1.Investigation of neural developmental abnormalities in Nde1 knockout zebrafish using HuC:RFP labeling technology
Ting LIU ; Qi ZHANG ; Jia LIN ; Ying-lan ZHANG ; Qiang LI
Fudan University Journal of Medical Sciences 2025;52(6):794-802
Objective To investigate the effect of Nde1 gene knockout on early neural development of zebrafish by visualizing the development of neural networks in zebrafish.Methods Transgenic zebrafish Tg(Nde1-/-;HuC:RFP+/-)was constructed by crossing Nde1-/-with Tg(HuC:RFP+/-).The HuC promoter was employed to drive the expression of red fluorescent protein in neurons,which allowing the visualization of zebrafish neural networks and tracking of neural development.Furthermore,by using Image J and Prism to compare the average fluorescence intensity of neurons and the expression level of fluorescent reporter proteins between Nde1 deficiency zebrafish and wild type zebrafish,the effect of Nde1 gene knockout on zebrafish neural development was analyzed.Results From 48 hours post-fertilization(hpf)to 7 days dpf,the average fluorescence intensity of red fluorescence expressed by trigeminal sensory neurons and spinal cord neurons in Nde1 deficiency zebrafish was lower than that in wild type zebrafish.RT-qPCR results also showed that the mRNA expression level of red fluorescent reporter protein in Nde1 deficiency zebrafish was significantly lower than that in the wild type zebrafish.Conclusion Nde1 gene deletion may lead to abnormal development of trigeminal sensory neurons and spinal cordneurons by affecting neural progenitor cell differentiation and increasing apoptosis.
2.Application of ultrasound-guided needling assisted the motor evoked potentials and electromyography monitoring in spinal surgery
Jing HU ; Hai-lin LI ; Zhi-qiang WU ; Jia-cheng LU ; Zi-xuan YUAN ; Yu-xi SUN ; Hui-bo WANG
Journal of Regional Anatomy and Operative Surgery 2025;34(11):960-964
Objective To explore the effect and predictive value of ultrasound-guided needling assisted motor evoked potentials(MEP)and electromyography(EMG)monitoring on neurological recovery in spinal surgery.Methods A retrospective analysis was conducted on the clinical data of 80 patients who underwent spinal surgery at Jiangsu Province Hospital of Chinese Medicine from January 2020 to December 2024.A total of 41 patients in the observation group received ultrasound-guided needling assisted MEP and EMG monitoring,and 39 patients in the control group received conventional method for MEP and EMG monitoring.The operative time,intraoperative blood loss,and the proportions of intraoperative MEP and EMG warnings were compared between the two groups,and the sensitivity and specificity of intraoperative MEP monitoring were compared between the two groups.The receiver operating characteristic(ROC)curve was plotted,and the area under the curve(AUC)was calculated to analyze the efficiency of MEP warning in predicting the dysfunction of postoperative spinal cord.Results There were no significant differences in the operative time,intraoperative blood loss,or the proportions of intraoperative MEP and EMG warnings(P>0.05).The sensitivity,specificity and AUC of intraoperative MEP monitoring in the observation group were significantly higher than those in the control group,with statistically significant differences(P<0.05).The sensitivity,specificity,and AUC of postoperative MEP warning in predicting the dysfunction of spinal cord in the observation group were higher than those in the control group,with statistically significant differences(P<0.05).Conclusion Ultrasound-guided needling assisted MEP and EMG monitoring can effectively enhance the intraoperative neural monitoring accuracy,and postoperative MEP warning demonstrates superior predictive value for postoperative neurological dysfunction.
