BMI Center for Biomass Materials and Nanointerfaces, College of Biomass Science and Engineering, West China Second University Hospital, Sichuan University, Chengdu, Sichuan, 610065, China.
School of Pharmacy, Southwest Minzu University, Chengdu, Sichuan, 610065, China.
Nat Commun. 2022 Apr 19;13(1):2117. doi: 10.1038/s41467-022-29672-z.
The gut microbiota represents a large community of microorganisms that play an important role in immune regulation and maintenance of homeostasis. Living bacteria receive increasing interest as potential therapeutics for gut disorders, because they inhibit the colonization of pathogens and positively regulate the composition of bacteria in gut. However, these treatments are often accompanied by antibiotic administration targeting pathogens. In these cases, the efficacy of therapeutic bacteria is compromised by their susceptibility to antibiotics. Here, we demonstrate that a single-cell coating composed of tannic acids and ferric ions, referred to as 'nanoarmor', can protect bacteria from the action of antibiotics. The nanoarmor protects both Gram-positive and Gram-negative bacteria against six clinically relevant antibiotics. The multiple interactions between the nanoarmor and antibiotic molecules allow the antibiotics to be effectively absorbed onto the nanoarmor. Armored probiotics have shown the ability to colonize inside the gastrointestinal tracts of levofloxacin-treated rats, which significantly reduced antibiotic-associated diarrhea (AAD) resulting from the levofloxacin-treatment and improved some of the pre-inflammatory symptoms caused by AAD. This nanoarmor strategy represents a robust platform to enhance the potency of therapeutic bacteria in the gastrointestinal tracts of patients receiving antibiotics and to avoid the negative effects of antibiotics in the gastrointestinal tract.
肠道微生物群代表了一大群微生物,它们在免疫调节和维持体内平衡方面发挥着重要作用。活细菌作为治疗肠道疾病的潜在疗法越来越受到关注,因为它们可以抑制病原体的定植,并积极调节肠道中细菌的组成。然而,这些治疗方法通常伴随着针对病原体的抗生素治疗。在这些情况下,治疗细菌的功效因抗生素的敏感性而受到影响。在这里,我们证明了由单宁酸和铁离子组成的单细胞涂层,称为“纳米盔甲”,可以保护细菌免受抗生素的作用。纳米盔甲可以保护革兰氏阳性菌和革兰氏阴性菌免受六种临床相关抗生素的侵害。纳米盔甲和抗生素分子之间的多种相互作用允许抗生素有效地被吸收到纳米盔甲上。装甲益生菌已显示出在接受左氧氟沙星治疗的大鼠胃肠道内定植的能力,这显著减少了左氧氟沙星治疗引起的抗生素相关性腹泻(AAD),并改善了一些由 AAD 引起的炎症前症状。这种纳米盔甲策略代表了一个强大的平台,可以提高抗生素治疗患者胃肠道中治疗细菌的效力,并避免抗生素在胃肠道中的负面影响。