1.Equivalence of SYN008 versus omalizumab in patients with refractory chronic spontaneous urticaria: A multicenter, randomized, double-blind, parallel-group, active-controlled phase III study.
Jingyi LI ; Yunsheng LIANG ; Wenli FENG ; Liehua DENG ; Hong FANG ; Chao JI ; Youkun LIN ; Furen ZHANG ; Rushan XIA ; Chunlei ZHANG ; Shuping GUO ; Mao LIN ; Yanling LI ; Shoumin ZHANG ; Xiaojing KANG ; Liuqing CHEN ; Zhiqiang SONG ; Xu YAO ; Chengxin LI ; Xiuping HAN ; Guoxiang GUO ; Qing GUO ; Xinsuo DUAN ; Jie LI ; Juan SU ; Shanshan LI ; Qing SUN ; Juan TAO ; Yangfeng DING ; Danqi DENG ; Fuqiu LI ; Haiyun SUO ; Shunquan WU ; Jingbo QIU ; Hongmei LUO ; Linfeng LI ; Ruoyu LI
Chinese Medical Journal 2025;138(16):2040-2042
2.Research progress of risk prediction models for stress urinary incontinence during pregnancy and postpartum
Qingqing DING ; Ziyu DING ; Aihua WANG ; Chunlei LIU ; Yuan ZHENG
Chinese Journal of Practical Nursing 2025;41(11):873-881
Stress urinary incontinence is one of the common symptoms of women during pregnancy and postpartum, which has a lasting impact on the life of patients, and is also one of the public health issues of concern in the world. In this study, the generation, development, construction process, prediction performance and management application of stress urinary incontinence risk prediction models during pregnancy and postpartum were reviewed, with a view to improving the understanding of health care workers on stress urinary incontinence risk prediction models during pregnancy and postpartum, and providing references for promoting the health management of female patients.
3.Research progress on molecular mechanisms of lipid metabolism disorders mediating pulmonary vascular remodeling in pulmonary arterial hypertension
Qi SUN ; Yanming HE ; Jinjing YUAN ; Mengwen SHEN ; Chunlei DING ; Xinyi ZHANG ; Lei ZHAO
Journal of Clinical Medicine in Practice 2025;29(14):142-148
Pulmonary vascular remodeling is the core pathological feature in the onset and pro-gression of pulmonary arterial hypertension(PAH).Currently,there is no well-defined therapeutic strategy that can effectively delay or reverse this process.Despite the widespread clinical application of targeted vasodilator drugs,patients still face a high risk of mortality and adverse cardiovascular e-vents,suggesting an urgent need to explore new pathological mechanisms and therapeutic targets.In recent years,the relationship between dyslipidemia and PAH has garnered increasing attention.This article aimed to review the role of lipid metabolism disorders in pulmonary vascular remodeling in pul-monary arterial hypertension and its underlying mechanism,with the hope of providing new interven-tion targets for the treatment of PAH,thereby improving patient survival rates and quality of life.
4.Research progress of risk prediction models for stress urinary incontinence during pregnancy and postpartum
Qingqing DING ; Ziyu DING ; Aihua WANG ; Chunlei LIU ; Yuan ZHENG
Chinese Journal of Practical Nursing 2025;41(11):873-881
Stress urinary incontinence is one of the common symptoms of women during pregnancy and postpartum, which has a lasting impact on the life of patients, and is also one of the public health issues of concern in the world. In this study, the generation, development, construction process, prediction performance and management application of stress urinary incontinence risk prediction models during pregnancy and postpartum were reviewed, with a view to improving the understanding of health care workers on stress urinary incontinence risk prediction models during pregnancy and postpartum, and providing references for promoting the health management of female patients.
