1.An overview of real-world study in clinical transfusion
Jiashun GONG ; Fengxia LIU ; Xueyuan HUANG ; Hang DONG ; Chunhong DU ; Juan WANG ; Rong HUANG ; Rong GUI
Chinese Journal of Blood Transfusion 2025;38(7):991-996
Real-world study (RWS), based on multi-source data from real medical environments, is gradually becoming an important supplement to traditional randomized controlled trials, and its application in the field of transfusion medicine is becoming increasingly widespread. This article systematically reviews the definition and methodological system of RWS, examines its application cases in clinical blood transfusion research, and discusses the advantages, limitations, and future research directions of RWS, aiming to provide a reference for evidence-based research in blood transfusion medicine.
2.The Regulatory Mechanisms of Dopamine Homeostasis in Behavioral Functions Under Microgravity
Xin YANG ; Ke LI ; Ran LIU ; Xu-Dong ZHAO ; Hua-Lin WANG ; Lan-Qun MAO ; Li-Juan HOU
Progress in Biochemistry and Biophysics 2025;52(8):2087-2102
As China accelerates its efforts in deep space exploration and long-duration space missions, including the operationalization of the Tiangong Space Station and the development of manned lunar missions, safeguarding astronauts’ physiological and cognitive functions under extreme space conditions becomes a pressing scientific imperative. Among the multifactorial stressors of spaceflight, microgravity emerges as a particularly potent disruptor of neurobehavioral homeostasis. Dopamine (DA) plays a central role in regulating behavior under space microgravity by influencing reward processing, motivation, executive function and sensorimotor integration. Changes in gravity disrupt dopaminergic signaling at multiple levels, leading to impairments in motor coordination, cognitive flexibility, and emotional stability. Microgravity exposure induces a cascade of neurobiological changes that challenge dopaminergic stability at multiple levels: from the transcriptional regulation of DA synthesis enzymes and the excitability of DA neurons, to receptor distribution dynamics and the efficiency of downstream signaling pathways. These changes involve downregulation of tyrosine hydroxylase in the substantia nigra, reduced phosphorylation of DA receptors, and alterations in vesicular monoamine transporter expression, all of which compromise synaptic DA availability. Experimental findings from space analog studies and simulated microgravity models suggest that gravitational unloading alters striatal and mesocorticolimbic DA circuitry, resulting in diminished motor coordination, impaired vestibular compensation, and decreased cognitive flexibility. These alterations not only compromise astronauts’ operational performance but also elevate the risk of mood disturbances and motivational deficits during prolonged missions. The review systematically synthesizes current findings across multiple domains: molecular neurobiology, behavioral neuroscience, and gravitational physiology. It highlights that maintaining DA homeostasis is pivotal in preserving neuroplasticity, particularly within brain regions critical to adaptation, such as the basal ganglia, prefrontal cortex, and cerebellum. The paper also discusses the dual-edged nature of DA plasticity: while adaptive remodeling of synapses and receptor sensitivity can serve as compensatory mechanisms under stress, chronic dopaminergic imbalance may lead to maladaptive outcomes, such as cognitive rigidity and motor dysregulation. Furthermore, we propose a conceptual framework that integrates homeostatic neuroregulation with the demands of space environmental adaptation. By drawing from interdisciplinary research, the review underscores the potential of multiple intervention strategies including pharmacological treatment, nutritional support, neural stimulation techniques, and most importantly, structured physical exercise. Recent rodent studies demonstrate that treadmill exercise upregulates DA transporter expression in the dorsal striatum, enhances tyrosine hydroxylase activity, and increases DA release during cognitive tasks, indicating both protective and restorative effects on dopaminergic networks. Thus, exercise is highlighted as a key approach because of its sustained effects on DA production, receptor function, and brain plasticity, making it a strong candidate for developing effective measures to support astronauts in maintaining cognitive and emotional stability during space missions. In conclusion, the paper not only underscores the centrality of DA homeostasis in space neuroscience but also reflects the authors’ broader academic viewpoint: understanding the neurochemical substrates of behavior under microgravity is fundamental to both space health and terrestrial neuroscience. By bridging basic neurobiology with applied space medicine, this work contributes to the emerging field of gravitational neurobiology and provides a foundation for future research into individualized performance optimization in extreme environments.
