Royal jelly (RJ), a complex secretion of honeybees, possesses a range of bioactivities, including antioxidant, anti-inflammatory, and anticancer properties. This study presents novel evidence that the anticancer activity of RJ arises from synergistic interactions among its bioactive components, highlighting its therapeutic potential and emphasizing the relevance of whole-extract strategies in natural product research. We specifically evaluated the antiproliferative effects of RJ on colorectal cancer cell lines (HCT-116 and DLD-1) and examined associations between its chemical composition—focusing on 10-hydroxy-2-decenoic acid (10-HDA), acidity, moisture content—and biological activity. In vitro assays demonstrated dose-dependent inhibition of cancer cell proliferation, with limited cytotoxicity toward normal epithelial cells (FHC), indicating selective activity. Multivariate analyses, including principal component and hierarchical cluster analysis, identified a positive correlation between higher 10-HDA and acidity levels and enhanced antiproliferative effects. These findings suggest that the anticancer potential of RJ is driven by synergistic interactions among its bioactive constituents. RJ may serve as a promising adjunctive therapeutic candidate for colorectal cancer, warranting further preclinical and clinical investigation.
Royal jelly (RJ) has been one of the most widely used natural products in alternative medicine for centuries. Being produced by both hypopharyngeal and mandibular glands, RJ exhibits an extraordinary complexity in terms of its composition, including proteins, lipids, carbohydrates, polyphenols, vitamins, and hormones. Due to its heterogeneous structure, RJ displays various functional roles for honeybees, including being involved in nutrition, learning, memory, and social behavior. Furthermore, a wide range of studies reported its therapeutic properties, including anticancer, anti-inflammatory, and antioxidant activities, to name a few. In this direction, there is a wide range of health-related problems for which the medical area specialists and researchers are continuously trying to find a cure, such as cancer, atherosclerosis, or infertility. For the mentioned diseases and more, it has been proven that RJ is a key player in finding a valuable treatment. In this review, the great impact of RJ as an alternative medicine agent is highlighted, with a focus on its anticancer, anti-inflammatory, and antioxidant activities. Moreover, we link it to its apitherapeutic potential by discussing its composition. Herein, we discuss a wide range of novel studies and present the latest research work.
Royal jelly (RJ), a highly nutritious natural product, has gained recognition for its remarkable health-promoting properties, leading to its widespread use in the pharmaceutical, food, and cosmetic industries. Extensive investigations have revealed that RJ possesses a broad spectrum of therapeutic effects, including anti-inflammatory, antioxidant, antitumor, anti-aging, and antibacterial activities. Distinctive among bee products, RJ exhibits a significantly higher water and relatively lower sugar content. It is characterized by its substantial protein content, making it a valuable source of this essential macronutrient. Moreover, RJ contains a diverse array of bioactive substances, such as lipids, phenolic compounds, flavonoids, organic acids, minerals, vitamins, enzymes, and hormones. This review aims to provide an overview of current research on the bioactive components present in RJ and their associated health-promoting qualities. According to existing literature, these bioactive substances hold great potential as alternative approaches to enhancing human health. Notably, this review emphasizes the anti-inflammatory properties of RJ, particularly in relation to inflammatory diseases, such as multiple sclerosis (MS), rheumatoid arthritis (RA), and inflammatory bowel diseases (IBD). Furthermore, we delve into the antitumor and antioxidant activities of RJ, aiming to deepen our understanding of its biological functions. By shedding light on the multifaceted benefits of RJ, this review seeks to encourage its utilization and inspire further investigation in this field.
Royal jelly (RJ) is one of the most valued natural products and is known for its health-promoting properties. Due to its therapeutic effects, it has been used in medicine since antiquity. Nowadays, several studies indicate that RJ acts as a powerful antimicrobial agent. Indeed, researchers shed light on its antioxidant and anticancer activity. RJ's biological properties are related to its bioactive compounds, such as proteins, peptides, phenolic, and fatty acids. The aim of this review is to highlight recent findings on RJ's main bioactive compounds correlated with its health-promoting properties. The available literature suggests that these bioactive compounds can be used as an alternative approach in order to enhance human health. Moreover, throughout this paper, we underline the prominent antibacterial effect of RJ against several target bacterial strains. In addition, we briefly discuss other therapeutic activities, such as antioxidative and anticancer effects, of this outstanding natural product.
The paper aimed to present the microscopic techniques used in botanical origin determination of honey samples, shortly melissopalynology. This technique is used for microscopic examination of pollen grains to determine the botanical origin of honey. It is known that a certain number of pollen grains must be recovered from sediment of honey solution, and the presence of small amounts of pollen may be related to falsification. Identification of pollen structure is generally made using light microscopy; phase contrast microscopy may be also used. Fluorescence microscopy is also a powerful method in palynology. Confocal laser scanning microscopy is effective in revealing the ultrastructure of pollen outer layer and shape of the pollen. The determination of the botanical origin of honey using palynology is based on the relative frequency of the pollen belonging to nectariferous plants. Honey is considered monofloral if the pollen from the sediment comes predominantly from a named botanical origin and overpasses 45% from the total count of pollen grains counted on the microscopic slide.
CRISPR (clustered regularly interspaced short palindromic repeats)-Cas (CRISPR-associated) represents a powerful genome editing technology that revolutionized in a short period of time numerous natural sciences branches. Therefore, extraordinary progress was made in various fields, such as entomology or biotechnology. Bombyx mori is one of the most important insects, not only for the sericulture industry, but for numerous scientific areas. The silkworms play a key role as a model organism, but also as a bioreactor for the recombinant protein production. Nowadays, the CRISPR-Cas genome editing system is frequently used in order to perform gene analyses, to increase the resistance against certain pathogens or as an imaging tool in B. mori. Here, we provide an overview of various studies that made use of CRISPR-Cas for B. mori genome editing, with a focus on emphasizing the high applicability of this system in entomology and biological sciences.