Area of research
Microbiology · Molecular Biology
Research interest
Research interests include Apoptosis, Chemistry, Medicine, Cancer, Cell cycle, and In vivo.
Brain-targeted delivery of siRNA via non-viral delivery systems, the therapeutic strategy for Alzheimer's disease—Unveiling challenges and prospects
Targeting Microbiome Metabolites: Reshaping Immunotherapy and Clinical Management Strategies for Colorectal Cancer
Artemisia absinthium L. Extract Targeting the JAK2/STAT3 Pathway to Ameliorate Atherosclerosis
Targeted discovery of multi-action bioactive compounds from Capparis spinosa L. for mitigating diabetic cardiomyopathy
Research Progress of Plant-Derived Natural Products against Drug-Resistant Cancer
Non-viral vectors combined delivery of siRNA and anti-cancer drugs to reverse tumor multidrug resistance
ROS-responsive supramolecular antimicrobial peptides-based nanoprodrugs for cervical cancer therapy
A Zeolitic Imidazolate Framework-Based Antimicrobial Peptide Delivery System with Enhanced Anticancer Activity and Low Systemic Toxicity
Plant-derived natural products and combination therapy in liver cancer
Total Flavonoids in Artemisia absinthium L. and Evaluation of Its Anticancer Activity
Phytosphingosine inhibits the growth of lung adenocarcinoma cells by inducing G2/M-phase arrest, apoptosis, and mitochondria-dependent pathway cell death in vitro and in vivo
Total flavonoids in Artemisia absinthium L. and evaluation of its anticancer activity
Cecropin-Loaded Zeolitic Imidazolate Framework Nanoparticles with High Biocompatibility and Cervical Cancer Cell Toxicity
Potential Mechanisms of Plant-Derived Natural Products in the Treatment of Cervical Cancer
<i>Cistanche tubulosa</i> Phenylethanoid Glycosides Induce Apoptosis of Hepatocellular Carcinoma Cells by Mitochondria-Dependent and MAPK Pathways and Enhance Antitumor Effect through Combination with Cisplatin
Marchantia polymorpha L. ethanol extract induces apoptosis in hepatocellular carcinoma cells via intrinsic- and endoplasmic reticulum stress-associated pathways
Chemical Constituents and Antitumor Mechanisms of <i>Artemisia</i>
The petroleum ether extract of<i>Brassica rapa</i>L. induces apoptosis of lung adenocarcinoma cells<i>via</i>the mitochondria-dependent pathway
Cistanche Tubulosa Phenylethanoid Glycosides Induce Apoptosis of Hepatocellular Carcinoma Cells by Mitochondria-Dependent and MAPK&nbsp;Pathways and Enhance Antitumor Effect Through Combination With Cisplatin
<p>Preparation and Characterization of Anti-GPC3 Nanobody Against Hepatocellular Carcinoma</p>
The Extracts of Artemisia absinthium L. Suppress the Growth of Hepatocellular Carcinoma Cells through Induction of Apoptosis via Endoplasmic Reticulum Stress and Mitochondrial-Dependent Pathway
Cistanche tubulosa phenylethanoid glycosides induce apoptosis in H22 hepatocellular carcinoma cells through both extrinsic and intrinsic signaling pathways
Cistanche tubulosa phenylethanoid glycosides induce apoptosis in Eca‑109 cells via the mitochondria‑dependent pathway
Therapeutic effects of antimicrobial peptide on malignant ascites in a mouse model
Effects of Artemisia absinthium L. extracts on the maturation and function of dendritic cells
Effects of water extracts of Lepidium meyenii walp (maca) growing in two different places in Xinjiang on the maturation and function of dendritic cells
Combination of cecropinXJ and LY294002 induces synergistic cytotoxicity, and apoptosis in human gastric cancer cells via inhibition of the PI3K/Akt signaling pathway
The antibacterial peptide from Bombyx mori cecropinXJ induced growth arrest and apoptosis in human hepatocellular carcinoma cells
A potential food biopreservative, CecXJ-37N, non-covalently intercalates into the nucleotides of bacterial genomic DNA beyond membrane attack
Computational and Experimental Investigation of the Antimicrobial Peptide Cecropin XJ and its Ligands as the Impact Factors of Antibacterial Activity