1.Analysis of the early efficacy of anterior cervical zero-profile interbody fusion and traditional titanium plate combined interbody fusion in the treatment of three-segment cervical spondylosis
Tao SHAN ; Fei WANG ; Chun LI ; Zhou DONG ; Zhihao NI ; Ke ZHENG
Acta Universitatis Medicinalis Anhui 2026;61(9):1657-1665
ObjectiveTo evaluate the comparative clinical outcomes of zero-profile interbody fusion (Zero-P) and traditional anterior cervical discectomy and fusion with titanium plate (ACDF-plate) for three-level cervical spondylosis, providing a reference to optimize surgical strategies for three-level cervical spondylosis. MethodsIn this retrospective comparative study, 113 patients were included and assigned to either the Zero-P group (n=51) or the ACDF-plate group (n=62) according to their surgical approaches. Clinical outcomes were evaluated and compared between the two groups using operative time, intraoperative blood loss, length of hospital stay, visual analog scale (VAS) scores, cervical range of motion (ROM), neck disability index (NDI), Cervical Disability Index (CDI), Japanese orthopaedic association (JOA) scores, and postoperative complication rates. ResultsCompared with the ACDF-plate group, the Zero-P group had a shorter operative time and less intraoperative blood loss (P<0.05); the neck pain VAS score was lower on the 1st day and 1st week after surgery (P<0.05); the cervical flexion range of motion was higher at 1 month after surgery (P<0.05); the JOA score was higher at 3 months after surgery, while the NDI and CDI scores were lower (P<0.05); the total incidence of complications (11.76%) was significantly lower than that in the plate fixation group (35.48%), and the incidence of neck foreign body sensation/stiffness was lower (P<0.05). ConclusionZero-P not only demonstrates safety and efficacy comparable to the ACDF-plate, but also highlights the significant value of the minimally invasive concept in facilitating early recovery. Both procedures have their respective emphasis on biomechanical maintenance and minimally invasive benefits, providing a clear evidence-based reference for individualized and precise surgical decision-making in three-level cervical spondylosis.
2.SUMO1 regulates post-infarct cardiac repair based on cellular heterogeneity
Zhihao LIU ; Xiaozhi LIU ; Li LIU ; Ying WANG ; Jie ZHENG ; Lan LI ; Sheng LI ; Han ZHANG ; Jingyu NI ; Chuanrui MA ; Xiumei GAO ; Xiyun BIAN ; Guanwei FAN
Journal of Pharmaceutical Analysis 2023;13(2):170-186
Small ubiquitin-related modifier(SUMOylation)is a dynamic post-translational modification that maintains cardiac function and can protect against a hypertrophic response to cardiac pressure overload.However,the function of SUMOylation after myocardial infarction(MI)and the molecular details of heart cell responses to SUMO1 deficiency have not been determined.In this study,we demonstrated that SUMO1 protein was inconsistently abundant in different cell types and heart regions after MI.However,SUMO1 knockout significantly exacerbated systolic dysfunction and infarct size after myocardial injury.Single-nucleus RNA sequencing revealed the differential role of SUMO1 in regulating heart cells.Among cardiomyocytes,SUMO1 deletion increased the Nppa+Nppb+Ankrd1+cardiomyocyte subcluster pro-portion after MI.In addition,the conversion of fibroblasts to myofibroblasts subclusters was inhibited in SUMO1 knockout mice.Importantly,SUMO1 loss promoted proliferation of endothelial cell subsets with the ability to reconstitute neovascularization and expressed angiogenesis-related genes.Computational analysis of ligand/receptor interactions suggested putative pathways that mediate cardiomyocytes to endothelial cell communication in the myocardium.Mice preinjected with cardiomyocyte-specific AAV-SUMO1,but not the endothelial cell-specific form,and exhibited ameliorated cardiac remodeling following MI.Collectively,our results identified the role of SUMO1 in cardiomyocytes,fibroblasts,and endothelial cells after Ml.These findings provide new insights into SUMO1 involvement in the patho-genesis of MI and reveal novel therapeutic targets.
3.Association between serum uric acid concentration and radiographic axial spondylarthritis: a cross-sectional study of 202 patients.
