1.Abnormal cerebral cortex structure in patients with different subtypes of attention deficit hyperactivity disorder
Kangcheng WANG ; Yuan YAO ; Lingling GUO ; Chao CHE ; Xinjuan JIN ; Runyu CHAI ; Kunping CHEN ; Yuling FENG ; Jie XING ; Aihua CAO
Chinese Journal of Psychiatry 2021;54(5):363-373
Objective:The study aims to explore the abnormal characteristics in cerebral cortex among children with different subtypes of attention deficit hyperactivity disorder (ADHD).Methods:Four hundred and twelve samples were obtained from the Healthy Brain Network project of American Child Mind Institute. There were 288 children with ADHD (all subjects: age,M=10.03,SD=3.11; 151 of ADHD-C, 20 of ADHD-H, and 117 of ADHD-I) and 124 healthy controls (age,M=9.98,SD=2.98). Using FreeSurfer software, we processed the brain structure images and obtained the cortical volume, cortical thickness and surface area for each subject. Analysis of Variance (ANOVA) and post hoc comparison analyses were conducted.Results:ANOVA analysis showed significant differences of the cortical volume located in the left superior parietal gyrus ( Z=5.94) and superior temporal gyrus ( Z=5.49) among the 3 subtypes of ADHD children and the healthy controls (Monte Carlo, P<0.05). Compared with the healthy controls, ADHD-H group exhibited an increased cortical volume in the left superior parietal gyrus ( Z=6.79), while the ADHD-I group had a decreased volume in the left superior temporal gyrus ( Z=-5.12) and lateral occipital cortex ( Z=-6.40). ADHD-C group also had a decreased volume in the left lateral occipital cortex ( Z=-3.37). Among 3 subtypes of ADHD patients, both ADHD-I and ADHD-C groups had a smaller volume in the left superior parietal gyrus than that of the ADHD-H group (ADHD-I: Z=-7.33,MNI coordinate:x=-26.8,y=-60.6,z=45.4; ADHD-C: Z=-7.14,MNI coordinate:x=-26.6,y=-60.2,z=45.4). Additionally, there was no statistical difference in cortical volume between the ADHD-I and ADHD-C group (Monte Carlo, P>0.05). Subsequent supplementary analyses showed that the sample size and age had no significant effect on the above results. Moreover, analysis of cortical thickness and the surface area showed that the abnormality of the cortical volume in different ADHD subtypes was mainly determined by the surface area of the cerebral cortex. Conclusion:Cortical measures in the superior parietal gyrus might be the crucial features that distinguishes the different subtypes of ADHD. These results enable us to further explore the neurodevelopmental mechanism of ADHD and guide the precise and specific clinical treatment.
2.Abnormal cerebral cortex structure in patients with different subtypes of attention deficit hyperactivity disorder
Kangcheng WANG ; Yuan YAO ; Lingling GUO ; Chao CHE ; Xinjuan JIN ; Runyu CHAI ; Kunping CHEN ; Yuling FENG ; Jie XING ; Aihua CAO
Chinese Journal of Psychiatry 2021;54(5):363-373
Objective:The study aims to explore the abnormal characteristics in cerebral cortex among children with different subtypes of attention deficit hyperactivity disorder (ADHD).Methods:Four hundred and twelve samples were obtained from the Healthy Brain Network project of American Child Mind Institute. There were 288 children with ADHD (all subjects: age,M=10.03,SD=3.11; 151 of ADHD-C, 20 of ADHD-H, and 117 of ADHD-I) and 124 healthy controls (age,M=9.98,SD=2.98). Using FreeSurfer software, we processed the brain structure images and obtained the cortical volume, cortical thickness and surface area for each subject. Analysis of Variance (ANOVA) and post hoc comparison analyses were conducted.Results:ANOVA analysis showed significant differences of the cortical volume located in the left superior parietal gyrus ( Z=5.94) and superior temporal gyrus ( Z=5.49) among the 3 subtypes of ADHD children and the healthy controls (Monte Carlo, P<0.05). Compared with the healthy controls, ADHD-H group exhibited an increased cortical volume in the left superior parietal gyrus ( Z=6.79), while the ADHD-I group had a decreased volume in the left superior temporal gyrus ( Z=-5.12) and lateral occipital cortex ( Z=-6.40). ADHD-C group also had a decreased volume in the left lateral occipital cortex ( Z=-3.37). Among 3 subtypes of ADHD patients, both ADHD-I and ADHD-C groups had a smaller volume in the left superior parietal gyrus than that of the ADHD-H group (ADHD-I: Z=-7.33,MNI coordinate:x=-26.8,y=-60.6,z=45.4; ADHD-C: Z=-7.14,MNI coordinate:x=-26.6,y=-60.2,z=45.4). Additionally, there was no statistical difference in cortical volume between the ADHD-I and ADHD-C group (Monte Carlo, P>0.05). Subsequent supplementary analyses showed that the sample size and age had no significant effect on the above results. Moreover, analysis of cortical thickness and the surface area showed that the abnormality of the cortical volume in different ADHD subtypes was mainly determined by the surface area of the cerebral cortex. Conclusion:Cortical measures in the superior parietal gyrus might be the crucial features that distinguishes the different subtypes of ADHD. These results enable us to further explore the neurodevelopmental mechanism of ADHD and guide the precise and specific clinical treatment.
3.Preparation and application of polyclonal antibody of human transcription factor CTCF N terminus protein.
Yingchun ZHANG ; Lei JIANG ; Ling WEI ; Xinjuan CHAI ; Yajun GE ; Yang QIN
Journal of Biomedical Engineering 2010;27(2):379-383
To investigate the function of CTCF and understand the pathogenesis of tumors better, we produced rabbit polyclonal antibody of human transcription factor CTCF protein and detected its expression in several kinds of human cancer cells and tissues. GST fusion protein of human CTCF-N domain was purified by GSTrap-FF affinity chromatography and was successfully expressed under induction of IPTG in E. coli BL21. Western blotting analysis demonstrated that the polyclonal antibody can recognize the endogenous CTCF from HepG2, MCF-7 and HeLa cells specifically. The produced antibodies can be used for gene expression regulation and tissue distribution study at protein level.
Animals
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Antibodies
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immunology
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metabolism
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CCCTC-Binding Factor
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Escherichia coli
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genetics
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metabolism
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Genetic Vectors
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genetics
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Glutathione Transferase
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biosynthesis
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genetics
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HeLa Cells
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Hep G2 Cells
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Humans
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Rabbits
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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immunology
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Repressor Proteins
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biosynthesis
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genetics
;
immunology

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