Decellularized plant-derived vasculature-on-a-chip interacting with breast cancer spheroids to evaluate a dual-drug therapy

Author:

Filiz YagmurORCID,Arslan YagmurORCID,Duran Elif,Saglam-Metiner Pelin,Horozoglu SezenORCID,Paradiso AlessiaORCID,Martinez Diana C.ORCID,Sabour-Takanlou Maryam,Heljak Marcin,Jaroszewicz JakubORCID,Biray-Avci Cigir,Swieszkowski WojciechORCID,Yesil-Celiktas OzlemORCID

Funder

Türkiye Bilimsel ve Teknolojik Araştırma Kurumu

Narodowe Centrum Badań i Rozwoju

Publisher

Elsevier BV

Subject

General Materials Science

Reference154 articles.

1. From bench to patient: model systems in drug discovery;Breyer;Dis. Model. Mech.,2015

2. Organ-on-a-chip: a new paradigm for drug development;Ma;Trends Pharmacol. Sci.,2021

3. 2D and 3D cell cultures – a comparison of different types of cancer cell cultures;Kapałczyńska;Arch. Med. Sci.,2018

4. Animal to human translation: a systematic scoping review of reported concordance rates;Leenaars;J. Transl. Med.,2019

5. In vitro functional models for human liver diseases and drug screening: beyond animal testing;Paradiso;Biomater. Sci.,2023

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