5.Reconstruction of palmar soft tissue defects of two adjacent fingers with bilobed perforator flap of medial foot artery
Shengquan REN ; Zhenlu CAO ; Zhengdan WANG ; Caifeng WU ; Chunlei LIU ; Xiaoheng DING
Chinese Journal of Microsurgery 2024;47(6):625-629
Objective:To explore the clinical effect of reconstruction of soft tissue defect on the palmar side of 2 adjacent fingers with bilobed perforator flap of medial foot artery.Methods:From September 2020 to September 2023, 6 patients with soft tissue defects on the palmar side of 2 adjacent fingers were treated in the Department of Hand and Foot Microsurgery, the Affiliated Hospital of Qingdao University. After admission, Doppler ultrasound scan was performed to locate the perforating branches of the deep and superficial branches of medial foot artery, as well as the course of medial foot artery. A bilobed flap with two perforating branches of medial foot artery was used to reconstruct the soft tissue defects on the palmar side of 2 adjacent fingers. The perforators of medial foot artery were anastomosed with the proper palmar digital arteries, and the accompanying veins was anastomosed with the dorsal digital veins. The branches of saphenous nerve were anastomosed with the proper palmar digital nerves. The sizes of soft tissue defect were 4.5 cm×2.0 cm-3.0 cm×1.5 cm, and the flaps sized 5.0 cm×2.5 cm-3.5 cm×2.0 cm. All donor sites for the perforator flaps were covered by artificial dermis (4 patients) or autologous skin grafts (2 patients). Short and long-term follow-up for flap survival, flap shape, scar, and functions of interphalangeal joint and metacarpophalangeal joint function were evaluated in outpatient clinic and WeChat reviews.Results:All the bilobed perforator flaps of medial foot artery survived in 6 patients. There was no infection in the flap and donor area. Wounds in fingers and dornor sites in foot all healed well. Postoperative follow-up ranged 4-12 months, with an average of 9.3 months. The sensation of the palmar fingers recovered well with TPD at 7-10 mm and at 8.5 mm in average. The sensation recoveries were up to S 3-S 4. According to the Evaluation Trial Standards of Upper Limb Partial Function of Hand Surgery of the Chinese Medical Association, 5 patients (10 fingers) were rated as excellent and 1 patient (2 fingers) as good. The donor sites healed well and walking, running, jumping, mountaineering and other food motions were not affected, and without any obvious discomfort. According to the American Orthopedic Foot and Ankle Societ (AOFAS) ankle-hindfoot score, the ankle functions of 6 patients were evaluated as excellent. Conclusion:A bilobed perforator flap of medial foot artery is applied to reconstruct the soft tissue defects on the palmar side of 2 adjacent fingers. It can simultaneously reconstruct 2 defects in a single surgery, and offer a fast functional recovery and aesthetical appearance.
6.Force-induced Caspase-1-dependent pyroptosis regulates orthodontic tooth movement.
Liyuan CHEN ; Huajie YU ; Zixin LI ; Yu WANG ; Shanshan JIN ; Min YU ; Lisha ZHU ; Chengye DING ; Xiaolan WU ; Tianhao WU ; Chunlei XUN ; Yanheng ZHOU ; Danqing HE ; Yan LIU
International Journal of Oral Science 2024;16(1):3-3
Pyroptosis, an inflammatory caspase-dependent programmed cell death, plays a vital role in maintaining tissue homeostasis and activating inflammatory responses. Orthodontic tooth movement (OTM) is an aseptic force-induced inflammatory bone remodeling process mediated by the activation of periodontal ligament (PDL) progenitor cells. However, whether and how force induces PDL progenitor cell pyroptosis, thereby influencing OTM and alveolar bone remodeling remains unknown. In this study, we found that mechanical force induced the expression of pyroptosis-related markers in rat OTM and alveolar bone remodeling process. Blocking or enhancing pyroptosis level could suppress or promote OTM and alveolar bone remodeling respectively. Using Caspase-1-/- mice, we further demonstrated that the functional role of the force-induced pyroptosis in PDL progenitor cells depended on Caspase-1. Moreover, mechanical force could also induce pyroptosis in human ex-vivo force-treated PDL progenitor cells and in compressive force-loaded PDL progenitor cells in vitro, which influenced osteoclastogenesis. Mechanistically, transient receptor potential subfamily V member 4 signaling was involved in force-induced Caspase-1-dependent pyroptosis in PDL progenitor cells. Overall, this study suggested a novel mechanism contributing to the modulation of osteoclastogenesis and alveolar bone remodeling under mechanical stimuli, indicating a promising approach to accelerate OTM by targeting Caspase-1.
