Area of research
Virology · Neurology
Research interest
Research focused on Guide RNA and Provirus, with related work in Epigallocatechin gallate, Pyroptosis, Transcriptome. Notable publications include 'RNA-directed gene editing specifically eradicates latent and prevents new HIV-1 infection', 'In Vivo Excision of HIV-1 Provirus by saCas9 and Multiplex Single-Guide RNAs in Animal Models', and 'Epigallocatechin gallate from green tea effectively blocks infection of SARS-CoV-2 and new variants by inhibiting spike binding to ACE2 receptor'.
Persistent type I interferon signaling within the brain of people with HIV on ART with cognitive impairment
Cochlear endoplasmic reticulum stress causes connexin 26 degradation is involved in age-related hearing loss
AAVone: A Cost-Effective, Single-Plasmid Solution for Efficient AAV Production with Reduced DNA Impurities
SAH is a major metabolic sensor mediating worsening metabolic crosstalk in metabolic syndrome
Genome-Wide Identification and Characterization of Ammonium Transporter (AMT) Genes in Chlamydomonas reinhardtii
An updated HACOR score for predicting the failure of noninvasive ventilation: a multicenter prospective observational study
Aorta in Pathologies May Function as an Immune Organ by Upregulating Secretomes for Immune and Vascular Cell Activation, Differentiation and Trans-Differentiation—Early Secretomes may Serve as Drivers for Trained Immunity
Epigallocatechin gallate from green tea effectively blocks infection of SARS-CoV-2 and new variants by inhibiting spike binding to ACE2 receptor
Organelle Crosstalk Regulators Are Regulated in Diseases, Tumors, and Regulatory T Cells: Novel Classification of Organelle Crosstalk Regulators
Caspase-11–mediated enteric neuronal pyroptosis underlies Western diet–induced colonic dysmotility
In Vivo Excision of HIV-1 Provirus by saCas9 and Multiplex Single-Guide RNAs in Animal Models
Analyses of caspase-1-regulated transcriptomes in various tissues lead to identification of novel IL-1β-, IL-18- and sirtuin-1-independent pathways
RNA-directed gene editing specifically eradicates latent and prevents new HIV-1 infection
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