1.Impact of the CD4~+CD25~(nt/hi)CD127~(lo) regulatory T cells on the immune status and disease progression in HIV-1 infected individuals
Mingkui ZHOU ; Yile XUE ; Juli GONG ; Leiming ZHOU ; Xiaohong ZHENG ; Jing GAI ; Fangwei SHEN ; Wei ZHANG ; Zhen NING ; Qing YUE ; Wei LU ; Qichao PAN ; Laiyi KANG ; Ping ZHONG ; Wensi ZHU ; Ying WANG
Chinese Journal of Immunology 1999;0(12):-
Objective:To investigate the impact of the CD4+CD25nt/hiCD127lo regulatory T cell subset frequency on the immune status and disease progression of Chinese HIV-1 infected individuals.Methods:83 untreated HIV-infected individuals and 312 healthy control individuals of four distinct age groups were enrolled in the research. The CD4+ T cell absolute counts, phenotypes and frequency determination of CD4+CD25nt/hiCD127lo Regulatory T cell subsets was performed on freshly obtained whole blood samples by 3-color immune staining flow cytometry. The HIV-1 specific cellular immune function was test at single cell level by ELISpot. The corresponding plasma viral load was determined by NASBA.Results:The frequency of peripheral CD4+CD25nt/hiCD127lo regulatory T cells of HIV infected individuals in distinct disease progression status was dissimilar in China , and significantly increased in contrast to the healthy controls(P
2.Targeted muscle reinnervation: a surgical technique of human-machine interface for intelligent prosthesis.
Yao GUO ; Wei ZHAO ; Jianping HUANG ; Mingkui SHEN ; Sijing LI ; Cheng LIU ; Xiuyun SU ; Guanglin LI ; Sheng BI ; Guoxian PEI
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(8):1021-1025
OBJECTIVE:
To review targeted muscle reinnervation (TMR) surgery for the construction of intelligent prosthetic human-machine interface, thus providing a new clinical intervention paradigm for the functional reconstruction of residual limbs in amputees.
METHODS:
Extensively consulted relevant literature domestically and abroad and systematically expounded the surgical requirements of intelligent prosthetics, TMR operation plan, target population, prognosis, as well as the development and future of TMR.
RESULTS:
TMR facilitates intuitive control of intelligent prostheses in amputees by reconstructing the "brain-spinal cord-peripheral nerve-skeletal muscle" neurotransmission pathway and increasing the surface electromyographic signals required for pattern recognition. TMR surgery for different purposes is suitable for different target populations.
CONCLUSION
TMR surgery has been certified abroad as a transformative technology for improving prosthetic manipulation, and is expected to become a new clinical paradigm for 2 million amputees in China.
Humans
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Artificial Limbs
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Muscle, Skeletal
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Neurosurgical Procedures
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Plastic Surgery Procedures
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Prosthesis Implantation