In vitro and in vivo efficacy studies of an engineered endolysin targeting Gram-negative pathogens

  • Hong, Hye-Won
  • Jang, Jaeyeon
  • Kim, Young Deuk
  • Jeong, Tae-Hwan
  • Lee, Dogeun
  • ... Lim, Daejin
  • 외 7명
Citations

WEB OF SCIENCE

6
Citations

SCOPUS

7

초록

Endolysins have drawn considerable attention as viable modalities for antibiotic use. The most significant obstacle for Gram-negative targeting endolysins is the presence of the outer membrane barrier. A heterologously expressed endolysin encoded by bacteriophage PBPA90 infecting Pseudomonas aeruginosa exhibited intrinsic antibacterial activity against P. aeruginosa. The antibacterial efficacy was improved by substituting 15 amino acids and by fusing cecropin A to the N-terminus. The resulting engineered endolysin, LNT103, demonstrated strong antibacterial activity, with minimum inhibitory concentrations as low as 4 mu g/ml, against various Gramnegative pathogens in addition to P. aeruginosa, including Acinetobacter baumannii, Escherichia coli, Klebsiella pneumoniae, Klebsiella aerogenes, and Enterobacter cloacae. The engineered endolysin rendered both the outer and the inner bacterial membranes permeable. It exhibited a synergistic effect with colistin, and additive effects with carbapenem antibiotics. Bacterial resistance development to LNT103 was none to minimal in vitro. Its in vivo efficacy was verified in bacteremia models of mice infected with A. baumannii. The endolysin led to a resensitization of resistant bacteria to meropenem when used in combination in vivo.

키워드

Engineered endolysinGram-negativeCarbapenem-resistant Acinetobacter baumanniiMouse modelESCHERICHIA-COLIANTIBACTERIALRESISTANTART-175
제목
In vitro and in vivo efficacy studies of an engineered endolysin targeting Gram-negative pathogens
저자
Hong, Hye-WonJang, JaeyeonKim, Young DeukJeong, Tae-HwanLee, DogeunPark, KyungahKim, Min SooYoon, In-SooSong, MiryoungSeo, Min-DukYoon, HyunjinLim, DaejinMyung, Heejoon
DOI
10.1016/j.ijbiomac.2025.140463
발행일
2025-04
유형
Article
저널명
International Journal of Biological Macromolecules
302