3,069 Works

Additional file 1 of Pseudomonas aeruginosa biofilm dispersion by the mouse antimicrobial peptide CRAMP

Yang Zhang, Peng Cheng, Shiyuan Wang, Xiaofen Li, Lianci Peng, Rendong Fang, Jing Xiong, Hui Li, Cui Mei, Jiye Gao, Zhenhui Song, Dengfeng Xu, Lizhi Fu, Chenghong Li, Xueqing Wu, Yuzhang He & Hongwei Chen
Additional file 1. Detailed methods or results covered in this article.

Additional file 4 of Pseudomonas aeruginosa biofilm dispersion by the mouse antimicrobial peptide CRAMP

Yang Zhang, Peng Cheng, Shiyuan Wang, Xiaofen Li, Lianci Peng, Rendong Fang, Jing Xiong, Hui Li, Cui Mei, Jiye Gao, Zhenhui Song, Dengfeng Xu, Lizhi Fu, Chenghong Li, Xueqing Wu, Yuzhang He & Hongwei Chen
Additional file 4. Differentially metabolic substance data.

Additional file 4 of Pseudomonas aeruginosa biofilm dispersion by the mouse antimicrobial peptide CRAMP

Yang Zhang, Peng Cheng, Shiyuan Wang, Xiaofen Li, Lianci Peng, Rendong Fang, Jing Xiong, Hui Li, Cui Mei, Jiye Gao, Zhenhui Song, Dengfeng Xu, Lizhi Fu, Chenghong Li, Xueqing Wu, Yuzhang He & Hongwei Chen
Additional file 4. Differentially metabolic substance data.

Pseudomonas aeruginosa biofilm dispersion by the mouse antimicrobial peptide CRAMP

Yang Zhang, Peng Cheng, Shiyuan Wang, Xiaofen Li, Lianci Peng, Rendong Fang, Jing Xiong, Hui Li, Cui Mei, Jiye Gao, Zhenhui Song, Dengfeng Xu, Lizhi Fu, Chenghong Li, Xueqing Wu, Yuzhang He & Hongwei Chen
Abstract Pseudomonas aeruginosa (P. aeruginosa) is a known bacterium that produces biofilms and causes severe infection. Furthermore, P. aeruginosa biofilms are extremely difficult to eradicate, leading to the development of chronic and antibiotic-resistant infections. Our previous study showed that a cathelicidin-related antimicrobial peptide (CRAMP) inhibits the formation of P. aeruginosa biofilms and markedly reduces the biomass of preformed biofilms, while the mechanism of eradicating bacterial biofilms remains elusive. Therefore, in this study, the potential mechanism...

sj-docx-1-dhj-10.1177_20552076221131141 - Supplemental material for Global trends and hotspots in research on extended reality in sports: A bibliometric analysis from 2000 to 2021

Jie Zhao, Jie Mao & Jing Tan
Supplemental material, sj-docx-1-dhj-10.1177_20552076221131141 for Global trends and hotspots in research on extended reality in sports: A bibliometric analysis from 2000 to 2021 by Jie Zhao, Jie Mao and Jing Tan in Digital Health

Additional file 1 of Anatomical distance affects functional connectivity at rest in medicine-free obsessive–compulsive disorder

Dan Lv, Yangpan Ou, Yunhui Chen, Zhenning Ding, Jidong Ma, Chuang Zhan, Ru Yang, Tinghuizi Shang, Guangfeng Zhang, Xiaoyu Bai, Zhenghai Sun, Jian Xiao, Xiaoping Wang, Wenbin Guo & Ping Li
Additional file 1: TableS1 Comparison of GMV volume between two groups.

