Please use this identifier to cite or link to this item: https://er.knutd.edu.ua/handle/123456789/26576
Title: A novel nanoprobe for visually investigating the controversial role of miRNA-34a as oncogene or tumor suppressor in cancer cells
Other Titles: Новий нанозонд для візуального дослідження суперечливої ролі мікроРНК-34a як онкогену або супресора пухлини в ракових клітинах
Authors: Chen, Zhe
Ge, Chuandong
Zhu, Xiaokai
Sun, Ping
Sun, Zeyuan
Derkach, Tetiana M.
Wang, Yaoguang
Zhou, Mingyang
Luan, Mingming
Keywords: ultraviolet-visible absorption spectra
MiRNA-targeted therapy
visualization method
oncogenic or tumor-suppressing role
anticancer medications
Issue Date: 3-Jan-2024
Citation: A novel nanoprobe for visually investigating the controversial role of miRNA-34a as oncogene or tumor suppressor in cancer cells / Zhe Chen, Chuandong Ge, Xiaokai Zhu, Ping Sun, Zeyuan Sun, T. M. Derkach, Yaoguang Wang, Mingyang Zhou, Mingming Luan // Analytical Methods. – 2024. – Volume 16, Number 5. – Р. 667-675.
Source: Analytical Methods
Abstract: MiRNA-targeted therapy has become a hot topic in current cancer research. The key to this treatment strategy is to clarify the specific role of miRNA in cancer. However, the roles of some miRNAs acting as oncogenic or tumor suppressors are still controversial, which are influenced by different tumor types, even in the same cancer type. Hence, we designed a novel fluorescent nanoprobe based on polydopamine nanoparticles (PDA NPs) for simultaneously detecting caspase-3 and miRNA-34a within living cells. The specific role of miRNA-34a in different cancer cells could be further identified by studying the expression alterations of caspase-3 and miRNA-34a. Confocal imaging indicated that miRNA-34a indeed acted as a tumor suppressor in anticancer drug-treated MCF-7 and HeLa cells, where the effect of miRNA-34a remains controversial. The designed nanoprobe can offer a promising approach to ascertain the oncogenic or tumor-suppressing role of miRNA in different cancer cells with a simple visualization method, which has valuable implications for exploring the practicability of precision therapy focused on miRNA and evaluating the efficacy of new miRNA-targeted anticancer medications.
DOI: 10.1039/D3AY02270F
URI: https://er.knutd.edu.ua/handle/123456789/26576
Faculty: Факультет хімічних та біофармацевтичних технологій
Department: Кафедра промислової фармації
ISSN: 1759-9679
Appears in Collections:Наукові публікації (статті)
Кафедра промислової фармації (ПФ)

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