1.Explore the Formation and Treatment of Malignant Tumors from the Perspective of Yang Being Solid and Able to Hold on
Liguang FANG ; Dandan GAO ; Tong WANG ; Yanan ZHANG ; Shijun WANG
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(5):576-581
Yang being solid is an important summary of the normal functional state of yang qi in The Yellow Emperor's Inner Classic.Based on the theory of yang being solid and able to hold on,it is proposed that yang being solid is essential to maintain the state of tightness,thoroughness and quietness for maintaining the health of the human body.Yang losing its solidity is the core patho-genesis of the onset and progression of malignant tumors,which manifests as yang deficiency,yang depression and yang restlessness.If yang is not solid due to its deficiency,yang will lose its warmth and defense and the evil qi will be retained;if yang is not solid due to its depression,yang will lose its warmth and circulation and phlegm and stasis will gather;if yang is not solid due to its restlessness,yang will lose its tranquility,burn yin and consume essence.Aiming at the core pathogenesis of yang losing its solidity,the treatment methods of warming yang and replenishing qi to treat the disease before it occurs,unblocking yang and removing turbidity to disperse the staleness,and clearing and resolving restless yang to fight cancer and detoxify are used in clinical practice.Restoring the solidity of yang is taken as the goal of treating malignant tumors,which provides ideas for the clinical practice of treating malignant tumors with traditional Chinese medicine.
2.Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury (version 2025)
Aijun XU ; Shuixia LI ; Bo CHEN ; Mengyuan YE ; Lejiao LANG ; Ning NING ; Lin ZHANG ; Changqing LIU ; Zhonglan CHEN ; Weihu MA ; Weishi LI ; Xiaoning WANG ; Dongmei BIAN ; Jiancheng ZENG ; Xin WANG ; Yuan GAO ; Yaping CHEN ; Jiali CHEN ; Yun HAN ; Xiuting LI ; Yang ZHOU ; Xiaojing SU ; Qiong ZHANG ; Tianwen HUANG ; Ping ZHANG ; Hua LIN ; Xingling XIAO ; Ruifeng XU ; Fanghui DONG ; Bing HAN ; Luo FAN ; Yanling PEI ; Suyun LI ; Xiaoju TAN ; Rongchen GUO ; Yefang ZOU ; Xiaoyun HAN ; Junqin DING ; Yi WANG ; Shuhua DENG ; Jinli GUO ; Yinhua LIANG ; Yuan CEN ; Xiaoqin LIU ; Junru CHEN ; Haiyang YU ; Lunlan LI ; Ying REN ; Yunxia LI ; Jianli LU ; Ying YING ; Lan WEI ; Yin WANG ; Qinhong XU ; Yanqin ZHANG ; Yang LYU ; Shijun ZHANG ; Sui WENJIE ; Sanlian HU ; Shuhong YANG ; Guoqing LI ; Jingjing AN ; Baorong HE ; Leling FENG
Chinese Journal of Trauma 2025;41(6):530-541
Paraplegia caused by spinal cord injury is a serious neurological complication, for which surgery is currently the main treatment method. Due to different surgical approaches, patients are usually expected to maintain a passive prone position for a long time or switch between the supine and prone positions. Affected by multiple factors such as neurogenic sensory disorders, pathological changes in muscle tone and operative duration, the risk of intraoperative acquired pressure injury (IAPI) is significantly increased. Current clinical prevention strategies for IAPI in these patients predominantly focus on localized pressure relief during positioning, lacking systematic, standardized comprehensive prevention protocols or evidence-based guidelines. To address it, Department of Nursing, Orthopedics Branch, China International Exchange and Promotive Association for Medical and Health Care, Spinal Trauma Professional Committee, Orthopedics Branch, Chinese Medical Doctor Association, Nursing Group of Spine and Spinal Cord Professional Committee of Chinese Association of Rehabilitation Medicine organized experts in relevant fields to formulate Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury ( version 2025), based on evidence-based medical evidence and latest research results and clinical practice at home and abroad. Eleven recommendations were put forward from the aspects of preoperative risk assessment, intraoperative prevention strategies, postoperative handover and monitoring, and supportive mechanisms for IAPI prevention, aiming to standardize the prevention measures and management strategies of IAPI in paraplegic patients with spinal cord injury and accelerate the recovery of patients and improve the therapeutic effect.
