Targeting Ligand Independent Tropism of siRNA‐LNP by Small Molecules for Directed Therapy of Liver or Myeloid Immune Cells

Author:

Lin Cheng12,Mostafa Asmaa13,Jans Alexander1,Wolters Justina Clarinda4ORCID,Mohamed Mohamed Ramadan1,Van der Vorst Emiel P. C.567,Trautwein Christian1,Bartneck Matthias1ORCID

Affiliation:

1. Department of Internal Medicine III University Hospital RWTH Aachen Pauwelsstraße 30 52074 Aachen Germany

2. Department of Rheumatology and Shanghai Institute of Rheumatology Renji Hospital School of Medicine Shanghai Jiao Tong University Shanghai China

3. Department of Microbial Biotechnology Biotechnology Research Institute National Research Center 33 El‐Bohouth St., El‐Dokki Giza 12622 Egypt

4. Department of Pediatrics Section Systems Medicine of Metabolism and Signaling University of Groningen University Medical Center Groningen Groningen 9713 AV The Netherlands

5. Interdisciplinary Center for Clinical Research (IZKF) RWTH Aachen University 52074 Aachen Germany

6. Institute for Molecular Cardiovascular Research (IMCAR) RWTH Aachen University 52074 Aachen Germany

7. Institute for Cardiovascular Prevention (IPEK) Ludwig‐Maximilians‐University Munich 80336 Munich Germany

Abstract

AbstractHepatic clearance of lipid nanoparticles (LNP) with encapsulated nucleic acids restricts their therapeutic applicability. Therefore, tools for regulating hepatic clearance are of high interest for nucleic acid delivery. To this end, this work employs wild‐type (WT) and low‐density lipoprotein receptor (Ldlr)−/− mice pretreated with either a leukotriene B4 receptor inhibitor (BLT1i) or a high‐density lipoprotein receptor inhibitor (HDLRi) prior to the injection of siRNA‐LNP. This work is able to demonstrate significantly increased hepatic uptake of siRNA‐LNP by the BLT1i in Ldlr−/− mice by in vivo imaging and discover an induction of specific uptake‐related proteins. Irrespective of the inhibitors and Ldlr deficiency, the siRNA‐LNP induced RNA‐binding and transport‐related proteins in liver, including haptoglobin (HP) that is also identified as most upregulated serum protein. This work observes a downregulation of proteins functioning in hepatic detoxification and of serum opsonins. Most strikingly, the HDLRi reduces hepatic uptake and increases siRNA accumulation in spleen and myeloid immune cells of blood and liver. RNA sequencing demonstrates leukocyte recruitment by the siRNA‐LNP and the HDLRi through induction of chemokine ligands in liver tissue. The data provide insights into key mechanisms of siRNA‐LNP biodistribution and indicate that the HDLRi has potential for extrahepatic and leukocyte targeting.

Funder

Deutsche Forschungsgemeinschaft

Wilhelm Sander-Stiftung

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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