1.Development and validation of an oral frailty risk prediction model for lung cancer patients undergoing chemotherapy
Lijuan LIU ; Jianqin LIN ; Lei YE ; Xiaohui JIANG ; Haiyu LIU ; Yanan HANG ; Sijing PENG ; Zijun DU
Modern Clinical Nursing 2025;24(9):17-26
Objective To investigate the status of oral frailty(OF)in patients who underwent chemotherapy for lung cancer,identify key factors influencing OF,and develop a risk prediction model.Methods Using convenience sampling,431 lung cancer inpatient were recruited from three Tier-IIIA hospitals in Jiangsu Province between September and November 2024 as the training cohort.The patients were divided into OF and non-OF groups.Relevant data were compared between the two groups.Multifactorial logistic regression analysis was performed to determine factors that associated with OF,and a risk prediction model was created accordingly.Receiver operating characteristic(ROC)curve analysis was used to predict model performance.In December 2024,additional 185 patients from one other Tier-IIIA hospitals were recruited to validate the developed model.Results The prevalence of OF among lung-cancer patients undergoing chemotherapy was 58.93%.Following listed items were identified as the risk factors of OF(all P<0.05):older in age(OR=3.420),poor education(OR=0.030),brain metastasis(OR=7.880),high nutritional risk screening 2002 score(OR=1.550),elevated C-reactive protein(OR=1.100),and elevated lactate dehydrogenase(OR=1.010).ROC area under the curve(AUC)of the model was 0.860(95%CI:0.830-0.900)in modelling cohort and 0.840(95%CI:0.780-0.900)in validation cohort.Hosmer-Lemeshow goodness-of-fit test yielded χ 2=4.870,P=0.770 for the training set and χ 2=2.770,P=0.950 for the validation set.Conclusion The risk prediction model for OF developed in this study demonstrates a good predictive performance and can facilitate early identification of high-risk patients,thereby providing a scientific basis for clinical interventions.
2.Development and validation of an oral frailty risk prediction model for lung cancer patients undergoing chemotherapy
Lijuan LIU ; Jianqin LIN ; Lei YE ; Xiaohui JIANG ; Haiyu LIU ; Yanan HANG ; Sijing PENG ; Zijun DU
Modern Clinical Nursing 2025;24(9):17-26
Objective To investigate the status of oral frailty(OF)in patients who underwent chemotherapy for lung cancer,identify key factors influencing OF,and develop a risk prediction model.Methods Using convenience sampling,431 lung cancer inpatient were recruited from three Tier-IIIA hospitals in Jiangsu Province between September and November 2024 as the training cohort.The patients were divided into OF and non-OF groups.Relevant data were compared between the two groups.Multifactorial logistic regression analysis was performed to determine factors that associated with OF,and a risk prediction model was created accordingly.Receiver operating characteristic(ROC)curve analysis was used to predict model performance.In December 2024,additional 185 patients from one other Tier-IIIA hospitals were recruited to validate the developed model.Results The prevalence of OF among lung-cancer patients undergoing chemotherapy was 58.93%.Following listed items were identified as the risk factors of OF(all P<0.05):older in age(OR=3.420),poor education(OR=0.030),brain metastasis(OR=7.880),high nutritional risk screening 2002 score(OR=1.550),elevated C-reactive protein(OR=1.100),and elevated lactate dehydrogenase(OR=1.010).ROC area under the curve(AUC)of the model was 0.860(95%CI:0.830-0.900)in modelling cohort and 0.840(95%CI:0.780-0.900)in validation cohort.Hosmer-Lemeshow goodness-of-fit test yielded χ 2=4.870,P=0.770 for the training set and χ 2=2.770,P=0.950 for the validation set.Conclusion The risk prediction model for OF developed in this study demonstrates a good predictive performance and can facilitate early identification of high-risk patients,thereby providing a scientific basis for clinical interventions.
