1.Isolation and protection of organs at risk by crosslinked sodium hyaluronate gel during brachytherapy
Jianjian LIU ; Yan ZHANG ; Zhiwei CUI ; Dongfang WANG ; Xu LIU ; Shenglin YANG ; Qian CHAI ; Fenglin LIU
Chinese Journal of Tissue Engineering Research 2025;29(4):700-706
BACKGROUND:Crosslinked sodium hyaluronate gel has good mechanical property,biocompatibility,and biodegradability,and can be used as an isolated protective material in tumor radiation therapy to protect endangered organs from damage caused by excess radiation dose. OBJECTIVE:To investigate the safety and efficacy of crosslinked sodium hyaluronate gel in reducing the dose of radiation to dangerous organs during brachytherapy. METHODS:A total of 16 specific pathogen-free Kunming mice of the same age and similar body weight were selected as experimental subjects and divided into experimental group and control group by the random number table method,with 8 mice in each group.125I seeds were implanted subcutaneously in the back of mice in the experimental group,and then crosslinked sodium hyaluronate gel was injected around the radioactive particles.Only 125I seeds were implanted subcutaneously in the back of mice in the control group.After injection,the distance between the radioactive particles and the epidermis was measured by spiral CT scan,and the surface radiation dose was measured by radiation dosimeter.Within 10 weeks after injection,the growth state,survival rate,skin radiation damage,and gel retention of mice were observed. RESULTS AND CONCLUSION:(1)Spiral CT scan showed that the implanted gel was relatively concentrated and created an effective distance between the radioactive seeds and the epidermis.The body surface radiation dose of the experimental group was significantly lower than that of the control group(P<0.01).(2)During the experimental observation period,mice in both groups survived;mice in the control group showed obvious irritability and other unstable behavior in the late experimental period,and some mice in the experimental group showed similar behavior.The daily food intake of mice in the two groups had no significant change,and the body mass showed the same increasing trend.After implantation of radioactive seeds,the two groups of mice showed different degrees of radioactive skin injury.From day 23 after injection to the end of the experiment,the skin radiation injury score of the experimental group was lower than that of the control group(P<0.01).At week 10 after implantation,6 mice in the experimental group had no obvious gel residue under their skin,and 2 mice had a very small amount of scattered gel-like samples under their skin.(3)Therefore,the crosslinked sodium hyaluronate injection technique can increase the space between the radioactive target area of 125I seeds and the organ at risk outside the target through physical space occupying,which can effectively reduce the dose of the organ at risk,and play a role in the isolation and protection of the organ at risk.
2.Glutamate Receptor Antagonists Attenuate Stereotyped Behaviors via Modulating BDNF Levels in Obsessive-complusive Disorder Model Mice
Weijie WANG ; Yuchong LUO ; Dongmiao HUANG ; Chen YANG ; Jihui YUE ; Xianglan WANG ; Shenglin WEN
Journal of Sun Yat-sen University(Medical Sciences) 2025;46(3):475-485
ObjectiveTo explore whether fluoroethylnormemantine (FENM), an NMDA receptor antagonist, could improve compulsive-like behaviors and to investigate its underlying mechanisms in the RU24969-induced obsessive-compulsive disorder (OCD) mouse model. MethodsThirty-two mice were randomly assigned to four groups: Saline (n=8), RU24969 (n=8), RU+FENM (n=8), and FENM (n=8). Mice received FENM or an equivalent volume of saline for pre-treatment, followed by RU24969 or saline for model induction 30 minutes later. Behavioral tests were performed 1 hour after modeling, and serum samples were collected to measure the level of brain-derived neurotrophic factor (BDNF). Evans Blue dye was intravenously injected to assess dye content in brain tissue, thereby evaluating potential blood-brain barrier damage. ResultsFENM treatment significantly improved repetitive stereotyped circling behavior (F=39.850, P<0.001) and alleviated persistent motor activity (F=50.200, P<0.001) in RU24969 model mice. Additionally, FENM treatment significantly increased serum BDNF level in RU24969-induced OCD mice (F=18.930, P<0.001). ConclusionsFENM , an NMDA receptor antagonist, may alleviate compulsive behaviors in OCD mice by modulating BDNF levels , thereby exerting anti-compulsive effects. Neither the RU24969 model nor FENM treatment significantly affectes blood-brain barrier integrity.
