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Published on: April 16, 2019
Peptide-Based Nanoarchitectonics for the Treatment of Liver Fibrosis
Bowen Li1, Yan Huang1, Qianli Zou1
1School of Pharmacy, Anhui Medical University, Hefei, 230032, P. R. China.
Abstract:
Liver fibrosis is a process of excessive accumulation of extracellular matrix caused by liver injury. Liver fibrosis can progress to cirrhosis or even liver cancer without proper intervention. Until now, no effective therapeutic drugs have been clinically approved for treating liver fibrosis. Hence, the development of safe and effective antifibrotic drugs is particularly important. As a representative biomaterial, peptides have been investigated as key components for constructing antifibrotic nanomaterials given their advantages of biological origination, synthetic availability, and good biocompatibility. Peptides serve as multifunctional motifs in antifibrotic nanomaterials, such as liver-targeting molecules, antifibrotic molecules, and self-assembling building blocks for the formation of the nanomaterials. In this review, we focus on peptide-based nanoarchitectonics for treating liver fibrosis, including nanomaterials modified with liver-targeting peptides, nanomaterials for the efficient delivery of antifibrotic peptides, and self-assembled peptide nanomaterials for the delivery of antifibrotic drugs. The design rules of these peptide-based nanomaterials are described. The antifibrotic mechanisms and effects of these peptide-based nanomaterials in treating liver fibrosis and related diseases are highlighted. The challenges and future perspectives of using peptide-based nanoarchitectonics for the treatment of liver fibrosis are discussed. These results are expected to accelerate the rational design and clinical translation of antifibrotic nanomaterials.
Insights
Peptide-based nanomaterials show promise for treating liver fibrosis, a condition lacking effective drugs. These advanced materials offer targeted delivery and self-assembly for enhanced antifibrotic therapies.
Area of Science:
- Biomaterials Science
- Nanotechnology
- Hepatology
Background:
- Liver fibrosis involves excessive extracellular matrix accumulation due to liver injury, potentially leading to cirrhosis or liver cancer.
- Current therapeutic options for liver fibrosis are limited, highlighting the need for novel and effective treatments.
- Peptides are valuable biomaterials for antifibrotic nanomaterials due to their biocompatibility and versatility.
Purpose of the Study:
- To review peptide-based nanoarchitectonics for liver fibrosis treatment.
- To discuss the design, mechanisms, and effects of these nanomaterials.
- To explore challenges and future directions for clinical translation.
Main Methods:
- Review of literature on peptide-based nanomaterials for liver fibrosis.
- Analysis of nanomaterials incorporating liver-targeting peptides.
- Examination of self-assembled peptide nanomaterials for drug delivery.
Main Results:
- Peptide nanomaterials can be designed for liver targeting, antifibrotic activity, and self-assembly.
- These nanomaterials demonstrate potential in treating liver fibrosis and related conditions.
- Design principles for effective peptide-based antifibrotic nanoarchitectonics are outlined.
Conclusions:
- Peptide-based nanoarchitectonics represent a promising strategy for developing novel antifibrotic therapies.
- Further research and rational design are crucial for the clinical translation of these advanced materials.
- This review provides insights into the design and application of peptide nanomaterials for liver fibrosis treatment.