3.Application of ultrasound-guided needling assisted the motor evoked potentials and electromyography monitoring in spinal surgery
Jing HU ; Hai-lin LI ; Zhi-qiang WU ; Jia-cheng LU ; Zi-xuan YUAN ; Yu-xi SUN ; Hui-bo WANG
Journal of Regional Anatomy and Operative Surgery 2025;34(11):960-964
Objective To explore the effect and predictive value of ultrasound-guided needling assisted motor evoked potentials(MEP)and electromyography(EMG)monitoring on neurological recovery in spinal surgery.Methods A retrospective analysis was conducted on the clinical data of 80 patients who underwent spinal surgery at Jiangsu Province Hospital of Chinese Medicine from January 2020 to December 2024.A total of 41 patients in the observation group received ultrasound-guided needling assisted MEP and EMG monitoring,and 39 patients in the control group received conventional method for MEP and EMG monitoring.The operative time,intraoperative blood loss,and the proportions of intraoperative MEP and EMG warnings were compared between the two groups,and the sensitivity and specificity of intraoperative MEP monitoring were compared between the two groups.The receiver operating characteristic(ROC)curve was plotted,and the area under the curve(AUC)was calculated to analyze the efficiency of MEP warning in predicting the dysfunction of postoperative spinal cord.Results There were no significant differences in the operative time,intraoperative blood loss,or the proportions of intraoperative MEP and EMG warnings(P>0.05).The sensitivity,specificity and AUC of intraoperative MEP monitoring in the observation group were significantly higher than those in the control group,with statistically significant differences(P<0.05).The sensitivity,specificity,and AUC of postoperative MEP warning in predicting the dysfunction of spinal cord in the observation group were higher than those in the control group,with statistically significant differences(P<0.05).Conclusion Ultrasound-guided needling assisted MEP and EMG monitoring can effectively enhance the intraoperative neural monitoring accuracy,and postoperative MEP warning demonstrates superior predictive value for postoperative neurological dysfunction.
4.Investigation of neural developmental abnormalities in Nde1 knockout zebrafish using HuC:RFP labeling technology
Ting LIU ; Qi ZHANG ; Jia LIN ; Ying-lan ZHANG ; Qiang LI
Fudan University Journal of Medical Sciences 2025;52(6):794-802
Objective To investigate the effect of Nde1 gene knockout on early neural development of zebrafish by visualizing the development of neural networks in zebrafish.Methods Transgenic zebrafish Tg(Nde1-/-;HuC:RFP+/-)was constructed by crossing Nde1-/-with Tg(HuC:RFP+/-).The HuC promoter was employed to drive the expression of red fluorescent protein in neurons,which allowing the visualization of zebrafish neural networks and tracking of neural development.Furthermore,by using Image J and Prism to compare the average fluorescence intensity of neurons and the expression level of fluorescent reporter proteins between Nde1 deficiency zebrafish and wild type zebrafish,the effect of Nde1 gene knockout on zebrafish neural development was analyzed.Results From 48 hours post-fertilization(hpf)to 7 days dpf,the average fluorescence intensity of red fluorescence expressed by trigeminal sensory neurons and spinal cord neurons in Nde1 deficiency zebrafish was lower than that in wild type zebrafish.RT-qPCR results also showed that the mRNA expression level of red fluorescent reporter protein in Nde1 deficiency zebrafish was significantly lower than that in the wild type zebrafish.Conclusion Nde1 gene deletion may lead to abnormal development of trigeminal sensory neurons and spinal cordneurons by affecting neural progenitor cell differentiation and increasing apoptosis.
5.Analysis of Clinical Characteristics and Drug Sensitivity Spectrum of Pathogenic Bacteria in 1 091 Prepubertal Children with Vulvovaginitis in Xi'an Area from 2019 to 2023
Wei WANG ; Zengguo WANG ; Kai JIA ; Huan QIANG ; Lin WANG
Journal of Modern Laboratory Medicine 2025;40(4):179-182,207
Objective To investigate the clinical characteristics and pathogen resistance of vulvovaginitis among prepubertal children in Xi'an area,so as to provide valuable insights for clinical diagnosis and treatment.Methods A total of 1 019 children(aged<10 years)diagnosed with prepubertal vulvovaginitis in Xi'an Children Hospital from January 2019 to December 2023 were selected as the research objects.The clinical characteristics and drug resistance of pathogenic bacteria were analyzed.Results The number of children with prepubertal vulvovaginitis increased significantly after the end of the COVID-19 pandemic.The positive detection rate in 2023 increased by 13.18%compared to that in 2019,with a significant rise in bacterial vulvitis compared to fungal infection.Common clinical manifestations among diagnosed children included increased secretion and vulvar pruritus.As age increased,the detection rate of pathogenic bacteria also rose,reaching a high positive proportion of 37.29%among children aged 8~<10 years old.Pathogenic bacteria isolated in the laboratory mainly consisted of Haemophilus influenzae(30.72%,313/1 019),Candida albicans(28.46%,290/1 019)and Streptococcus pyogenes(20.61%,210/1 019).Notably,the detection rates of these pathogens exhibited significant variations among children of different age groups(χ2=279.26,382.97,83.48,all P<0.05).Among them,vulvitis in children under 8 years old were mainly caused by respiratory bacterial infections,while those aged 8~<10 tended to be consistent with adults and were mainly caused by candidal vulvitis.The drug sensitivity test results indicated that Haemophilus influenzae exhibited high resistance rates to ampicillin and cefuroxime but good sensitivity to third-generation cephalosporins.Candida albicans showed good sensitivity to common antifungal drugs.Streptococcus pyogenes displayed high sensitivity to penicillin,ampicillin and ceftriaxone but strong resistance(>90%)against erythromycin and clindamycin.Conclusion The positive rate of vulvitis has been increasing among prepubertal children in Xi'an recent years.Pathogenic bacteria are concentrated and sensitive towards common antibiotics.Early submission of clinical samples,rational use of medications and reinforcement on healthy habits guidance are recommended for timely intervention in the development of the disease.