Yupeng LAI ; Yanpeng ZHANG ; Zhihao LEI ; Yihong HUANG ; Tongxin NI ; Pin HE ; Xiaoling LI ; Chiduo XU ; Jun XIA ; Meiying WANG
Chinese Medical Journal 2023;136(9):1114-1116
4.Analysis on Biomechanical Relationship Between Calcaneal Cyst Lesion Size and Pathological Fracture
Pengfei LI ; Zihuan XU ; Yongqin WANG ; Zhihao SU ; Wanju SUN ; Ming NI
Journal of Medical Biomechanics 2023;38(2):E303-E309
Objective To investigate the relationship between lesion size of solitary bone cyst ( SBC) and pathological fracture of calcaneus, so as to provide references for the treatment of SBC. Methods The three dimensional (3D) finite element model of foot and ankle was established based on CT images. Four models with gradient spherical bone defects were constructed in the focal area to simulate different SBC lesion sizes, and the biomechanical characteristics of calcaneus in different gait phases were analyzed. Results With the increasement of SBC size, the kinematics of calcaneus did not change significantly, but the peak stress of calcaneus increased gradually. When the SBC size exceeded 75% of the calcaneal width, the stress in calcaneal sulcus and cortical bone below SBC increased by 1. 48 times and 7. 74 times, respectively. Conclusions The risk of pathological fracture increases when the SBC diameter exceeds 75% of the calcaneal width, and early surgical intervention should be recommended. The calcaneal sulcus and the cortex bone below SBC are stress concentration regions and can be used as important areas to evaluate pathological fractures.
5.Recent advances of neoantigen in tumor therapy
Zhihao LIU ; Shixin NI ; Siyuan HE ; Shuqing CHEN
Chinese Journal of Biochemical Pharmaceutics 2016;36(12):11-14
As the research work went further and more detailed, a variety of new treatments compete to come out.However, it remains unclear that how the antigen works to distinguish cancer cells and normal cells.Neoantigen, which is located in the tumor cell surface of a specific antigen, its presence makes human immunotherapy into new areas which may make personalized treatment possible in the near future.Emerging data suggest that the identification of such newantigens is a major factor in clinical immunotherapy.They can form a biomarker in cancer immunotherapy to provide targets for a variety of therapeutic approaches to attack, which allows T cells to selectively enhance the immune response against this class of antigens.
6.Mechanism of arginine deiminase activity by site-directed mutagenesis.
Lifeng LI ; Ye NI ; Zhihao SUN
Chinese Journal of Biotechnology 2012;28(4):508-519
Arginine deiminase (ADI) has been studied as a potential anti-cancer agent for inhibiting arginine-auxotrophic tumors (such as melanomas and hepatocellular carcinomas) in phase III clinical trials. In this work, we studied the molecular mechanism of arginine deiminase activity by site-directed mutagenesis. Three mutation sites, A128, H404 and 1410, were introduced into wild-type ADI gene by QuikChange site-directed mutagenesis method, and four ADI mutants M1 (A128T), M2 (H404R), M3 (I410L), and M4 (A128T, H404R) were obtained. The ADI mutants were individually expressed in Escherichia coli BL21 (DE3), and the enzymatic properties of the purified mutant proteins were determined. The results show that both A128T and H404R had enhanced optimum pH, higher activity and stability of ADI under physiological condition (pH 7.4), as well as reduced K(m) value. This study provides an insight into the molecular mechanism of the ADI activity, and also the experimental evidence for the rational protein evolution in the future.
Escherichia coli
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metabolism
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Hydrolases
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genetics
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metabolism
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Mutagenesis, Site-Directed
7.Recent trend of nonaqueous enzymology and biocatalysis in nonaqueous media.
Zhongyi YANG ; Ye NI ; Zhihao SUN
Chinese Journal of Biotechnology 2009;25(12):1779-1783
With the rapid development of industrial biotechnology, breakthrough in enzymology and biocatalysis has been made in recent years, especially in areas of stability and activity of enzyme in nonaqueous media, screening, construction and modification of solvent-tolerant biocatalysts, as well as the development of green solvent with excellent biological and environmental compatibility. Recent trend and future focus include: in silico virtual screening and construction of solvent-tolerant biocatalysts based on bioinformatic technology, modification and construction of native solvent-tolerant biocatalysts, the development of environmental friendly green solvent such as ionic liquids.
Animals
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Biocatalysis
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Biotechnology
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trends
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Enzymes
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chemistry
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genetics
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Humans
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Solvents
8.Environmental factors affecting the succinic acid production by Actinobacillus succinogenes CGMCC 1593.
