Showing posts with label Phytochemicals. Show all posts
Showing posts with label Phytochemicals. Show all posts

Monday, 27 March 2023

Most Recent Research Progress in Moringa oleifera: Bioactive Phytochemicals and Their Correlated Health Promoting Effects

 Food Reviews International, 2023


Moringa oleifera Lam. (M. oleifera) is a fast-growing and esculent plant with high nutritional and medicinal values. Traditionally, M. oleifera has been applied to treat anaemia, asthma, pain in joints, headaches, diarrhoea and so forth. Phytochemical studies have manifested that more than 300 components, including flavonoids, phenolic acids, organic acids, alkaloids, lignans, glucosinolates, carotenoids, proteins, fats, minerals, and so on, are present in different parts of M. oleifera. Simultaneously, M. oleifera has exhibited extensive notable pharmacological activities, such as antioxidant, anti-inflammatory, antimicrobial, anti-cancer, hypoglycemic, hypolipidemic, hypotensive, hepatoprotective, etc. Consequently, on the one hand, this work aims to comprehensively and holistically review the nutritional components, chemical constituents and pharmacological activities on various parts of M. oleifera, as well as its applications in functional food products and medicines. On the other hand, this work also looks forward to the new prospects and the future developments in the research of M. oleifera, and thus provides valuable insights for the follow-up and in-depth studies of this multifunctional tree.


Wednesday, 9 November 2022

“Ficus carica L.” and its by-products: A decade evidence of their health-promoting benefits towards the development of novel food formulations

 Trends in Food Science & Technology, 127, 1-13, 2022



Background
The food industry constantly searches for natural derived bioactive molecules with preventive and therapeutic effects using innovative and sustainable strategies. Fig production and processing generate a considerable amount of by-products (leaves, pulp, peels, seeds, and latex) with limited commercial exploitation and negative impact on the environment. These by-products are important sources of high value-added ingredients, including anthocyanins and pectins that can be of particular interest to the food industry as functional colourants, emulsifiers, and additives.

Scope and approach
This review curates recent advances in the valorisation of fig by-products as valuable sources of bioactive molecules for functional food development. Special attention was given to widely used extraction processes, main bioactive compounds, relevant biological properties, and the application of recovered bioactives for functional food development.

Key findings and conclusions
Fig by-products are essential sources of structurally diverse bioactive molecules with unique antidiabetic, anti-inflammatory, anti-tumour, immunomodulatory and cardioprotective properties. Owing to these health-promoting potentials, an integral valorisation approach involving sustainable technologies to recover these high value-added ingredients and its utilisation in novel food formulation development should be further stimulated.


Tuesday, 26 July 2022

Advances on Natural Abietane, Labdane and Clerodane Diterpenes as Anti-Cancer Agents: Sources and Mechanisms of Action

Molecules 2022, 27(15), 4791



Extensive research over the past decades has identified numerous phytochemicals that could represent an important source of anti-cancer compounds. There is an immediate need for less toxic and more effective preventive and therapeutic strategies for the treatment of cancer. Natural compounds are considered suitable candidates for the development of new anti-cancer drugs due to their pleiotropic actions on target events with multiple manners. This comprehensive review highlighted the most relevant findings achieved in the screening of phytochemicals for anticancer drug development, particularly focused on a promising class of phytochemicals such as diterpenes with abietane, clerodane, and labdane skeleton. The chemical structure of these compounds, their main natural sources, and mechanisms of action were critically discussed.