3.An overview of real-world study in clinical transfusion
Jiashun GONG ; Fengxia LIU ; Xueyuan HUANG ; Hang DONG ; Chunhong DU ; Juan WANG ; Rong HUANG ; Rong GUI
Chinese Journal of Blood Transfusion 2025;38(7):991-996
Real-world study (RWS), based on multi-source data from real medical environments, is gradually becoming an important supplement to traditional randomized controlled trials, and its application in the field of transfusion medicine is becoming increasingly widespread. This article systematically reviews the definition and methodological system of RWS, examines its application cases in clinical blood transfusion research, and discusses the advantages, limitations, and future research directions of RWS, aiming to provide a reference for evidence-based research in blood transfusion medicine.
4.Effects of Conbercept on different optical coherence tomography biomarkers in patients with retinal vein occlusion-related macular edema
Haiyue YU ; Juan TENG ; Zeying DONG ; Lili ZHANG ; Huixian CUI ; Chang LIU ; Guang ZHU ; Xin LI
International Eye Science 2025;25(10):1656-1661
AIM: To investigate the effects of Conbercept on various optical coherence tomography(OCT)biomarkers in patients with retinal vein occlusion-related macular edema(RVO-ME), and to analyze the correlation of these biomarker changes with visual prognosis.METHODS: Retrospective study. A total of 57 patients(57 eyes)with RVO-ME, including 25 patients(25 eyes)with central retinal vein occlusion(CRVO)and 32 patients(32 eyes)with branch retinal vein occlusion(BRVO), were enrolled in this study. All the patients received intravitreal injection of conbercept once a month, three times in total. The preoperative and postoperative best-corrected visual acuity(BCVA), and changes in OCT biomarkers, including central macular thickness(CMT), the length of disorganization of the retinal inner layers(DRIL), the number of hyperreflective dots(HRD), the area of intraretinal fluid(IRF), the area of subretinal fluid(SRF), and the length of ellipsoid zone(EZ)disruption were compared. Furthermore, the relationship of these changes with BCVA was analyzed.RESULTS:Compared with the baseline, at 3 mo post-treatment, BCVA(LogMAR)was improved, CMT was decreased, the length of DRIL was shortened, the number of HRD was reduced, the area of IRF was decreased, the area of SRF was reduced, and the length of EZ disruption was shortened(all P<0.05). Spearman correlation analysis showed that there was no correlation between the changes in CMT, the length of DRIL, the number of HRD, the area of IRF, the area of SRF and the change in BCVA before and after treatment(P>0.05). However, the change in the length of EZ disruption was positively correlated with the change in BCVA(rs=0.34, P=0.011), and the R2 value of the fitting curve between the change in the length of EZ disruption and the change in BCVA was 0.113(P=0.011). When comparing the pre- and post-treatment changes in BCVA, the length of DRIL, the number of HRD, the area of IRF, the area of SRF, and the length of EZ disruption between patients in the CRVO group and BRVO group, no significant differences were observed(all P>0.05). In contrast, a significant difference was found in the change in CMT between the two groups(P=0.002).CONCLUSION:Conbercept effectively improves multiple OCT biomarkers in patients with RVO-ME. Repair of EZ disruption is a key driver of visual recovery, and its stability may serve as a novel indicator for personalized decision-making in anti-vascular endothelial growth factor therapy.