3.Translational Research of Electromagnetic Fields on Diseases Related With Bone Remodeling: Review and Prospects
Peng SHANG ; Jun-Yu LIU ; Sheng-Hang WANG ; Jian-Cheng YANG ; Zhe-Yuan ZHANG ; An-Lin LI ; Hao ZHANG ; Yu-Hong ZENG
Progress in Biochemistry and Biophysics 2025;52(2):439-455
Electromagnetic fields can regulate the fundamental biological processes involved in bone remodeling. As a non-invasive physical therapy, electromagnetic fields with specific parameters have demonstrated therapeutic effects on bone remodeling diseases, such as fractures and osteoporosis. Electromagnetic fields can be generated by the movement of charged particles or induced by varying currents. Based on whether the strength and direction of the electric field change over time, electromagnetic fields can be classified into static and time-varying fields. The treatment of bone remodeling diseases with static magnetic fields primarily focuses on fractures, often using magnetic splints to immobilize the fracture site while studying the effects of static magnetic fields on bone healing. However, there has been relatively little research on the prevention and treatment of osteoporosis using static magnetic fields. Pulsed electromagnetic fields, a type of time-varying field, have been widely used in clinical studies for treating fractures, osteoporosis, and non-union. However, current clinical applications are limited to low-frequency, and research on the relationship between frequency and biological effects remains insufficient. We believe that different types of electromagnetic fields acting on bone can induce various “secondary physical quantities”, such as magnetism, force, electricity, acoustics, and thermal energy, which can stimulate bone cells either individually or simultaneously. Bone cells possess specific electromagnetic properties, and in a static magnetic field, the presence of a magnetic field gradient can exert a certain magnetism on the bone tissue, leading to observable effects. In a time-varying magnetic field, the charged particles within the bone experience varying Lorentz forces, causing vibrations and generating acoustic effects. Additionally, as the frequency of the time-varying field increases, induced currents or potentials can be generated within the bone, leading to electrical effects. When the frequency and power exceed a certain threshold, electromagnetic energy can be converted into thermal energy, producing thermal effects. In summary, external electromagnetic fields with different characteristics can generate multiple physical quantities within biological tissues, such as magnetic, electric, mechanical, acoustic, and thermal effects. These physical quantities may also interact and couple with each other, stimulating the biological tissues in a combined or composite manner, thereby producing biological effects. This understanding is key to elucidating the electromagnetic mechanisms of how electromagnetic fields influence biological tissues. In the study of electromagnetic fields for bone remodeling diseases, attention should be paid to the biological effects of bone remodeling under different electromagnetic wave characteristics. This includes exploring innovative electromagnetic source technologies applicable to bone remodeling, identifying safe and effective electromagnetic field parameters, and combining basic research with technological invention to develop scientifically grounded, advanced key technologies for innovative electromagnetic treatment devices targeting bone remodeling diseases. In conclusion, electromagnetic fields and multiple physical factors have the potential to prevent and treat bone remodeling diseases, and have significant application prospects.
4.Research progress on the comorbidity mechanism of sarcopenia and obesity in the aging population.
Hao-Dong TIAN ; Yu-Kun LU ; Li HUANG ; Hao-Wei LIU ; Hang-Lin YU ; Jin-Long WU ; Han-Sen LI ; Li PENG
Acta Physiologica Sinica 2025;77(5):905-924
The increasing prevalence of aging has led to a rising incidence of comorbidity of sarcopenia and obesity, posing significant burdens on socioeconomic and public health. Current research has systematically explored the pathogenesis of each condition; however, the mechanisms underlying their comorbidity remain unclear. This study reviews the current literature on sarcopenia and obesity in the aging population, focusing on their shared biological mechanisms, which include loss of autophagy, abnormal macrophage function, mitochondrial dysfunction, and reduced sex hormone secretion. It also identifies metabolic mechanisms such as insulin resistance, vitamin D metabolism abnormalities, dysregulation of iron metabolism, decreased levels of nicotinamide adenine dinucleotide, and gut microbiota imbalances. Additionally, this study also explores the important role of genetic factors, such as alleles and microRNAs, in the co-occurrence of sarcopenia and obesity. A better understanding of these mechanisms is vital for developing clinical interventions and preventive strategies.
