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Jian Wang

Researcher at Guangzhou Medical University

Publications -  1831
Citations -  76717

Jian Wang is an academic researcher from Guangzhou Medical University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 94, co-authored 1018 publications receiving 57783 citations. Previous affiliations of Jian Wang include Northwestern University & Johns Hopkins University School of Medicine.

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Long non-coding RNA CASC2 enhances cisplatin sensitivity in oral squamous cell cancer cells by the miR-31-5p/KANK1 axis.

Jian Wang, +2 more
- 01 Jan 2021 - 
TL;DR: CASC2 boosted the DDP sensitivity and apoptosis of DDP-resistant OSCC cells by upregulating KANK1 via sponging miR-31-5p, and CASC2 might be a potential target for D DP- resistant OSCC treatment.
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Recent Progress in Improving the Performance of Infrared Photodetectors via Optical Field Manipulations

TL;DR: In this article , a review of recently emerging two-dimensional material-based infrared photodetectors, including InGaAs, HgCdTe, graphene, transition metal dichalcogenides and black phosphorus devices, is presented.
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Phylogenetic and genetic characterization of a 2017 clinical isolate of H7N9 virus in Guangzhou, China during the fifth epidemic wave.

TL;DR: The novel H7N9 isolate isolated from a female patient with severe respiratory illness during the fifth wave of the 2017 H7n9 epidemic has an insertion of three basic amino acids in the cleavage site of hemagglutinin (HA), which may enhance virulence in poultry.
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The key role of sphingolipid metabolism in cancer: New therapeutic targets, diagnostic and prognostic values, and anti-tumor immunotherapy resistance

TL;DR: The analysis and summary of sphingolipid antitumor therapeutic targets and immune correlation aim to provide ideas for the development of new antitumors drugs, exploration of new therapeutic means for tumors, and study of immunotherapy resistance mechanisms.
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Genome-wide annotation of protein-coding genes in pig

TL;DR: In this paper , a new annotation strategy is introduced based on dimensionality reduction and density-based clustering of whole-body co-expression patterns, which has been used to explore the gene expression landscape in pig, and present a whole body map of all protein-coding genes in all major pig tissues and organs.