Summary of Study ST002982

This data is available at the NIH Common Fund's National Metabolomics Data Repository (NMDR) website, the Metabolomics Workbench, https://www.metabolomicsworkbench.org, where it has been assigned Project ID PR001307. The data can be accessed directly via it's Project DOI: 10.21228/M8S124 This work is supported by NIH grant, U2C- DK119886.

See: https://www.metabolomicsworkbench.org/about/howtocite.php

This study contains a large results data set and is not available in the mwTab file. It is only available for download via FTP as data file(s) here.

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Study IDST002982
Study TitleMetabolic characterization of the polar endometabolome of Triple-Negative Breast Cancer parental and cDDP-resistant cells (part 2)
Study TypeNMR-based metabolomics of polar endometabolome of cultured cells
Study SummaryPlatinum (Pt(II)) drugs, e.g. cisplatin (cDDP), are some of the most used chemotherapeutic agents, yet tumor acquired resistance and high toxicity are still current drawbacks. Metabolomics can measure the metabolic response of drug-exposed cells, unveiling insight into drug mechanisms and metabolic markers of drug efficacy, toxicity and resistance. The present 1H NMR metabolomics study aims to describe the effects of cDDP and Pd2Spm on the polar endometabolome of both MDA-MB-231 cDDP-sensitive and cDDP-resistant cell lines, aiming to describe metabolic markers of (i) resistance upon cDDP treatment, and (ii) the effect of Pd2Spm on the established cDDP-resistant cells. The former observations will give helpful insights about the metabolic features of cDDP-resistance during treatment, and enlighten on the potential role of Pd2Spm in metabolically affecting/tackling cDDP-resistance.
Institute
University of Aveiro
DepartmentDepartment of Chemistry and CICECO-Aveiro Institute of Materials
Last NameCarneiro
First NameTatiana João
AddressCampus Universitário de Santiago, Aveiro, Aveiro, 3810-193, Portugal
Emailtatiana.joao@ua.pt
Phone+351 234 370 200
Submit Date2023-11-20
Num Groups14
Total Subjects126
Raw Data AvailableYes
Raw Data File Type(s)fid
Analysis Type DetailNMR
Release Date2024-05-22
Release Version1
Tatiana João Carneiro Tatiana João Carneiro
https://dx.doi.org/10.21228/M8S124
ftp://www.metabolomicsworkbench.org/Studies/ application/zip

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Factors:

Subject type: Cultured cells; Subject species: Homo sapiens (Factor headings shown in green)

