4 research outputs found
Natural products and synthetic analogs as a source of antitumor drugs
Cancer is a heterogeneous disease and one of the major issues of health concern, especially for the public health system globally. Nature is a source of anticancer drugs with abundant pool of diverse chemicals and pharmacologically active compounds. In recent decade, some natural products and synthetic analogs have been investigated for the cancer treatment. This article presents the utilization of natural products as a source of antitumor drugs.This work was supported by CONICYT PIA/APOYO CCTE AFB170007
Symphytum Species: A Comprehensive Review on Chemical Composition, Food Applications and Phytopharmacology
Symphytum species belongs to the Boraginaceae family and have been used for centuries for
bone breakages, sprains and rheumatism, liver problems, gastritis, ulcers, skin problems, joint pain
and contusions, wounds, gout, hematomas and thrombophlebitis. Considering the innumerable
potentialities of the Symphytum species and their widespread use in the world, it is extremely
important to provide data compiling the available literature to identify the areas of intense research
and the main gaps in order to design future studies. The present review aims at summarizing the
main data on the therapeutic indications of the Symphytum species based on the current evidence,
also emphasizing data on both the e cacy and adverse e ects. The present review was carried
out by consulting PubMed (Medline), Web of Science, Embase, Scopus, Cochrane Database, Science
Direct and Google Scholar (as a search engine) databases to retrieve the most updated articles on this
topic. All articles were carefully analyzed by the authors to assess their strengths and weaknesses,
and to select the most useful ones for the purpose of review, prioritizing articles published from 1956
to 2018. The pharmacological e ects of the Symphytum species are attributed to several chemical
compounds, among them allantoin, phenolic compounds, glycopeptides, polysaccharides and some
toxic pyrrolizidine alkaloids. Not less important to highlight are the risks associated with its use.
In fact, there is increasing consumption of over-the-counter drugs, which when associated with
conventional drugs can cause serious and even fatal adverse events. Although clinical trials sustain
the folk topical application of Symphytum species in musculoskeletal and blunt injuries, with minor
adverse e ects, its antimicrobial potency was still poorly investigated. Further studies are needed to
assess the antimicrobial spectrum of Symphytum species and to characterize the active molecules both
in vitro and in vivo
Plants of the genus Spinacia: From bioactive molecules to food and phytopharmacological applications
Background: Spinacia plants, including the most recognized species of the genus Spinacia oleacea L. (spinach), have high nutritional value and high content in phytochemicals, such as flavonoids, polyphenols, carotenoids, and ascorbic acid. However, the amount of these phytochemicals depends on several factors, such as genotype, climatic conditions, and agronomic practices, harvesting, storage temperature and time. Scope and approach: This review focus on the therapeutic role of Spinacia genus as well as its contribution as food in industry. A special emphasis is also given to its biological activities including antioxidant and antimicrobial effects. Finally, the clinical efficacy of Spinacia plants, the respective roles, and mechanisms of bioactive compounds on human health are covered. Key findings and conclusions: Spinacia plants are rich in nitrate, thylakoids, glycoglycerolipids and their natural antioxidant mixture (NAO) shows renowned antioxidant, antiproliferative, anti-inflammatory, antimicrobial, anticancer and cardioprotective effects. Thus, the nutritional value and phytochemical composition of Spinacia plants make them an excellent matrix to be used in traditional medicine as also as a natural preservative ingredient in food
Piper species: a comprehensive review on their phytochemistry, biological activities and applications
Piper species are aromatic plants used as spices in the kitchen, but their secondary metabolites have also shown biological effects on human health. These plants are rich in essential oils, which can be found in their fruits, seeds, leaves, branches, roots and stems. Some Piper species have simple chemical profiles, while others, such as Piper nigrum, Piper betle, and Piper auritum, contain very diverse suites of secondary metabolites. In traditional medicine, Piper species have been used worldwide to treat several diseases such as urological problems, skin, liver and stomach ailments, for wound healing, and as antipyretic and anti-inflammatory agents. In addition, Piper species could be used as natural antioxidants and antimicrobial agents in food preservation. The phytochemicals and essential oils of Piper species have shown strong antioxidant activity, in comparison with synthetic antioxidants, and demonstrated antibacterial and antifungal activities against human pathogens. Moreover, Piper species possess therapeutic and preventive potential against several chronic disorders. Among the functional properties of Piper plants/extracts/active components the antiproliferative, anti-inflammatory, and neuropharmacological activities of the extracts and extract-derived bioactive constituents are thought to be key effects for the protection against chronic conditions, based on preclinical in vitro and in vivo studies, besides clinical studies. Habitats and cultivation of Piper species are also covered in this review. In this current work, available literature of chemical constituents of the essential oils Piper plants, their use in traditional medicine, their applications as a food preservative, their antiparasitic activities and other important biological activities are reviewed