Humans
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Sarcopenia/physiopathology*
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Obesity/physiopathology*
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Aging/physiology*
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Autophagy/physiology*
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Insulin Resistance
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Comorbidity
;
Vitamin D/metabolism*
;
Gonadal Steroid Hormones/metabolism*
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Gastrointestinal Microbiome
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Mitochondria
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MicroRNAs
5.Effects of Jianpi Huatan Prescription on Cholesterol Synthesis in Liver of Subclinical Hypothyroidism Mice Based on cAMP/CREB/HMGCR Signaling Pathway
Peng LUO ; Hang XU ; Lin RUAN ; Dongyu MIN ; Tianshu GAO ; Lianqun JIA ; Yuehua WU ; Wei CHEN
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(1):85-90
Objective To observe the effects of Jianpi Huatan Prescription on hepatic cholesterol synthesis in subclinical hypothyroidism(SCH)mice;To discuss its mechanism based on cAMP/CREB/HMGCR signaling pathway.Methods Totally 80 C57BL/6 male mice were randomly divided into control group(10 mice)and modeling group(70 mice),and the modeling group was given methimazole 0.08 mg/(kg·d)in drinking water for 16 weeks to establish a SCH mdoel.The model mice were randomly divided into model group,euthyrox group and Jianpi Huatan Prescription high-,medium-and low-dosage groups,with 10 mice in each group,and were given corresponding drugs for gavage for 6 weeks.HE staining and Oil red O staining were used to observe the morphology and lipid deposition of liver tissue,ELISA was used to detect serum contents of thyroid stimulating hormone(TSH),triiodothyronine(T3),thyroid hormone(T4),total cholesterol(TC),triglycerides(TG),and TC,cyclic adenosine monophosphate(cAMP)in liver tissue,Western blot was used to detect the expressions of protein kinase A(PKA),cyclic adenosine response element binding protein(CREB),p-CREB and 3-hydroxy-3-methylglutaryl-CoA reductase(HMGCR)in liver tissue.Results Compared with the control group,the liver tissue of mice in the model group showed fat vacuoles of different sizes and obvious lipid deposition;the contents of TSH,TC,TG in serum and TC,cAMP in liver tissue significantly increased(P<0.05,P<0.01);the protein expressions of PKA,p-CREB and HMGCR significantly increased(P<0.01).Compared with the model group,lipid deposition in liver tissue and structure of liver cells was improved to varying degrees in euthyrox group and Jianpi Huatan Prescription high-and medium-dosage groups,and the contents of serum TSH,TC,TG,and liver tissue TC,cAMP decreased(P<0.05,P<0.01);the expressions of PKA,p-CREB and HMGCR protein in liver tissue increased significantly(P<0.01).Conclusion Jianpi Huatan Prescription can significantly inhibit hepatic cholesterol synthesis in SCH mice,and improve hepatic fat vacuoles and lipid deposition,and its mechanism may be to reduce TSH levels in SCH mice by regulating the cAMP/CREB/HMGCR signaling pathway.
6.Effects of Jianpi Huatan Prescription on Cholesterol Synthesis in Liver of Subclinical Hypothyroidism Mice Based on cAMP/CREB/HMGCR Signaling Pathway
Peng LUO ; Hang XU ; Lin RUAN ; Dongyu MIN ; Tianshu GAO ; Lianqun JIA ; Yuehua WU ; Wei CHEN
Chinese Journal of Information on Traditional Chinese Medicine 2025;32(1):85-90
Objective To observe the effects of Jianpi Huatan Prescription on hepatic cholesterol synthesis in subclinical hypothyroidism(SCH)mice;To discuss its mechanism based on cAMP/CREB/HMGCR signaling pathway.Methods Totally 80 C57BL/6 male mice were randomly divided into control group(10 mice)and modeling group(70 mice),and the modeling group was given methimazole 0.08 mg/(kg·d)in drinking water for 16 weeks to establish a SCH mdoel.The model mice were randomly divided into model group,euthyrox group and Jianpi Huatan Prescription high-,medium-and low-dosage groups,with 10 mice in each group,and were given corresponding drugs for gavage for 6 weeks.HE staining and Oil red O staining were used to observe the morphology and lipid deposition of liver tissue,ELISA was used to detect serum contents of thyroid stimulating hormone(TSH),triiodothyronine(T3),thyroid hormone(T4),total cholesterol(TC),triglycerides(TG),and TC,cyclic adenosine monophosphate(cAMP)in liver tissue,Western blot was used to detect the expressions of protein kinase A(PKA),cyclic adenosine response element binding protein(CREB),p-CREB and 3-hydroxy-3-methylglutaryl-CoA reductase(HMGCR)in liver tissue.Results Compared with the control group,the liver tissue of mice in the model group showed fat vacuoles of different sizes and obvious lipid deposition;the contents of TSH,TC,TG in serum and TC,cAMP in liver tissue significantly increased(P<0.05,P<0.01);the protein expressions of PKA,p-CREB and HMGCR significantly increased(P<0.01).Compared with the model group,lipid deposition in liver tissue and structure of liver cells was improved to varying degrees in euthyrox group and Jianpi Huatan Prescription high-and medium-dosage groups,and the contents of serum TSH,TC,TG,and liver tissue TC,cAMP decreased(P<0.05,P<0.01);the expressions of PKA,p-CREB and HMGCR protein in liver tissue increased significantly(P<0.01).Conclusion Jianpi Huatan Prescription can significantly inhibit hepatic cholesterol synthesis in SCH mice,and improve hepatic fat vacuoles and lipid deposition,and its mechanism may be to reduce TSH levels in SCH mice by regulating the cAMP/CREB/HMGCR signaling pathway.