mb_sample_id local_sample_id Treatment_group
SA323554R_A24h_EA_21_1_2Resistant_cDDP_treated_24h
SA323555R_A24h_EA_32_1_2Resistant_cDDP_treated_24h
SA323556R_A24h_EA_33_1_2Resistant_cDDP_treated_24h
SA323557R_A24h_EA_11_1_2Resistant_cDDP_treated_24h
SA323558R_A24h_EA_31_1_2Resistant_cDDP_treated_24h
SA323559R_A24h_EA_23_1_2Resistant_cDDP_treated_24h
SA323560R_A24h_EA_13_1_2Resistant_cDDP_treated_24h
SA323561R_A24h_EA_22_1_2Resistant_cDDP_treated_24h
SA323562R_A24h_EA_12_1_2Resistant_cDDP_treated_24h
SA323563R_A48h_EA_22_1_2Resistant_cDDP_treated_48h
SA323564R_A48h_EA_33_1_2Resistant_cDDP_treated_48h
SA323565R_A48h_EA_12_1_2Resistant_cDDP_treated_48h
SA323566R_A48h_EA_11_1_2Resistant_cDDP_treated_48h
SA323567R_A48h_EA_21_1_2Resistant_cDDP_treated_48h
SA323568R_A48h_EA_13_1_2Resistant_cDDP_treated_48h
SA323569R_A48h_EA_23_1_2Resistant_cDDP_treated_48h
SA323570R_A48h_EA_32_1_2Resistant_cDDP_treated_48h
SA323571R_A48h_EA_31_1_2Resistant_cDDP_treated_48h
SA323509R_C0h_EA_32_1_2Resistant_Controls_0h
SA323510R_C0h_EA_33_1_2Resistant_Controls_0h
SA323511R_C0h_EA_11_1_2Resistant_Controls_0h
SA323512R_C0h_EA_23_1_2Resistant_Controls_0h
SA323513R_C0h_EA_31_1_2Resistant_Controls_0h
SA323514R_C0h_EA_12_1_2Resistant_Controls_0h
SA323515R_C0h_EA_21_1_2Resistant_Controls_0h
SA323516R_C0h_EA_13_1_2Resistant_Controls_0h
SA323517R_C0h_EA_22_1_2Resistant_Controls_0h
SA323518R_C24h_EA_32_1_2Resistant_Controls_24h
SA323519R_C24h_EA_33_1_2Resistant_Controls_24h
SA323520R_C24h_EA_23_1_2Resistant_Controls_24h
SA323521R_C24h_EA_31_1_2Resistant_Controls_24h
SA323522R_C24h_EA_11_1_2Resistant_Controls_24h
SA323523R_C24h_EA_22_1_2Resistant_Controls_24h
SA323524R_C24h_EA_13_1_2Resistant_Controls_24h
SA323525R_C24h_EA_12_1_2Resistant_Controls_24h
SA323526R_C24h_EA_21_1_2Resistant_Controls_24h
SA323527R_C48h_EA_21_1_2Resistant_Controls_48h
SA323528R_C48h_EA_11_1_2Resistant_Controls_48h
SA323529R_C48h_EA_12_1_2Resistant_Controls_48h
SA323530R_C48h_EA_22_1_2Resistant_Controls_48h
SA323531R_C48h_EA_13_1_2Resistant_Controls_48h
SA323532R_C48h_EA_31_1_2Resistant_Controls_48h
SA323533R_C48h_EA_23b_1_2Resistant_Controls_48h
SA323534R_C48h_EA_33_1_2Resistant_Controls_48h
SA323535R_C48h_EA_32_1_2Resistant_Controls_48h
SA323536R_B24h_EA_32_1_2Resistant_Pd2Spm_treated_24h
SA323537R_B24h_EA_23_1_2Resistant_Pd2Spm_treated_24h
SA323538R_B24h_EA_33_1_2Resistant_Pd2Spm_treated_24h
SA323539R_B24h_EA_31_1_2Resistant_Pd2Spm_treated_24h
SA323540R_B24h_EA_11_1_2Resistant_Pd2Spm_treated_24h
SA323541R_B24h_EA_22_1_2Resistant_Pd2Spm_treated_24h
SA323542R_B24h_EA_13_1_2Resistant_Pd2Spm_treated_24h
SA323543R_B24h_EA_12_1_2Resistant_Pd2Spm_treated_24h
SA323544R_B24h_EA_21_1_2Resistant_Pd2Spm_treated_24h
SA323545R_B48h_EA_32_1_2Resistant_Pd2Spm_treated_48h
SA323546R_B48h_EA_12_1_2Resistant_Pd2Spm_treated_48h
SA323547R_B48h_EA_31_1_2Resistant_Pd2Spm_treated_48h
SA323548R_B48h_EA_23_1_2Resistant_Pd2Spm_treated_48h
SA323549R_B48h_EA_13_1_2Resistant_Pd2Spm_treated_48h
SA323550R_B48h_EA_11_1_2Resistant_Pd2Spm_treated_48h
SA323551R_B48h_EA_33_1_2Resistant_Pd2Spm_treated_48h
SA323552R_B48h_EA_21_1_2Resistant_Pd2Spm_treated_48h
SA323553R_B48h_EA_22_1_2Resistant_Pd2Spm_treated_48h
SA323617S_A24h_EA_13_1_2Sensitive_cDDP_treated_24h
SA323618S_A24h_EA_31_1_2Sensitive_cDDP_treated_24h
SA323619S_A24h_EA_32_1_2Sensitive_cDDP_treated_24h
SA323620S_A24h_EA_33_1_2Sensitive_cDDP_treated_24h
SA323621S_A24h_EA_23_1_2Sensitive_cDDP_treated_24h
SA323622S_A24h_EA_22_1_2Sensitive_cDDP_treated_24h
SA323623S_A24h_EA_12_1_2Sensitive_cDDP_treated_24h
SA323624S_A24h_EA_21_1_2Sensitive_cDDP_treated_24h
SA323625S_A24h_EA_11_1_2Sensitive_cDDP_treated_24h
SA323626S_A48h_EA_13_1_2Sensitive_cDDP_treated_48h
SA323627S_A48h_EA_21_1_2Sensitive_cDDP_treated_48h
SA323628S_A48h_EA_12_1_2Sensitive_cDDP_treated_48h
SA323629S_A48h_EA_11_1_2Sensitive_cDDP_treated_48h
SA323630S_A48h_EA_22_1_2Sensitive_cDDP_treated_48h
SA323631S_A48h_EA_23_1_2Sensitive_cDDP_treated_48h
SA323632S_A48h_EA_32_1_2Sensitive_cDDP_treated_48h
SA323633S_A48h_EA_31_1_2Sensitive_cDDP_treated_48h
SA323634S_A48h_EA_33_1_2Sensitive_cDDP_treated_48h
SA323572S_C0h_EA_31_1_2Sensitive_Controls_0h
SA323573S_C0h_EA_32_1_2Sensitive_Controls_0h
SA323574S_C0h_EA_23_1_2Sensitive_Controls_0h
SA323575S_C0h_EA_33_1_2Sensitive_Controls_0h
SA323576S_C0h_EA_11_1_2Sensitive_Controls_0h
SA323577S_C0h_EA_22_1_2Sensitive_Controls_0h
SA323578S_C0h_EA_13_1_2Sensitive_Controls_0h
SA323579S_C0h_EA_12_1_2Sensitive_Controls_0h
SA323580S_C0h_EA_21_1_2Sensitive_Controls_0h
SA323581S_C24h_EA_32_1_2Sensitive_Controls_24h
SA323582S_C24h_EA_33_1_2Sensitive_Controls_24h
SA323583S_C24h_EA_23_1_2Sensitive_Controls_24h
SA323584S_C24h_EA_11_1_2Sensitive_Controls_24h
SA323585S_C24h_EA_31_1_2Sensitive_Controls_24h
SA323586S_C24h_EA_12_1_2Sensitive_Controls_24h
SA323587S_C24h_EA_21_1_2Sensitive_Controls_24h
SA323588S_C24h_EA_13_1_2Sensitive_Controls_24h
SA323589S_C24h_EA_22_1_2Sensitive_Controls_24h
SA323590S_C48h_EA_13_1_2Sensitive_Controls_48h
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