3.In situ tumor cell engineering reverses immune escape to enhance immunotherapy effect.
Shujun LIU ; Shijun YUAN ; Meichen LIU ; Jinhu LIU ; Shunli FU ; Tong GAO ; Shuang LIANG ; Xinyan HUANG ; Xinke ZHANG ; Yongjun LIU ; Zipeng ZHANG ; Na ZHANG
Acta Pharmaceutica Sinica B 2025;15(1):627-641
The underlying cause of low response rates to existing immunotherapies is that tumor cells dominate tumor immune escape through surface antigen deficiency and inducing tumor immunosuppressive microenvironment (TIME). Here, we proposed an in situ tumor cell engineering strategy to disrupt tumor immune escape at the root by restoring tumor cell MHC-I/tumor-specific antigen complex (MHC-I/TSA) expression to promote T-cell recognition and by silencing tumor cell CD55 to increase the ICOSL+ B-cell proportion and reverse the TIME. A doxorubicin (DOX) and dual-gene plasmid (MAC pDNA, encoding both MHC-I/ASMTNMELM and CD55-shRNA) coloaded drug delivery system (LCPN@ACD) with tumor targeting and charge/size dual-conversion properties was prepared. LCPN@ACD-induced ICD promoted DC maturation and enhanced T-cell activation and infiltration. LCPN@ACD enabled effective expression of MHC-I/TSA on tumor cells, increasing the ability of tumor cell recognition and killing. LCPN@ACD downregulated tumor cell CD55 expression, increased the proportion of ICOSL+ B cells and CTLs, and reversed the TIME, thus greatly improving the efficacy of αPD-1 and CAR-T therapies. The application of this in situ tumor cell engineering strategy eliminated the source of tumor immune escape, providing new ideas for solving the challenges of clinical immunotherapy.
4.Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury (version 2025)
Aijun XU ; Shuixia LI ; Bo CHEN ; Mengyuan YE ; Lejiao LANG ; Ning NING ; Lin ZHANG ; Changqing LIU ; Zhonglan CHEN ; Weihu MA ; Weishi LI ; Xiaoning WANG ; Dongmei BIAN ; Jiancheng ZENG ; Xin WANG ; Yuan GAO ; Yaping CHEN ; Jiali CHEN ; Yun HAN ; Xiuting LI ; Yang ZHOU ; Xiaojing SU ; Qiong ZHANG ; Tianwen HUANG ; Ping ZHANG ; Hua LIN ; Xingling XIAO ; Ruifeng XU ; Fanghui DONG ; Bing HAN ; Luo FAN ; Yanling PEI ; Suyun LI ; Xiaoju TAN ; Rongchen GUO ; Yefang ZOU ; Xiaoyun HAN ; Junqin DING ; Yi WANG ; Shuhua DENG ; Jinli GUO ; Yinhua LIANG ; Yuan CEN ; Xiaoqin LIU ; Junru CHEN ; Haiyang YU ; Lunlan LI ; Ying REN ; Yunxia LI ; Jianli LU ; Ying YING ; Lan WEI ; Yin WANG ; Qinhong XU ; Yanqin ZHANG ; Yang LYU ; Shijun ZHANG ; Sui WENJIE ; Sanlian HU ; Shuhong YANG ; Guoqing LI ; Jingjing AN ; Baorong HE ; Leling FENG
Chinese Journal of Trauma 2025;41(6):530-541
Paraplegia caused by spinal cord injury is a serious neurological complication, for which surgery is currently the main treatment method. Due to different surgical approaches, patients are usually expected to maintain a passive prone position for a long time or switch between the supine and prone positions. Affected by multiple factors such as neurogenic sensory disorders, pathological changes in muscle tone and operative duration, the risk of intraoperative acquired pressure injury (IAPI) is significantly increased. Current clinical prevention strategies for IAPI in these patients predominantly focus on localized pressure relief during positioning, lacking systematic, standardized comprehensive prevention protocols or evidence-based guidelines. To address it, Department of Nursing, Orthopedics Branch, China International Exchange and Promotive Association for Medical and Health Care, Spinal Trauma Professional