6.Uridine Promotes Bortezomib Resistance in Multiple Myeloma by Upregulating COX5B
Lin-Chuang JIA ; Zhi-Qiang LIU
Chinese Journal of Biochemistry and Molecular Biology 2025;41(6):798-806
Acquired resistance to the proteasome inhibitor bortezomib(BTZ)poses a significant chal-lenge in the treatment of multiple myeloma(MM).During the acquisition of BTZ resistance,metabolic reprogramming is actively engaged in MM cells.However,the key regulatory genes and molecular mecha-nisms mediating bortezomib resistance through this metabolic rewiring have not been fully elucidated.This study aims to investigate the regulatory role of pyrimidine metabolites in drug resistance of MM and their underlying molecular mechanisms.Screening via CCK-8 assays demonstrated that the pyrimidine metabolite uridine is associated with BTZ resistance in MM(P<0.05).In vitro experiments,including CCK-8 assays,Western blotting,and flow cytometry,demonstrated that uridine partially suppresses bort-ezomib-induced apoptosis in MM cells(P<0.05).In vivo,experiments utilizing Vk*MYC mouse mod-els,subcutaneous tumor models,and intramedullary bone marrow transplantation models showed that the combination of BTZ and uridine significantly accelerated tumor growth,exacerbated bone destruction,and increased tumor cell infiltration in tumor-bearing mice(P<0.05).RNA sequencing analysis re-vealed that uridine primarily affects mitochondrial translation in MM at the transcriptional level.Seahorse energy metabolism assays demonstrated that uridine enhances mitochondrial oxidative phosphorylation without significantly altering glycolysis.Transcriptomic analysis further identified a significant upregula-tion of cytochrome c oxidase subunit 5B(COX5B)transcription in uridine-treated groups(P<0.05).Functional studies confirmed that COX5B is a key molecule mediating uridine's effects on mitochondrial function in MM cells.In conclusion,uridine promotes BTZ resistance in MM by upregulating COX5B transcription and protein expression,thereby enhancing cytochrome c oxidase activity and regulating mito-chondrial oxidative phosphorylation.This study delineates the role of uridine in the development of borte-zomib resistance in MM and elucidates its COX5B-mediated metabolic reprogramming mechanism,provi-ding a theoretical foundation for developing targeted therapies against relapsed/refractory MM.
