Creative Biolabs-Lipid Based Drug Delivery

Podcast

We invited senior specialists to present in our podcast series generated from our original content of scientific presentations to discuss the most cutting-edge technologies and advancements in the field of lipid-based drug delivery. If you have any questions, please contact us at .

What Should We Know About Liposomes
What Should We Know About Liposomes
  
  • What Should We Know About Liposomes 00:09:26
  • Preliminary Understanding of Cationic Liposomes 00:09:02
  • What are the Methods Used to Prepare Liposomes 00:14:12
  • What Affects the Stability of Liposomes 00:14:32
  • How To Characterize the Quality of Liposomes 00:12:44
  • The Interaction Between Liposomes and Cells and The Toxicity of Cationic Liposomes 00:09:47
  • Various Applications of Liposomes 00:09:37
  • Basic Information About DNA-liposome Complexes 00:14:49
  • What Theory is Involved in the Interaction of DNA and Liposomes 00:08:42
  • Information on the Structure of DNA-cationic Liposome Complexes 00:14:48
  • How to Characterize the Genosomes 00:09:09
  • Pharmacokinetics of DNA-liposome Complexes 00:08:45
  • Does the Genosome Produce Toxicity in Vivo 00:09:08
  • In Vitro Expression Of DNA-liposome Complexes 00:08:55
  • Optimization Of Liposomes For In Vitro Transfection 00:08:44
  • Difficulties In Transfection And Expression Of Genosomes In Vivo 00:08:54
  • Limitations of Naked DNA Administration In Vivo 00:08:43
  • Stable Genosomes And Related Mechanisms 00:08:49
  • What Should We Know About Pulmonary Delivery Of Genosomes 00:10:55
  • Summary Of Findings Across Multiple Routes Of Administration 00:14:12
  • Why Study The Structure-activity Relationship Of The Genosome 00:08:34
  • Results Of Research On Cholesterol-anchored Cationic Lipids 00:09:02
  • Results Of Research On Diacyl Chain Cationic Lipids 00:11:42
  • What Colloidal Genosomes Are Effective 00:10:30
  • Discussion On Structure-Activity Relationship Research at The Colloid Level 00:10:07
  • Why Do We Need to Understand the Mechanism of Transfection 00:08:35
  • What Is the Mechanism Of In Vitro Transfection 00:08:42
  • What Is the Mechanism Of In Vivo Transfection 00:08:51
  • Factors That Determine Transfection Efficiency 00:08:47
  • Basic Understanding of Antisense Oligonucleotides 00:09:25
  • Deep Dive into The Antisense Oligonucleotides 00:08:52
  • Delivery Systems for Antisense Oligonucleotides 00:11:07
  • An Overview of Studies on Delivery of Antisense Oligonucleotides by Anionic or Neutral Liposomes 00:11:14
  • Application Of Cationic Liposomes in Oligonucleotide Delivery 00:12:00
  • Liposomes Appear to Be the Most Promising Delivery Vehicle for Ribozyme Delive 00:11:59
  • Advantages And Disadvantages of Cationic Liposome Delivery of Genetic Material 00:09:05
  • Review Of Other Important Delivery Systems 00:09:02

1 2 3 4

For Research Use Only. Not For Clinical Use

Supports

Formulation Background of Liposome Research Highlights
Resources Technical Supports Featured Services Knowledge Center
Optimizing LNP Molar Ratios for Transfection Efficiency
Scalability Challenges in mRNA-LNP Manufacturing
Beyond mRNA: LNP Delivery for CRISPR/Cas9
Cationic Lipids Evolution: DOTAP to Ionizable Lipids
LNP Storage Stability: Lyophilization vs. Liquid
Modulating LNP Biodistribution: Overcoming Liver Accumulation
Active vs. Passive Targeting (EPR): A Guide to Tumor Drug Delivery
Immunoliposomes: Comparing Pre-insertion vs. Post-insertion Techniques
Crossing the BBB: Advances in Transferrin and Peptide-Modified Liposomes
pH-Responsive Liposomes for Tumor Microenvironment
Thermosensitive Liposomes combined with HIFU
Aptamer-Modified Liposomes: A Cost-Effective Antibody Alternative
Ethosomes vs Transfersomes for Dermal Delivery
Strategies for Encapsulating Poorly Water-Soluble Small Molecules in Liposomes
Multivesicular Liposomes: The Architecture of Sustained Release
Mechanisms of Liposomal Adjuvants in Enhancing Vaccine Immune Response
Protecting Enzymatic Activity: Liposomal Encapsulation Strategies for Enzymes
Cryo-TEM vs. DLS: Interpreting Discrepancies in Liposome Particle Size Data
Validating In Vitro Release Methods: Dialysis vs. Sample Separation Techniques
Predicting Long-Term Stability of Liposomal Suspensions using Zeta Potential
Troubleshooting Low Liposome Encapsulation Efficiency
Application of Multi-omics Analysis in Liposome Toxicology Assessment
The Ultimate Guide to Liposome Preparation
Fluorescent Liposomes for Cellular Uptake: Labeling, Controls, and Troubleshooting
How to Design Stealth Liposomes for Long Circulation
Homemade vs. Commercial Kits: Why Standardization Matters in Liposome Research
Develop Targeted Liposomes: Target Selection to Cellular Validation
Optimizing Ligand Density on Liposomes for Targeted Delivery
Directional Antibody Conjugation and Activity Retention in Immunoliposome Development
Peptide-Modified Liposomes: Screening and Conjugation Strategies
High-Affinity Aptamers and Efficient Liposomal Delivery
When to Use Cleavable PEG in Lipid-Based Delivery
Glycosylated Liposomes: Balancing Receptor-Mediated Uptake and Immune Recognition
Folic Acid and Other Vitamin Ligands for Targeted Liposomes
Formulation Optimization to Targeting: Liposome Parameters and Biological Readouts
Imaging Liposome Development: Labeling Strategy, Signal-to-Noise Ratio, and Stability
Charged Liposome Development: Cationic vs Neutral vs Anionic
Cationic Liposome Development for Efficient Transfection with Reduced Toxicity
Neutral Liposome Development for Stability and Long Circulation
Anionic Liposomes in Drug Delivery: Surface Charge and Cellular Uptake
PG Anionic Liposome: Membrane Stability and Payload Compatibility
Transfersome Development: Edge Activators, Size Optimization, and Permeation Testing
High-Ethanol Ethosomes: Drug Loading, Stability, and Skin Irritation in Transdermal Delivery
Dermal Delivery: Franz Diffusion Cells vs. Dialysis
Liposomes Fail in Skin Applications: A Practical Troubleshooting Guide
Key CQAs for Liposomal Skin Delivery: Stability, Loading and Irritation
Gradient Loading and Formulation Design for Small Molecule Liposomes
Protein & Peptide Liposomes: Preventing Denaturation and Controlled Release
Liposome vs. LNP: The Key Difference in Nucleic Acid Delivery
Nucleic Acid Liposomal Delivery: Endosomal Escape and Expression
Prodrug Liposomes: Translating Chemical Design into Delivery Advantages
Enzyme-Loaded Liposomes: Activity Retention, Protection & Batch Consistency
Adjuvant Liposome Composition Shapes the Immune Activation Window & Safety Profile
Multivesicular Liposomes: High Payload Capacity for Sustained Drug Release
Encapsulation vs. Delivery: Payload Compatibility in Liposomal Formulations
Liposome Payload Troubleshooting: Low Encapsulation, Precipitation & Uncontrolled Release
Webinars

Online Inquiry