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Conformationally Restricted Dipeptide-Based Nanoparticles for Delivery of siRNA in Experimental Liver Cirrhosis
Saikat Biswas1, Nitin Yadav1, Pinky Juneja2
1International Centre for Genetic Engineering and Biotechnology, New Delhi, Delhi 110067, India.
Abstract:
Liver cirrhosis is a major health problem with multiple associated complications. The presently available drug delivery systems showed moderate site-specific delivery of antifibrotic molecules to the diseased liver; therefore, research on more effective and selective delivery systems in the context of liver cirrhosis remains a necessity in clinical investigation. The aim of the present study was to develop a peptide-based targeted nanocarrier to deliver an oligonucleotide to the hepatic sinusoidal and perivascular regions of the cirrhotic liver. We have synthesized and characterized a conformationally restricted targeted pentapeptide (RΔFRGD), which contains an unnatural amino acid, α,β-dehydrophenylalanine (ΔF). The RΔFRGD self-assembled into spherical nanoparticles (NPs) and was characterized by dynamic light scattering (DLS) and transmission electron microscopy (TEM). Next, we investigated the delivery potential of the pentapeptide-based NPs to make a stable complex with a well-established small interference RNA and studied its site-specific delivery in experimental liver cirrhosis. We used siNR4A1 of the orphan nuclear receptor 4A1 (NR4A1), a well-known regulatory checkpoint for controlling liver fibrosis. Peptide NPs and their complex with siNR4A1 showed high biocompatibility against various mammalian cell lines. Hepatic tissue biodistribution analysis illustrated that targeted NPs predominantly accumulated in the cirrhotic liver compared to normal rats, specifically in sinusoidal and perivascular areas. A significant downregulation of the NR4A1 mRNA expression (-70%) andlower levels of the NR4A1/GAPDH ratio (-55%) were observed in the RΔFRGD-siNR4A1 nanocomplex-treated group in comparison to the RΔFRGD-vehicle group (RΔFRGD-Veh) at the gene and protein levels, respectively. In addition, in vivo inhibition of NR4A1 produced a significant aggravation in hepatic fibrosis compared with siRNA-vehicle-treated rats (+41% in the MT stain). The novel pentapeptide-based targeted delivery system can be further evaluated and validated for therapeutic purposes in various pathological conditions.
Insights
Researchers developed a novel peptide-based nanocarrier for targeted delivery of antifibrotic oligonucleotides to the cirrhotic liver. This system demonstrated enhanced accumulation and significant downregulation of fibrosis markers in experimental liver cirrhosis.
Area of Science:
- Nanomedicine
- Hepatology
- Drug Delivery Systems
Background:
- Liver cirrhosis presents significant health challenges with limited effective drug delivery for antifibrotic agents.
- Existing delivery systems show moderate site-specific targeting to the diseased liver, necessitating improved strategies.
- Targeted delivery to hepatic sinusoidal and perivascular regions is crucial for treating liver cirrhosis.
Purpose of the Study:
- To develop a peptide-based targeted nanocarrier for oligonucleotide delivery to cirrhotic liver.
- To investigate the site-specific delivery and therapeutic efficacy of the nanocarrier system in experimental liver cirrhosis.
Main Methods:
- Synthesis and characterization of a conformationally restricted pentapeptide (RΔFRGD) self-assembling into nanoparticles (NPs).
- Complexation of NPs with small interfering RNA targeting NR4A1 (siNR4A1) for antifibrotic therapy.
- Evaluation of NP biocompatibility, hepatic tissue biodistribution, and NR4A1 gene/protein expression in experimental liver cirrhosis models.
Main Results:
- Targeted NPs demonstrated high biocompatibility and preferential accumulation in the cirrhotic liver, specifically in sinusoidal and perivascular areas.
- RΔFRGD-siNR4A1 nanocomplex treatment led to significant downregulation of NR4A1 mRNA (-70%) and protein levels (-55%).
- Inhibition of NR4A1 aggravated hepatic fibrosis, indicating the role of NR4A1 in fibrosis progression.
Conclusions:
- The novel pentapeptide-based targeted nanocarrier system effectively delivers oligonucleotides to the cirrhotic liver.
- This targeted delivery approach shows potential for therapeutic intervention in liver fibrosis and cirrhosis.
- Further evaluation for therapeutic applications in various pathological conditions is warranted.
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