Upconversion Nanoparticle-Based Strategy for Crossing the Blood-Brain Barrier to Treat the Central Nervous System

Libing Fu1, Roger Chung1, Bingyang Shi2

  • 1Department of Biomedical Sciences, Faculty of Medicine & Health Sciences, Macquarie University, Sydney, NSW, Australia.

Related Concept Videos

Generation of a Human iPSC-Based Blood-Brain Barrier Chip10:20

Generation of a Human iPSC-Based Blood-Brain Barrier Chip

The blood-brain barrier (BBB) is a multicellular neurovascular unit tightly regulating brain homeostasis. By combining human iPSCs and organ-on-chip technologies, we have generated a personalized BBB chip, suitable for disease modeling and CNS drug penetrability predictions. A detailed protocol is described for the generation and operation of the BBB...
13.5K
Systemic and Local Drug Delivery for Treating Diseases of the Central Nervous System in Rodent Models11:51

Systemic and Local Drug Delivery for Treating Diseases of the Central Nervous System in Rodent Models

Thorough preclinical testing of drugs that act in the central nervous system often involves assessing and comparing drug biodistribution in association with specific routes of administration. Here, three commonly used methods of systemic delivery (intravenous, intraperitoneal, and oral) as well as a method for local delivery (convection-enhanced delivery) are demonstrated in...
31.4K
Reconstruction of the Blood-Brain Barrier In Vitro to Model and Therapeutically Target Neurological Disease06:19

Reconstruction of the Blood-Brain Barrier In Vitro to Model and Therapeutically Target Neurological Disease

The blood-brain barrier (BBB) has a crucial role in sustaining a stable and healthy brain environment. BBB dysfunction is associated with many neurological diseases. We have developed a 3D, stem-cell-derived model of the BBB to investigate cerebrovascular pathology, BBB integrity, and how the BBB is altered by genetics and...
2.8K
Intrathecal Delivery of Viruses in a Mouse Model for Treating Central Nervous System Diseases03:33

Intrathecal Delivery of Viruses in a Mouse Model for Treating Central Nervous System Diseases

Source: Li, D., et al. Direct Intrathecal Injection of Recombinant Adeno-associated Viruses in Adult Mice. J. Vis. Exp. (2019)This video demonstrates the procedure for the intrathecal injection of adeno-associated viruses (AAV) into the cerebrospinal fluid (CSF) of an awake mouse, covering syringe preparation, spinal alignment, and precise needle insertion. This method validates targeted gene delivery, supporting its potential for CNS...
845
Improved Method for the Preparation of a Human Cell-based, Contact Model of the Blood-Brain Barrier08:40

Improved Method for the Preparation of a Human Cell-based, Contact Model of the Blood-Brain Barrier

Establishment of human models of the blood-brain barrier (BBB) can benefit research into brain conditions associated with BBB failure. We describe here an improved technique for preparation of a contact BBB model, which permits coculturing of human astrocytes and brain endothelial cells on the opposite sides of a porous...
17.0K
An In Vitro Model for Studying Pathogen Crossing of the Blood-Brain Barrier and Brain Cell Infection02:41

An In Vitro Model for Studying Pathogen Crossing of the Blood-Brain Barrier and Brain Cell Infection

This video demonstrates an in vitro model to study pathogens crossing the blood-brain barrier (BBB). Microvascular endothelial cells, which express tight junctions, form an endothelial layer in the upper chamber, while neurons, astrocytes, and microglia represent the brain parenchyma in the lower chamber, separated by a porous membrane. Virus infection in the BBB model mimics the pathogen crossing from blood to the brain. Upon introducing a neurotropic virus, it crosses the BBB via...
565