ArticlePloS one2024
Exploring the resistance mechanism of triple-negative breast cancer to paclitaxel through the scRNA-seq analysis.
Article in PloS one, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers, 1 of them a synthesis that pooled it.
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Who cites it
19 citing papers in PubMed, 1 synthesis or guideline pooled it, 16 citations in OpenAlex.
- Spatial and temporal intratumoral heterogeneity in breast cancer: a systematic and conceptual review of single-cell and spatial omics studies.BMC cancer · 2026Pooled it
- Review
- Article
- Integrative Transcriptomic and Machine Learning Analysis of ecDNA-Associated Features for Studying Chemotherapy Resistance in TNBC.bioRxiv : the preprint server for biology · 2026Article
- Regulation of mitochondrial ROS by C15ORF48 in a basal cell subpopulation contributes to chemotherapy resistance in TNBC.Science advances · 2026Article
- Botanical Adjuvants in Oncology: A Review on Natural Compounds in Synergy with Conventional Therapies as Next-Generation Enhancers of Breast Cancer Treatment.Current issues in molecular biology · 2026Review
- TMEPAI Confers Paclitaxel Resistance in Triple-Negative Breast Cancer Cells by Promoting AKT Phosphorylation and Its Downstream Cascade.Asian Pacific journal of cancer prevention : APJCP · 2026Article
- Beyond STMN1: stathmin-family control of microtubule dynamics and paclitaxel resistance in cancer.Frontiers in oncology · 2026Review
- The role of chimeric FAM72B transcripts generated by intergenic mRNA trans-splicing in breast cancer.Functional & integrative genomics · 2025Article
- Spotlight onGenes · 2025Article
- Enhancing the in vitro anticancer efficacy of Paclitaxel against triple-negative breast cancer via an exopolysaccharide from a haloalkaliphilic archaeal strain.Scientific reports · 2025Article
- Targeting Resistance Pathways in Breast Cancer Through Precision Oncology: Nanotechnology and Immune Modulation Approaches.Biomedicines · 2025Review
- Article
- Kang Ru enhances paclitaxel's efficacy against breast cancer progression.American journal of cancer research · 2025Article
- Drug discovery for chemotherapeutic resistance based on pathway-responsive gene sets and its application in breast cancer.Frontiers in bioinformatics · 2025Article
- Real world analysis of the efficacy and safety of eribulin compared to utidelone in combination with capecitabine for the treatment of metastatic breast cancer.Cancer cell international · 2024Article
- Advances in the Understanding of the Pathogenesis of Triple-Negative Breast Cancer.Cancer medicine · 2024Review
- Inhibition of NLRP3 inflammasome contributes to paclitaxel efficacy in triple negative breast cancer treatment.Scientific reports · 2024Article
- BUB1 Inhibition Sensitizes TNBC Cell Lines to Chemotherapy and Radiotherapy.Biomolecules · 2024Article
Corrections and comments
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Authors and funding
5 authors at 3 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundThe triple negative breast cancer (TNBC) is the most malignant subtype of breast cancer with high aggressiveness. Although paclitaxel-based chemotherapy scenario present the mainstay in TNBC treatment, paclitaxel resistance is still a striking obstacle for cancer cure. So it is imperative to probe new therapeutic targets through illustrating the mechanisms underlying paclitaxel chemoresistance.
methodsThe Single cell RNA sequencing (scRNA-seq) data of TNBC cells treated with paclitaxel at different points were downloaded from the Gene Expression Omnibus (GEO) database. The Seurat R package was used to filter and integrate the scRNA-seq expression matrix. Cells were further clustered by the FindClusters function, and the gene marker of each subset was defined by FindAllMarkers function. Then, the hallmark score of each cell was calculated by AUCell R package, the biological function of the highly expressed interest genes was analyzed by the DAVID database. Subsequently, we performed pseudotime analysis to explore the change patterns of drug resistance genes and SCENIC analysis to identify the key transcription factors (TFs). Finally, the inhibitors of which were also analyzed by the CTD database.
resultsWe finally obtained 6 cell subsets from 2798 cells, which were marked as AKR1C3+, WNT7A+, FAM72B+, RERG+, IDO1+ and HEY1+HCC1143 cell subsets, among which the AKR1C3+, IDO1+ and HEY1+ cell subsets proportions increased with increasing treatment time, and then were regarded as paclitaxel resistance subsets. Hallmark score and pseudotime analysis showed that these paclitaxel resistance subsets were associated with the inflammatory response, virus and interferon response activation. In addition, the gene regulatory networks (GRNs) indicated that 3 key TFs (STAT1, CEBPB and IRF7) played vital role in promoting resistance development, and five common inhibitors targeted these TFs as potential combination therapies of paclitaxel were identified.
conclusionIn this study, we identified 3 paclitaxel resistance relevant IFs and their inhibitors, which offers essential molecular basis for paclitaxel resistance and beneficial guidance for the combination of paclitaxel in clinical TNBC therapy.
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