1.Clinical guidelines for the treatment of ankylosing spondylitis combined with lower cervical fracture in adults (version 2024)
Qingde WANG ; Yuan HE ; Bohua CHEN ; Tongwei CHU ; Jinpeng DU ; Jian DONG ; Haoyu FENG ; Shunwu FAN ; Shiqing FENG ; Yanzheng GAO ; Zhong GUAN ; Hua GUO ; Yong HAI ; Lijun HE ; Dianming JIANG ; Jianyuan JIANG ; Bin LIN ; Bin LIU ; Baoge LIU ; Chunde LI ; Fang LI ; Feng LI ; Guohua LYU ; Li LI ; Qi LIAO ; Weishi LI ; Xiaoguang LIU ; Hongjian LIU ; Yong LIU ; Zhongjun LIU ; Shibao LU ; Yong QIU ; Limin RONG ; Yong SHEN ; Huiyong SHEN ; Jun SHU ; Yueming SONG ; Tiansheng SUN ; Yan WANG ; Zhe WANG ; Zheng WANG ; Hong XIA ; Guoyong YIN ; Jinglong YAN ; Wen YUAN ; Zhaoming YE ; Jie ZHAO ; Jianguo ZHANG ; Yue ZHU ; Yingjie ZHOU ; Zhongmin ZHANG ; Wei MEI ; Dingjun HAO ; Baorong HE
Chinese Journal of Trauma 2024;40(2):97-106
Ankylosing spondylitis (AS) combined with lower cervical fracture is often categorized into unstable fracture, with a high incidence of neurological injury and a high rate of disability and morbidity. As factors such as shoulder occlusion may affect the accuracy of X-ray imaging diagnosis, it is often easily misdiagnosed at the primary diagnosis. Non-operative treatment has complications such as bone nonunion and the possibility of secondary neurological damage, while the timing, access and choice of surgical treatment are still controversial. Currently, there are no clinical practice guidelines for the treatment of AS combined with lower cervical fracture with or without dislocation. To this end, the Spinal Trauma Group of Orthopedics Branch of Chinese Medical Doctor Association organized experts to formulate Clinical guidelines for the treatment of ankylosing spondylitis combined with lower cervical fracture in adults ( version 2024) in accordance with the principles of evidence-based medicine, scientificity and practicality, in which 11 recommendations were put forward in terms of the diagnosis, imaging evaluation, typing and treatment, etc, to provide guidance for the diagnosis and treatment of AS combined with lower cervical fracture.
2.Posterior apical total intervertebral release combined with posterior column osteotomy for the treatment of rigid scoliosis
Fengzhao ZHU ; Yaqing ZHANG ; Chencheng FENG ; Tongwei CHU ; Changqing LI ; Yue ZHOU ; Bo HUANG
Chinese Journal of Orthopaedics 2024;44(8):561-568
Objective:To investigate the safety and efficacy of posterior apical total intervertebral release (IVR) combined with posterior column osteotomy (PCO) in the treatment of rigid scoliosis.Methods:This study retrospectively analyzed the clinical and radiographic data of 27 patients with rigid scoliosis who underwent posterior total IVR combined with PCO in the apical region from July 2017 to September 2023. There were 10 males and 17 females with an age of 19.3±8.8 years (range 11-48 years). Among them, there were 16 cases of idiopathic scoliosis, 7 cases of neuromuscular scoliosis, 1 case of congenital scoliosis, 1 case of Marfan syndrome with scoliosis, 1 case of neurofibromatosis with scoliosis, and 1 case of osteogenesis imperfecta with scoliosis. The mean Cobb angle of the main curve was 75.4°±13.7° (range 58.7°-110.2°) preoperatively. The mean flexibility of the main curvature is 15.7%±4.7% (range 2.5%-24.3%). Preoperative computer tomography showed that the area of the IVR channel in the convex and concave side of the apical region was 128.1±23.3 mm 2 and 89.5±18.6 mm 2, respectively. The area of the convex IVR was significantly