Clodronate Liposomes for Macrophage Depletion
Precise Clodronate Content, Controlled Particle Size —Ensuring Safe and Reliable in vivo Experiments
Clodronate Liposomes represent the most mature, convenient, and cost-effective tool for in vivo macrophage depletion. Widely regarded as the gold standard, they selectively eliminate macrophages across multiple tissues, including the liver, spleen, lungs, and bloodstream.

Figure Mechanism of Macrophage Depletion by Clodronate Liposomes
Clodronate is encapsulated within the aqueous phase of phospholipid vesicles to form Clodronate Liposomes. Clodronate cannot freely pass through the phospholipid bilayer of the liposomes. After injection into a biological organism, the Clodronate Liposomes are phagocytosed by macrophages. Under the action of lysosomal phosphatases within the macrophages, the clodronate dissolved inside the liposomes is gradually released and accumulates within the cell. When a certain concentration is reached, the macrophages suffer irreversible damage, inducing apoptosis. The clodronate within the dead cells is then released extracellularly and excreted from the body.
Yeasen has developed an innovative nanoparticle-based reagent that delivers exceptional biocompatibility, reliable depletion efficiency, and stable performance across a wide range of in vivo studies.
Key Highlights
Performance Data
Macrophage Depletion Technical Resource
Lesson 1. Injection Methods and Administration Strategies

Lesson 2. Liver Macrophage Depletion

Lesson 3. Lung Macrophage Depletion

Lesson 4. Intestinal Macrophage Depletion

Lesson 5. Brain Macrophage Depletion

Lesson 6. Macrophage Depletion in C57BL/6 Mice

Lesson 7. Peripheral Blood Macrophage Depletion

Lesson 8. Spleen Macrophage Depletion

Lesson 9. Testis Macrophage Depletion

Lesson 10. Macrophages and In Vitro/In Vivo Research Strategies

Lesson 11. Macrophage Depletion Procedures and Literature Case Analysis

Lesson 12. Macrophage Depletion FAQ

FAQs
Cited in High-impact Publications | Total IF >1000
Backed by consistent high quality, numerous peer-reviewed studies on our depletion reagents and control liposomes have appeared in top-tier journals in the past five years, verifying their reliable performance in practical research.

Journal | IF | Reference |
|---|---|---|
Science | 45.8 | |
Signal Transduct Target Ther | 52.7 | |
CANCER CELL | 44.5 | |
Immunity | 26.3 | |
Science Bulletin | 21.1 | |
Cell Mol Immunol | 19.8 | |
Mol Cell | 18 | |
Adv Sci | 17.5 | |
Cancer Res | 16.6 | |
...... |
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