Pu ZHENG ; Wei ZHOU ; Ye NI ; Min JIANG ; Ping WEI ; Zhihao SUN
Chinese Journal of Biotechnology 2008;24(6):1051-1055
Actinobacillus succinogenes is a promising candidate for the production of bio-based succinic acid. Previously, we isolated a succinic acid-producing strain Actinobacillus succinogenes CGMCC 1593 from bovine rumen. In this paper, the influence of the environmental factors such as gas phase, pH, ORP, on succinic acid production by A. succinogenes CGMCC 1593 was studied. The results showed that CO2 was the optimum gas phase for anaerobic fermentation ofA. succinogenes CGMCC 1593 as well as one of the substrate for the succinic acid synthesis. Using MgCO3 as a pH regulator, the pH was maintained within 7.1-6.2 during the anaerobic fermentation for the cell growth and acid production of A. succinogenes CGMCC 1593. Our results showed that low initial ORP was disadvantageous for the growth of A. succinogenes CGMCC 1593 and an ORP of -270 mV was demonstrated to be beneficial to the succinic acid production. By adding Na2S.9H2O to decrease ORP to -270 mV at the end of exponential growth phase in batch culture of A. succinogenes CGMCC 1593, the succinic acid concentration reached 37 g/L and the yield of succinic acid was 129% at 48 h. This work might provide valuable information for further optimization of succinic acid fermentation by A. succinogenes CGMCC 1593.
Actinobacillus
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classification
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growth & development
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metabolism
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Anaerobiosis
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Carbon Dioxide
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pharmacology
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Fermentation
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Hydrogen-Ion Concentration
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Oxidation-Reduction
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Succinic Acid
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metabolism
9.Breeding of monofluoroacetate-resistant strains of Actinobacillus succinogenes and the mechanism based on metabolic flux analysis.
Yupeng LIU ; Pu ZHENG ; Ye NI ; Jinjun DONG ; Ping WEI ; Zhihao SUN
Chinese Journal of Biotechnology 2008;24(3):460-467
Succinic acid has received a great deal of attention as an important green chemical stock for the manufacture of synthetic resins, biodegradable polymers and chemical intermediates. In this paper, the breeding mechanism of Actinobacillus succinogenes based on metabolic flux analysis was demonstrated to improve the yield of succinic acid by fermentation. After the NTG treatment, mutants from A. succinogenes CGMCC 1593 which were able to grow in medium containing concentrations of about 50-100 mmol/L of sodium monofluoroacetate were obtained. Among them, a mutant SF-9 was selected for producing more succinic acid and less acetic acid. When fermentations were conducted in a 5 L bioreactors, the final succinic acid concentration of SF-9 (34.8 g/L) increased 23.4%, and the mass ratio of succinic acid/acetic acid increased from 3.3 to 9 compared with those of the parent strain. Based on the metabolic flux analysis of A. succinogenes, PEP was found to be a key node which has an important effect on the production of succinic acid, and the flux ratio of by-productions (acetic, formic, lactic acid) was influenced by PYR node. Compared with the parent strain, the flux to succinic acid of mutant (A. succinogenes SF-9) was significantly increased, while the flux to by-productions had an obvious decline. Therefore, PEP and PYR are not rigid nodes in the metabolic regulation of A. succinogenes.
Actinobacillus
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genetics
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growth & development
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metabolism
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Drug Tolerance
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Fermentation
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Fluoroacetates
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metabolism
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Metabolic Networks and Pathways
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Mutation
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Succinic Acid
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metabolism
10.Effect of Different Carbon Sources on Succinic Acid Production of Actinobacillus succinogenes and Metabolic Flux Analysis
Yupeng LIU ; Pu ZHENG ; Ye NI ; Jinjun DONG ; Zhihao SUN
Microbiology 2008;0(09):-
In anaerobic bottles fermentation,glucose,fructose,xylose,lactose,maltose,sucrose and sugar alcohols could be used to produce succinic acid with Actinobacillus succinogenes. When sorbitol was utilized as the carbon source in the batch fermentation,more succinate and ethanol were produced compared with those using glucose,while producing less acetate and formate. The metabolic flux analysis results showed that the flux partitioning at PEP node was stable when glucose was replaced by sorbitol,but the flux partitioning at PYR and AcCoA nodes changed a lot because more reducing power(NADH) was generated to meet the more requirement the synthesis of succinate and ethanol.

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