7.Meta-analysis of the role of fibular fixation in tibiofibular fractures
Lin-Lin CONG ; Pin-Pin JIANG ; Hua GUO ; Hang WANG ; Xian-Da CHE ; Chun-Fang WANG ; Wen-Jin LI ; Peng-Cui LI
China Journal of Orthopaedics and Traumatology 2024;37(1):74-80
Objective To compare the role and importance of fibular fixation in tibiofibular fractures by Meta-analysis.Methods The literature related to the comparison of the efficacy of fixation of the fibula with or without fixation on the treatment of tibiofibular fractures was searched through the databases of China Knowledge Network,Wipu,Wanfang,The Cochrane Li-brary,Web of science and Pubmed,and statistical analysis was performed using RevMan 5.3 software.The rates of malrotation,rotational deformity,internal/external deformity,anterior/posterior deformity,non-union,infection,secondary surgery and op-erative time were compared between the fibula fixation and non-fixation groups.Results A total of 11 publications were includ-ed,six randomised controlled trials and five case-control trials,eight of which were of high quality.A total of 813 cases were in-cluded,of which 383 were treated with fibula fixation and 430 with unfixed fibulae.Meta-analysis results showed that fixation of the fibulae in the treatment of tibiofibular fractures reduced the rates of postoperative rotational deformity[RR=0.22,95%CI(0.10,0.45),P<0.000 1]and internal/external deformity[RR=0.34,95%CI(0.14,0.84),P=0.02]and promoted fracture heal-ing[RR=0.76,95%CI(0.58,0.99),P=0.04].In contrast,the rates of poor reduction[RR=0.48,95%CI(0.10,2.33),P=0.36],anterior/posterior deformity[RR=1.50,95%CI(0.76,2.96),P=0.24],infection[RR=1.43,95%CI(0.76,2.72),P=0.27],sec-ondary surgery[RR=1.32,95%CI(0.82,2.11),P=0.25],and operative time[MD=10.21,95%CI(-17.79,38.21),P=0.47]were not statistically significant(P>0.05)for comparison.Conclusion Simultaneous fixation of the tibia and fibula is clinically more effective in the treatment of tibiofibular fractures.
8.Scientific connotation in processing of Aconiti Lateralis Radix Praeparata with Glycyrrhizae Radix et Rhizoma based on "interactions between excipients and herbal medicine and component transformation" dynamic processing.