5. Mechanism and experimental validation of Zukamu granules in treatment of bronchial asthma based on network pharmacology and molecular docking
Yan-Min HOU ; Li-Juan ZHANG ; Yu-Yao LI ; Wen-Xin ZHOU ; Hang-Yu WANG ; Jin-Hui WANG ; Ke ZHANG ; Mei XU ; Dong LIU ; Jin-Hui WANG
Chinese Pharmacological Bulletin 2024;40(2):363-371
Aim To anticipate the mechanism of zuka- mu granules (ZKMG) in the treatment of bronchial asthma, and to confirm the projected outcomes through in vivo tests via using network pharmacology and molecular docking technology. Methods The database was examined for ZKMG targets, active substances, and prospective targets for bronchial asthma. The protein protein interaction network diagram (PPI) and the medication component target network were created using ZKMG and the intersection targets of bronchial asthma. The Kyoto Encyclopedia of Genes and Genomics (KEGG) and gene ontology (GO) were used for enrichment analysis, and network pharmacology findings were used for molecular docking, ovalbumin (OVA) intraperitoneal injection was used to create a bronchial asthma model, and in vivo tests were used to confirm how ZKMG affected bronchial asthma. Results There were 176 key targets for ZKMG's treatment of bronchial asthma, most of which involved biological processes like signal transduction, negative regulation of apoptotic processes, and angiogenesis. ZKMG contained 194 potentially active components, including quercetin, kaempferol, luteolin, and other important components. Via signaling pathways such TNF, vascular endothelial growth factor A (VEGFA), cancer pathway, and MAPK, they had therapeutic effects on bronchial asthma. Conclusion Key components had strong binding activity with appropriate targets, according to molecular docking data. In vivo tests showed that ZKMG could reduce p-p38, p-ERKl/2, and p-I
6.Exploration of the Treatment of Antibiotic-Associated Diarrhea in Children from the Perspective of Spleen
Hao-Dong SU ; Hao-Ling ZHENG ; Ling-Juan LIU ; Fei LUO ; Xiu-Lan DONG
Journal of Guangzhou University of Traditional Chinese Medicine 2024;41(4):1058-1062
Antibiotic-associated diarrhea(AAD)in children is a type of diarrhea that occurs after the use of antibiotics in children,and its pathogenesis is closely related to the intestinal flora.The medication of antibiotics can affect the metabolic function of the intestinal flora and the immune function of the body,and then leads to the occurrence of AAD.In the view of Chinese medicine,AAD in children is mainly involved the spleen,and the etiology of the disease is due to the weakness of the spleen and stomach of the body constitution together with the attack of the pestilential pathogen and the accumulation of drug toxin.The pathogenesis of ADD in children is characterized by spleen deficiency with predominant dampness,deficiency of spleen qi,and insufficiency of spleen yang.Spleen deficiency is the root cause of pediatric AAD,and spleen and intestinal flora have commonality,so the treatment of pediatric AAD can be performed from the perspective of the spleen.The treatment of pediatric ADD from the spleen follows the principle of strengthening and activating the spleen,and the regulation of the spleen for achieving the purpose of treating the disease from the root can be achieved by the methods of strengthening spleen and draining dampness,strengthening spleen and replenishing qi,and strengthening spleen and warming yang separately with the fundamental prescriptions of Shenlin Baizhu Powder,Sijunzi Decoction,and Fuzi Lizhong Pills.
7.Vitamin D Plays a Crucial Role in Regulating Dopamine Nervous System in Brain
Hua-Lin WANG ; Xu-Dong ZHAO ; Ran LIU ; Ke LI ; Li-Juan HOU
Progress in Biochemistry and Biophysics 2024;51(7):1530-1539
Vitamin D is a unique fat-soluble vitamin that plays an indispensable role in human health. It exists in various forms, the most significant being vitamin D2 (derived from plant sources) and vitamin D3 (synthesized naturally in human skin upon exposure to sunlight). Vitamin D’s primary function is to facilitate the absorption of calcium and phosphorus, which are crucial for maintaining healthy bones. Beyond its role in bone health, vitamin D significantly influences the immune system, muscle function, cardiovascular health, and the regulation of brain functions. A deficiency in vitamin D can lead to various chronic diseases such as rickets, osteoporosis, decreased immunity, increased risk of mental disorders, and cancers. The synthesis of vitamin D in the human body, both peripherally and centrally, relies on sunlight exposure, dietary sources, and various supplements. As a neuroactive steroid, vitamin D impacts both the physiological and pathological processes of the nervous system and plays a key role in brain health. It profoundly affects the brain by regulating