Database Commons
Database Commons

a catalog of worldwide biological databases

Database Profile

TNMplot

General information

URL: https://tnmplot.com
Full name: Differential gene expression analysis in Tumor, Normal, and Metastatic tissues
Description: The web platform provides a comprehensive analysis of the expression of ADC targets across various cancer and normal tissues, aiding in the prioritization of ADC targets for clinical development. It highlights potential therapeutic opportunities by examining gene expression correlations with ADC targets and the determinants of treatment response and toxicity, offering valuable insights for precision oncology.
Year founded: 2021
Last update: 2023-06-01
Version: v1.0
Accessibility:
Accessible
Country/Region: Hungary

Classification & Tag

Data type:
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Keywords:

Contact information

University/Institution: Semmelweis University
Address: H - 1085 Budapest, Üllői út 26.
City: Budapest
Province/State:
Country/Region: Hungary
Contact name (PI/Team): Department of Bioinformatics of the Semmelweis University
Contact email (PI/Helpdesk): gyorffy@kmplot.com

Publications

37913680
Pan-cancer analysis of antibody-drug conjugate targets and putative predictors of treatment response. [PMID: 37913680]
Carlo Bosi, Áron Bartha, Barbara Galbardi, Giulia Notini, Matteo M Naldini, Luca Licata, Giulia Viale, Marco Mariani, Barbara Pistilli, H Raza Ali, Fabrice André, Marta Piras, Maurizio Callari, Marco Barreca, Alberta Locatelli, Lucia Viganò, Carmen Criscitiello, Lajos Pusztai, Giuseppe Curigliano, Balázs Győrffy, Matteo Dugo, Giampaolo Bianchini

BACKGROUND: Antibody-drug conjugates (ADCs) are a rapidly expanding class of compounds in oncology. Our goal was to assess the expression of ADC targets and potential downstream determining factors of activity across pan-cancer and normal tissues.
MATERIALS AND METHODS: ADCs in clinical trials (n = 121) were identified through ClinicalTrials.gov, corresponding to 54 targets. Genes potentially implicated in treatment response were identified in the literature. Gene expression from The Cancer Genome Atlas (9000+ cancers of 31 cancer types), the Genotype-Tissue Expression database (n = 19,000 samples from 31 normal tissue types), and the TNMplot.com (n = 12,494 unmatched primary and metastatic samples) were used in this analysis. To compare relative expression across and within tumour types we used pooled normal tissues as reference.
RESULTS: For most ADC targets, mRNA levels correlated with protein expression. Pan-cancer target expression distributions identified appealing cancer types for each ADC development. Co-expression of multiple targets was common and suggested opportunities for ADC combinations. Expression levels of genes potentially implicated in ADC response downstream of the target might provide additional information (e.g. TOP1 was highly expressed in many tumour types, including breast and lung cancers). Metastatic compared to primary tissues overexpressed some ADCs targets. Single sample "targetgram" plots were generated to visualise the expression of potentially competing ADC targets and resistance/sensitivity markers highlighting high inter-patient heterogeneity. Off-cancer target expression only partially explains adverse events, while expression of determinants of payload activity explained more of the observed toxicities.
CONCLUSION: Our findings draw attention to new therapeutic opportunities for ADCs that can be tested in the clinic and our web platform (https://tnmplot.com) can assist in prioritising upcoming ADC targets for clinical development.

Eur J Cancer. 2023:195() | 26 Citations (from Europe PMC, 2025-12-13)

Ranking

All databases:
1288/6895 (81.334%)
Gene genome and annotation:
420/2021 (79.268%)
Expression:
249/1347 (81.589%)
Health and medicine:
308/1738 (82.336%)
1288
Total Rank
22
Citations
11
z-index

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Record metadata

Created on: 2024-07-16
Curated by:
Miaomiao Wang [2024-08-24]
zheng luo [2024-07-24]
zheng luo [2024-07-18]
zheng luo [2024-07-16]