Area of research
Biomedical Engineering · Physiology
Research interest
Research focused on Neuroinflammation and Disease, with related work in Photothermal therapy, Nanotechnology, Tumor microenvironment. Notable publications include 'Biomimetic manganese-based theranostic nanoplatform for cancer multimodal imaging and twofold immunotherapy', 'Anti-Parkinsonian Therapy: Strategies for Crossing the Blood–Brain Barrier and Nano-Biological Effects of Nanomaterials', and 'Highly BBB-permeable nanomedicine reverses neuroapoptosis and neuroinflammation to treat Alzheimer's disease'.
The evolutionary journey of essential oils: From synthesis to biomedical applications
Robust Metformin Nanosystem Promotes Hair Growth in Androgenetic Alopecia
Biomimetic nanodelivery system with simultaneous blood–brain barrier-crossing and neuroprotective abilities for anti-parkinsonian therapy
Biomimetic photosynthesis nanoreactors based thylakoid synergy with metformin for reversing tumor immunosuppressive microenvironment therapy
A customized immunomodulator reinforces the T cell-mediated immunological cascade for cancer therapy
Highly BBB-permeable nanomedicine reverses neuroapoptosis and neuroinflammation to treat Alzheimer's disease
Biomimetic MDSCs membrane coated black phosphorus nanosheets system for photothermal therapy/photodynamic therapy synergized chemotherapy of cancer
Theoretical basis, state and challenges of living cell-based drug delivery systems
Minocycline nanoplatform penetrates the BBB and enables the targeted treatment of Parkinson's disease with cognitive impairment
Lymph node targeting strategy using a hydrogel sustained-release system to load effector memory T cells improves the anti-tumor efficacy of anti-PD-1
Nanomedicines for Alzheimer's disease: Therapies based on pathological mechanisms
Microwave-responsive gadolinium metal-organic frameworks nanosystem for MRI-guided cancer thermotherapy and synergistic immunotherapy
Biomimetic manganese-based theranostic nanoplatform for cancer multimodal imaging and twofold immunotherapy
Anti-Parkinsonian Therapy: Strategies for Crossing the Blood–Brain Barrier and Nano-Biological Effects of Nanomaterials
“Swiss Army Knife” black phosphorus-based nanodelivery platform for synergistic antiparkinsonian therapy via remodeling the brain microenvironment
Ultrasmall Coordination Polymers for Alleviating ROS-Mediated Inflammatory and Realizing Neuroprotection against Parkinson’s Disease
Advanced materials and technologies for oral diseases
Efficient Sustained-Release Nanoparticle Delivery System Protects Nigral Neurons in a Toxin Model of Parkinson’s Disease
Cucurbituril-Oriented Nanoplatforms in Biomedical Applications