higher than that of the concave IVR. Results:All 27 patients underwent surgery successfully. Total IVR was performed at an average of 3.4±0.7 levels in the apical region. SPO and Ponte osteotomy were performed at 2.7±0.7 and 4.9±1.1 levels, respectively. The mean fusion segment is 11.2±2.0. The operation time, estimated blood loss, and follow-up time were 7.5±0.9 hours (range 6.0-9.8 hours), 1 103.7±845.1 ml (range 300-4 500 ml), and 20.0±14.2 months (range 5-56 months), respectively. The preoperative, postoperative, and final follow-up's mean coronal Cobb angles of the main curve were 75.4°±13.7°, 18.2°±6.5° and 18.6°±6.5°, respectively. The mean correction rate was 75.7%±5.3%. In cases of thoracolumbar kyphosis, the preoperative, postoperative, and final follow-up mean sagittal Cobb angles were 47.2°±4.7°, 22.8°±9.1° and 23.8°±8.9°, respectively. The mean correction rate was 49.5%±18.9%. The mean axial vertebral rotation (AVR) in the IVR region was 24.6°±7.6° preoperatively and was corrected to 11.6°±5.6° postoperatively. The mean correction rate for AVR was 54.0%±11.3%. The coronal, sagittal Cobb angles and AVR postoperatively were significantly lower than those preoperatively ( P<0.001). This case series reported 4 cases of postoperative pleural effusion and 1 case of pulmonary infection, and all of them were cured through conservative treatment. One patient developed incision infection 2 months postoperatively and recovered through debridement surgery. Two patients had proximal junctional kyphosis, one of them underwent revision surgery, and another case was treated with braces. Conclusion:Posterior multi-segment total IVR combined with PCO is a safe and effective surgical procedure for the treatment of rigid scoliosis. The procedure of total IVR was recommended as a supplement for better release of the rigid spine when traditional release methods are not effective.
3.27-Hydroxycholesterol/liver X receptor/apolipoprotein E mediates zearalenone-induced intestinal immunosuppression:A key target potentially linking zearalenone and cancer
Ruan HAONAN ; Zhang JING ; Wang YUNYUN ; Huang YING ; Wu JIASHUO ; He CHUNJIAO ; Ke TONGWEI ; Luo JIAOYANG ; Yang MEIHUA
Journal of Pharmaceutical Analysis 2024;14(3):371-388
Zearalenone(ZEN)is a mycotoxin that extensively contaminates food and feed,posing a significant threat to public health.However,the mechanisms behind ZEN-induced intestinal immunotoxicity remain unclear.In this study,Sprague-Dawley(SD)rats were exposed to ZEN at a dosage of 5 mg/kg/day b.w.for a duration of 14 days.The results demonstrated that ZEN exposure led to notable pathological alterations and immunosup-pression within the intestine.Furthermore,ZEN exposure caused a significant reduction in the levels of apolipoprotein E(ApoE)and liver X receptor(LXR)(P<0.05).Conversely,it upregulated the levels of myeloid-derived suppressor cells(MDSCs)markers(P<0.05)and decreased the presence of 27-hydroxycholesterol(27-HC)in the intestine(P<0.05).It was observed that ApoE or LXR agonists were able to mitigate the immunosuppressive effects induced by ZEN.Additionally,a bioinformatics analysis highlighted that the downregulation of ApoE might elevate the susceptibility to colorectal,breast,and lung cancers.These find-ings underscore the crucial role of the 27-HC/LXR/ApoE axis disruption in ZEN-induced MDSCs proliferation and subsequent inhibition of T lymphocyte activation within the rat intestine.Notably,ApoE may emerge as a pivotal target linking ZEN exposure to cancer development.
