808 Works
Additional file 1 of Mucosal-associated invariant T cells predict increased acute graft-versus-host-disease incidence in patients receiving allogeneic hematopoietic stem cell transplantation
Zhao Wang, Sudong Zhang, Xiaoyu Zhang, Li Liu, Lukun Zhou, Yuyan Shen, Rongli Zhang, Yi He, Donglin Yang, Erlie Jiang, Xiaoming Feng, Jiaxi Zhou, Tao Cheng, Mingzhe Han & Sizhou Feng
Additional file 1: Other immune cell populations besides MAIT cells in grafts on aGVHD development.
Additional file 1 of Mucosal-associated invariant T cells predict increased acute graft-versus-host-disease incidence in patients receiving allogeneic hematopoietic stem cell transplantation
Zhao Wang, Sudong Zhang, Xiaoyu Zhang, Li Liu, Lukun Zhou, Yuyan Shen, Rongli Zhang, Yi He, Donglin Yang, Erlie Jiang, Xiaoming Feng, Jiaxi Zhou, Tao Cheng, Mingzhe Han & Sizhou Feng
Additional file 1: Other immune cell populations besides MAIT cells in grafts on aGVHD development.
Additional file 16 of Circular RNA circPVT1 promotes nasopharyngeal carcinoma metastasis via the β-TrCP/c-Myc/SRSF1 positive feedback loop
Yongzhen Mo, Yumin Wang, Yian Wang, Xiangying Deng, Qijia Yan, Chunmei Fan, Shuai Zhang, Shanshan Zhang, Zhaojian Gong, Lei Shi, Qianjin Liao, Can Guo, Yong Li, Guiyuan Li, Zhaoyang Zeng, Weihong Jiang, Wei Xiong & Bo Xiang
Additional file 16: Figure S7. c-Myc promotes circPVT1 generation by recruiting SRSF1 to couple transcription to splicing. A. The luciferase reporter gene activity of the PVT1 promoter was analyzed in NPC cells after overexpression of c-Myc. Data were represented as mean ± SD. ***, p < 0.001. B. The binding of transcription factor c-Myc to the PVT1 promoter detected by ChIP assay. Three sites on the PVT1 promoter were identified as potential c-Myc binding sites...
Additional file 7 of CEF3 is involved in membrane trafficking and essential for secondary cell wall biosynthesis and its mutation enhanced biomass enzymatic saccharification in rice
Hongrui Jiang, Yan Ren, Junyao Guo, Huijie Yang, Xiaotong Zhu, Wenhao Li, Liangzhi Tao, Yue Zhan, Qi Wang, Yuejin Wu, Binmei Liu & Yafeng Ye
Additional file 7: Figure S7. (A) Phylogenetic tree of CEF3 in rice and Arabidopsis. (B) The amino acid sequence alignment between the AtSCD2 and OsCEF3. Different rectangles represent different functional domains.
Additional file 2 of The role of proteoglycan form of DMP1 in cranial repair
Yang Liu, Pingping Niu, Mengqi Zhou & Hui Xue
Additional file 2.
Additional file 5 of Physiological and protein profiling analysis provides insight into the underlying molecular mechanism of potato tuber development regulated by jasmonic acid in vitro
Jianlong Yuan, Lixiang Cheng, Huijun Li, Congcong An, Yuping Wang & Feng Zhang
Additional file 5: Fig. S1. The original gels for COI1, HSP90 and LOX2 immunoblot analysis.
Additional file 7 of Physiological and protein profiling analysis provides insight into the underlying molecular mechanism of potato tuber development regulated by jasmonic acid in vitro
Jianlong Yuan, Lixiang Cheng, Huijun Li, Congcong An, Yuping Wang & Feng Zhang
Additional file 7: Fig. S3. The original immunoblot images of HSP90. In order to save antibody and chromogenic reagent, the membranes were cut into strips just between the 70 KDa and 100 KDa molecular weight markers after transfer to a PVDF membrane and used for HSP90 immunoblot.
Additional file 2 of Biallelic mutations of TTC12 and TTC21B were identified in Chinese patients with multisystem ciliopathy syndromes
Weicheng Chen, Feifei Wang, Weijia Zeng, Xinyan Zhang, Libing Shen, Yuan Zhang & Xiangyu Zhou
Additional file 2: Fig S1. (A) Echocardiography shows transposition of great arteries and ventricular septal defect in the patient JM0087 (F-2: II-1). (B) Chest X-ray shows dextrocardia in the patient JM0529 (F-4:II-1) at the age of 2 years
Additional file 1 of Mapping of Candidate Genes in Response to Low Nitrogen in Rice Seedlings
Jia Li, Wei Xin, Weiping Wang, Shijiao Zhao, Lu Xu, Xingdong Jiang, Yuxuan Duan, Hongliang Zheng, Luomiao Yang, Hualong Liu, Yan Jia, Detang Zou & Jingguo Wang
Additional file 1: Figure S1. Phenotype distribution of root morphology traits of 295 rice varieties under low and high-nitrogen treatments. A, HRL: root length under high-nitrogen treatment. B, LRL: root length under low-nitrogen treatment. C, HRD: root diameter under high-nitrogen treatment. D, LRD: root diameter under low-nitrogen treatment.
