TY - JOUR
T1 - Protein-based films functionalized with a truncated antimicrobial peptide sequence display broad antimicrobial activity
AU - Da Costa, André
AU - Pereira, Ana M.
AU - Sampaio, Paula
AU - Rodríguez-Cabello, José Carlos
AU - Gomes, Andreia C.
AU - Casal, Margarida
AU - Machado, Raul
N1 - Publisher Copyright:
© 2021 American Chemical Society.
PY - 2021/2/8
Y1 - 2021/2/8
N2 - The increasing bacterial resistance to antibiotics is driving strong demand for new antimicrobial biomaterials. This work describes the fabrication of free-standing films exhibiting antimicrobial properties by combining, in the same polypeptide chain, an elastin-like recombinamer comprising 200 repetitions of the pentamer VPAVG (A200) and an 18-amino-acid truncated variant of the antimicrobial peptide BMAP-28, termed BMAP-18. The fusion protein BMAP-18A200 was overexpressed and conveniently purified by a simplified and scalable nonchromatographic process. Free-standing films of BMAP-18A200 demonstrated to be stable without requiring cross-linking agents and displayed high antimicrobial activity against skin pathogens including Gram-negative and Gram-positive bacteria as well as unicellular and filamentous fungi. The antimicrobial activity of the films was mediated by direct contact of cells with the film surface, resulting in compromised structural integrity of microbial cells. Furthermore, the BMAP-18A200 films showed no cytotoxicity on normal human cell lines (skin fibroblasts and keratinocytes). All of these results highlight the potential of these biotechnological multifunctional polymers as new drug-free materials to prevent and treat microbial infections.
AB - The increasing bacterial resistance to antibiotics is driving strong demand for new antimicrobial biomaterials. This work describes the fabrication of free-standing films exhibiting antimicrobial properties by combining, in the same polypeptide chain, an elastin-like recombinamer comprising 200 repetitions of the pentamer VPAVG (A200) and an 18-amino-acid truncated variant of the antimicrobial peptide BMAP-28, termed BMAP-18. The fusion protein BMAP-18A200 was overexpressed and conveniently purified by a simplified and scalable nonchromatographic process. Free-standing films of BMAP-18A200 demonstrated to be stable without requiring cross-linking agents and displayed high antimicrobial activity against skin pathogens including Gram-negative and Gram-positive bacteria as well as unicellular and filamentous fungi. The antimicrobial activity of the films was mediated by direct contact of cells with the film surface, resulting in compromised structural integrity of microbial cells. Furthermore, the BMAP-18A200 films showed no cytotoxicity on normal human cell lines (skin fibroblasts and keratinocytes). All of these results highlight the potential of these biotechnological multifunctional polymers as new drug-free materials to prevent and treat microbial infections.
KW - Antimicrobial materials
KW - Antimicrobial peptides
KW - Elastin-like recombinamers
KW - Multifunctional materials
KW - Skin infections
UR - http://www.scopus.com/inward/record.url?scp=85100786098&partnerID=8YFLogxK
U2 - 10.1021/acsbiomaterials.0c01262
DO - 10.1021/acsbiomaterials.0c01262
M3 - Article
C2 - 33492122
AN - SCOPUS:85100786098
SN - 2373-9878
VL - 7
SP - 451
EP - 461
JO - ACS Biomaterials Science and Engineering
JF - ACS Biomaterials Science and Engineering
IS - 2
ER -