Yi-Hang ZHAO ; Zhi-Wei WANG ; Lu-Ping YANG ; Xiao-Yu LIN ; Xin-Ru TAN ; Ran XU ; Zhi-Xia WANG ; Liu-Yang ZHANG ; An-Qi XU ; Hai-Min LEI ; Peng-Long WANG ; Xue-Mei HUANG
China Journal of Chinese Materia Medica 2024;49(22):6129-6137
The processing of traditional Chinese medicine(TCM) is a core theory within TCM, embodying deep philosophical, cultural, and natural scientific wisdom. Among the various techniques, the "synergistic processing of medicinal materials and excipients" has garnered significant attention due to its uniqueness. This study explored the impact of the adjuvant Glycyrrhizae Radix et Rhizoma on the dynamic process of component transformation during the processing of Aconiti Lateralis Radix Praeparata using techniques such as acidic dye colorimetry, UPLC-Q-TOF-MS/MS, density functional theory(DFT), and molecular dynamics simulations(MDS). The research revealed that during processing, various alkaloid components in Aconiti Lateralis Radix Praeparata exhibited different weak interactions with glycyrrhizic acid in Glycyrrhizae Radix et Rhizoma, affecting the transformation and content changes of alkaloid components such as aconitine, hypaconitine, and other diester-type alkaloids. This study, based on the dynamic process of "interactions between excipients and herbal medicine and component transformation", elucidated the intrinsic mechanism of processing of Aconiti Lateralis Radix Praeparata with Glycyrrhizae Radix et Rhizoma and provided a reference for understanding the scientific principles underlying the excipient processing of TCM.
Drugs, Chinese Herbal/chemistry*
;
Aconitum/chemistry*
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Excipients/chemistry*
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Glycyrrhiza/chemistry*
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Tandem Mass Spectrometry
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Chromatography, High Pressure Liquid
;
Molecular Dynamics Simulation
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Alkaloids/chemistry*
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Glycyrrhizic Acid/chemistry*
9.Evaluation and optimization of metagenomic sequencing platforms for bloodstream infection samples
Xin PENG ; Hang FAN ; Meng-Nan CUI ; Lei LIN ; Guang-Qian PEI ; Yun-Fei WANG ; Xiu-Juan ZUO ; Xiao-Feng FANG ; Yan GUO ; Yu-Jun CUI
Chinese Journal of Zoonoses 2024;40(10):928-934
This study was aimed at comparing performance differences among three metagenomic sequencing platforms,MGISEQ-2000,Illumina NextSeq 2000,and Ion GeneStudio S5 Plus,to optimize the sequencing process for trace samples.The three sequencing platforms were used to perform high-throughput sequencing on DNA standards and simulated samples.Through analysis of the quality of raw data and microbial detection capabilities,systematic differences among platforms were compared.The sequencing results were optimized for trace samples by incorporation of exogenous nucleic acids during the li-brary preparation process.In terms of data output per batch and base quality,MGISEQ-2000 surpassed the other two plat-forms.Illumina NextSeq 2000 had the lowest proportion of duplicate reads,whereas Ion GeneStudio S5 Plus had the highest proportion,and significant differences were observed across platforms(P<0.001).In sequencing uniformity,MGISEQ-2000 and Illumina NextSeq 2000 were superior to Ion GeneStudio S5 Plus.MGISEQ-2000 provided a substantial advantage in microbial detection capability(P<0.001),but the advantage diminished with decreasing bacterial fluid concentration.Ion GeneStudio S5 Plus had the shortest duration for single-batch sequencing.Moreo-ver,for trace samples with DNA content ≤0.05 ng,the experi-mental group(with added exogenous nucleic acids)achieved a higher number of reads than the control group(without exogenous nucleic acids),with a 11.09±8.03 fold increase.In conclu-sion,the different sequencing platforms each had advantages and disadvantages,thus allowing researchers to choose the appro-priate platform according to specific needs.Furthermore,the addition of exogenous nucleic acids improved the microorganism detection efficiency,and provided better support for subsequent diagnosis and evaluation of results.
10.Construction of TRAF6 ubiquitin site 331 mutant colorectal cancer cell stable line and its effect on biological behavior of colorectal cancer cells.