Additional file 1 of Correlation study on serum miR-222-3p and glucose and lipid metabolism in patients with polycystic ovary syndrome
Qin Wang, Chuanxiang Fang, Ying Zhao & Zhaoxia Liu
Additional file 1: Fig. S1. Sample size was estimated in advance using Gpower software.
Additional file 1 of Cross-watershed distribution pattern challenging the elimination of Oncomelania hupensis, the intermediate host of Schistosoma japonica, in Sichuan province, China
Shen Chen, Ding Lu, Lei Duan, Ben Ma, Chao Lv, Yin-long Li, Shen-ning Lu, Lan-hua Li, Liang Xu, Zi-song Wu, Shang Xia, Jing Xu, Yang Liu & Shan Lv
Additional file 1: Figure S1. The increase rate of frequency by slope from low to high. The increase rate of frequency was defined as the frequency at a specific slope was divided by the accumulated frequency at all observed slopes that were less than the specific slope.
Additional file 9 of Costunolide is a dual inhibitor of MEK1 and AKT1/2 that overcomes osimertinib resistance in lung cancer
Xueli Tian, Rui Wang, Tingxuan Gu, Fayang Ma, Kyle Vaughn Laster, Xiang Li, Kangdong Liu, Mee-Hyun Lee & Zigang Dong
Supplementary Material 9
Additional file 7 of Aberrant methylation of Serpine1 mediates lung injury in neonatal mice prenatally exposed to intrauterine inflammation
Dongting Yao, Jiuru Zhao, Qianqian Zhang, Tao Wang, Meng Ni, Sudong Qi, Qianwen Shen, Wei Li, Baihe Li, Xiya Ding & Zhiwei Liu
Additional file 7: Figure S7. Schematic representation of the molecular mechanisms underlying IUI-induced lung injury in neonatal mice.
Additional file 14 of Decoding the colorectal cancer ecosystem emphasizes the cooperative role of cancer cells, TAMs and CAFsin tumor progression
Rongfang Shen, Ping Li, Botao Zhang, Lin Feng & Shujun Cheng
Additional file 14: Figure S7. Characterization of stromal cells in the KUL3 cohort. A. UMAP plot of stromal cells colored by cell cluster and sample origin. B. Heat map of marker genes identified through Seurat. For each cell cluster, cells were down-sampled to 100. C. Differentiation trajectory inferred by Monocle2. Dots represent stromal cells colored by identified cell cluster. D. Heat map plot of the top ranked regulons. E. Dot plot of the correlation between...
Additional file 1 of De novo full length transcriptome analysis and gene expression profiling to identify genes involved in phenylethanol glycosides biosynthesis in Cistanche tubulosa
Lei Hou, Guanghui Li, Qingliang Chen, JinJin Zhao, Jiaowen Pan, Ruxia Lin, Xiujin Zhu, Pengfei Wang & Xingjun Wang
Additional file 1: Supplementary Figure S1. BUSCO assembly evaluation results. C (complete): matches the BUSCO database sequence; F (fragmented): only part of the sequence can be compared with the BUSCO database; D (duplicate): multiple genes are compared with the same BUSCO; M (missing): the filtered sequence.
Additional file 15 of Decoding the colorectal cancer ecosystem emphasizes the cooperative role of cancer cells, TAMs and CAFsin tumor progression
Rongfang Shen, Ping Li, Botao Zhang, Lin Feng & Shujun Cheng
Additional file 15: Figure S8. Workflow of this study. Single-cell transcriptomes and bulk RNA-seq data were integrated to fully analyze the complicated relationship between colorectal epithelium and surrounding environment. C4 cells were featured with high invasive potential and related with TAMs and CAFs, and further validated in vitro using IHC and mIHC.
Additional file 2 of De novo full length transcriptome analysis and gene expression profiling to identify genes involved in phenylethanol glycosides biosynthesis in Cistanche tubulosa
Lei Hou, Guanghui Li, Qingliang Chen, JinJin Zhao, Jiaowen Pan, Ruxia Lin, Xiujin Zhu, Pengfei Wang & Xingjun Wang
Additional file 2: Supplementary Figure S2. Transcription factor family classification. The X-axis represents the corresponding number of isoforms, the Y-axis represents the transcription factor family classification.
Additional file 2 of De novo full length transcriptome analysis and gene expression profiling to identify genes involved in phenylethanol glycosides biosynthesis in Cistanche tubulosa
Lei Hou, Guanghui Li, Qingliang Chen, JinJin Zhao, Jiaowen Pan, Ruxia Lin, Xiujin Zhu, Pengfei Wang & Xingjun Wang
Additional file 2: Supplementary Figure S2. Transcription factor family classification. The X-axis represents the corresponding number of isoforms, the Y-axis represents the transcription factor family classification.
