Recent Advances in Food Nutrition & Agriculture - Volume 14, Issue 2, 2023
Volume 14, Issue 2, 2023
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Modernization of Food Packaging Materials with Nanotechnology-A Mini Review
Authors: Deepika Balasubramanian, Agnishwar Girigoswami and Koyeli GirigoswamiFood toxins can be of natural origin, chemicals, or inadvertent additives that get incorporated during food packaging and processing. When food is contaminated with bacteria or viruses, or other contaminants, serious foodborne diseases arise, causing severe health issues. To overcome these issues, proper food processing and packaging needs to be addressed to protect humans and animals from foodborne diseases. There are many smart food packaging materials that have evolved recently. Researchers enabled the use of nanomaterials in food packaging and have improved the efficacy of food packaging. In this mini-review, the objectives are to summarize the different types of food contaminants, conventional food packaging materials, and recent developments in nanotechnology-based food packaging materials.
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Insight on Vernonia Plant for its Pharmacological Properties: A Review
Authors: Neha Mishra, Ena Gupta, Priyanka Singh, Shashi Soni and Uroosa NoorVernonia is a woody shrub of the family Asteraceae. Over 1500 species are distributed in tropical and subtropical regions of Africa and Asia. There are more than 54 species known to possess similar morphological features with the characteristic bitter taste. The pharmacological properties of different parts like seeds, leaves, and roots are well documented in folk medicine. They are rich in biologically active constituents such as alkaloids, phenolics, flavonoids, terpenoids, steroid tannins, and carotenoids having broad therapeutic activities like antiinflammatory, hypoglycemic, hyperlipidemia, antimicrobial, antitumor, antioxidative, antiproliferative, antihypertensive, hepatoprotective, etc. The present study summarizes and discusses the phytochemical profile, pharmacological properties, and toxicological effects of the Vernonia plant.
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Exploring the Role of Mentha in Gut Microbiota: A Modern Perspective of an Ancient Herb
Authors: Swasti Arora and Alok SharmaGut microbiota includes the microbes present in the gut; these microbes are an essential component in maintaining a healthy gut. Gut microbiota has a wide range of functions, including effects on colonization, pathogen resistance, intestinal epithelial maintenance, metabolizing food and pharmaceutical chemicals, and influencing immunological functions. Every disease associated with the gut starts due to a disbalance in the composition of the gut microorganisms and can be managed by balancing the composition of gut bacteria using various herbal remedies. Mentha herbs are a variety of perennial herbs that are grown commercially in various parts of the world. Mentha is a potent herb that shows anticholinergic action and can block PGE2 and GM1 receptors and interact with cholera toxins; it is used traditionally in different systems of medicines to treat various gastrointestinal diseases associated with the gut. Mentha herbs have potent bactericidal, viricidal, and fungicidal properties. Mentha has been used to cure stomach and digestion issues as well as to treat a variety of disorders. This review article summarizes diseases associated with the gut, the composition, and function of gut microbiota, and mentha's effectiveness along with its extraction methods and traditional uses. Research findings revealed that mentha could be an essential source against a wide range of diseases, especially gastrointestinal disorders. From its ayurvedic claims to its present use, various confirmed its clinically effective for human health. The present work also describes the mechanism of action along with the bioactives present in this well-known herb from Ayurveda.
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Therapeutic Application of Pineapple: A Review
Authors: Virender Kumar, Vandana Garg and Harish DurejaBackground: Ananas comosus L. (family Bromeliaceae) is a plant innate to South America and has been cultivated in various world regions. The plant parts have traditionally been used to treat various ailments, like cancer, diabetes mellitus, bacterial infection, Covid-19 infection, inflammation, arthritis, asthma, malaria, cardiovascular disease, and burn, as debridement agents. The pineapple contains nutrients, including vitamin C, iron, potassium, and protein. It also contains flavonoids, carotenoids, tannins, polyphenols, and alkaloids. Methods: An extensive literature search was conducted on Ananas comosus using three scientific databases: PubMed, Scopus, and Web of Science. The keywords in this paper were combined to form a search strategy. Ananas comosus and pineapple were the main criteria for judging abstracts, titles, and keywords. In the full text of the paper, the secondary judgment criteria included mentioning "therapeutic potential" or "pharmacological activities”. Among the 250 references in the compiled bibliography, there were original articles, books, and web addresses dating back to 2001 to 2023. A review of articles was conducted after abstracts and titles were screened, and 61 duplicate articles were deleted. In this paper, information is provided on the therapeutic potential and pharmacological actions of Ananas comosus and its bioactive compounds. Results: In this review, the therapeutic potential of A. comosus has been detailed. The current review intends to provide an updated comprehensive overview of the versatile plant's use and its clinical trials. Conclusion: The plant has gained enormous attention and increasing consideration for treating various diseases. The therapeutic potential of pineapple, its compound, extracts, and their mode of action are discussed briefly. Also, clinical trials are emphasized, which are in great demand and need further in-depth investigation in the future.
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Neuroprotective Effects of Sesamum indicum, Sesamin and Sesamolin Against 6-OHDA-induced Apoptosis in PC12 Cells
Background: Sesamum indicum L. (sesame) is one of the most widely used herbs in the world. Sesame oil contains lignans such as sesamin and sesamolin, which are known to possess anti-inflammatory, antioxidant, and anti-apoptotic properties. Parkinson's disease (PD) is recognized as the most common neurodegenerative disease after Alzheimer's disease; however, the exact molecular mechanism of the progression of neural death is not clear yet. In this study, the effect of sesame seed extracts and their main bioactive components (sesamin and sesamolin) on in vitro model of Parkinson's disease has been compared. Methods: Cell viability, the number of reactive oxygen species (ROS), and apoptosis were determined using resazurin assay, ROS assay, propidium iodide (PI) staining and flow cytometry, and western blot analysis. Results: 6-OHDA caused cellular death and apoptosis but pretreatment with sesame seed extracts, sesamin, and sesamolin significantly increased cell viability (p<0.001) and decreased ROS (p<0.001) and apoptosis. ERK1/2 is activated by 6-OHDA in PC12 cells, and the level of survivin decreased. Pretreatment with sesame significantly reversed the entire cell death induced by 6- OHDA. Sesame seed extracts at 5 and 10 μg/ml, sesamin and sesamolin at 5 and 10 μM increased surviving (p<0.01), and reduced P-ERK1/2/ERK1/2 (p<0.05) levels close to the control values. Conclusions: Overall, compounds in sesame seed extract and sesamin may assist as adjuvant therapeutics in PD. It seems sesame seeds have more potent protection effects against neural death compared with individual components, which might reflect the synergism among different phytochemicals present in the extract.
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