Animals
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Humans
;
Mice
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Rats
;
Bone Remodeling/physiology*
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Caspase 1
;
Periodontal Ligament
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Pyroptosis
;
Tooth Movement Techniques
7.Efficacy and safety of CM310 in moderate-to-severe atopic dermatitis: A multicenter, randomized, double-blind, placebo-controlled phase 2b trial
Yan ZHAO ; Jianzhong ZHANG ; Bin YANG ; Jingyi LI ; Yangfeng DING ; Liming WU ; Litao ZHANG ; Jinyan WANG ; Xiaohong ZHU ; Furen ZHANG ; Xiaohua TAO ; Yumei LI ; Chunlei ZHANG ; Linfeng LI ; Jianyun LU ; Qingchun DIAO ; Qianjin LU ; Xiaoyong MAN ; Fuqiu LI ; Xiujuan XIA ; Hao CHENG ; Yingmin JIA ; Guoqing ZHAO ; Jinchun YAN ; Bo CHEN
Chinese Medical Journal 2024;137(2):200-208
Background::Atopic dermatitis (AD) affects approximately 10% of adults worldwide. CM310 is a humanized monoclonal antibody targeting interleukin-4 receptor alpha that blocks interleukin-4 and interleukin-13 signaling. This trial aimed to evaluate the efficacy and safety of CM310 in Chinese adults with moderate-to-severe AD.Methods::This multicenter, randomized, double-blind, placebo-controlled, phase 2b trial was conducted in 21 medical institutions in China from February to November 2021. Totally 120 eligible patients were enrolled and randomized (1:1:1) to receive subcutaneous injections of 300 mg CM310, 150 mg CM310, or placebo every 2 weeks for 16 weeks, followed by an 8-week follow-up period. The primary endpoint was the proportion of patients achieving ≥75% improvement in the Eczema Area and Severity Index (EASI-75) score from baseline at week 16. Safety and pharmacodynamics were also studied.Results::At week 16, the proportion of EASI-75 responders from baseline was significantly higher in the CM310 groups (70% [28/40] for high-dose and 65% [26/40] for low-dose) than that in the placebo group (20%[8/40]). The differences in EASI-75 response rate were 50% (high vs. placebo, 95% CI 31%–69%) and 45% (low vs. placebo, 95% CI 26%–64%), with both P values <0.0001. CM310 at both doses also significantly improved the EASI score, Investigator’s Global Assessment score, daily peak pruritus Numerical Rating Scale, AD-affected body surface area, and Dermatology Life Quality Index compared with placebo. CM310 treatment reduced levels of thymus and activation-regulated chemokine, total immunoglobulin E, lactate dehydrogenase, and blood eosinophils. The incidence of treatment-emergent adverse events (TEAEs) was similar among all three groups, with the most common TEAEs reported being upper respiratory tract infection, atopic dermatitis, hyperlipidemia, and hyperuricemia. No severe adverse events were deemed to be attributed to CM310. Conclusion::CM310 at 150 mg and 300 mg every 2 weeks demonstrated significant efficacy and was well-tolerated in adults with moderate-to-severe AD.Trial Registration::ClinicalTrials.gov, NCT04805411.
8.Force-induced Caspase-1-dependent pyroptosis regulates orthodontic tooth movement
Chen LIYUAN ; Yu HUAJIE ; Li ZIXIN ; Wang YU ; Jin SHANSHAN ; Yu MIN ; Zhu LISHA ; Ding CHENGYE ; Wu XIAOLAN ; Wu TIANHAO ; Xun CHUNLEI ; Zhou YANHENG ; He DANQING ; Liu YAN
International Journal of Oral Science 2024;16(2):238-250
Pyroptosis,an inflammatory caspase-dependent programmed cell death,plays a vital role in maintaining tissue homeostasis and activating inflammatory responses.Orthodontic tooth movement(OTM)is an aseptic force-induced inflammatory bone remodeling process mediated by the activation of periodontal ligament(PDL)progenitor cells.However,whether and how force induces PDL progenitor cell pyroptosis,thereby influencing OTM and alveolar bone remodeling remains unknown.In this study,we found that mechanical force induced the expression of pyroptosis-related markers in rat OTM and alveolar bone remodeling process.Blocking or enhancing pyroptosis level could suppress or promote OTM and alveolar bone remodeling respectively.Using Caspase-1-/-mice,we further demonstrated that the functional role of the force-induced pyroptosis in PDL progenitor cells depended on Caspase-1.Moreover,mechanical force could also induce pyroptosis in human ex-vivo force-treated PDL progenitor cells and in compressive force-loaded PDL progenitor cells in vitro,which influenced osteoclastogenesis.Mechanistically,transient receptor potential subfamily V member 4 signaling was involved in force-induced Caspase-1-dependent pyroptosis in PDL progenitor cells.Overall,this study suggested a novel mechanism contributing to the modulation of osteoclastogenesis and alveolar bone remodeling under mechanical stimuli,indicating a promising approach to accelerate OTM by targeting Caspase-1.
