advances in programmed cell death in post-stroke cognitive impairment
Kexin SUN ; Yuqian XIAO ; Jun WAN ; Shuying CHEN ; Limin CHEN ; Yan WANG ; Yanjie BAI
Chinese Journal of Comparative Medicine 2024;34(3):161-171
Post-stroke cognitive impairment(PSCI)is a common complication after stroke,which significantly affects quality of life.However,the pathogenesis has not been fully explained.Increasing evidence has shown that the mechanism of programmed cell death(PCD)is related to PSCI,including apoptosis,necroptosis,pyroptosis,PANoptosis,parthanatos,and ferroptosis.Therefore,it is crucial to clearly understand the various mechanisms of PCD and their relationship with PSCI,and to elucidate the role of PCD in PSCI pathogenesis.The article reviews six PCD pathways related to PSCI,summarizes their mechanisms of action in PSCI,and elucidates the possible crosstalk among pathways to provide a basis for clinical targeting of regulatory factors in the PCD pathway for PSCI treatment.
10.Aripiprazole in the treatment of acute episode of schizophrenia: a real-world study in China.
Qian LI ; Yun'ai SU ; Xuemei LIAO ; Maosheng FANG ; Jianliang GAO ; Jia XU ; Mingjun DUAN ; Haiying YU ; Yang YANG ; Zhiyu CHEN ; Jintong LIU ; Shaoxiao YAN ; Peifen YAO ; Shuying LI ; Changhong WANG ; Bin WU ; Congpei ZHANG ; Tianmei SI
Chinese Medical Journal 2023;136(9):1126-1128

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