Development of finely tuned liposome nanoplatform for macrophage depletion

Author:

Choi Tae Hyeon1,Yoo Ran Ji1,Park Ji Yong1,Kim Ji Yoon1,Ann Young Chan1,Park Jeongbin2,Kim Jin Sil1,Kim Kyuwan1,Shin Yu Jin1,Lee Yong Jin3,Lee Kyo Chul3,Chung Hyewon1,Seok Seung Hyeok1,Im Hyung-Jun2,Lee Yun-Sang1

Affiliation:

1. Seoul National University College of Medicine

2. Seoul National University

3. Korea Institute of Radiological and Medical Sciences (KIRAMS)

Abstract

Abstract Background Immunotherapy with clodronate-encapsulated liposomes, which induce macrophage depletion, has been studied extensively. However, previously reported liposomal formulation-based drugs (Clodrosome® and m-Clodrosome®) are limited by their inconsistent size and therapeutic efficacy. Thus, we aimed to achieve consistent therapeutic effects by effectively depleting macrophages with uniform-sized liposomes.Results We developed four types of click chemistry-based liposome nanoplatforms that were uniformly sized and encapsulated with clodronate, for effective macrophage depletion, followed by conjugation with Man-N3 and radiolabeling. Functionalization with Man-N3 improves the specific targeting of M2 macrophages, and radioisotope labeling enables in vivo imaging of the liposome nanoplatforms. The functionalized liposome nanoplatforms are stable under physiological conditions. The difference in the biodistribution of the four liposome nanoplatforms in vivo were recorded using positron emission tomography imaging. Among the four platforms, the clodronate-encapsulated mannosylated liposome effectively depleted M2 macrophages in the normal liver and tumor microenvironment ex vivo compared to that by Clodrosome® and m-Clodrosome®.Conclusion The newly-developed liposome nanoplatform, with finely tuned size control, high in vivo stability, and excellent ex vivo M2 macrophage targeting and depletion effects, is a promising macrophage-depleting agent.

Publisher

Research Square Platform LLC

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