7.Analysis of Clinical Characteristics and Drug Sensitivity Spectrum of Pathogenic Bacteria in 1 091 Prepubertal Children with Vulvovaginitis in Xi'an Area from 2019 to 2023
Wei WANG ; Zengguo WANG ; Kai JIA ; Huan QIANG ; Lin WANG
Journal of Modern Laboratory Medicine 2025;40(4):179-182,207
Objective To investigate the clinical characteristics and pathogen resistance of vulvovaginitis among prepubertal children in Xi'an area,so as to provide valuable insights for clinical diagnosis and treatment.Methods A total of 1 019 children(aged<10 years)diagnosed with prepubertal vulvovaginitis in Xi'an Children Hospital from January 2019 to December 2023 were selected as the research objects.The clinical characteristics and drug resistance of pathogenic bacteria were analyzed.Results The number of children with prepubertal vulvovaginitis increased significantly after the end of the COVID-19 pandemic.The positive detection rate in 2023 increased by 13.18%compared to that in 2019,with a significant rise in bacterial vulvitis compared to fungal infection.Common clinical manifestations among diagnosed children included increased secretion and vulvar pruritus.As age increased,the detection rate of pathogenic bacteria also rose,reaching a high positive proportion of 37.29%among children aged 8~<10 years old.Pathogenic bacteria isolated in the laboratory mainly consisted of Haemophilus influenzae(30.72%,313/1 019),Candida albicans(28.46%,290/1 019)and Streptococcus pyogenes(20.61%,210/1 019).Notably,the detection rates of these pathogens exhibited significant variations among children of different age groups(χ2=279.26,382.97,83.48,all P<0.05).Among them,vulvitis in children under 8 years old were mainly caused by respiratory bacterial infections,while those aged 8~<10 tended to be consistent with adults and were mainly caused by candidal vulvitis.The drug sensitivity test results indicated that Haemophilus influenzae exhibited high resistance rates to ampicillin and cefuroxime but good sensitivity to third-generation cephalosporins.Candida albicans showed good sensitivity to common antifungal drugs.Streptococcus pyogenes displayed high sensitivity to penicillin,ampicillin and ceftriaxone but strong resistance(>90%)against erythromycin and clindamycin.Conclusion The positive rate of vulvitis has been increasing among prepubertal children in Xi'an recent years.Pathogenic bacteria are concentrated and sensitive towards common antibiotics.Early submission of clinical samples,rational use of medications and reinforcement on healthy habits guidance are recommended for timely intervention in the development of the disease.
8.Uridine Promotes Bortezomib Resistance in Multiple Myeloma by Upregulating COX5B
Lin-Chuang JIA ; Zhi-Qiang LIU
Chinese Journal of Biochemistry and Molecular Biology 2025;41(6):798-806
Acquired resistance to the proteasome inhibitor bortezomib(BTZ)poses a significant chal-lenge in the treatment of multiple myeloma(MM).During the acquisition of BTZ resistance,metabolic reprogramming is actively engaged in MM cells.However,the key regulatory genes and molecular mecha-nisms mediating bortezomib resistance through this metabolic rewiring have not been fully elucidated.This study aims to investigate the regulatory role of pyrimidine metabolites in drug resistance of MM and their underlying molecular mechanisms.Screening via CCK-8 assays demonstrated that the pyrimidine metabolite uridine is associated with BTZ resistance in MM(P<0.05).In vitro experiments,including CCK-8 assays,Western blotting,and flow cytometry,demonstrated that uridine partially suppresses bort-ezomib-induced apoptosis in MM cells(P<0.05).In vivo,experiments utilizing Vk*MYC mouse mod-els,subcutaneous tumor models,and intramedullary bone marrow transplantation models showed that the combination of BTZ and uridine significantly accelerated tumor growth,exacerbated bone destruction,and increased tumor cell infiltration in tumor-bearing mice(P<0.05).RNA sequencing analysis re-vealed that uridine primarily affects mitochondrial translation in MM at the transcriptional level.Seahorse energy metabolism assays demonstrated that uridine enhances mitochondrial oxidative phosphorylation without significantly altering glycolysis.Transcriptomic analysis further identified a significant upregula-tion of cytochrome c oxidase subunit 5B(COX5B)transcription in uridine-treated groups(P<0.05).Functional studies confirmed that COX5B is a key molecule mediating uridine's effects on mitochondrial function in MM cells.In conclusion,uridine promotes BTZ resistance in MM by upregulating COX5B transcription and protein expression,thereby enhancing cytochrome c oxidase activity and regulating mito-chondrial oxidative phosphorylation.This study delineates the role of uridine in the development of borte-zomib resistance in MM and elucidates its COX5B-mediated metabolic reprogramming mechanism,provi-ding a theoretical foundation for developing targeted therapies against relapsed/refractory MM.
