1.Advantages of modified ligation method for spinal cord injury modeling
Daohui LI ; Xiaoshuang XU ; Zhengtao LI ; Xinpeng TIAN ; Hangchuan BI ; Yuan LIU ; Yongwen DAI ; Lingqiang CHEN
Chinese Journal of Tissue Engineering Research 2025;29(2):379-384
BACKGROUND:Currently,different methods of model establishment have been derived from different injury modes of spinal cord injury.Traditional physical injury modeling methods have their own advantages and disadvantages,and there is a lack of more effective and stable animal models of spinal cord injury. OBJECTIVE:To establish a reproducible,controllable,trauma-free,low-mortality,more stable,widely applicable,and short-term postoperative care rat model of spinal cord injury. METHODS:Forty Sprague-Dawley rats with similar body mass and ages were randomly divided into a control group and an improved group,with 20 rats in each group.Animal models of spinal cord injury in the control group were constructed using a clip model method,while the improved group used a modified ligation method based on the compression method to make the spinal cord injury models using suture ligation based on fenestration.Postoperative comparisons were made between the two groups,assessing urination behavior,hematuria,pyuria(infection rate),mortality,scoliosis rate and Basso-Beattie-Bresnahan locomotor rating scale scores at 1,3,5,and 7 days after modeling. RESULTS AND CONCLUSION:Compared with the conventional modeling method,the modified ligation method based on the compression method resulted in faster recovery of urination behavior,lower hematuria rate,lower infection rate,lower mortality rate,lower scoliosis rate,and more concentrated and stable Basso-Beattie-Bresnahan scores(all below 2 points within 1 week).This proves that the modified ligation method based on compression is more suitable for the establishment of spinal cord injury models in rats.
2.Elevated expression of miR-423-5p in the plasma of patients with ischemic stroke
Haipeng LI ; Yifan LIU ; Shan LI ; Daohui CHEN ; Jinglin LEI ; Zheng HU
Basic & Clinical Medicine 2025;45(12):1572-1579
Objective To explore the clinical significance of miR-423-5p in ischemic stroke and its effects on SH-SY5Y cell apoptosis along with the underlying mechanisms.Methods Plasma samples were collected from three stroke-prone patients who subsequently developed acute ischemic stroke(AIS)within 24 hours.High-throughput sequencing was used to identify miR-423-5p as a key target.Venous blood samples were collected from 46 AIS pa-tients within 24 hours of onset and from 46 matched control cases.RT-qPCR was performed to measure the plasma expression of miR-423-5p in both groups.The diagnostic value of miR-423-5p for AIS was evaluated using receiver operating characteristic(ROC)curve.After overexpression and knockdown of miR-423-5p in SH-SY5Y cells,flow cytometry was performed to detect apoptosis in each group to analyze the potential relationship between miR-423-5p and SH-SY5Y cell apoptosis.Western blot was used to measure changes in the expression level of the ap-optotic protein cleaved caspase-3 and the anti-apoptotic proteins Bcl-2 and Bcl-xL.Results The expression of miR-423-5p in 3 AIS patients showed significant difference before and after onset.Plasma miR-423-5p expression was significantly elevated in AIS patients versus controls(P<0.001).ROC analysis indicated its strong diagnostic potential for AIS.Overexpression of miR-423-5p increased the apoptosis rate and cleaved caspase-3 ex-pression of SH-SY5Y cells after OGD/R,and decreased the expression of Bcl-2 and Bcl-xL,while knocking down miR-423-5p had the opposite effect.Conclusions The expression of miR-423-5p is upregulated in the plasma of patients with ischemic stroke compared to healthy controls.Furthermore,miR-423-5p promotes OGD/R-induced apoptosis in SH-SY5Y cells by increasing the level of cleaved caspase-3 and suppressing the expression of Bcl-2 and Bcl-xL.
3.Construction of glucosamine/DNA composite nanomaterials and its effect on function of Raw264.7 cells
Yuhang XU ; Yue CHEN ; Qing XIANG ; Shuoxin ZHANG ; Daohui GONG ; Di WU ; Guansong WANG ; Hang QIAN
Journal of Army Medical University 2024;46(13):1494-1501
Objective To construct a new type of glucosamine/DNA composite nanostructure(NTGlcN)assembled without magnesium,verify whether or not glucosamine can mediate the assembly of DNA nanotubes(NT)and assess its effect on the function of Raw264.7 cells.Methods Utilizing the gradient annealing method with 3 DNA single strands Y1,Y2,and Y3,glucosamine(GlcN)was employed to mediate the assembly of DNA NT,resulting in the formation of glucosamine/DNA composite nanostructures.Atomic force microscopy(AFM)was used to observe the surface structure of the nanomaterial and dynamic light scattering(DLS)was used to measure its size.RAW264.7 cells were used in cell experiments.The cytotoxicity of GlcN and NTGlcN was assessed using CCK-8 assay.Flow cytometry and laser confocal microscopy were employed to investigate the cellular uptake efficiency of the nanostructures.The effects of NTGlcN and NTMg(Mg2+-assembled of DNA NT)on the expression levels of inflammatory cytokines(IL-1β,IL-6)in macrophages induced by lipopolysaccharides(LPS)were evaluated using RT-qPCR.Results GlcN successfully mediated the synthesis of NTGlcN,which exhibited good stability.AFM characterization results revealed that NTGlcN formed tubular particles that were uniformly distributed on the surface of mica.DLS measurements indicated that the diameter of NTGlcN was approximately 15.26±3.86 nm.Cell experiments demonstrated that,compared to NTMg,macrophages exhibited a higher cellular uptake efficiency for NTGlcN,with a higher cell survival rate following treatment with NTGlcN(P<0.05).After NTGlcN treatment,the expression of inflammatory cytokines in LPS-induced macrophages was reduced(P<0.05).Conclusion The glucosamine/DNA composite nanostructures have been successfully developed,possessing excellent stability,biocompatibility and cell uptake efficiency.NTGlcN is capable of reducing the cytotoxicity of GlcN and can suppress cellular inflammatory responses by decreasing the expression of inflammatory cytokines in RAW264.7 cells.
4.Evaluation of Expression and Prognostic Significance of FUNDC1 Protein in Non-small Cell Lung Cancer Based on TCGA Database and Clinicopathology
Yuxiu WANG ; Yu CHEN ; Daohui GONG ; Liuzhao CAO ; Wenjing XU ; Xingxiang XU ; Lingfeng MIN
Cancer Research on Prevention and Treatment 2022;49(4):322-327
Objective To evaluate the expression of FUNDC1 and its clinical significance in non-small cell lung cancer. Methods We used TCGA database to analyze the difference of mitochondrial receptors (DRP1, BNIP3, FUNDC1, NIX, RHEB, LC3, OPA1 and MFN1) expression between normal and NSCLC tissues, as well as its effect on the prognosis of NSCLC patients. Immunohistochemistry was used to detect FUNDC1 expression. The correlations between FUNDC1 expression and clinicopathological characteristics, prognosis were evaluated by SPSS 22.0 statistical software. Results FUNDC1 expression was increased in NSCLC tissues, compared with normal tissues. FUNDC1 expression was related to the degree of differentiation and lymph node metastasis, but not to gender, age, pathological type, distant metastasis or TNM classification. The Cox regression analysis showed that FUNDC1 protein expression, lymph node metastasis, differentiation degree were independent prognostic factors of NSCLC. Increased FUNDC1 expression was related to decreased OS and PFS (

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