Ruo Fan HE ; Qin WANG ; Chun Lin LIN ; Peng Hang LIN ; Hui CHEN ; Yong Jian HUANG ; Shu Gang YANG ; Jian Xin YE ; Guang Wei ZHU
Chinese Journal of Oncology 2023;45(2):129-137
Objective: To investigate the effect of ubiquitin mutation at position 331 of tumor necrosis factor receptor related factor 6 (TRAF6) on the biological characteristics of colorectal cancer cells and its mechanism. Methods: lentivirus wild type (pCDH-3×FLAG-TRAF6) and mutation (pCDH-3×FLAG-TRAF6-331mut) of TRAF6 gene expression plasmid with green fluorescent protein tag were used to infect colorectal cancer cells SW480 and HCT116, respectively. The infection was observed by fluorescence microscope, and the expressions of TRAF6 and TRAF6-331mut in cells was detected by western blot. Cell counting kit-8 (CCK-8) and plate cloning test were used to detect the proliferation ability of colorectal cancer cells in TRAF6 group and TRAF6-331mut group, cell scratch test to detect cell migration, Transwell chamber test to detect cell migration and invasion, immunoprecipitation to detect the ubiquitination of TRAF6 and TRAF6-331mut with ubiquitinof lysine binding sites K48 and K63. Western blot was used to detect the effects of TRAF6 and TRAF6-331mut over expression on the nuclear factor kappa-B (NF-κB) and mitogen activated protein kinase mitogen-activated protein kinase (MAPK)/activating protein-1(AP-1) signal pathway. Results: The successful infection of colorectal cancer cells was observed under fluorescence microscope. Western blot detection showed that TRAF6 and TRAF6-331mut were successfully expressed in colorectal cancer cells. The results of CCK-8 assay showed that on the fourth day, the absorbance values of HCT116 and SW480 cells in TRAF6-331mut group were 1.89±0.39 and 1.88±0.24 respectively, which were lower than those in TRAF6 group (2.09±0.12 and 2.17±0.45, P=0.036 and P=0.011, respectively). The results of plate colony formation assay showed that the number of clones of HCT116 and SW480 cells in TRAF6-331mut group was 120±14 and 85±14 respectively, which was lower than those in TRAF6 group (190±21 and 125±13, P=0.001 and P=0.002, respectively). The results of cell scratch test showed that after 48 hours, the percentage of wound healing distance of HCT116 and SW480 cells in TRAF6-331mut group was (31±12)% and (33±14)%, respectively, which was lower than those in TRAF6 group [(43±13)% and (43±7)%, P=0.005 and 0.009, respectively]. The results of Transwell migration assay showed that the migration numbers of HCT116 and SW480 cells in TRAF6-331mut group were significantly lower than those in TRAF6 group (P<0.001 and P<0.002, respectively). The results of Transwell invasion assay showed that the number of membrane penetration of HCT116 and SW480 cells in TRAF6-331mut group was significantly lower than those in TRAF6 group (P=0.008 and P=0.009, respectively). The results of immunoprecipitation detection showed that the ubiquitin protein of K48 chain pulled by TRAF6-331mut was lower than that of wild type TRAF6 in 293T cells co-transfected with K48 (0.57±0.19), and the ubiquitin protein of K63 chain pulled down by TRAF6-331mut in 293T cells co-transfected with K63 was lower than that of wild type TRAF6 (0.89±0.08, P<0.001). Western blot assay showed that the protein expression levels of NF-κB, p-NF-κB and p-AP-1 in TRAF6-331mut-HCT116 cells were 0.63±0.08, 0.42±0.08 and 0.60±0.07 respectively, which were lower than those in TRAF6-HCT116 cells (P=0.002, P<0.001 and P<0.001, respectively). The expression level of AP-1 protein in TRAF6-HCT116 cells was 0.89±0.06, compared with that in TRAF6-HCT116 cells. The difference was not statistically significant (P>0.05). The protein expression levels of NF-κB, p-NF-κB and p-AP-1 in TRAF6-331mut-SW480 cells were 0.50±0.06, 0.51±0.04, 0.48±0.02, respectively, which were lower than those in TRAF6-SW480 cells (all P<0.001). There was no significant difference in AP-1 protein expression between TRAF6-331mut-SW480 cells and TRAF6-SW480 cells. Conclusion: The ubiquitin site mutation of TRAF6 gene at 331 may prevent the binding of TRAF6 and ubiquitin lysine sites K48 and K63, and then affect the expressions of proteins related to downstream NF-κB and MAPK/AP-1 signal pathways, and inhibit the proliferation, migration and invasion of colorectal cancer cells.
Humans
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Cell Line, Tumor
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Cell Movement
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Cell Proliferation
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Colorectal Neoplasms/pathology*
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Lysine/metabolism*
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NF-kappa B/metabolism*
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TNF Receptor-Associated Factor 6/metabolism*
;
Transcription Factor AP-1/metabolism*
;
Ubiquitin/metabolism*

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