9.Progress on antisense oligonucleotide in the field of antibacterial therapy
Jia LI ; Xiao-lu HAN ; Shi-yu SONG ; Jin-tao LIN ; Zhi-qiang TANG ; Zeng-ming WANG ; Liang XU ; Ai-ping ZHENG
Acta Pharmaceutica Sinica 2025;60(2):337-347
With the widespread use of antibiotics, drug-resistant bacterial infections have become a significant threat to human health. Finding new antibacterial strategies that can effectively control drug-resistant bacterial infections has become an urgent task. Unlike small molecule drugs that target bacterial proteins, antisense oligonucleotide (ASO) can target genes related to bacterial resistance, pathogenesis, growth, reproduction and biofilm formation. By regulating the expression of these genes, ASO can inhibit or kill bacteria, providing a novel approach for the development of antibacterial drugs. To overcome the challenge of delivering antisense oligonucleotide into bacterial cells, various drug delivery systems have been applied in this field, including cell-penetrating peptides, lipid nanoparticles and inorganic nanoparticles, which have injected new momentum into the development of antisense oligonucleotide in the antibacterial realm. This review summarizes the current development of small nucleic acid drugs, the antibacterial mechanisms, targets, sequences and delivery vectors of antisense oligonucleotide, providing a reference for the research and development of antisense oligonucleotide in the treatment of bacterial infections.
10.Effects of Rehmanniae Radix Praeparata on striatal neuronal apoptosis in ADHD rats via Bcl-2/Bax/caspase-3 pathway.
Jing WANG ; Kang-Lin ZHU ; Xin-Qiang NI ; Wen-Hua CAI ; Yu-Ting YANG ; Jia-Qi ZHANG ; Chong ZHOU ; Mei-Jun SHI
China Journal of Chinese Materia Medica 2025;50(3):750-757
This study investigated the effects of Rehmanniae Radix Praeparata on striatal neuronal apoptosis in rats with attention deficit hyperactivity disorder(ADHD) based on the B-cell lymphoma-2(Bcl-2)/Bcl-2-associated X protein(Bax)/caspase-3 signaling pathway. Twenty-four 3-week-old male spontaneously hypertensive rats(SHR) were randomly divided into a model group, a methylphenidate group(2 mg·kg~(-1)·d~(-1)), and a Rehmanniae Radix Praeparata group(2.4 mg·kg~(-1)·d~(-1)). Age-matched male Wistar Kyoto(WKY) rats were used as the normal control group, with 8 rats in each group. The rats were administered by gavage for 28 days. Body weight and food intake were recorded for each group. The open field test and elevated plus maze test were used to assess hyperactivity and impulsive behaviors. Nissl staining was used to detect changes in striatal neurons and Nissl bodies. Terminal deoxynucleotidyl transferase dUTP nick end labeling(TUNEL) fluorescence staining was used to detect striatal cell apoptosis. Western blot was employed to detect the expression levels of Bcl-2, Bax, and caspase-3 proteins in the striatum. The results showed that compared with the model group, Rehmanniae Radix Praeparata significantly reduced the total movement distance, average movement speed, and central area residence time in the open field test, and significantly reduced the ratio of open arm entries, open arm stay time, and head dipping in the elevated plus maze test. Furthermore, it increased the number of Nissl bodies in striatal neurons, significantly downregulated the apoptosis index, significantly increased Bcl-2 protein expression and the Bcl-2/Bax ratio, and reduced Bax and caspase-3 protein expression. In conclusion, Rehmanniae Radix Praeparata can reduce hyperactivity and impulsive behaviors in ADHD rats. Its mechanism may be related to the regulation of the Bcl-2/Bax/caspase-3 signaling pathway in the striatum, enhancing the anti-apoptotic capacity of striatal neurons.
Animals
;
Male
;
Apoptosis/drug effects*
;
Rats
;
Drugs, Chinese Herbal/administration & dosage*
;
Caspase 3/genetics*
;
Proto-Oncogene Proteins c-bcl-2/genetics*
;
bcl-2-Associated X Protein/genetics*
;
Rehmannia/chemistry*
;
Attention Deficit Disorder with Hyperactivity/physiopathology*
;
Signal Transduction/drug effects*
;
Neurons/cytology*
;
Rats, Inbred SHR
;
Rats, Inbred WKY
;
Humans
;
Corpus Striatum/cytology*
;
Plant Extracts

Result Analysis
Print
Save
E-mail