3.Expert consensus on the rational use of psychotropic drugs related to intensive care medicine
Shenglin SHE ; Zhen SONG ; Tongwen SUN ; Jingguo ZHAI ; Yan YU ; Ningbo YANG ; Maosheng FANG ; Wenbin GUO ; Man WANG ; Guanglei XUN ; Lulu ZHANG ; Xijia XU ; Xiaoli WU ; Qinling WEI ; Fang LIU ; Huiping LI ; Xingrong SONG ; Youping WANG ; Yingjun ZHENG ; Xueqin SONG
Chinese Journal of Nervous and Mental Diseases 2024;50(9):513-524
Critical care medicine-related treatment is an interdisciplinary and multi-professional process,often leading to secondary or concomitant mental disorders in clinical practice.Currently,there is no consensus on the pharmacological treatment of related mental illnesses in China.The Chinese Society of Psychosomatic Medicine collaborated with the Critical Care Medicine expert group to form a consensus writing expert group.After a systematic review of relevant literature,summarizing published domestic and foreign literature,and extensive discussions,the consensus was developed.The consensus elaborates on the principles and processes of the standardized use of psychotropic drugs in critical care medicine,as well as the clinical indications,precautions,and specific drug selection of various psychiatric medications,providing feasible suggestions and guidance for the clinical application of psychiatric medications in the intensive care unit.
4.Research progress of epigallocatechin gallate in radiation protection
Luxun YANG ; Xinrui YANG ; Jing LIU ; Binghui LU ; Shenglin LUO ; Rong LI
Chinese Journal of Radiological Health 2023;32(6):700-704
Epigallocatechin gallate (EGCG) is a major polyphenol component in green tea. EGCG has high free radical scavenging activity, radiation protection efficiency, and metal-chelating capacity due to its unique structure with hydroxyl groups. EGCG and its derivatives have been reported in various fields. This paper reviews the effects of EGCG, including radiation protection, heavy metal ion adsorption, and promotion of heavy metal ion excretion. EGCG has the potential to be used as an ideal radiation protection agent, heavy metal adsorbent, and even excretion promoting agent.
5.Discussion on the Authenticity Verification Method in the Verification of Medical Device Registration Quality Management System.
Fenglin LIU ; Hongzhong CHEN ; Qian CHAI ; Shenglin YANG ; Xiaochen WANG ; Shanshan LIU ; Yunjuan ZHANG ; Dandan DONG
Chinese Journal of Medical Instrumentation 2023;47(3):309-311
Authenticity verification is a very important aspect of medical device registration quality management system verification of medical device. How to verify the authenticity of samples is a problem worth discussing. This study analyzes the methods of authenticity verification from the aspects of product retention sample, registration inspection report, traceability of records, hardware facilities and equipment. In order to provide reference for relevant supervisors and inspectors in the verification of registration quality management system.
6.Applications of smartphone-based near-infrared (NIR) imaging, measurement, and spectroscopy technologies to point-of-care (POC) diagnostics.
Wenjing HUANG ; Shenglin LUO ; Dong YANG ; Sheng ZHANG
Journal of Zhejiang University. Science. B 2021;22(3):171-189
The role of point-of-care (POC) diagnostics is important in public health. With the support of smartphones, POC diagnostic technologies can be greatly improved. This opportunity has arisen from not only the large number and fast spread of cell-phones across the world but also their improved imaging/diagnostic functions. As a tool, the smartphone is regarded as part of a compact, portable, and low-cost system for real-time POC, even in areas with few resources. By combining near-infrared (NIR) imaging, measurement, and spectroscopy techniques, pathogens can be detected with high sensitivity. The whole process is rapid, accurate, and low-cost, and will set the future trend for POC diagnostics. In this review, the development of smartphone-based NIR fluorescent imaging technology was described, and the quality and potential of POC applications were discussed.
7.Research progress of ceria nanoparticles in the field of radiation
Luxun YANG ; Yaru YIN ; Shenglin LUO ; Jing LIU ; Binghui LU ; Zhangyou YANG ; Rong LI
Chinese Journal of Radiological Health 2021;30(5):643-648
With the rapid development of nuclear technology in the fields of industry and medicine, the possibility of people suffering from radiation damage has also increased. Radiation injury prevention and treatment drugs are the most effective and direct means for the treatment and protection of radiation injury, but the current radiation injury prevention and treatment drugs have limited effects. Due to the unique valence structure of cerium nanomaterials, it has a variety of enzymatic simulation activities and reproducibility. It shows superior oxidation resistance, powerful free radical scavenging function, and can protect cells from radiation damage. It can be used as an ideal it is a radioprotective agent, and is used in a variety of biological fields. A review of relevant literature shows that the antioxidant properties, high SOD mimicking activity, free radical scavenging ability and radiation resistance of ceria nanoparticles are derived from the mutual conversion of Ce3+/Ce4+ and the formation of oxygen vacancies. This article mainly introduces the basis of anti-radiation activity of ceria nanoparticles, radiation protection effects and the research progress of radiotherapy sensitization, and provides theoretical basis and reference for ceria nanoparticles in the field of radiation direction.