9.Force-induced Caspase-1-dependent pyroptosis regulates orthodontic tooth movement
Chen LIYUAN ; Yu HUAJIE ; Li ZIXIN ; Wang YU ; Jin SHANSHAN ; Yu MIN ; Zhu LISHA ; Ding CHENGYE ; Wu XIAOLAN ; Wu TIANHAO ; Xun CHUNLEI ; Zhou YANHENG ; He DANQING ; Liu YAN
International Journal of Oral Science 2024;16(2):238-250
Pyroptosis,an inflammatory caspase-dependent programmed cell death,plays a vital role in maintaining tissue homeostasis and activating inflammatory responses.Orthodontic tooth movement(OTM)is an aseptic force-induced inflammatory bone remodeling process mediated by the activation of periodontal ligament(PDL)progenitor cells.However,whether and how force induces PDL progenitor cell pyroptosis,thereby influencing OTM and alveolar bone remodeling remains unknown.In this study,we found that mechanical force induced the expression of pyroptosis-related markers in rat OTM and alveolar bone remodeling process.Blocking or enhancing pyroptosis level could suppress or promote OTM and alveolar bone remodeling respectively.Using Caspase-1-/-mice,we further demonstrated that the functional role of the force-induced pyroptosis in PDL progenitor cells depended on Caspase-1.Moreover,mechanical force could also induce pyroptosis in human ex-vivo force-treated PDL progenitor cells and in compressive force-loaded PDL progenitor cells in vitro,which influenced osteoclastogenesis.Mechanistically,transient receptor potential subfamily V member 4 signaling was involved in force-induced Caspase-1-dependent pyroptosis in PDL progenitor cells.Overall,this study suggested a novel mechanism contributing to the modulation of osteoclastogenesis and alveolar bone remodeling under mechanical stimuli,indicating a promising approach to accelerate OTM by targeting Caspase-1.
10.Force-induced Caspase-1-dependent pyroptosis regulates orthodontic tooth movement
Chen LIYUAN ; Yu HUAJIE ; Li ZIXIN ; Wang YU ; Jin SHANSHAN ; Yu MIN ; Zhu LISHA ; Ding CHENGYE ; Wu XIAOLAN ; Wu TIANHAO ; Xun CHUNLEI ; Zhou YANHENG ; He DANQING ; Liu YAN
International Journal of Oral Science 2024;16(2):238-250
Pyroptosis,an inflammatory caspase-dependent programmed cell death,plays a vital role in maintaining tissue homeostasis and activating inflammatory responses.Orthodontic tooth movement(OTM)is an aseptic force-induced inflammatory bone remodeling process mediated by the activation of periodontal ligament(PDL)progenitor cells.However,whether and how force induces PDL progenitor cell pyroptosis,thereby influencing OTM and alveolar bone remodeling remains unknown.In this study,we found that mechanical force induced the expression of pyroptosis-related markers in rat OTM and alveolar bone remodeling process.Blocking or enhancing pyroptosis level could suppress or promote OTM and alveolar bone remodeling respectively.Using Caspase-1-/-mice,we further demonstrated that the functional role of the force-induced pyroptosis in PDL progenitor cells depended on Caspase-1.Moreover,mechanical force could also induce pyroptosis in human ex-vivo force-treated PDL progenitor cells and in compressive force-loaded PDL progenitor cells in vitro,which influenced osteoclastogenesis.Mechanistically,transient receptor potential subfamily V member 4 signaling was involved in force-induced Caspase-1-dependent pyroptosis in PDL progenitor cells.Overall,this study suggested a novel mechanism contributing to the modulation of osteoclastogenesis and alveolar bone remodeling under mechanical stimuli,indicating a promising approach to accelerate OTM by targeting Caspase-1.

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