Committee, Orthopedics Branch, Chinese Medical Doctor Association, Nursing Group of Spine and Spinal Cord Professional Committee of Chinese Association of Rehabilitation Medicine organized experts in relevant fields to formulate Guideline for the prevention of intraoperative acquired pressure injury in paraplegic patients with spinal cord injury ( version 2025), based on evidence-based medical evidence and latest research results and clinical practice at home and abroad. Eleven recommendations were put forward from the aspects of preoperative risk assessment, intraoperative prevention strategies, postoperative handover and monitoring, and supportive mechanisms for IAPI prevention, aiming to standardize the prevention measures and management strategies of IAPI in paraplegic patients with spinal cord injury and accelerate the recovery of patients and improve the therapeutic effect.
5.Explore the Formation and Treatment of Malignant Tumors from the Perspective of Yang Being Solid and Able to Hold on
Liguang FANG ; Dandan GAO ; Tong WANG ; Yanan ZHANG ; Shijun WANG
Journal of Nanjing University of Traditional Chinese Medicine 2025;41(5):576-581
Yang being solid is an important summary of the normal functional state of yang qi in The Yellow Emperor's Inner Classic.Based on the theory of yang being solid and able to hold on,it is proposed that yang being solid is essential to maintain the state of tightness,thoroughness and quietness for maintaining the health of the human body.Yang losing its solidity is the core patho-genesis of the onset and progression of malignant tumors,which manifests as yang deficiency,yang depression and yang restlessness.If yang is not solid due to its deficiency,yang will lose its warmth and defense and the evil qi will be retained;if yang is not solid due to its depression,yang will lose its warmth and circulation and phlegm and stasis will gather;if yang is not solid due to its restlessness,yang will lose its tranquility,burn yin and consume essence.Aiming at the core pathogenesis of yang losing its solidity,the treatment methods of warming yang and replenishing qi to treat the disease before it occurs,unblocking yang and removing turbidity to disperse the staleness,and clearing and resolving restless yang to fight cancer and detoxify are used in clinical practice.Restoring the solidity of yang is taken as the goal of treating malignant tumors,which provides ideas for the clinical practice of treating malignant tumors with traditional Chinese medicine.
6.Clinical observation on the efficacy of non-lactating mastitis treated with staged surgery
Wenchao QU ; Hua WAN ; Xueqing WU ; Jiamei FENG ; Lu XIE ; Qingqian GAO ; Shijun SHAO ; Jiaye SUN
Journal of Surgery Concepts & Practice 2024;29(5):446-451
Objective To explore the clinical efficacy of staged surgery for non-lactating mastitis. Methods A retrospective analysis was conducted on 317 patients with non-lactating mastitis admitted to our department from January 2015 to December 2020, all of whom underwent staged surgical treatment. The recovery time, recurrence rate, and breast appearance score were observed. Results The median follow-up time was 24(17,33) months, the recovery time was (25.5±17.9) days, and the recurrence rate was 4.4%. There were 96.2% of patients satisfied with the breast appearance. Conclusions Staged surgery for non-lactating mastitis can effectively shorten the course of the disease, protect the appearance of breast, and have good clinical efficacy.