Additional file 1 of CXCL12/CXCR7/β-arrestin1 biased signal promotes epithelial-to-mesenchymal transition of colorectal cancer by repressing miRNAs through YAP1 nuclear translocation

Mahan Si, Yujia Song, Xiaohui Wang, Dong Wang, Xiaohui Liu, Xianjun Qu, Zhiyu Song & Xinfeng Yu
Additional file 1: Fig. S1. A, B RT-qPCR and Western blot analysis of the expression of CXCR7 at mRNA and protein levels in CRC cells. Fig. S2. Transwell assay was performed in HCT116CXCR7 and SW620CXCR7 cells compared with controls. Migrating cells were quantified. **P < 0.01. ***P < 0.001. Fig. S3. The correlations of CXCR7 (ACKR3) with ZEB1 and SNAI1 were determined in CRC tissues by Gene Expression Profiling Interactive Analysis (GEPIA). Fig. S4. A,...

Additional file 1 of CXCL12/CXCR7/β-arrestin1 biased signal promotes epithelial-to-mesenchymal transition of colorectal cancer by repressing miRNAs through YAP1 nuclear translocation

Mahan Si, Yujia Song, Xiaohui Wang, Dong Wang, Xiaohui Liu, Xianjun Qu, Zhiyu Song & Xinfeng Yu
Additional file 1: Fig. S1. A, B RT-qPCR and Western blot analysis of the expression of CXCR7 at mRNA and protein levels in CRC cells. Fig. S2. Transwell assay was performed in HCT116CXCR7 and SW620CXCR7 cells compared with controls. Migrating cells were quantified. **P < 0.01. ***P < 0.001. Fig. S3. The correlations of CXCR7 (ACKR3) with ZEB1 and SNAI1 were determined in CRC tissues by Gene Expression Profiling Interactive Analysis (GEPIA). Fig. S4. A,...

CXCL12/CXCR7/β-arrestin1 biased signal promotes epithelial-to-mesenchymal transition of colorectal cancer by repressing miRNAs through YAP1 nuclear translocation

Mahan Si, Yujia Song, Xiaohui Wang, Dong Wang, Xiaohui Liu, Xianjun Qu, Zhiyu Song & Xinfeng Yu
Abstract Background Chemokine CXC motif receptor 7 (CXCR7) is an atypical G protein-coupled receptor (GPCR) that signals in a biased fashion. CXCL12/CXCR7 biased signal has been reported to play crucial roles in multiple stages of colorectal cancer (CRC). However, the mechanism of CXCL12/CXCR7 biased signal in promoting CRC progression and metastasis remains obscure. Results We demonstrate that CXCR7 activation promotes EMT and upregulates the expression of Vimentin and doublecortin-like kinase 1 (DCLK1) in CRC cells...

Healthy Outcomes of Patients with COVID-19 Two Years after the Infection: A Prospective Cohort Study

Dapeng Li, Xuejiao Liao, Zhi Liu, Zhenghua Ma, Jingke Dong, Guoqin Zheng, Mei Zi, Fang Wang, Qing He, Guobao Li, Zheng Zhang & Lei Liu
The long-term effect of coronavirus disease 2019 (COVID-19) has been rarely known. This study aimed to investigate healthy outcomes of COVID-19 survivors up to 2 years after the infection. A total of 155 COVID-19 patients, who were discharged from Shenzhen Third People's Hospital from February 2020 to April 2020, were enrolled and followed up until March 4, 2022. COVID-19 survivors received questionnaires of long COVID symptoms and psychological symptoms, pulmonary function tests, chest computed tomography...

Healthy outcomes of patients with COVID-19 two years after the infection: a prospective cohort study

Dapeng Li, Xuejiao Liao, Zhi Liu, Zhenghua Ma, Jingke Dong, Guoqin Zheng, Mei Zi, Fang Wang, Qing He, Guobao Li, Zheng Zhang & Lei Liu
The long-term effect of coronavirus disease 2019 (COVID-19) has been rarely known. This study aimed to investigate healthy outcomes of COVID-19 survivors up to 2 years after the infection. A total of 155 COVID-19 patients, who were discharged from Shenzhen Third People's Hospital from February 2020 to April 2020, were enrolled and followed up until March 4, 2022. COVID-19 survivors received questionnaires of long COVID symptoms and psychological symptoms, pulmonary function tests, chest computed tomography...

