Sargentodoxa Cuneata

Bitki adı: Sargentodoxa Cuneata
Bilimsel adı: Sargentodoxa cuneata
Cins: Sargentodoxa
Familya: Lardizabalaceae

Genel Bilgiler


Bilimsel Araştırmalar

The crisis of antibiotic resistance necessitates creative and innovative approaches, from chemical identification and analysis to the assessment of bioactivity. Plant natural products (NPs) represent a promising source of antibacterial lead compounds that could help fill the drug discovery pipeline in response to the growing antibiotic resistance crisis. The major strength of plant NPs lies in their rich and unique chemodiversity, their worldwide distribution and ease of access, their various antibacterial modes of action, and the proven clinical effectiveness of plant extracts from which they are isolated. While many studies have tried to summarize NPs with antibacterial activities, a comprehensive review with rigorous selection criteria has never been performed. In this work, the literature from 2012 to 2019 was systematically reviewed to highlight plant-derived compounds with antibacterial activity by focusing on their growth inhibitory activity. A total of 459 compounds are included in this Review, of which 50.8% are phenolic derivatives, 26.6% are terpenoids, 5.7% are alkaloids, and 17% are classified as other metabolites. A selection of 183 compounds is further discussed regarding their antibacterial activity, biosynthesis, structure-activity relationship, mechanism of action, and potential as antibiotics. Emerging trends in the field of antibacterial drug discovery from plants are also discussed. This Review brings to the forefront key findings on the antibacterial potential of plant NPs for consideration in future antibiotic discovery and development efforts.

Makaleyi görüntüle
Since discovery of the first antibiotic drug, penicillin, in 1928, a variety of antibiotic and antimicrobial agents have been developed and used for both human therapy and industrial applications. However, excess and uncontrolled use of antibiotic agents has caused a significant growth in the number of drug resistant pathogens. Novel therapeutic approaches replacing the inefficient antibiotics are in high demand to overcome increasing microbial multidrug resistance. In the recent years, ongoing research has focused on development of nano-scale objects as efficient antimicrobial therapies. Among the various nanoparticles, silver nanoparticles have gained much attention due to their unique antimicrobial properties. However, concerns about the synthesis of these materials such as use of precursor chemicals and toxic solvents, and generation of toxic byproducts have led to a new alternative approach, green synthesis. This eco-friendly technique incorporates use of biological agents, plants or microbial agents as reducing and capping agents. Silver nanoparticles synthesized by green chemistry offer a novel and potential alternative to chemically synthesized nanoparticles. In this review, we discuss the recent advances in green synthesis of silver nanoparticles, their application as antimicrobial agents and mechanism of antimicrobial mode of action.

Makaleyi görüntüle
Asiatic acid (AA) is a naturally occurring aglycone of ursane type pentacyclic triterpenoids. It is abundantly present in many edible and medicinal plants including Centella asiatica that is a reputed herb in many traditional medicine formulations for wound healing and neuropsychiatric diseases. AA possesses numerous pharmacological activities such as antioxidant and anti-inflammatory and regulates apoptosis that attributes its therapeutic effects in numerous diseases. AA showed potent antihypertensive, nootropic, neuroprotective, cardioprotective, antimicrobial, and antitumor activities in preclinical studies. In various in vitro and in vivo studies, AA found to affect many enzymes, receptors, growth factors, transcription factors, apoptotic proteins, and cell signaling cascades. This review aims to represent the available reports on therapeutic potential and the underlying pharmacological and molecular mechanisms of AA. The review also also discusses the challenges and prospects on the pharmaceutical development of AA such as pharmacokinetics, physicochemical properties, analysis and structural modifications, and drug delivery. AA showed favorable pharmacokinetics and found bioavailable following oral or interaperitoneal administration. The studies demonstrate the polypharmacological properties, therapeutic potential and molecular mechanisms of AA in numerous diseases. Taken together the evidences from available studies, AA appears one of the important multitargeted polypharmacological agents of natural origin for further pharmaceutical development and clinical application. Provided the favorable pharmacokinetics, safety, and efficacy, AA can be a promising agent or adjuvant along with currently used modern medicines with a pharmacological basis of its use in therapeutics.

Makaleyi görüntüle
Natural antioxidants are widely distributed in food and medicinal plants. These natural antioxidants, especially polyphenols and carotenoids, exhibit a wide range of biological effects, including anti-inflammatory, anti-aging, anti-atherosclerosis and anticancer. The effective extraction and proper assessment of antioxidants from food and medicinal plants are crucial to explore the potential antioxidant sources and promote the application in functional foods, pharmaceuticals and food additives. The present paper provides comprehensive information on the green extraction technologies of natural antioxidants, assessment of antioxidant activity at chemical and cellular based levels and their main resources from food and medicinal plants.

Makaleyi görüntüle
Some researchers suggest that two-thirds of the world's plant species have medicinal value; in particular, many medicinal plants have great antioxidant potential. Antioxidants reduce the oxidative stress in cells and are therefore useful in the treatment of many human diseases, including cancer, cardiovascular diseases and inflammatory diseases. This paper reviews the antioxidant potential of extracts from the stems, roots, bark, leaves, fruits and seeds of several important medicinal species. Synthetic antioxidants such as butylated hydroxytoluene (BHT) and butylated hydroxylanisole (BHA) are currently used as food additives, and many plant species have similar antioxidant potentials as these synthetics. These species include Diospyros abyssinica, Pistacia lentiscus, Geranium sanguineum L., Sargentodoxa cuneata Rehd. Et Wils, Polyalthia cerasoides (Roxb.) Bedd, Crataeva nurvala Buch-Ham., Acacia auriculiformis A. Cunn, Teucrium polium L., Dracocephalum moldavica L., Urtica dioica L., Ficus microcarpa L. fil., Bidens pilosa Linn. Radiata, Leea indica, the Lamiaceae species, Uncaria tomentosa (Willd.) DC, Salvia officinalis L., Momordica Charantia L., Rheum ribes L., and Pelargonium endlicherianum. The literature reveals that these natural antioxidants represent a potentially side effect-free alternative to synthetic antioxidants in the food processing industry and for use in preventive medicine.

Makaleyi görüntüle

Duke Ethnobotany - Tamamlayıcı Kullanımlar

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Li

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Li

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Li

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Li

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Li

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Uphof

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

Ülke: China

Taxon: Sargentodoxa cuneata

Referans: Hunan

Kaynak: James A. Duke

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