neurotransmitter synthesis and maintaining intracellular calcium balance. As an essential chemical molecule, vitamin D participates in complex signal transduction pathways, impacting neurotransmitter functions and synaptic plasticity. Vitamin D’s role in regulating dopamine (DA)—a neurotransmitter critical for motivation, reward perception, and other higher cognitive functions—is particularly noteworthy. Recent studies have revealed that vitamin D not only promotes the synthesis of DA but also plays a role in regulating DA levels within the brain. It exerts neuroprotective effects on DA neurons through anti-inflammatory, antioxidant actions, and neurotrophic support, thereby creating an optimal environment for DA neurons, influencing neuronal structure, and affecting the movement of calcium ions within nerve cells, positively impacting the overall health and functionality of the DA system. Furthermore, vitamin D can regulate the synthesis and release of DA, thus affecting the signal transmission of various DA neural projection pathways in the brain. This function is vital for understanding the complex interactions between neural mechanisms and their effects on key behaviors and cognitive functions. This review aims to delve deeply into the synthesis, metabolism, and pathways of vitamin D’s action, especially its regulatory mechanisms on DA neurons. Through this exploration, this article seeks to provide a solid theoretical foundation and research framework for a deeper understanding of vitamin D’s role in motivation and reward behaviors. This understanding is crucial for appreciating the broader significance of vitamin D in the fields of neuroscience and neurology. In summary, research and discoveries regarding vitamin D’s impact on the nervous system highlight its importance in neural health and function. These insights not only enhance our understanding of the complex workings of the nervous system but also open new avenues for the prevention and treatment of neurological diseases. The exploration of vitamin D’s multifaceted roles offers promising prospects for developing new therapeutic strategies, underscoring the compound’s potential in addressing a range of neural dysfunctions and diseases. As research continues to evolve, the profound implications of vitamin D in the field of neurology and beyond become increasingly apparent, marking it as a key target for ongoing and future scientific inquiry.
8.Effects of matrine on the proliferation,migration,and invasion of neuroblastoma cells
Nan-Jing LIU ; Dong-Juan WANG ; Fang-Jie LIU ; Wen-Xia HUANG ; Lin ZOU ; Xiao-Yan HE
The Chinese Journal of Clinical Pharmacology 2024;40(14):2048-2052
Objective To observe the effects of matrine on the proliferation,migration,and invasion of human neuroblastoma cells,and to investigate its potential mechanism.Methods This study was divided into AS experimental group(SK-N-AS cells treated with IC50 concentration of matrine),AS blank group(SK-N-AS cells cultured under normal conditions),AS control group(SK-N-AS cells treated with an equal amount of dimethyl sulfoxide),DZ experimental group(SK-N-DZ cells treated with IC50 concentration of matrine),DZ blank group(SK-N-DZ cells cultured under normal conditions),and DZ control group(SK-N-DZ cells treated with an equal amount of dimethyl sulfoxide).Scratch assay and Transwell chamber were used to measure the effect of matrine on the migration and invasion.The expression of E-cadherin,N-cadherin and Vimentin were tested by Western blot.Results After different intervention,the migration percentages of AS blank group,AS control group,AS experimental group,DZ blank group,DZ control group and DZ experimental group were(66.32±3.12)%,(65.27±3.44)%,(23.73±0.79)%,(46.25±4.68)%,(44.15±5.60)%and(16.77±3.52)%,respectively;the number of invasive cells were 870.45±19.32,865.32±23.39,492.74±16.81,1 198.10±43.71,1 203.03±71.91 and 891.69±42.62,respectively;the expression levels of E-cadherin protein were(100.00±11.72)%,(105.65±13.11)%,(477.20±29.71)%,(100.00±12.54)%,(97.78±12.77)%and(240.53±12.23)%,respectively;the expression levels of N-cadherin protein were(100.00±15.44)%,(103.90±10.76)%,(43.52±9.96)%,(100.00±10.12)%,(104.95±10.49)%and(38.39±8.70)%,respectively;Vimentin protein expression levels were(100.00±9.51)%,(97.39±11.33)%,(59.13±10.25)%,(100.00±13.20)%,(96.27±11.01)%and(47.67±9.48)%,respectively.There were statistically significant differences in the above indexes between the AS group and the AS blank group(P<0.01,P<0.001),and there were statistically significant differences between the above indexes in the DZ group and the DZ blank group(P<0.01,P<0.001).Conclusion Matrine inhibits the proliferation,migration,and invasion of neuroblastoma SK-N-AS and SK-N-DZ cells,potentially through suppressing epithelial-mesenchymal transition.