Additional file 1 of Quantitative parameters of dynamic contrast-enhanced magnetic resonance imaging to predict lymphovascular invasion and survival outcome in breast cancer

Tianfu Lai, Xiaofeng Chen, Zhiqi Yang, Ruibin Huang, Yuting Liao, Xiangguang Chen & Zhuozhi Dai
Supplementary Material 1

sj-pdf-1-mrj-10.1177_00222437221112644 - Supplemental material for Advance Selling in Marketing Channels

Krista J. Li & Xi Li
Supplemental material, sj-pdf-1-mrj-10.1177_00222437221112644 for Advance Selling in Marketing Channels by Krista J. Li and Xi Li in Journal of Marketing Research

Additional file 3 of CCHCR1-astrin interaction promotes centriole duplication through recruitment of CEP72

Zhenguang Ying, Kaifang Wang, Junfeng Wu, Mingyu Wang, Jing Yang, Xia Wang, Guowei Zhou, Haibin Chen, Hongwu Xu, Stephen Cho Wing Sze, Feng Gao, Chunman Li & Ou Sha
Additional file 3: Fig. S3. Apoptosis or cycle changes in astrin-KO cells and identification of astrin-KO cell line. (A) Parental, astrin-KO and HCR-KO HeLa cells were analyzed with astrin, HCR, cyclin B1 and Cleaved PARP antibodies. HeLa cells treated with DMSO, Paclitaxel, Bafilomycin and MG132 were analyzed with Cleaved PARP and HCR antibodies. (B) Parental and astrin-KO HeLa cells were immunoblotted with an astrin antibody.

Additional file 6 of CCHCR1-astrin interaction promotes centriole duplication through recruitment of CEP72

Zhenguang Ying, Kaifang Wang, Junfeng Wu, Mingyu Wang, Jing Yang, Xia Wang, Guowei Zhou, Haibin Chen, Hongwu Xu, Stephen Cho Wing Sze, Feng Gao, Chunman Li & Ou Sha
Additional file 6. Individual data values. Raw data of Fig. 3A,B,F,G,7C and 7I.

CCHCR1-astrin interaction promotes centriole duplication through recruitment of CEP72

Zhenguang Ying, Kaifang Wang, Junfeng Wu, Mingyu Wang, Jing Yang, Xia Wang, Guowei Zhou, Haibin Chen, Hongwu Xu, Stephen Cho Wing Sze, Feng Gao, Chunman Li & Ou Sha
Abstract Background The centrosome is one of the most important non-membranous organelles regulating microtubule organization and progression of cell mitosis. The coiled-coil alpha-helical rod protein 1 (CCHCR1, also known as HCR) gene is considered to be a psoriasis susceptibility gene, and the protein is suggested to be localized to the P-bodies and centrosomes in mammalian cells. However, the exact cellular function of HCR and its potential regulatory role in the centrosomes remain unexplored. Results We...

Additional file 2 of Comparison of different concentrations of a povidone iodine-diluted sitz bath in the prevention of perianal infection in patients undergoing chemotherapy for hematological malignancy: study protocol for a randomized controlled trial

Yuqin Luo, Yingli Wang, Mei Yang, Ting Luo, Fengjiao Chen, Yamei Leng, Li Zhou, Jinbo Fang, Yuan Li & Chen Chen
Additional file 2. SAP.

Additional file 3 of Comparison of different concentrations of a povidone iodine-diluted sitz bath in the prevention of perianal infection in patients undergoing chemotherapy for hematological malignancy: study protocol for a randomized controlled trial

Yuqin Luo, Yingli Wang, Mei Yang, Ting Luo, Fengjiao Chen, Yamei Leng, Li Zhou, Jinbo Fang, Yuan Li & Chen Chen
Additional file 3. Informed consent materials.