4.Clinical guideline for diagnosis and treatment of adult ankylosing spondylitis combined with thoracolumbar fracture (version 2023)
Jianan ZHANG ; Bohua CHEN ; Tongwei CHU ; Yirui CHEN ; Jian DONG ; Haoyu FENG ; Shunwu FAN ; Shiqing FENG ; Yanzheng GAO ; Zhong GUAN ; Yong HAI ; Lijun HE ; Yuan HE ; Dianming JIANG ; Jianyuan JIANG ; Bin LIN ; Bin LIU ; Baoge LIU ; Dechun LI ; Fang LI ; Feng LI ; Guohua LYU ; Li LI ; Qi LIAO ; Weishi LI ; Xiaoguang LIU ; Yong LIU ; Zhongjun LIU ; Shibao LU ; Wei MEI ; Yong QIU ; Limin RONG ; Yong SHEN ; Huiyong SHEN ; Jun SHU ; Yueming SONG ; Honghui SUN ; Tiansheng SUN ; Yan WANG ; Zhe WANG ; Zheng WANG ; Yongming XI ; Hong XIA ; Jinglong YAN ; Liang YAN ; Wen YUAN ; Gang ZHAO ; Jie ZHAO ; Jianguo ZHANG ; Xiaozhong ZHOU ; Yue ZHU ; Yingze ZHANG ; Dingjun HAO ; Baorong HE
Chinese Journal of Trauma 2023;39(3):204-213
Ankylosing spondylitis (AS) combined with spinal fractures with thoracic and lumbar fracture as the most common type shows characteristics of unstable fracture, high incidence of nerve injury, high mortality and high disability rate. The diagnosis may be missed because it is mostly caused by low-energy injury, when spinal rigidity and osteoporosis have a great impact on the accuracy of imaging examination. At the same time, the treatment choices are controversial, with no relevant specifications. Non-operative treatments can easily lead to bone nonunion, pseudoarthrosis and delayed nerve injury, while surgeries may be failed due to internal fixation failure. At present, there are no evidence-based guidelines for the diagnosis and treatment of AS combined with thoracic and lumbar fracture. In this context, the Spinal Trauma Academic Group of Orthopedics Branch of Chinese Medical Doctor Association organized experts to formulate the Clinical guideline for the diagnosis and treatment of adult ankylosing spondylitis combined with thoracolumbar fracture ( version 2023) by following the principles of evidence-based medicine and systematically review related literatures. Ten recommendations on the diagnosis, imaging evaluation, classification and treatment of AS combined with thoracic and lumbar fracture were put forward, aiming to standardize the clinical diagnosis and treatment of such disorder.
5.Evidence-based guideline for clinical diagnosis and treatment of acute combination fractures of the atlas and axis in adults (version 2023)
Yukun DU ; Dageng HUANG ; Wei TIAN ; Dingjun HAO ; Yongming XI ; Baorong HE ; Bohua CHEN ; Tongwei CHU ; Jian DONG ; Jun DONG ; Haoyu FENG ; Shunwu FAN ; Shiqing FENG ; Yanzheng GAO ; Zhong GUAN ; Yong HAI ; Lijun HE ; Yuan HE ; Dianming JIANG ; Jianyuan JIANG ; Weiqing KONG ; Bin LIN ; Bin LIU ; Baoge LIU ; Chunde LI ; Fang LI ; Feng LI ; Guohua LYU ; Li LI ; Qi LIAO ; Weishi LI ; Xiaoguang LIU ; Yong LIU ; Zhongjun LIU ; Shibao LU ; Fei LUO ; Jianyi LI ; Yong QIU ; Limin RONG ; Yong SHEN ; Huiyong SHEN ; Jun SHU ; Yueming SONG ; Tiansheng SUN ; Jiang SHAO ; Jiwei TIAN ; Yan WANG ; Zhe WANG ; Zheng WANG ; Xiangyang WANG ; Hong XIA ; Jinglong YAN ; Liang YAN ; Wen YUAN ; Jie ZHAO ; Jianguo ZHANG ; Yue ZHU ; Xuhui ZHOU ; Mingwei ZHAO
Chinese Journal of Trauma 2023;39(4):299-308
The acute combination fractures of the atlas and axis in adults have a higher rate of neurological injury and early death compared with atlas or axial fractures alone. Currently, the diagnosis and treatment choices of acute combination fractures of the atlas and axis in adults are controversial because of the lack of standards for implementation. Non-operative treatments have a high incidence of bone nonunion and complications, while surgeries may easily lead to the injury of the vertebral artery, spinal cord and nerve root. At present, there are no evidence-based Chinese guidelines for the diagnosis and treatment of acute combination fractures of the atlas and axis in adults. To provide orthopedic surgeons with the most up-to-date and effective information in treating acute combination fractures of the atlas and axis in adults, the Spinal Trauma Group of Orthopedic Branch of Chinese Medical Doctor Association organized experts in the field of spinal trauma to develop the Evidence-based guideline for clinical diagnosis and treatment of acute combination fractures of the atlas and axis in adults ( version 2023) by referring to the "Management of acute combination fractures of the atlas and axis in adults" published by American Association of Neurological Surgeons (AANS)/Congress of Neurological Surgeons (CNS) in 2013 and the relevant Chinese and English literatures. Ten recommendations were made concerning the radiological diagnosis, stability judgment, treatment rules, treatment options and complications based on medical evidence, aiming to provide a reference for the diagnosis and treatment of acute combination fractures of the atlas and axis in adults.