9.Syndrome Differentiation and Treatment of Tic Disorders in Children from the Theory of Qi Movement of Zang-Fu Organs Based on “Manifestation-Body and Spirit-Qi”
Wenbo LIU ; Wenli SHI ; Juan DONG ; Yunxia ZHAO ; Mengting ZHAO ; Bingxiang MA
Journal of Traditional Chinese Medicine 2024;65(6):582-586
Based on the theory of “manifestation-body and spirit-qi”, it is considered that the pathogenesis of tic disorders (TD) involves three manifestations of “wind, phlegm and fire”, with wind as the leading factor and phlegm and fire as the accompanying factors. It is advocated to identify the abnormality of body and spirit, summarize the evolution of manifestation, and prescribe flexibly based on qi movement of zang-fu organs. Among them, the common symptoms related to tics are mostly belong to wind symptoms, which originated from lung qi failing to purify and liver qi over-ascent. The method of soothing liver wood and purifying lung gold is adopted, and modified Xiaochaihu Decoction (小柴胡汤) and Cangerzi Powder (苍耳子散) are recommended; Patients with prolonged illness and strange symptoms are often mixed with phlegm, which stemmed from the fact that spleen failing to rise clear and stomach failing to downward turbid. The method of raising spleen-earth and lowering stomach-earth is adopted, and modified Yigong Powder (异功散) and Erchen Decoction (二陈汤) are recommended; Patients with severe symptoms are often mixed with fire symptoms, which originated from discordance of water and fire and hyperactivity of heart fire. The method of interacting heart and kidney and coordinating water and fire is adopted, and modified Xiegan Pill (泻肝丸) and Liuwei Dihuang Pill (六味地黄丸) are recommended, in order to regulate qi movement, harmonize body and spirit, and improve the symptoms.
10.Effect of Dapagliflozin on cell proliferation,apoptosis and inflammation of podocytes induced by high glucose via regulating p38 MAPK pathway
Dong WANG ; Juan LIU ; Ruixiang DUAN
Chinese Journal of Diabetes 2024;32(2):117-124
Objective To investigate the effect of Dapagliflozin on high glucose-induced podocyte proliferation and apoptosis through p38 mitogen-activated protein kinase(p38 MAPK)pathway.Methods Human glomerular podocytes(HGPC)were divided into control(Con)group,low/medium/high D-glucose(Glu 10,Glu 20,Glu 30)group,high glucose(HG)group,low/medium/high concentration Dapagliflozin(HG+Dap 12.5,HG+Dap 25,HG+Dap 50)group,Dapagliflozin(HG+Dap)group,inhibitor(HG+ SB 203580)group,Dapagliflozin + inhibitor(HG+Dap+SB 203580)group and Dapagliflozin + activator(HG+Dap+C16-PAF)group.After 24 hours of intervention,the cell viability,proliferation rate,apoptosis rate and levels of related factors were tested.Results Compared with Con group,IL-1β,TNF-α,apoptosis rate,Caspase-3 mRNA and protein expression,p53,p-p38 MAPK protein expression were increased(P<0.05),while cell proliferation rate,Cyclin D1 mRNA and protein expression were decreased in HG group(P<0.05).Compared with HG group,the proliferation rate,Cyclin D1 mRNA and protein expression were increased(P<0.05),while IL-1β,TNF-α,apoptosis rate,Caspase-3 mRNA and protein expression,p53,p-p38 MAPK protein expression were decreased in the HG+Dap and HG+SB 203580 groups(P<0.05).Compared with HG+Dap group,cell proliferation rate,Cyclin D1 mRNA and protein expression were increased(P<0.05),while IL-1β,TNF-α,apoptosis rate,Caspase-3 mRNA and protein expression,p53,p-p38 MAPK protein expression were decreased in HG+Dap+SB 203580 group(P<0.05).In HG+Dap+C16-PAF group,IL-1β,TNF-α,apoptosis rate,Caspase-3 mRNA and protein expression,p53,p-p38 MAPK protein expression were increased(P<0.05),while cell proliferation rate,Cyclin D1 mRNA and protein expression were decreased(P<0.05).Conclusion Dagagliflozin can promote HGPC proliferation and inhibit apoptosis and inflammation in high D-glucose environment,and its mechanism may be related to the inhibition of p38 MAPK pathway signal transduction.

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