Friday, 8 July 2022

The influence of phytochemicals on cell heterogeneity in chronic inflammation-associated diseases: the prospects of single cell sequencing

 The Journal of Nutritional Biochemistry, 108, 109091, 2022


Chronic inflammation-associated diseases include, but is not limited to cardiovascular disease, cancer, obesity, diabetes, etc. Cell heterogeneity is a prerequisite for understanding the physiological and pathological development of cell metabolism, and its response to external stimuli. Recently, dietary habits based on phytochemicals became increasingly recognized to play a pivotal role in chronic inflammation. Phytochemicals can relieve chronic inflammation by regulating inflammatory cell differentiation and immune cell response, but the influence of phytochemicals on cell heterogeneity from in vitro and ex vivo studies cannot simulate the complexity of cell differentiation in vivo due to the differences in cell lines and extracellular environment. Therefore, there is no consensus on the regulation mechanism of phytochemicals on chronic diseases based on cell heterogeneity. The purpose of this review is to summarize cell heterogeneity in common chronic inflammation-associated diseases and trace the effects of phytochemicals on cell differentiation in chronic diseases development. More importantly, by discussing the problems and challenges which hinder the study of cell heterogeneity in recent nutritional assessment experiments, we propose new prospects based on the drawbacks of existing research to optimize the research on the regulation mechanism of phytochemicals on chronic diseases. The need to explore precise measurements of cell heterogeneity is a key pillar in understanding the influence of phytochemicals on certain diseases. In the future, deeper understanding of cell-to-cell variation and the impact of food components and their metabolites on cell function by single-cell genomics and epigenomics with the focus on individual differences will open new avenues for the next generation of health care.

Thursday, 24 February 2022

Antidiabetic Phytochemicals From Medicinal Plants: Prospective Candidates for New Drug Discovery and Development

 Front. Endocrinol., 2022



Diabetes, a chronic physiological dysfunction affecting people of different age groups and severely impairs the harmony of peoples’ normal life worldwide. Despite the availability of insulin preparations and several synthetic oral antidiabetic drugs, there is a crucial need for the discovery and development of novel antidiabetic drugs because of the development of resistance and side effects of those drugs in long-term use. On the contrary, plants or herbal sources are getting popular day by day to the scientists, researchers, and pharmaceutical companies all over the world to search for potential bioactive compound(s) for the discovery and development of targeted novel antidiabetic drugs that may control diabetes with the least unwanted effects of conventional antidiabetic drugs. In this review, we have presented the prospective candidates comprised of either isolated phytochemical(s) and/or extract(s) containing bioactive phytoconstituents which have been reported in several in vitro, in vivo, and clinical studies possessing noteworthy antidiabetic potential. The mode of actions, attributed to antidiabetic activities of the reported phytochemicals and/or plant extracts have also been described to focus on the prospective phytochemicals and phytosources for further studies in the discovery and development of novel antidiabetic therapeutics.


Monday, 28 September 2020

Edible flowers as functional raw materials: A review on anti-aging properties

 Trends in Food Science & Technology, 2020, 106, 30-47

DOI:10.1016/j.tifs.2020.09.023


Background
Diet is a major determinant of aging and lifespan. Development and utilization of food resources with potential anti-aging activity have attracted increasing attention from researchers. Because of their peculiar flavour, aroma and colour, as well as enriched nutrients and phytochemicals, edible flowers have emerged as a new trend for human nutrition. More importantly, a growing body of evidence suggests flowers have potential effects against aging. However, these properties have yet to be systematically understood.

Scope and approach
In this review, we used comprehensive literature retrieval to summarize the major aspects of edible flowers’ anti-aging properties, including effects, active components, and applications. Relevant research articles published in English with no restrictions on publication date have been considered.

Key findings and conclusions
This review found evidence that edible flowers are promising raw materials for prevention or amelioration of skin aging, immunosenescence, neurodegeneration, and even extension of lifespan. Active ingredients in these flowers, including flavonoids, phenolic acids, carotenoids, phenylethanoid glycosides, polysaccharides, etc. may function through the inhibition of oxidative stress, inflammation, apoptosis and regulation of the insulin/insulin-like growth factor-1 (IIS) pathway. In addition to their use in traditional food and medicine, some flower extracts or main components have been developed for health care food or skin care products. These findings suggest that despite the partial restriction of harvest, storage and safety, edible flowers are worthy of further investigation to promote healthy aging.