Dual-function antimicrobial-antibiofilm peptide hybrid to tackle biofilm-forming Staphylococcus epidermidis.

IF 4.6 2区 医学 Q1 MICROBIOLOGY Annals of Clinical Microbiology and Antimicrobials Pub Date : 2024-05-16 DOI:10.1186/s12941-024-00701-7
Mathira Wongchai, Saharut Wongkaewkhiaw, Sakawrat Kanthawong, Sittiruk Roytrakul, Ratchaneewan Aunpad
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Abstract

Background: Due to their resistance and difficulty in treatment, biofilm-associated infections are problematic among hospitalized patients globally and account for 60% of all bacterial infections in humans. Antibiofilm peptides have recently emerged as an alternative treatment since they can be effectively designed and exert a different mode of biofilm inhibition and eradication.

Methods: A novel antibiofilm peptide, BiF, was designed from the conserved sequence of 18 α-helical antibiofilm peptides by template-assisted technique and its activity was improved by hybridization with a lipid binding motif (KILRR). Novel antibiofilm peptide derivatives were modified by substituting hydrophobic amino acids at positions 5 or 7, and both, with positively charged lysines (L5K, L7K). These peptide derivatives were tested for antibiofilm and antimicrobial activities against biofilm-forming Staphylococcus epidermidis and multiple other microbes using crystal violet and broth microdilution assays, respectively. To assess their impact on mammalian cells, the toxicity of peptides was determined through hemolysis and cytotoxicity assays. The stability of candidate peptide, BiF2_5K7K, was assessed in human serum and its secondary structure in bacterial membrane-like environments was analyzed using circular dichroism. The action of BiF2_5K7K on planktonic S. epidermidis and its effect on biofilm cell viability were assessed via viable counting assays. Its biofilm inhibition mechanism was investigated through confocal laser scanning microscopy and transcription analysis. Additionally, its ability to eradicate mature biofilms was examined using colony counting. Finally, a preliminary evaluation involved coating a catheter with BiF2_5K7K to assess its preventive efficacy against S. epidermidis biofilm formation on the catheter and its surrounding area.

Results: BiF2_5K7K, the modified antibiofilm peptide, exhibited dose-dependent antibiofilm activity against S. epidermidis. It inhibited biofilm formation at subinhibitory concentrations by altering S. epidermidis extracellular polysaccharide production and quorum-sensing gene expression. Additionally, it exhibited broad-spectrum antimicrobial activity and no significant hemolysis or toxicity against mammalian cell lines was observed. Its activity is retained when exposed to human serum. In bacterial membrane-like environments, this peptide formed an α-helix amphipathic structure. Within 4 h, a reduction in the number of S. epidermidis colonies was observed, demonstrating the fast action of this peptide. As a preliminary test, a BiF2_5K7K-coated catheter was able to prevent the development of S. epidermidis biofilm both on the catheter surface and in its surrounding area.

Conclusions: Due to the safety and effectiveness of BiF2_5K7K, we suggest that this peptide be further developed to combat biofilm infections, particularly those of biofilm-forming S. epidermidis.

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双功能抗菌-抗生物膜肽混合物,用于对付形成生物膜的表皮葡萄球菌。
背景:由于生物膜的耐药性和治疗难度,生物膜相关感染是全球住院病人的一大难题,占人类所有细菌感染的60%。抗生物膜肽是最近出现的一种替代治疗方法,因为它们可以被有效设计,并以不同的模式抑制和根除生物膜:方法:利用模板辅助技术,从 18 种 α-helical 抗生物膜肽的保守序列中设计出一种新型抗生物膜肽 BiF,并通过与脂质结合基序(KILRR)杂交提高其活性。通过用带正电荷的赖氨酸(L5K、L7K)取代第 5 位或第 7 位以及这两个位置的疏水氨基酸,对新型抗生物膜肽衍生物进行了修饰。利用水晶紫法和肉汤微稀释法测试了这些肽衍生物对形成生物膜的表皮葡萄球菌和其他多种微生物的抗生物膜和抗菌活性。为了评估多肽对哺乳动物细胞的影响,还通过溶血和细胞毒性试验确定了多肽的毒性。评估了候选肽 BiF2_5K7K 在人血清中的稳定性,并利用圆二色性分析了其在细菌膜样环境中的二级结构。BiF2_5K7K 对浮游表皮葡萄球菌的作用及其对生物膜细胞活力的影响通过活力计数法进行了评估。通过共焦激光扫描显微镜和转录分析研究了其抑制生物膜的机制。此外,还使用菌落计数法检测了其根除成熟生物膜的能力。最后,在导管上涂上 BiF2_5K7K 进行了初步评估,以评估其对导管及其周围区域的表皮葡萄球菌生物膜形成的预防效果:结果:改良抗生物膜肽 BiF2_5K7K 对表皮葡萄球菌具有剂量依赖性抗生物膜活性。它通过改变表皮葡萄球菌胞外多糖的产生和法定量感应基因的表达,在亚抑制浓度下抑制生物膜的形成。此外,它还具有广谱抗菌活性,对哺乳动物细胞株没有明显的溶血或毒性。当暴露于人类血清中时,它的活性仍能保持。在类似细菌膜的环境中,这种肽形成了一种 α 螺旋两亲结构。在 4 小时内,观察到表皮葡萄球菌菌落数量减少,这证明了这种肽的快速作用。作为初步测试,涂有 BiF2_5K7K 的导管能够防止表皮葡萄球菌在导管表面及其周围形成生物膜:鉴于 BiF2_5K7K 的安全性和有效性,我们建议进一步开发这种多肽,以防治生物膜感染,尤其是由形成生物膜的表皮葡萄球菌引起的感染。
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来源期刊
CiteScore
8.60
自引率
0.00%
发文量
49
审稿时长
>12 weeks
期刊介绍: Annals of Clinical Microbiology and Antimicrobials considers good quality, novel and international research of more than regional relevance. Research must include epidemiological and/or clinical information about isolates, and the journal covers the clinical microbiology of bacteria, viruses and fungi, as well as antimicrobial treatment of infectious diseases. Annals of Clinical Microbiology and Antimicrobials is an open access, peer-reviewed journal focusing on information concerning clinical microbiology, infectious diseases and antimicrobials. The management of infectious disease is dependent on correct diagnosis and appropriate antimicrobial treatment, and with this in mind, the journal aims to improve the communication between laboratory and clinical science in the field of clinical microbiology and antimicrobial treatment. Furthermore, the journal has no restrictions on space or access; this ensures that the journal can reach the widest possible audience.
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