7.Effects of platycodin D on osteosarcoma cells in vitro
Xinping ZHU ; Jialu YANG ; Zhipeng GAO ; Mengxiao WANG ; Shijun CHANG ; Di JIA ; Weiming ZHAO
Chinese Journal of Pathophysiology 2024;40(10):1844-1853
AIM:To investigate the impact of platycodin D(PD)on the viability,migration,invasion,apop-tosis and cell cycle of osteosarcoma cells in vitro,along with its underlying mechanisms.METHODS:Human osteosarco-ma cells MG63 and U2OS were divided into control group(0 μmol/L)and PD treatment group(6.25,12.5,25,50 and 100 μmol/L,respectively).Human osteosarcoma cells MG63 and U2OS were categorized into control groups(0 μmol/L PD)and PD treatment groups(6.25,12.5,25,50 and 100 μmol/L).The CCK-8 assay determined cell viability and identified effective treatment concentrations.MG63(15 μmol/L PD)and U2OS(25 μmol/L PD)were specifically ana-lyzed.Cell scratch and Transwell assays assessed migration and invasion.Hoechst 33342 staining examined nuclear mor-phological changes.Flow cytometry analyzed cell cycle distribution and apoptosis rate.Western blot measured protein ex-pression levels:cleaved caspase-3,cleaved PARP,c-Jun N-terminal kinase(JNK),p-JNK,B-cell lymphoma-2(Bcl-2),Bcl-2-ssociated X protein(BAX),matrix metalloproteinase 2(MMP-2),MMP-9,cyclin-dependent kinase 4(CDK4),cyclin D1,CDK1,cyclin B1,extracellular signal-regulated kinase(ERK)and p-ERK.Proteome sequencing of MG63 cells was performed.RESULTS:PD treatment significantly decreased cell survival,scratch healing rate,and invasive cell numbers,while increasing apoptosis rates(P<0.05).Morphological changes such as nuclear hyperchroma-tism and fragmentation were observed in PD-treated cells.PD induced G2/M phase arrest in MG63 and G0/G1 phase arrest in U2OS cells.PD treatment upregulated BAX,cleaved caspase-3,cleaved PARP,and p-JNK/JNK,while downregulat-ing Bcl-2,MMP-2,MMP-9,CDK4,cyclin D1,CDK1,cyclin B1,and p-ERK/ERK(P<0.05).Proteome sequencing re-vealed PD's involvement in cell division,cell cycle regulation,focal adhesion,apoptosis,and the MAPK signaling path-way.CONCLUSION:PD inhibits cell viability,migration,and invasion of osteosarcoma cells in vitro,while promoting apoptosis and inducing cell cycle arrest.These effects are likely mediated through modulation of the MAPK signaling path-way.
8.Treadmill exercise promotes myelin regeneration in rats with controlled cortical impact
Dandan GAO ; Kunyuan ZHU ; Shijun BI ; Yang GAO
Chinese Journal of Neuroanatomy 2024;40(2):241-244,256
Objective:To study the effect of treadmill training on myelin regeneration in rats with controlled cortical impact(CCI).Methods:The rat CCI model of was prepared by impinging method,and the rat model was trained by running on the treadmill for 8 weeks.The neural function deficit was detected by the modified neurological function se-verity scoring method,the motor function of the rats was detected by the balance beam test,and the expression of BDNF was detected by enzyme-linked immunosorbent assay(ELISA)and RT-qPCR.The expressions of myelin basic protein(MBP),myelin oligodendrocyte glycating protein(MOG)and myelin protein lipoprotein(PLP)in corpus callosum were detected by Western Blot.Results:Treadmill training improved the neural function score and motor function of CCI injured rats,increased the expression of BDNF in cortex,and upregulated the expression of MBP,MOG,and PLP.Conclusion:Treadmill training promotes myelin repair by upregating BDNF,thereby improving the neural function defi-cit caused by CCI injury.
9.Localized light-triggered release macrophage cytopharmaceuticals containing O-nitrobenzyl group for enhanced solid tumor cell-chemotherapy.
