Photosensitizer of phthalocyanine-conjugated chitosan-doped nano-silver for inactivation against bacteria and promote wound healing

Wenqing Lai , Huanliang Liu , Jun Yan, Lei Tian, Yue Shi, Zhuge Xi, Bencheng Lin
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Abstract

Controlling microbial infection should receive more attention and research support against the rapidly growing phenomenon of bacterial resistance to antibiotics caused by the abuse and inappropriate use of antibiotics. Photodynamic antibacterial chemotherapy should be an alternative option to the antibiotic resistance problem. In this study, new photosensitive material of phthalocyanine-modified chitosan (Pc-CS) was synthesized and studied to effectively inactivate Gram-positive and Gram-negative bacteria, including drug-resistant strains, through photodynamic action. The new photosensitive material of Pc-CS@Ag which was synthesized by phthalocyanine-conjugated chitosan and doping nano-silver could photodynamically inactivate the Gram-positive and Gram-negative bacteria with 90 % maximum effect concentration (EC90) of 3.12–6.25 µg/mL, and had the similar eradiation activity against drug-resistant bacteria (EC90=6.25 µg/mL). Chitosan conjugation and nano-silver doping had less influence on the singlet oxygen yield of phthalocyanine. The material exhibited significant concentration and light intensity dependence in the photodynamic antibacterial mechanism and had a visible post-antibiotic effect. Moreover, the photosensitive material was effective in healing wounds in BALB/c mice. The healing wounds results suggest that the photosensitive material ameliorate excision wounds, and wound healing could be due to their effective antimicrobial activity and biocompatibility. Therefore, this photosensitive material has good potential for antibacterial applications.

Abstract Image

酞菁偶联壳聚糖掺杂纳米银的光敏剂对细菌失活和促进伤口愈合
针对抗生素滥用和不当使用导致的细菌耐药现象迅速增长,控制微生物感染应得到更多的关注和研究支持。光动力抗菌化疗应该是抗生素耐药问题的另一种选择。本研究合成了一种新型的酞菁修饰壳聚糖(Pc-CS)光敏材料,并研究了其通过光动力作用,有效灭活革兰氏阳性和革兰氏阴性细菌,包括耐药菌株。由酞菁偶联壳聚糖和掺杂纳米银合成的新型光敏材料Pc-CS@Ag对革兰氏阳性菌和革兰氏阴性菌均具有光动力灭活作用,90%的最大效应浓度(EC90)为3.12 ~ 6.25µg/mL,对耐药菌具有相似的辐射活性(EC90=6.25µg/mL)。壳聚糖偶联和纳米银掺杂对酞菁单线态氧收率影响较小。该材料在光动力抗菌机制中表现出明显的浓度和光强依赖性,并具有明显的抗生素后效应。此外,光敏材料对BALB/c小鼠的伤口愈合有效。创面愈合结果表明,光敏材料改善了切除创面,其愈合可能是由于其有效的抗菌活性和生物相容性。因此,该光敏材料具有良好的抗菌应用潜力。
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来源期刊
Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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