6.Grade Evaluation of Color Sorting Lonicerae Japonicae Flos Based on HPLC Fingerprint and Index Components Combined with Multivariate Statistics
HAO Peijun ; ZHANG Linxiang ; JIN Wanjun ; NI Lin ; QIU Guoyu ; ZHAI Yusheng ; LEI Chunming ; SONG Pingshun
Chinese Journal of Modern Applied Pharmacy 2023;40(19):2694-2701
OBJECTIVE To establish the correlation evaluation and quality evaluation method of HPLC fingerprint grade of color sorting Lonicerae Japonicae Flos, and provide technical basis for the grade standard of color sorting Lonicerae Japonicae Flos. METHODS The chromatographic column was SVEA C18(250 mm×4.6 mm, 5 μm); mobile phase was acetonitrile(A)- 0.2% formic acid aqueous solution(B); gradient elution; injection volume was 10 μL; detection wave length was 245 nm; volume flow rate was 0.5 mL·min-1; column temperature was 38 ℃. The common peak determination and similarity evaluation of HPLC chromatogram data were carried out by using the Similarity Evaluation System of Traditional Chinese Medicine Chromatographic Fingerprints(Version 2012); the color sorting grade evaluation was carried out by CA, PCA and PLS-DA. The first part of Chinese Pharmacopoeia 2020 Edition was used to measure the quality control indicators, and the data were analyzed comprehensively. RESULTS A total of 28 common peaks were identified in the fingerprints, and 7 components were identified. The similarity of 24 batches of color sorting grade samples was 0.936-0.968. CA and PCA divided 28 batches of Lonicerae Japonicae Flos samples into 4 categories, which were basically consistent with the classification of color sorting, and PLS-DA achieved a discrimination result that was very consistent with the classification of color sorting. The color sorting grade was negatively correlated with the diameter, flowering rate, damage rate, and luteolin content of Lonicerae Japonicae Flos. The color sorting grade was positively correlated with chlorogenic acid, 3,5-di-O-caffeoyl quinic acid and 4,5-di-O-caffeoyl quinic acid. There was a clear correlation between the color sorting of Lonicerae Japonicae Flos and established fingerprint overall. There were differences in the quality of Lonicerae Japonicae Flos in the color sorting grade. Based on the sensory indicators of diameter, flowering rate, and damage rate, the content, diameter, flowering rate, and damage rate of luteolin showed a trend from high to low, ranging from third grade>second grade>first grade>special grade. The content of three phenolic acids showed a trend from high to low, ranging from special grade>first grade>second grade>third grade. Among the special grade, the content of three phenolic acids was the highest. CONCLUSION Combining the content of luteolin and phenolic acids as evaluation and control indicators for color selection grade is feasible and scientific, which can achieve intelligent color sorting grade production of Lonicerae Japonicae Flos grade.
