Qiuqiang Gao
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Explore the profile of Qiuqiang Gao including associated specialties, affiliations and a list of published articles.
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Articles
32
Citations
345
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Recent Articles
1.
Nguyen T, Gao Q, Mun J, Zhu Z, Shu C, Naim A, et al.
Cells
. 2024 Jul;
13(13.
PMID: 38995006
Immunotherapies have shown significant promise as an impactful strategy in cancer treatment. However, in glioblastoma multiforme (GBM), the most prevalent primary brain tumor in adults, these therapies have demonstrated lower...
2.
Nguyen T, Torrini C, Shang E, Shu C, Mun J, Gao Q, et al.
JCI Insight
. 2024 Mar;
9(8).
PMID: 38483541
Glioblastoma (GBM) remains an incurable disease, requiring more effective therapies. Through interrogation of publicly available CRISPR and RNAi library screens, we identified the α-ketoglutarate dehydrogenase (OGDH) gene, which encodes an...
3.
Meng Q, Gao Q, Mehrazarin S, Tangwanichgapong K, Wang Y, Huang Y, et al.
EMBO Rep
. 2021 Jun;
22(7):e52891.
PMID: 34184813
Fusobacterium nucleatum (Fn) is a Gram-negative oral commensal, prevalent in various human diseases. It is unknown how this common commensal converts to a rampant pathogen. We report that Fn secretes...
4.
Qiu Z, Fang C, Gao Q, Bao J
Bioresour Technol
. 2019 Dec;
297:122473.
PMID: 31812596
Phenolic aldehydes from lignocellulose pretreatment are strong inhibitors of cell growth and metabolism of cellulosic lactic acid bacteria. Their low solubility and recalcitrance highly reduce the removal efficiency of various...
5.
Yan Z, Gao X, Gao Q, Bao J
Appl Environ Microbiol
. 2019 Sep;
85(22).
PMID: 31492664
-Benzoquinone (BQ) is a lignin-derived inhibitor of biorefinery fermentation strains produced during pretreatment of lignocellulose. Unlike the well-studied inhibitors furan aldehydes, weak acids, and phenolics, the inhibitory properties of BQ,...
6.
Yi X, Gao Q, Bao J
J Biotechnol
. 2019 Jul;
303:1-7.
PMID: 31310781
Phenolic aldehydes from lignocellulose pretreatment harshly inhibit the viability and metabolism of ethanol fermenting strains. Direct conversion of phenolic aldehydes is usually incomplete due to their low water solubility and...
7.
Yi X, Gao Q, Zhang L, Wang X, He Y, Hu F, et al.
Biotechnol Biofuels
. 2019 May;
12:126.
PMID: 31139256
Background: Fast, complete, and ultimate removal of inhibitory compounds derived from lignocellulose pretreatment is the prerequisite for efficient production of cellulosic ethanol and biochemicals. Biodetoxification is the most promising method...
8.
Zhou P, Khushk I, Gao Q, Bao J
J Ind Microbiol Biotechnol
. 2019 Apr;
46(7):951-963.
PMID: 30972584
Furaldehydes and benzaldehydes are among the most toxic inhibitors from lignocellulose pretreatment on microbial growth and metabolism. The bioconversion of aldehyde inhibitors into less toxic alcohols or acids (biotransformation) is...
9.
Hu M, Wang J, Gao Q, Bao J
J Biotechnol
. 2018 Jun;
281:81-86.
PMID: 29925036
Lignin is one of the major components of lignocellulose biomass and chemically degrades into phenolic aldehydes including 4-hydroxybenzaldehyde, vanillin, and syringaldehyde. No lipid accumulation from the phenolic aldehydes by oleaginous...
10.
Gao X, Gao Q, Bao J
J Biotechnol
. 2018 May;
282:32-37.
PMID: 29807049
Inhibition of sodium ion (Na) on Zymomonas mobilis represents an important obstacle for efficient cellulosic ethanol production. This study screened and overexpressed the genes responsible for transporting metal ions in...