1.Corrective Effects of Three-Stage Structured Tai Chi on Abnormal Neck and Shoulder Posture:A Biomechanics-Based Randomized Controlled Trial
Yulei RAN ; Jing ZHANG ; Chao YANG ; Liyuan ZHANG ; Tingting HAN ; Weibiao LI ; Xiang GUO ; Xianhui GUO
Journal of Traditional Chinese Medicine 2026;67(16):1752-1758
ObjectiveTo evaluate the corrective effects of a three-stage structured Tai Chi training program on abnormal neck and shoulder posture from a biomechanical perspective. MethodsEighty-two participants with abnormal neck and shoulder posture were randomly assigned to a treatment group and a control group, with 41 participants in each group. The treatment group received three-stage structured Tai Chi training six times per week, while the control group received online health education once per week. Both interventions lasted for 12 weeks. The primary outcome cervical postural deviation angle, and the secondary outcomes including cervical loading and bilateral shoulder horizontal deviation angle, were assessed before intervention, after 6 weeks and 12 weeks of intervention. Safety was also evaluated. ResultsUltimately, 40 participants from each group were included in the analysis. In the treatment group, cervical postural deviation angle and cervical spine loading were significantly reduced after 12 weeks of intervention compared with baseline and after 6 weeks of intervention. The bilateral shoulder horizontal deviation angle decreased significantly after both 6 and 12 weeks of intervention compared with baseline (P<0.05). In the control group, cervical spine loading was reduced after 6 and 12 weeks of intervention compared with baseline (P< 0.05). After 12 weeks of intervention, the treatment group showed lower cervical postural deviation angle and bilateral shoulder horizontal deviation angle than the control group, whereas cervical loading was higher in the treatment group after 6 weeks of intervention (P<0.05). Significant differences were observed between groups in the changes from baseline to week 12 for cervical postural deviation angle and bilateral shoulder horizontal deviation angle, as well as in the changes from baseline to week 6 for cervical loading and bilateral shoulder horizontal deviation angle (P< 0.05). No significant adverse events occurred in either group during the intervention period. ConclusionThree-stage structured Tai Chi can effectively improve abnormal neck and shoulder posture, demonstrating good safety and feasibility.
2.Pharmacological inhibition of BAP1 recruits HERC2 to competitively dissociate BRCA1-BARD1, suppresses DNA repair and sensitizes CRC to radiotherapy.
Xin YUE ; Tingyu LIU ; Xuecen WANG ; Weijian WU ; Gesi WEN ; Yang YI ; Jiaxin WU ; Ziyang WANG ; Weixiang ZHAN ; Ruirui WU ; Yuan MENG ; Zhirui CAO ; Liyuan LE ; Wenyan QIU ; Xiaoyue ZHANG ; Zhenyu LI ; Yong CHEN ; Guohui WAN ; Xianzhang BU ; Zhenwei PENG ; Ran-Yi LIU
Acta Pharmaceutica Sinica B 2023;13(8):3382-3399
Radiotherapy is widely used in the management of advanced colorectal cancer (CRC). However, the clinical efficacy is limited by the safe irradiated dose. Sensitizing tumor cells to radiotherapy via interrupting DNA repair is a promising approach to conquering the limitation. The BRCA1-BARD1 complex has been demonstrated to play a critical role in homologous recombination (HR) DSB repair, and its functions may be affected by HERC2 or BAP1. Accumulated evidence illustrates that the ubiquitination-deubiquitination balance is involved in these processes; however, the precise mechanism for the cross-talk among these proteins in HR repair following radiation hasn't been defined. Through activity-based profiling, we identified PT33 as an active entity for HR repair suppression. Subsequently, we revealed that BAP1 serves as a novel molecular target of PT33 via a CRISPR-based deubiquitinase screen. Mechanistically, pharmacological covalent inhibition of BAP1 with PT33 recruits HERC2 to compete with BARD1 for BRCA1 interaction, interrupting HR repair. Consequently, PT33 treatment can substantially enhance the sensitivity of CRC cells to radiotherapy in vitro and in vivo. Overall, these findings provide a mechanistic basis for PT33-induced HR suppression and may guide an effective strategy to improve therapeutic gain.
3.Animal models in diabetes mellitus research
Dan SONG ; Liyuan RAN ; Rujiao JIANG ; Yingjie WU
Chinese Journal of Comparative Medicine 2016;26(9):83-87
In spite of much progress on its mechanism, diagnosis and treatment, diabetes mellitus remains a public health challenge. The harm of diabetes is not significantly reduced, instead shows an increasing tendency year by year. To achieve an in?depth and comprehensive understanding of the underlying mechanism, and to develop efficacious, stable and hypoglycemia?risk free drugs, it is crucial to gain more knowledge about diabetes from animal models. In this review, the types of diabetes animal models, modeling methods, the advantages and disadvantages, their applicable scope are discussed aiming to provide a reference for researchers to choose appropriate animal models.

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