1.Inflammatory disorders that affect the cerebral small vessels.
Fei HAN ; Siyuan FAN ; Bo HOU ; Lixin ZHOU ; Ming YAO ; Min SHEN ; Yicheng ZHU ; Joanna M WARDLAW ; Jun NI
Chinese Medical Journal 2025;138(11):1301-1312
This comprehensive review synthesizes the latest advancements in understanding inflammatory disorders affecting cerebral small vessels, a distinct yet understudied category within cerebral small vessel diseases (SVD). Unlike classical SVD, these inflammatory conditions exhibit unique clinical presentations, imaging patterns, and pathophysiological mechanisms, posing significant diagnostic and therapeutic challenges. Highlighting their heterogeneity, this review spans primary angiitis of the central nervous system, cerebral amyloid angiopathy-related inflammation, systemic vasculitis, secondary vasculitis, and vasculitis in autoinflammatory diseases. Key discussions focus on emerging insights into immune-mediated processes, neuroimaging characteristics, and histopathological distinctions. Furthermore, this review underscores the importance of standardized diagnostic frameworks, individualized immunomodulation approaches, and novel targeted therapies to address unmet clinical demands.
Humans
;
Cerebral Small Vessel Diseases/pathology*
;
Inflammation/pathology*
;
Cerebral Amyloid Angiopathy/pathology*
;
Vasculitis, Central Nervous System/pathology*
;
Vasculitis/pathology*
2.From Physiology to Pathology of Astrocytes: Highlighting Their Potential as Therapeutic Targets for CNS Injury.
Yimin YUAN ; Hong LIU ; Ziwei DAI ; Cheng HE ; Shangyao QIN ; Zhida SU
Neuroscience Bulletin 2025;41(1):131-154
In the mammalian central nervous system (CNS), astrocytes are the ubiquitous glial cells that have complex morphological and molecular characteristics. These fascinating cells play essential neurosupportive and homeostatic roles in the healthy CNS and undergo morphological, molecular, and functional changes to adopt so-called 'reactive' states in response to CNS injury or disease. In recent years, interest in astrocyte research has increased dramatically and some new biological features and roles of astrocytes in physiological and pathological conditions have been discovered thanks to technological advances. Here, we will review and discuss the well-established and emerging astroglial biology and functions, with emphasis on their potential as therapeutic targets for CNS injury, including traumatic and ischemic injury. This review article will highlight the importance of astrocytes in the neuropathological process and repair of CNS injury.
Astrocytes/drug effects*
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Humans
;
Animals
;
Central Nervous System/pathology*
;
Central Nervous System Diseases/physiopathology*
3.Research progress on molecular mechanism and future perspectives of leonurine.
Ran WANG ; Aiying LI ; Zongran PANG
Frontiers of Medicine 2025;19(4):612-625
Leonurus japonicas Houtt., has been recorded as "light body and long life" properties in the oldest classical medicinal book Shennong Bencao Jing thousands of years ago. Herba leonuri, also named Chinese Motherwort or Siberian Motherwort, has the effects of activating blood circulation, regulating menstruation, diuresis and detumescence, clearing heat and detoxifying, and is known as the "sacred medicine of gynecology." It has been well known by doctors and usually used in the treatment of common gynecological diseases in clinic. Leonurine is a very important alkaloid in Herba leonuri, which has many biological activities such as anti-oxidation, anti-inflammation, and anti-apoptosis. Diseases of the cardiovascular system and central nervous system are "major health threats" that threaten human life and health worldwide, however, many drugs have certain side effects right now. This paper reviews the potential molecular therapeutic effects of leonurine on cardiovascular system and central nervous system diseases, highlights the current findings of research progress, and focuses on the therapeutic effects of leonurine in various diseases. At present, leonurine is in the stage of clinical experiment, and we hope that our summary can provide guidance for its future molecular mechanism study and clinical application.
Humans
;
Gallic Acid/therapeutic use*
;
Leonurus/chemistry*
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Cardiovascular Diseases/drug therapy*
;
Animals
;
Central Nervous System Diseases/drug therapy*
4.Advances in the Studies of MicroRNA-1976 in Aberrant Cell Cycle Diseases.
Hao-Yu JI ; Hao CHEN ; Liang SHI ; Meng ZHANG ; Ting CHEN ; Ying-Ming KONG ; Rong-Ke FENG
Acta Academiae Medicinae Sinicae 2025;47(4):644-650
Most tumor cells and healthy neurons are at rest during G0 phase.Once the cell cycle is abnormally re-entered under certain conditions,the proliferation of tumor cells and the degenerative necrosis of neurons can be initiated.From the perspective of the cell cycle,cancer and central nervous system diseases,two seemingly different disease types,have a common pathogenesis.This type of diseases is named aberrant cell cycle diseases.As a newly discovered microRNA(miR),miR-1976 is closely related to the regulation of the cell cycle.This review summarizes the progress in the research on miR-1976 in cancer and central nervous system diseases,aiming to provide a reference for the clinical application of miR-1976 in aberrant cell cycle diseases in the future.
