» Authors » Mustafa B A Djamgoz

Mustafa B A Djamgoz

Explore the profile of Mustafa B A Djamgoz including associated specialties, affiliations and a list of published articles. Areas
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Articles 103
Citations 2597
Followers 0
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Recent Articles
1.
Lastraioli E, Iorio J, Piazza F, Capitani C, Santillo M, Duranti C, et al.
Cancer Cell Int . 2025 Jan; 25(1):24. PMID: 39865220
Background: Mounting evidence underline the relevance of macromolecular complexes in cancer. Integrins frequently recruit ion channels and transporters within complexes which behave as signaling hubs. A complex composed by β1...
2.
Levin M, Djamgoz M
Bioelectricity . 2024 Dec; 6(4):239. PMID: 39712214
No abstract available.
3.
Djamgoz M
Stem Cell Rev Rep . 2024 Nov; 21(2):337-350. PMID: 39531198
Stemness, giving cancer cells massive plasticity enabling them to survive in dynamic (e.g. hypoxic) environments and become resistant to treatment, especially chemotherapy, is an important property of aggressive tumours. Here,...
4.
Djamgoz M
Bioelectricity . 2024 Oct; 4(2):133. PMID: 39372442
No abstract available.
5.
Djamgoz M, Levin M
Bioelectricity . 2024 Oct; 6(3):204-206. PMID: 39372088
No abstract available.
6.
Djamgoz M, Levin M
Bioelectricity . 2024 Oct; 6(3):152-153. PMID: 39372084
No abstract available.
7.
Levin M, Djamgoz M
Bioelectricity . 2024 Oct; 4(1):1-2. PMID: 39355567
No abstract available.
8.
Leslie T, Tripp A, James A, Fraser S, Nelson M, Sajjaboontawee N, et al.
Oncogene . 2024 Jul; 43(34):2578-2594. PMID: 39048659
Solid tumours have abnormally high intracellular [Na]. The activity of various Na channels may underlie this Na accumulation. Voltage-gated Na channels (VGSCs) have been shown to be functionally active in...
9.
Djamgoz M
Cancer Metastasis Rev . 2024 Jul; 43(4):1579-1591. PMID: 38976181
The normal functioning of every cell in the body depends on its bioelectric properties and many diseases are caused by genetic and/or epigenetic dysregulation of the underlying ion channels. Metastasis,...
10.
Djamgoz M
Br J Cancer . 2024 Feb; 130(9):1415-1419. PMID: 38424164
Background: Multi-faceted evidence from a range of cancers suggests strongly that de novo expression of voltage-gated sodium channels (VGSCs) plays a significant role in driving cancer cell invasiveness. Under hypoxic...