Berteina-Raboin Sabine
Institut de Chimie Organique et Analytique (ICOA), Université d'Orléans, UMR-CNRS 7311, BP 6759, Rue de Chartres, CEDEX 2, 45067 Orleans, France.
Antibiotics (Basel). 2025 Feb 11;14(2):185. doi: 10.3390/antibiotics14020185.
The aim of this review is to list the various natural sources of antimicrobials that are readily available. Indeed, many plant sources are known to have antibiotic properties, although it is not always clear which molecule is responsible for this activity. Many food supplements also have this therapeutic indication. We propose here to take stock of the scientific knowledge attesting or not to these indications for some food sources. An overview of the various antibiotic drugs commercially available will be provided. A structural indication of the natural molecules present in various plants and reported to contribute to their antibiotic power will be given. The plants mentioned in this review, which does not claim to be exhaustive, are referenced for fighting Gram-positive and/or Gram-negative bacteria. It is difficult to attribute activity to just one of these natural molecules, as it is likely to result from synergy within the plant. Similarly, chitosan is mentioned for its fungistatic and bacteriostatic properties. In this case, this polymeric compound derived from the chitin of marine organisms is referenced for its antibiofilm activity. It seems that, in the face of growing antibiotic resistance, it makes sense to keep high-performance synthetic antibiotics on hand to treat the difficult pathologies that require them. On the other hand, for minor infections, the use of better-tolerated natural sources is certainly sufficient. To achieve this, we need to take stock of common plant sources, available as food products or dietary supplements, which are known to be active in this field.
本综述的目的是列出各种易于获取的抗菌物质的天然来源。的确,许多植物来源已知具有抗生素特性,尽管并不总是清楚是哪种分子导致了这种活性。许多食品补充剂也有这种治疗用途。我们在此提议评估一下关于某些食物来源的这些用途的科学知识,无论其是否得到证实。还将提供市售各种抗生素药物的概述。将给出各种植物中存在的、据报道有助于其抗生素效力的天然分子的结构说明。本综述中提及的植物(本综述并不力求详尽无遗)被引述用于对抗革兰氏阳性菌和/或革兰氏阴性菌。很难将活性仅归因于这些天然分子中的某一种,因为其活性可能源于植物内部的协同作用。同样,壳聚糖因其抑菌和抑真菌特性而被提及。在这种情况下,这种源自海洋生物几丁质的聚合化合物因其抗生物膜活性而被引述。面对日益增长的抗生素耐药性,似乎有必要手头备有高效合成抗生素来治疗需要它们的疑难病症。另一方面,对于轻微感染,使用耐受性更好的天然来源肯定就足够了。为实现这一点,我们需要评估常见的植物来源,它们可作为食品或膳食补充剂获取,并且已知在该领域具有活性。