MicroRNAs/genetics*
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Humans
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Cell Cycle/genetics*
;
Neoplasms/genetics*
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Central Nervous System Diseases/genetics*
5.Advances in inhibitory ion channel glycine receptors.
Xu-Ke PANG ; Si CHEN ; Xiang-Xian MA ; Yi-Nuo XU ; Wei-Jie BAI ; Chong-Lei FU ; Gui-Chang ZOU
Acta Physiologica Sinica 2024;76(6):908-916
Glycine receptors (GlyRs) belong to the ligand-gated ion channel receptor superfamily and are widely distributed throughout the central nervous system. GlyRs are essential for maintaining visual, auditory, sensory and motor functions, and abnormalities in its structure and function can lead to various neurological disorders. This review aims to provide an extensive analysis of the structure, function and regulatory mechanisms of GlyRs, and evaluate its role in various central nervous system diseases. Ultimately, this review will provide theoretical support for the development of novel drugs specifically targeting GlyRs.
Receptors, Glycine/physiology*
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Humans
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Animals
;
Central Nervous System Diseases/metabolism*
6.Research advances on the structure, function, and related diseases of TREK-1 potassium channels.
Xiao-Ling LI ; Yang LI ; Hong ZHANG
Acta Physiologica Sinica 2024;76(6):1043-1055
Two-pore-domain potassium channels (K2P) family is widely expressed in many human cell types and organs, which has important regulatory effect on physiological processes. K2P is sensitive to a variety of chemical and physical stimuli, and they have also been critically implicated in transmission of neural signal, ion homeostasis, cell development and death, and synaptic plasticity. Aberrant expression and dysfunction of K2P channels are involved in a range of diseases, including autoimmune, central nervous system, cardiovascular disease and others. The scope of this review is to give a detailed overview of the structure, function, pharmacological regulation, and related diseases of TREK-1 channels, a member of the K2P family.
Potassium Channels, Tandem Pore Domain/genetics*
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Humans
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Animals
;
Cardiovascular Diseases/physiopathology*
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Autoimmune Diseases/metabolism*
;
Central Nervous System Diseases/physiopathology*
7.Regulation of Glial Function by Noncoding RNA in Central Nervous System Disease.
Ying BAI ; Hui REN ; Liang BIAN ; You ZHOU ; Xinping WANG ; Zhongli XIONG ; Ziqi LIU ; Bing HAN ; Honghong YAO
Neuroscience Bulletin 2023;39(3):440-452
Non-coding RNAs (ncRNAs) are a class of functional RNAs that play critical roles in different diseases. NcRNAs include microRNAs, long ncRNAs, and circular RNAs. They are highly expressed in the brain and are involved in the regulation of physiological and pathophysiological processes of central nervous system (CNS) diseases. Mounting evidence indicates that ncRNAs play key roles in CNS diseases. Further elucidating the mechanisms of ncRNA underlying the process of regulating glial function that may lead to the identification of novel therapeutic targets for CNS diseases.
Humans
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RNA, Untranslated/genetics*
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MicroRNAs/genetics*
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RNA, Long Noncoding/genetics*
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RNA, Circular
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Central Nervous System Diseases/genetics*
8.Roles of NG2 Glia in Cerebral Small Vessel Disease.
Yixi HE ; Zhenghao LI ; Xiaoyu SHI ; Jing DING ; Xin WANG
Neuroscience Bulletin 2023;39(3):519-530
Cerebral small vessel disease (CSVD) is one of the most prevalent pathologic processes affecting 5% of people over 50 years of age and contributing to 45% of dementia cases. Increasing evidence has demonstrated the pathological roles of chronic hypoperfusion, impaired cerebral vascular reactivity, and leakage of the blood-brain barrier in CSVD. However, the pathogenesis of CSVD remains elusive thus far, and no radical treatment has been developed. NG2 glia, also known as oligodendrocyte precursor cells, are the fourth type of glial cell in addition to astrocytes, microglia, and oligodendrocytes in the mammalian central nervous system. Many novel functions for NG2 glia in physiological and pathological states have recently been revealed. In this review, we discuss the role of NG2 glia in CSVD and the underlying mechanisms.
Animals
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Neuroglia/metabolism*
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Central Nervous System/metabolism*
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Astrocytes/metabolism*
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Oligodendroglia/metabolism*
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Cerebral Small Vessel Diseases/metabolism*
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Antigens/metabolism*
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Mammals/metabolism*
9.Novel Microglia-based Therapeutic Approaches to Neurodegenerative Disorders.
