The poppy seed plant (Papaver somniferum L.) is well known for its health benefits. It contains plenty of nutrients including proteins, oil content, dietary fiber, antioxidants, tocopherols and other micronutrients. It is also under exploration considering its in vitro bioactive potential against various health issues such as hypertension, pain and cancer. Poppy is mainly grown for its opium and oil contents; however, poppy seeds are also widely used for cooking purposes. Poppy seeds contain various essential bioactive compounds including alkaloids, flavonoids, phenolic compounds and polyunsaturated fatty acids that can be effectively used as food ingredients in various applications. Poppyseed oil is considered a good quality oil owing to its rich polyunsaturated fatty acid content. Thus, tremendous potential exists in poppy seeds to be used as functional food ingredients and nutraceutical agents in various formulations. Medicinal and functional uses of poppy seed have been discussed, including some aspects of the utilization of the poppy seeds in the food industry. Further research is required to bring out its ingredient potential in food and health supplements. Keywords: Poppy, seed oil, health attributes, industrial uses, medicinal uses
Anthocyanins (ACNs) are polyphenolic, water-soluble pigments, and phytochemicals, which in recent years, have garnered the interest of consumers, researchers, and industries for their various potential preventative and/or therapeutic health benefits and applications in the food industry. ACN-based processed foods have emerged as functional foods with significant therapeutic potential against various health conditions. However, their wider application in food and pharmaceutical formulations is hindered by their inherent instability under different environmental conditions, such as pH, light, and temperature, rendering them non-functional due to loss of biological activity. The current review focuses on the frequently used bio-based encapsulation materials for ACN-based delivery systems and their formulation techniques. Various bio-based materials including pectin, gums, pectin, proteins, lipids, phospholipids, and their conjugates are being widely used for targeted delivery and controlled release of bioactive compounds and drugs. The incorporation of advanced technologies seems to be promising in the context of extraction, encapsulation, and storage of ACNs. However, more comprehensive studies are required for the application of encapsulated ACNs in various food products, and improvements in their stability under different processing conditions.
Mozzarella cheese is a fermented product comprised of 30-45% milk fat on a dry basis. The milk fat gives the mozzarella its desirable stretchable properties which are demanding in food processing industries. The current study was designed to use okra mucilage as a carbohydrate-based fat replacer to prepare low fat mozzarella cheese. For this purpose, the different concentrations of okra mucilage (0.25 to 1.0% (v/v)) were used. The fat contents were significantly reduced in all treatments and the addition of okra mucilage with a concentration of 0.25% (T 2 ) was considered best for its organoleptic properties and 1% (T 4 ) has a positive impact on the textural, functional attributes of low-fat mozzarella cheese.
Acquired immunodeficiency syndrome (AIDS) is a chronic and potentially fatal ailment caused by the human immunodeficiency virus (HIV) and remains a major health problem worldwide. In recent years, the research focus has shifted to a greater emphasis on complementing treatment regimens involving conventional antiretroviral (ARV) drug therapies with novel lead structures isolated from various marine organisms that have the potential to be utilized as therapeutics for the management of HIV-AIDS. The present review summarizes the recent developments regarding bioactive peptides sourced from various marine organisms. This includes a discussion encompassing the potential of these novel marine bioactive peptides with regard to antiretroviral activities against HIV, preparation, purification, and processing techniques, in addition to insight into the future trends with an emphasis on the potential of exploration and evaluation of novel peptides to be developed into effective antiretroviral drugs.
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