8. Clinical characteristics and risk factors of congenital choledochal cysts
Jing XIAO ; Yang YANG ; Yi XIANG ; Peng LI ; Chengchao LYU ; Baisha HUANG ; Long CEN ; Penghui HAN ; Shenglin LE
Chinese Journal of Perinatal Medicine 2020;23(1):8-17
Objective:
To investigate the clinical characteristics and risk factors of congenital choledochal cysts (CCC).
Methods:
This retrospective study recruited 52 cases who were antenatally diagnosed with CCC and underwent surgical treatment after birth in Guangdong Women and Children Hospital from January 2013 to August 2018, with complete clinical data. According to the enlargement of cysts during pregnancy, they were divided into two groups: progressive group (≥15 mm, 22) and stable group (<15 mm, 30). Antenatal and postpartum ultrasound and MRI features of the two groups were analyzed. Clinical manifestations and biochemical examination results before and after operation were compared between the two groups. Other data, including amylase level in cyst fluid during operation, cholangiography findings, liver biopsy results, and post-operation follow-up, were also analyzed.
9.Study on the correlation between acute radionuclitidis and improved body mass index in intensity-modulated radiation therapy after cervical cancer surgery
Enle CHEN ; Wan YANG ; Jiale GU ; Ke ZHANG ; Qinghua DENG ; Shenglin MA ; Xiadong LI
Chinese Journal of Radiation Oncology 2019;28(1):23-26
Objective To investigate the relationship between the body mass index (BMI)/body mass index improved (BMIIMPd) and the dose of the small intestine as well as the acute radiation colitis in the intensity-modulated radiation therapy after cervical cancer surgery.Methods Thirty-nine cervical cancer patients underwent postoperative adjuvant radiotherapy.All patients received Philips large bore CT scan for enhanced CT scan,target delineation and organ at risk.All patients were treated with a single arc 10 MV VMAT plan.The correlation between the radiation dose of the small intestine and the acute radiation enteritis and BMI/BMIIMPd was analyzed.Results The BMI was calculated as (22.23±2.80) kg/m2,BMIIMPd was (21.49±3.95) kg/m2,the small intestine volume VSI was (1 155.71 ± 419.33)cc3.The volume of the small intestine received more than 10 Gy (V10_SI) VMAT was (66.50± 27.01) %,and the equivalent uniform dose (EUD) and normal tissue complication probability (NTCP) were (4 098.87± 184.93) cGy and (7.98±8.73)%.One way ANOVA demonstrated that under the VMAT technology,the BMIIMPd,V30,V40,EUD (or=50) and NTCP in the small intestine were the influencing factors of the occurrence of acute radiation enteritis.Conclusions If the improved BMIIMPd is utilized to distinguish the BMI,the high dose area of the small intestine will be larger and the incidence of acute radiation enteritis will be higher for patients with BMIIMPd between 10.1 and 16.9(normal and thin).Conventional BMI cannot be utilized as a basis for the prediction of the incidence of acute radiation enteritis in patients with cervical carcinoma.
10.Separation and Identification of Chemical Components in Ethyl Acetate Fraction and Water Fraction from Tripterygium wilfordii
Ruikun YANG ; Sifang WU ; Jun YAN ; Jicheng SHU ; Rui ZHANG ; Shenglin ZHANG ; Tianyou CAO ; Jianqun LIU
China Pharmacy 2019;30(5):638-641
OBJECTIVE: To separate and identify chemical components in ethyl acetate fraction and water fraction from Tripterygium wilfordii, and to provider basis for further pharmacological study. METHODS: The ethyl acetate fraction and water fraction from T. wilfordii were separated and purified by MCI GEL-CHP 20P column chromatography, C18 RP silica gel column chromatography, Sephadex LH-20 gel column chromatography and HPLC. The structures of compounds were analyzed and identified by 1H-NMR, 13C-NMR and physicochemical properties. RESULTS: Two compounds were isolated from ethyl acetate fraction of T. wilfordii, namely orthosphenic acid (compound 1), dibutylphthalate (compound 2). Eight glucosides were isolated from water extract of T. wilfordii, namely 2,6-dimethoxy-4-hydroxymethyl-phenyl-1-O-beta-D-glucopyranoside (compound 3), 2,6-dimethoxy-4-hydroxyphenol-1-O-β-D-glucoside(compound 4), 4-hydroxy-1-(2-hydroxyethyl)-phenyl-3-O-β-D-glucopyranoside (compound 5), 3,4-dimethoxy-phenyl-1-O-β-D-glucopyranoside (compound 6),β-adenosine (compound 7), ligustrin (compound 8), epicatechin-8-C-β-D-galactoside (compound 9) and 2-hydroxynaringenin-7-O-β-glucoside (compound 10). CONCLUSIONS: Chemical components of ethyl acetate fraction and water fraction are separated and identified from T. wilfordii.

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