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

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For Research Use Only. Not For Clinical Use

Supports

Formulation Background of Liposome Research Highlights
Resources Technical Supports Featured Services Knowledge Center
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
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
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