Chemical modulation of M13 bacteriophage and its functional opportunities for nanomedicine.

Woo-Jae Chung, Doe-Young Lee, So Young Yoo

Journal: International journal of nanomedicine 2015;9():5825-36

PMID: 25540583

Abstract

M13 bacteriophage (phage) has emerged as an attractive bionanomaterial owing to its genetically tunable surface chemistry and its potential to self-assemble into hierarchical structures. Furthermore, because of its unique nanoscopic structure, phage has been proposed as a model system in soft condensed physics and as a biomimetic building block for structured functional materials. Genetic engineering of phage provides great opportunities to develop novel nanomaterials with functional surface peptide motifs; however, this biological approach is generally limited to peptides containing the 20 natural amino acids. To extend the scope of phage applications, strategies involving chemical modification have been employed to incorporate a wider range of functional groups, including synthetic chemical compounds. In this review, we introduce the design of chemoselective phage functionalization and discuss how such a strategy is combined with genetic engineering for a variety of medical applications, as reported in recent literature.

Address: College of Biotechnology and Bioengineering, Sungkyunkwan University, Suwon, Republic of Korea.; BIO-IT Foundry Technology Institute, Pusan National University, Busan, Republic of Korea ; Research Institute for Convergence of Biomedical Science and Technology, Pusan National University Yangsan Hospital, Yangsan, Republic of Korea.
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