Related Experiment Video
Updated: May 10, 2026

Predicting In Vivo Payloads Delivery using a Blood-brain Tumor-barrier in a Dish
Published on: April 16, 2019
Can we predict blood brain barrier permeability of ligands using computational approaches?
Rajnish Kumar1, Anju Sharma, Rajesh Kumar Tiwari
1Amity Institute of Biotechnology (AIB), Amity University Uttar Pradesh (AUUP), Lucknow 226010, Uttar Pradesh, India.
Abstract:
An ideal neurotherapeutics agent for central nervous system (CNS) molecular targets should cross Blood Brain Barrier (BBB) whereas peripherally acting agent should not cross BBB to avoid CNS related side effects. Hence prediction of BBB permeability index has been proved to be an efficient tool for drug discovery and development. Various experimental and computational approaches are being used in recent past for the prediction of BBB permeability and they have been successful up to some extent. However the accuracy and authenticity of these methods have been under question. The current review article attempts to answer a vital question that is, can we predict BBB permeability using computational approaches.
Related Concept Videos
Physiological Barriers
The blood endothelial barrier is the most porous of these. It allows all small ionized, un-ionized, and lipophilic molecules to pass through the endothelial lining into the interstitial space...
Factors Affecting Drug Distribution: Physiological Barriers
The capillary endothelial barrier allows only smaller molecules below 600 Da (Daltons) to pass through. It also restricts drugs like heparin that are bound to blood components, limiting their movement within the bloodstream.
The...
The Blood-brain Barrier
Bioavailability Enhancement: Drug Permeability Enhancement
Factors Affecting Drug Distribution: Tissue Permeability
Small molecules with a molecular weight below 500 to 600 Daltons can easily pass through the capillary membrane, gaining access to different tissues. Larger...
Physiological Pharmacokinetic Models: Blood Flow-Limited Versus Diffusion-Limited Models