7.Analysis of reoperation rate and risk factors of adjacent segment disease after transforaminal lumbar interbody fusion
Jiawen YE ; Sizhen YANG ; Zihan WEI ; Chenhui CAI ; Yiyun QIU ; Hao QIU ; Ying ZHANG ; Tongwei CHU
Chinese Journal of Orthopaedics 2022;42(19):1254-1261
Objective:To explore the reoperation rate and risk factors of adjacent segment disease (ASDis) in patients with lumbar degenerative diseases after transforaminal lumbar interbody fusion (TLIF).Methods:The clinical data of 460 patients who underwent TLIF for lumbar degenerative diseases in our hospital from January 2011 to December 2013 were retrospectively analyzed. There were 204 males and 256 females with an age of 54.6±12.6 years (range, 20-85 years). Divided into ASDis group and None ASDis (N-ASDis) group according to the occurrence of ASDis and received surgical treatment. The age of ASDis group was 57.9±12.2 years, with 14 males and 12 females, while the age of N-ASDis group was 54.4±12.5 years, with 188 males and 246 females. Count the reoperation rate of ASDis. Compare the age, body mass index (BMI), comorbidities, surgery-related parameters, length of stay, imaging parameters before and after surgery between the two groups, and use univariate analysis and logistic regression analysis to explore risk factors for ASDis.Results:Among 460 patients who underwent TLIF due to lumbar degenerative diseases, 26 patients developed ASDis and received surgical treatment, the reoperation rate was about 5.7%. Among them, the reoperation rate of ASDis with above Pfirrmann grade III in the adjacent intervertebral disc was about 53.1% (17/32). The average onset time of adjacent segment disease was 76.3±25.0 months (range, 30-111 months). Univariate analysis showed that BMI ( t=3.86, P<0.001), history of hypertension (χ 2=5.30, P=0.021), preoperative adjacent vertebral disc degeneration (χ 2=85.90, P<0.001), preoperative adjacent spinal canal stenosis (χ 2=25.35, P<0.001), and preoperative intervertebral space height of adjacent segments ( t=4.33, P<0.001) were statistically different among patients with or without ASDis. Incorporating the above indicators into the logistic regression model, the analysis results showed that body mass index (BMI) >24.9 kg/m 2 and preoperative adjacent intervertebral disc degeneration ≥III degree were risk factors for ASDis after TLIF. Conclusion:The reoperation rate of ASDis after TLIF in patients with lumbar degenerative disease is about 5.7%. BMI>24.9 kg/m 2 and preoperative adjacent intervertebral disc degeneration ≥III degree are risk factors for ASDis and received surgical treatment after TLIF.
8.Single-stage posterior total En bloc spondylectomy for the treatment of metastatic tumors of the lower lumbar spine
Yiyun QIU ; Sizhen YANG ; Ying ZHANG ; Chenhui CAI ; Wugui CHEN ; Xuan WEN ; Xu HU ; Hao QIU ; Tongwei CHU
Chinese Journal of Orthopaedics 2020;40(19):1309-1317
Objective:To investigate the feasibility and clinical outcome of single-stage posterior total en bloc spondylectomy via posterior approach for lowerlumbar spinal malignant tumors.Methods:The clinical data of 23 patients with metastatic tumors of the lower lumbar spine who underwent single-stage posterior total En bloc spondylectomy in our hospital from January 2012 to June 2018 were analyzed retrospectively. There were 14 males and 9 females, age 57.9±10.8 years old (range, 37-74 years old). All patients were treated with single-stage posterior total en blocspondylectomy, titanium mesh implantation and posterior pedicle screw fixation. Observation items included operation time, intraoperative blood loss, postoperativehospital stays,the visual analogue scale (VAS) and the Eastern Cooperative Oncology Group (ECOG) physical condition score of the patients before operation,1 month after operationand 6 months after operation, the American spinal injury association (ASIA) spinal cord injury grade pre-operation andpostoperation, perioperative complications, local recurrence and survival state.Results:The median fellow-up time of this group was 20 months (range 6-56 months). At the end of the last follow-up, there were 3 patients who survived, the average follow-up time of the three patients who survived to the last follow-up was 37.3±11.7 months. One of them had local recurrence, but survived with tumor. The operative time was 155-510 min, with an average of 258±96 min, the intraoperative blood loss was 750-2 500 ml, with an average of 1 258.7±528.6 ml, and the postoperative hospital stay was 10-30 d, with an average of 18.4±4.6 d. VAS score decreased from 7.4±0.8 before operation to 2.6±0.6 1 month after operation, and ECOG score decreased from 1.6±0.9 before operation to 0.9±0.76 months after operation, showing statistically significant differences ( P<0.05). 6 patients presented with postoperative acute nerve root stimulation, 3 patients presented with postoperative cerebrospinal fluid leakage, 3 patients presented with postoperative surgical site infection, 1 with pulmonary infection, and 3 patients presented with titanium mesh displacement. Conclusion:Single-stage posterior total En bloc spondylectomy is feasible for the treatment of metastatic tumors of the lower lumbar spine. Although the operation is quite challenging due to its special anatomical structure and biomechanical characteristics,the long-term follow-up effect is satisfactory.