Additional file 4 of The FUS/circEZH2/KLF5/ feedback loop contributes to CXCR4-induced liver metastasis of breast cancer by enhancing epithelial-mesenchymal transition

Peng Liu, Zehao Wang, Xueqi Ou, Peng Wu, Yue Zhang, Song Wu, Xiangsheng Xiao, Yuehua Li, Feng Ye & Hailin Tang
Additional file 4. Supplemental Method

Additional file 3 of Genome-wide identification and characterization of lncRNAs in sunflower endosperm

Shuai Yu, Zhichao Zhang, Jing Li, Yanbin Zhu, Yanzhe Yin, Xiaoyu Zhang, Yuxin Dai, Ao Zhang, Cong Li, Yanshu Zhu, Jinjuan Fan, Yanye Ruan & Xiaomei Dong
Additional file 3: Table S3. GO Gene Ontology analysis of co-expressed protein-coding genes with all candidate lncRNAs.

Additional file 4 of Genome-wide identification and characterization of lncRNAs in sunflower endosperm

Shuai Yu, Zhichao Zhang, Jing Li, Yanbin Zhu, Yanzhe Yin, Xiaoyu Zhang, Yuxin Dai, Ao Zhang, Cong Li, Yanshu Zhu, Jinjuan Fan, Yanye Ruan & Xiaomei Dong
Additional file 4: Fig. S1. Expressed lncRNAs in two crosses.

Additional file 5 of Genome-wide identification and characterization of lncRNAs in sunflower endosperm

Shuai Yu, Zhichao Zhang, Jing Li, Yanbin Zhu, Yanzhe Yin, Xiaoyu Zhang, Yuxin Dai, Ao Zhang, Cong Li, Yanshu Zhu, Jinjuan Fan, Yanye Ruan & Xiaomei Dong
Additional file 5: Fig. S2. Expression levels of lncRNAs and PCgenes in sunflower endosperm.

Additional file 7 of Genome-wide identification and characterization of lncRNAs in sunflower endosperm

Shuai Yu, Zhichao Zhang, Jing Li, Yanbin Zhu, Yanzhe Yin, Xiaoyu Zhang, Yuxin Dai, Ao Zhang, Cong Li, Yanshu Zhu, Jinjuan Fan, Yanye Ruan & Xiaomei Dong
Additional file 7: Fig. S4. DNA methylation profiles of protein-coding genes (PCgenes) in sunflower endosperm from SY1.

Additional file 2 of Neomorphic DNA-binding enables tumor-specific therapeutic gene expression in fusion-addicted childhood sarcoma

Tilman L. B. Hölting, Florencia Cidre-Aranaz, Dana Matzek, Bastian Popper, Severin J. Jacobi, Cornelius M. Funk, Florian H. Geyer, Jing Li, Ignazio Piseddu, Bruno L. Cadilha, Stephan Ledderose, Jennifer Zwilling, Shunya Ohmura, David Anz, Annette Künkele, Frederick Klauschen, Thomas G. P. Grünewald & Maximilian M. L. Knott
Additional file 2: Additional Tables 1-5.

Additional file 1 of FOXD1-dependent RalA-ANXA2-Src complex promotes CTC formation in breast cancer

Yufei Long, Tuotuo Chong, Xiaoming Lyu, Lujia Chen, Xiaomin Luo, Oluwasijibomi Damola Faleti, Simin Deng, Fei Wang, Mingliang He, Zhipeng Qian, Hongli Zhao, Wenyan Zhou, Xia Guo, Ceshi Chen & Xin Li
Additional file 1: Supplementary Fig. 1. (A) RT-qPCR analyses of FOXD1 mRNA in the indicated breast tumor cell lines and MCF-10A. Error bars, SEM. n = 3. (B) Western blotting analyses of FOXD1 expression in the indicated breast tumor cell lines and MCF-10A. (C)RT-qPCR analysis of FOXD1 expression in control and sh-FOXD1 cells (MDA231 and MDA468), or control and FOXD1 overexpression cells (MCF-7). Error bars, SEM. n = 3. **p < 0.01, ***p<0.001 by Student’s...

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