Additional file 8 of Decoding the colorectal cancer ecosystem emphasizes the cooperative role of cancer cells, TAMs and CAFsin tumor progression
Rongfang Shen, Ping Li, Botao Zhang, Lin Feng & Shujun Cheng
Additional file 8: Figure S1. Cellular landscape of CRC in the KUL3 cohort. A. UMAP plot of 26,268 cells colored by cell cluster, CMS and sample origin. Each dot represents a cell and cellular cluster is annotated with text. B. Proportions of the identified cell clusters distributed across tumor, border and adjacent normal tissues with the relative cell type proportions and total cell numbers. Upper: all cell clusters; lower: immune and stromal cell clusters. C....
sj-tif-7-cll-10.1177_09636897221129171 – for Effects of Low-Intensity Pulsed Ultrasound on the Migration and Homing of Human Amnion–Derived Mesenchymal Stem Cells to Ovaries in Rats With Premature Ovarian Insufficiency
Li Ling, Jiying Hou, Yan Wang, Han Shu & Yubin Huang
sj-tif-7-cll-10.1177_09636897221129171 for Effects of Low-Intensity Pulsed Ultrasound on the Migration and Homing of Human Amnion–Derived Mesenchymal Stem Cells to Ovaries in Rats With Premature Ovarian Insufficiency by Li Ling, Jiying Hou, Yan Wang, Han Shu and Yubin Huang in Cell Transplantation
sj-jpg-2-ijs-10.1177_10668969221125793 - Supplemental material for Characterization of Intercalated Cell Markers KIT and LINC01187 in Chromophobe Renal Cell Carcinoma and Other Renal Neoplasms
Rahul Mannan, Xiaoming Wang, Pushpinder S. Bawa, Yuping Zhang, Stephanie L. Skala, Anya K. Chinnaiyan, Aniket Dagar, Lisha Wang, Sylvia B. Zelenka-Wang, Lisa M. McMurry, Nikita Daniel, Xuhong Cao, Ankur R. Sangoi, Sounak Gupta, Ulka N. Vaishampayan, Khaled S. Hafez, Todd M. Morgan, Daniel E. Spratt, Maria S. Tretiakova, Pedram Argani, Arul M. Chinnaiyan, Saravana M. Dhanasekaran & Rohit Mehra
Supplemental material, sj-jpg-2-ijs-10.1177_10668969221125793 for Characterization of Intercalated Cell Markers KIT and LINC01187 in Chromophobe Renal Cell Carcinoma and Other Renal Neoplasms by Rahul Mannan, Xiaoming Wang, Pushpinder S. Bawa, Yuping Zhang, Stephanie L. Skala, Anya K. Chinnaiyan, Aniket Dagar, Lisha Wang, Sylvia B. Zelenka-Wang, Lisa M. McMurry, Nikita Daniel, Xuhong Cao, Ankur R. Sangoi, Sounak Gupta, Ulka N. Vaishampayan, Khaled S. Hafez, Todd M. Morgan, Daniel E. Spratt, Maria S. Tretiakova, Pedram Argani, Arul M....
sj-tif-8-npx-10.1177_1934578X221130874 - Supplemental material for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model
Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu & Qi Zhang
Supplemental material, sj-tif-8-npx-10.1177_1934578X221130874 for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model by Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu and Qi Zhang in Natural Product Communications
sj-jpg-13-npx-10.1177_1934578X221130874 - Supplemental material for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model
Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu & Qi Zhang
Supplemental material, sj-jpg-13-npx-10.1177_1934578X221130874 for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model by Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu and Qi Zhang in Natural Product Communications
sj-jpg-14-npx-10.1177_1934578X221130874 - Supplemental material for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model
Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu & Qi Zhang
Supplemental material, sj-jpg-14-npx-10.1177_1934578X221130874 for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model by Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu and Qi Zhang in Natural Product Communications
sj-jpg-15-npx-10.1177_1934578X221130874 - Supplemental material for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model
Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu & Qi Zhang
Supplemental material, sj-jpg-15-npx-10.1177_1934578X221130874 for Cryptotanshinone From Salvia miltiorrhiza Inhibits the Growth of Tumors and Enhances the Efficacy of Chemotherapy in a Gastric Cancer Mouse Model by Wenkai Wu, Yezhi Cao, Ling Cheng, Linghu Wang, Qingsheng Yu, Hui Peng, Fuhai Zhou, Haiwei Liu and Qi Zhang in Natural Product Communications
Affiliations
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Capital Medical University808
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Chinese Academy of Medical Sciences & Peking Union Medical College516
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Zhejiang University498
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Sichuan University478
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Shanghai Jiao Tong University462
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Fudan University456
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Nanjing Medical University454
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Huazhong University of Science and Technology451
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Chinese Academy of Sciences403
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Sun Yat-sen University397