9. Effects of basic fibroblast growth factor on healing of Mycobacterium tuberculosis infective wound in New Zealand rabbit after debridement
Tongwei ZHANG ; Yiping WANG ; Chiyu JIA
Chinese Journal of Burns 2019;35(2):95-103
Objective:
To investigate the effects of basic fibroblast growth factor (bFGF) on healing of
10.Primary pathological changes of spinal cord tissues of human complete spinal cord injury and their significance
Wei LIU ; Wugui CHEN ; Jing SUN ; Sizhen YANG ; Songtao LI ; Ying ZHANG ; Hao QIU ; Yue ZHOU ; Tongwei CHU
Chinese Journal of Trauma 2018;34(2):138-144
Objective To investigate the pathological changes of spinal cord tissues after spinal cord injury and their significance for clinical diagnosis and treatment of complete spinal cord injury.Methods Patients with complete spinal cord injury were selected.Mter rigorous ethical review and patient informed consent,damaged section of the spinal cord and necrotic tissue were removed and transplanted with the function biological material with autologous stem cell.The specimen of injured spinal cord collected during the operation were divided into three phases according to injury time:3 cases of acute phase (≤ 3 days),3 cases of subacute phase (4-14 days),and 1 case of chronic phase (> 14 days).The pathological changes of injured spinal cord tissue were observed through HE staining,and the expression of hypoxia inducible factor 1α (HIF-1α),tumor necrosis factor (TNF-α),microtubule-associated protein(MAP2) were detected by immunofluorescence.Results (1) HE staining showed that the acute injury mainly manifested as diffuse hyperemia and liquefaction,subacute injury infiltration of inflammatory cells and spinal cord liquefaction,and chronic injury mainly scar repair.(2)The fluorescence intensity (24.67 ±0.51) of HIF-1o in chronic injury was higher than acute (3.17 ± 0.40) and subacute injury (4.62 ± 0.48) (P < 0.05),and the fluorescence intensity of subacute injury was higher than that of acute injury (P < 0.05).(3) The fluorescence intensity (17.60 ± 1.17) of TNF-α in subacute injury was higher than that of acute injury (5.35 ± 0.33) and chronic injury (1.81 ± 0.17) (P <0.05);(4) The fluorescence intensity of MAP2 was 9.46 ±0.41 in acute injury,higher than 3.25 ± 0.42 in subacute injury and 1.16 ± 0.08 in chronic injury (P < 0.05).Conclusions There are hypoxia,inflammation,neuronal apoptosis and repair in the spinal cord tissues after complete spinal cord injury,such as hyperemia,liquefaction,necrosis and gradual scar repair.The severity of inflammation and hypoxia significantly differs among different injury phases.The inflarmnatory cytokines are mainly active in the microenvironment during subacute injury.Hypoxia is mainly involved in the pathological changes of chronic injury.This can provide a new theoretical basis for the clinical treatment of complete spinal cord injury and the timing of surgical treatment.


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