Abstract
The appearance of microbes resistant to antibiotics requires the development of alternative therapies for the treatment of infectious diseases. In this work two polymers, PTPPF16-EDA and PZnTPPF16-EDA, were synthesized by the nucleophilic aromatic substitution of 5,10,15,20-tetrakis(pentafluorophenyl)porphyrin and its Zn(II) complex with ethylenediamine, respectively. In these structures, the tetrapyrrolic macrocycles were N,N′-ethylene crosslinked, which gives them greater mobility. The absorption spectra of the polymers showed a bathochromic shift of the Soret band of ~10 nm with respect to the monomers. This effect was also found in the red fluorescence emission peaks. Furthermore, both polymeric materials produced singlet molecular oxygen with high quantum yields. In addition, they were capable of generating superoxide anion radicals. Photodynamic inactivation sensitized by these polymers was tested in Staphylococcus aureus and Escherichia coli bacteria. A decrease in cell viability greater than 7 log (99.9999%) was observed in S. aureus incubated with 0.5 μM photosensitizer upon 30 min of irradiation. Under these conditions, a low inactivation of E. coli (0.5 log) was found. However, when the cells were treated with KI, the elimination of the Gram-negative bacteria was achieved. Therefore, these polymeric structures are interesting antimicrobial photosensitizing materials for the inactivation of pathogens.
Funder
National Scientific and Technical Research Council
Agencia Nacional de Promoción Científica y Tecnológica
Subject
Polymers and Plastics,General Chemistry
Reference75 articles.
1. Indications for medical antibiotic prophylaxis and potential targets for antimicrobial stewardship intervention: A narrative review;Clin. Microbiol. Infect.,2021
2. Antimicrobial Resistance in the Context of the Sustainable Development Goals: A Brief Review;Eur. J. Investig. Health Psychol. Educ.,2021
3. Puvača, N., and Frutos, R.D.L. (2021). Antimicrobial Resistance in Escherichia coli Strains Isolated from Humans and Pet Animals. Antibiotics, 10.
4. Novel antimicrobial agents for combating antibiotic-resistant bacteria;Adv. Drug Deliv. Rev.,2022
5. Bentham Science Publisher Hemlata, Jan, A.T., and Tiwari, A. (2017). The Ever Changing Face of Antibiotic Resistance: Prevailing Problems and Preventive Measures. Curr. Drug Metab., 18, 69–77.
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