Automated Author ProfileXie, Ran
Xie, Ran
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 1.5 (sum of 3 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
Background: As the first approved medication for metabolic dysfunction-associated steatohepatitis (MASH), thyroid hormone receptor β (THR-β) agonist MGL-3196 (Resmetirom) has been highly spotlighted as the liver-directed, bioactive oral drug. However, it was also identified with remarkable heterogeneity of individual clinical efficacy and its interference with gut microbiota in host hepatoenteral circulation was still undocumented.Methods: We compared MASH attenuation by MGL-3196 and its derivative drug HSK31679 in germ-free (GF) and specific-pathogen free (SPF) mice to evaluate the role of gut microbiota. Then deep cross-omics analyses of microbial metagenome, metabolome and single-cell RNA-sequencing were clinically applied into the randomized, double-blind, placebo-controlled multiple-ascending-dose (MAD) cohort of HSK31679 treatment (n = 50), to comprehensively investigate the altered gut microbiota metabolism and circulating immune signatures.Results: HSK31679 outperformed MGL-3196 in ameliorating MASH diet-induced steatohepatitis of SPF mice but not GF mice. In the MAD cohort of HSK31679, relative abundance of B. thetaiotaomicron was significantly enriched to impair glucosylceramide synthase (GCS)-catalyzed monoglucosylation of microbial Cer(d18:1/16:0) and Cer(d18:1/24:1). In stark contrast to the non-inferiority MASH resolution between MGL-3196 and HSK31679 for GFBT△GCS mice, HSK31679 manifested superior steatohepatitis alleviation than MGL-3196 for GFBTWT mice, which may attribute to its steric hindrance with R123 and Y401 of gut microbial GCS. In stool samples with high GCS activity, the administration of 160 mg HSK31679 has induced a shift in peripheral compartments towards an immunosuppressive niche, characterized by the down-regulation of CD8α+ dendritic cells and MINCLE+ macrophages.Conclusions: This study has provided novel insights into the indispensable gut microbiota for HSK31679 treatment, which revealed microbial GCS may serve as its prognostic biomarker of MASH treatment, as well as the new target for further strategies of microbiota-based MASH therapeutics.
Authors
- Zhang, Yu-hang ;
- Xie, Ran ;
- Cui, Yimin
Background: As the first approved medication for metabolic dysfunction-associated steatohepatitis (MASH), thyroid hormone receptor β (THR-β) agonist MGL-3196 (Resmetirom) has been highly spotlighted as the liver-directed, bioactive oral drug. However, it was also identified with remarkable heterogeneity of individual clinical efficacy and its interference with gut microbiota in host hepatoenteral circulation was still undocumented.Methods: We compared MASH attenuation by MGL-3196 and its derivative drug HSK31679 in germ-free (GF) and specific-pathogen free (SPF) mice to evaluate the role of gut microbiota. Then deep cross-omics analyses of microbial metagenome, metabolome and single-cell RNA-sequencing were clinically applied into the randomized, double-blind, placebo-controlled multiple-ascending-dose (MAD) cohort of HSK31679 treatment (n = 50), to comprehensively investigate the altered gut microbiota metabolism and circulating immune signatures.Results: HSK31679 outperformed MGL-3196 in ameliorating MASH diet-induced steatohepatitis of SPF mice but not GF mice. In the MAD cohort of HSK31679, relative abundance of B. thetaiotaomicron was significantly enriched to impair glucosylceramide synthase (GCS)-catalyzed monoglucosylation of microbial Cer(d18:1/16:0) and Cer(d18:1/24:1). In stark contrast to the non-inferiority MASH resolution between MGL-3196 and HSK31679 for GFBT△GCS mice, HSK31679 manifested superior steatohepatitis alleviation than MGL-3196 for GFBTWT mice, which may attribute to its steric hindrance with R123 and Y401 of gut microbial GCS. In stool samples with high GCS activity, the administration of 160 mg HSK31679 has induced a shift in peripheral compartments towards an immunosuppressive niche, characterized by the down-regulation of CD8α+ dendritic cells and MINCLE+ macrophages.Conclusions: This study has provided novel insights into the indispensable gut microbiota for HSK31679 treatment, which revealed microbial GCS may serve as its prognostic biomarker of MASH treatment, as well as the new target for further strategies of microbiota-based MASH therapeutics.
Authors
- Zhang, Yu-hang ;
- Xie, Ran ;
- Cui, Yimin
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
Authors
- Yin, Fu-Ling ;
- Xie, Ran ;
- Hao, Jian ;
- Wang, Yu-Fei ;
- Yang, Jun-Jiao