Garlic-Derived Quorum Sensing Inhibitors: A Novel Strategy Against Fungal Resistance.

IF 4.7 2区 医学 Q1 CHEMISTRY, MEDICINAL Drug Design, Development and Therapy Pub Date : 2024-12-28 eCollection Date: 2024-01-01 DOI:10.2147/DDDT.S503302
Na Li, Junli Zhang, Fei Yu, Fanghang Ye, Wanying Tan, Liyuan Hao, Shenghao Li, Jiali Deng, Xiaoyu Hu
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Abstract

In recent years, the incidence of fungal infections has been rising annually, especially among immunocompromised populations, posing a significant challenge to public health. Although antifungal medications provide some relief, the escalating problem of resistance sharply curtails their effectiveness, presenting an urgent clinical dilemma that demands immediate attention. Research has shown that fungal resistance is closely related to quorum sensing (QS), and QS inhibitors (QSIs) are considered an effective solution to this issue. Garlic, as a natural QSI, has demonstrated significant effects in inhibiting fungal growth, preventing biofilm formation, enhancing immunity, and combating resistance. This study explores the potential of garlic in mitigating fungal drug resistance and identifies its key role in inhibiting the QS mechanism, these findings offer a new perspective for the treatment of fungal infections, especially in addressing the increasingly severe problem of resistance. However, the clinical application of garlic still faces several challenges, such as ensuring the standardization of active ingredient extraction, as well as issues of safety and stability. Future research should focus on the QS mechanism and promote interdisciplinary collaboration to develop more natural, effective, and safe QSI drugs like garlic, while actively conducting clinical trials to validate their efficacy and safety. Additionally, incorporating advanced technologies such as nanotechnology to enhance drug stability and targeting, provide a more comprehensive strategy for the treatment of fungal infections. Overall, Our study provides scientific evidence supporting the potential of garlic as a novel antifungal treatment and lays the groundwork for the development of future natural QSIs for therapeutic use. It offers new insights, particularly for the treatment of immunocompromised populations and drug-resistant fungal strains.

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大蒜衍生的群体感应抑制剂:一种对抗真菌抗性的新策略。
近年来,真菌感染的发病率每年都在上升,特别是在免疫功能低下的人群中,这对公共卫生构成了重大挑战。尽管抗真菌药物提供了一些缓解,但不断升级的耐药性问题急剧削弱了它们的有效性,提出了一个迫切的临床困境,需要立即引起注意。研究表明,真菌的抗性与群体感应(quorum sensing, QS)密切相关,而群体感应抑制剂(quorum sensing inhibitors, qsi)被认为是解决这一问题的有效方法。大蒜作为一种天然QSI,具有抑制真菌生长、防止生物膜形成、增强免疫力和抗抗性等显著作用。本研究探讨了大蒜减轻真菌耐药的潜力,并确定了其在抑制QS机制中的关键作用,这些发现为真菌感染的治疗,特别是解决日益严重的耐药问题提供了新的视角。然而,大蒜的临床应用仍然面临着一些挑战,如保证有效成分提取的标准化,以及安全性和稳定性问题。未来的研究应关注QS机制,促进跨学科合作,开发出更多天然、有效、安全的大蒜等QSI药物,同时积极开展临床试验,验证其有效性和安全性。此外,结合纳米技术等先进技术来增强药物稳定性和靶向性,为治疗真菌感染提供了更全面的策略。总的来说,我们的研究提供了科学证据,支持大蒜作为一种新的抗真菌治疗方法的潜力,并为未来开发用于治疗的天然qsi奠定了基础。它提供了新的见解,特别是对免疫功能低下人群和耐药真菌菌株的治疗。
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来源期刊
Drug Design, Development and Therapy
Drug Design, Development and Therapy CHEMISTRY, MEDICINAL-PHARMACOLOGY & PHARMACY
CiteScore
9.00
自引率
0.00%
发文量
382
审稿时长
>12 weeks
期刊介绍: Drug Design, Development and Therapy is an international, peer-reviewed, open access journal that spans the spectrum of drug design, discovery and development through to clinical applications. The journal is characterized by the rapid reporting of high-quality original research, reviews, expert opinions, commentary and clinical studies in all therapeutic areas. Specific topics covered by the journal include: Drug target identification and validation Phenotypic screening and target deconvolution Biochemical analyses of drug targets and their pathways New methods or relevant applications in molecular/drug design and computer-aided drug discovery* Design, synthesis, and biological evaluation of novel biologically active compounds (including diagnostics or chemical probes) Structural or molecular biological studies elucidating molecular recognition processes Fragment-based drug discovery Pharmaceutical/red biotechnology Isolation, structural characterization, (bio)synthesis, bioengineering and pharmacological evaluation of natural products** Distribution, pharmacokinetics and metabolic transformations of drugs or biologically active compounds in drug development Drug delivery and formulation (design and characterization of dosage forms, release mechanisms and in vivo testing) Preclinical development studies Translational animal models Mechanisms of action and signalling pathways Toxicology Gene therapy, cell therapy and immunotherapy Personalized medicine and pharmacogenomics Clinical drug evaluation Patient safety and sustained use of medicines.
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