Jinhu LIU ; Han YANG ; Xiao SANG ; Tong GAO ; Zipeng ZHANG ; Shunli FU ; Huizhen YANG ; Lili CHANG ; Xiaoqing LIU ; Shuang LIANG ; Shijun YUAN ; Suyun WEI ; Yuxin YANG ; Xiaoxin YAN ; Xinke ZHANG ; Weiwei MU ; Yongjun LIU ; Na ZHANG
Acta Pharmaceutica Sinica B 2024;14(11):5053-5068
Cytopharmaceutical based on macrophages is a breakthrough in the field of targeted drug delivery. However, it remains a challenge to localize and control drug release while retaining macrophage activity and exerting its immunotherapeutic effect. Herein, a localized light-triggered release macrophage cytopharmaceutical (USIP@M) was proposed, which could utilize the tumor targeting and immunotherapy effects of macrophages to reverse the immune suppression of tumor microenvironment (TME). Amphiphilic block copolymers with ultraviolet (UV)-responsive o-nitrobenzyl groups were synthesized and co-loaded with sorafenib (SF), IMD-0354 (IMD), and upconverting nanoparticles (UCNPs), which were then taken up by macrophages, and the targeted delivery of drugs was realized by using the tumor tropism of macrophages. UCNPs converted near-infrared light with strong penetrability and high safety into UV light, which promoted the photoresponsive depolymerization of block copolymers and production of exosomes from USIP@M, accelerated drug efflux and maintained the activity of macrophages. IMD simultaneously polarized carrier macrophages and tumor-associated macrophages to exert the antitumor effect of macrophages, enhance T cell immunity, and alleviate the immunosuppressive state of TME. Synergistically with the chemotherapeutic effect of SF, it could effectively kill tumors. In conclusion, based on the localized light-triggered release strategy, this study constructed a novel macrophage cytopharmaceutical that could localize and control drug release while retaining the activity of macrophages and exerting its immunotherapeutic effect, which could effectively treat solid tumors.
10.Development of a fast Monte Carlo dose verification module for helical tomotherapy
Shijun LI ; Ning GAO ; Bo CHENG ; Yifei PI ; Haiyang WANG ; Yankui CHANG ; Xi PEI ; XU George XIE
Chinese Journal of Medical Physics 2024;41(11):1321-1326
Objective To develop a GPU-based Monte Carlo dose calculation module for helical tomotherapy(TOMO),and integrate it into the commercial software ArcherQA to achieve fast and accurate dose verification in clinic.Methods The TOMO treatment head was modeled using TOPAS to obtain phase space files,and a fast weight tuning algorithm was used to simulate particle transport in multi-leaf collimator for improving computational efficiency,and finally,GPU-based Monte Carlo algorithms in ArcherQA were used to simulate particle transport in patients.To verify the model accuracy,the ArcherQA calculated results in water tank were compared with measured data for different open fields.In addition,multiple comparisons among ArcherQA results,TPS results and ArcCHECK results were conducted on 15 clinical cases(5 cases in the head and neck,5 cases in the chest and abdomen,and 5 cases in the whole body).Results In the water tank tests for 40 cm×5.0 cm,40 cm×2.5 cm and 40 cm× 1.0 cm radiation fields,the average global relative errors of the percentage depth dose,transverse dose distribution,and longitudinal dose distribution calculated by ArcherQA with the corresponding measured values were 0.72%,0.66%,and 0.54%,respectively.Over 98%of the voxels had a global relative error of less than 1%.As for 15 clinical cases,in 2%/2 mm criteria,the mean Gamma passing rate was 98.1%between ArcherQA and TPS,99.1%between TPS and ArcCHECK,and 99.4%between ArcherQA and ArcCHECK.The uncertainty of the simulation maintained less than 1%,and the average time taken for calculation based on patient CT vs ArcCHECK phantom was 87 s vs 64 s.Conclusion ArcherQA can be used for independent dose validation for TOMO plans for it can provide fast and accurate dose calculations.

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