Lijuan ZHANG ; Yafei WANG ; Taohui LIU ; Ying MAO ; Bo PENG
Neuroscience Bulletin 2023;39(3):491-502
As prominent immune cells in the central nervous system, microglia constantly monitor the environment and provide neuronal protection, which are important functions for maintaining brain homeostasis. In the diseased brain, microglia are crucial mediators of neuroinflammation that regulates a broad spectrum of cellular responses. In this review, we summarize current knowledge on the multifunctional contributions of microglia to homeostasis and their involvement in neurodegeneration. We further provide a comprehensive overview of therapeutic interventions targeting microglia in neurodegenerative diseases. Notably, we propose microglial depletion and subsequent repopulation as promising replacement therapy. Although microglial replacement therapy is still in its infancy, it will likely be a trend in the development of treatments for neurodegenerative diseases due to its versatility and selectivity.
Humans
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Microglia/physiology*
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Central Nervous System
;
Neurodegenerative Diseases/therapy*
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Brain/physiology*
;
Homeostasis
10.Clinical analysis of 11 cases of otogenic intracranial complications treated by multidisciplinary collaboration.
Zhongyi SONG ; Wenjie LIU ; Ning WANG ; Ying FU ; Zejing LI ; Chunfang WANG ; Yongqiang SUN
Journal of Clinical Otorhinolaryngology Head and Neck Surgery 2023;37(10):819-828
Objective:To analyze the clinical diagnosis, treatment ,and surgical timing of otogenic intracranial complications. Methods:The clinical data of 11 patients with intracranial complications with ear symptoms as the first manifestation in Department of Otorhinolaryngology Head and Neck Surgery, Qilu Hospital of Shandong University(Qingdao) from December 2014 to June 2022 were collected, including 8 males and 3 females, aged from 4 to 69 years. All patients had complete otoendoscopy, audiology, imaging and etiology examination, and the diagnosis and treatment plan was jointly developed through multidisciplinary consultation according to the critical degree of clinical symptoms and imaging changes. Among the 11 patients, 5 cases were treated with intracranial lesions first in neurosurgery department and middle ear lesions later in otolaryngology, 3 cases of meningitis, were treated with middle ear surgery after intracranial infection control, 1 case was treated with middle ear lesions and intracranial infection simultaneously, and 2 cases were treated with sigmoid sinus and transverse sinus thrombosis conservatively. They were followed up for 1-6 years. Descriptive statistical methods were used for analysis. Results:All the 11 patients had ear varying symptoms, including ear pain, pus discharge and hearing loss, etc, and then fever appeared, headache, disturbance of consciousness, facial paralysis and other intracranial complication. Otoendoscopy showed perforation of the relaxation of the tympanic membrane in 5 cases, major perforation of the tension in 3 cases, neoplasia in the ear canal in 1 case, bulging of the tympanic membrane in 1 case, and turbidity of the tympanic membrane in 1 case. There were 4 cases of conductive hearing loss, 4 cases of mixed hearing loss and 3 cases of total deafness. Imaging examination showed cholesteatoma of the middle ear complicated with temporal lobe brain abscess in 4 cases, cerebellar abscess in 2 cases, cholesteatoma of the middle ear complicated with intracranial infection in 3 cases, and sigmoid sinus thrombophlebitis in 2 cases. In the etiological examination, 2 cases of Streptococcus pneumoniae were cultured in the pus of brain abscess and cerebrospinal fluid, and 1 case was cultured in streptococcus vestibularis, Bacteroides uniformis and Proteus mirabilis respectively. During the follow-up, 1 patient died of cardiovascular disease 3 years after discharge, and the remaining 10 patients survived. There was no recurrence of intracranial and middle ear lesions. Sigmoid sinus and transverse sinus thrombosis were significantly improved. Conclusion:Brain abscess, intracranial infection and thrombophlebitis are the most common otogenic intracranial complications, and cholesteatoma of middle ear is the most common primary disease. Timely diagnosis, multidisciplinary collaboration, accurate grasp of the timing in the treatment of primary focal and complications have improved the cure rate of the disease.
Female
;
Humans
;
Male
;
Brain Abscess/therapy*
;
Cholesteatoma
;
Deafness/etiology*
;
Hearing Loss/etiology*
;
Lateral Sinus Thrombosis/therapy*
;
Retrospective Studies
;
Thrombophlebitis/therapy*
;
Child, Preschool
;
Child
;
Adolescent
;
Young Adult
;
Adult
;
Middle Aged
;
Aged
;
Cholesteatoma, Middle Ear/therapy*
;
Central Nervous System Infections/therapy*
;
Sinus Thrombosis, Intracranial/therapy*
;
Ear Diseases/therapy*

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