Besbase, Masis

Bitki adı: Mace, Aril, Nutmeg
Bilimsel adı: Myristica fragrans
Cins: Myristica
Familya: Myristicaceae
Diğer adları: Mace, Aril, Nutmeg

Myristica fragrans

Genel Bilgiler


Duke – Ethnobotany

Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Duke,1972
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Hartwell
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Duke,1972
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb31: 19
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Liogier
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Liogier
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Duke,1972
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Lewis
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb22: 385
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Eb30: 122
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Wong
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Hartwell
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Brutus
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Hartwell
Kaynak: James A. Duke
Bilgi: Duke USEAGE: F | Woi.6
Kaynak: James A. Duke

Bilimsel Araştırmalar

Phenolic compounds as well as flavonoids are well-known as antioxidant and many other important bioactive agents that have long been interested due to their benefits for human health, curing and preventing many diseases. This review attempts to demonstrate an overview of flavonoids and other phenolic compounds as the interesting alternative sources for pharmaceutical and medicinal applications. The examples of these phytochemicals from several medicinal plants are also illustrated, and their potential applications in pharmaceutical and medical aspects, especially for health promoting e.g., antioxidant effects, antibacterial effect, anti-cancer effect, cardioprotective effects, immune system promoting and anti-inflammatory effects, skin protective effect from UV radiation and so forth are highlighted.

Makaleyi görüntüle
Use of silver and silver salts is as old as human civilization but the fabrication of silver nanoparticles (Ag NPs) has only recently been recognized. They have been specifically used in agriculture and medicine as antibacterial, antifungal and antioxidants. It has been demonstrated that Ag NPs arrest the growth and multiplication of many bacteria such as Bacillus cereus, Staphylococcus aureus, Citrobacter koseri, Salmonella typhii, Pseudomonas aeruginosa, Escherichia coli, Klebsiella pneumonia, Vibrio parahaemolyticus and fungus Candida albicans by binding Ag/Ag + with the biomolecules present in the microbial cells. It has been suggested that Ag NPs produce reactive oxygen species and free radicals which cause apoptosis leading to cell death preventing their replication. Since Ag NPs are smaller than the microorganisms, they diffuse into cell and rupture the cell wall which has been shown from SEM and TEM images of the suspension containing nanoparticles and pathogens. It has also been shown that smaller nanoparticles are more toxic than the bigger ones. Ag NPs are also used in packaging to prevent damage of food products by pathogens. The toxicity of Ag NPs is dependent on the size, concentration, pH of the medium and exposure time to pathogens.

Makaleyi görüntüle
This review covers literature data summarizing, on one hand, the chemistry of essential oils and, on the other hand, their most important activities. Essential oils, which are complex mixtures of volatile compounds particularly abundant in aromatic plants, are mainly composed of terpenes biogenerated by the mevalonate pathway. These volatile molecules include monoterpenes (hydrocarbon and oxygenated monoterpens), and also sesquiterpenes (hydrocarbon and oxygenated sesquiterpens). Furthermore, they contain phenolic compounds, which are derived via the shikimate pathway. Thanks to their chemical composition, essential oils possess numerous biological activities (antioxidant, anti-inflammatory, antimicrobial, etc…) of great interest in food and cosmetic industries, as well as in the human health field.

Makaleyi görüntüle
The volatile oils of black pepper [Piper nigrum L. (Piperaceae)], clove [Syzygium aromaticum (L.) Merr. & Perry (Myrtaceae)], geranium [Pelargonium graveolens L'Herit (Geraniaceae)], nutmeg [Myristica fragrans Houtt. (Myristicaceae), oregano [Origanum vulgare ssp. hirtum (Link) Letsw. (Lamiaceae)] and thyme [Thymus vulgaris L. (Lamiaceae)] were assessed for antibacterial activity against 25 different genera of bacteria. These included animal and plant pathogens, food poisoning and spoilage bacteria. The volatile oils exhibited considerable inhibitory effects against all the organisms under test while their major components demonstrated various degrees of growth inhibition.

Makaleyi görüntüle
The use of and search for drugs and dietary supplements derived from plants have accelerated in recent years. Ethnopharmacologists, botanists, microbiologists, and natural-products chemists are combing the Earth for phytochemicals and "leads" which could be developed for treatment of infectious diseases. While 25 to 50% of current pharmaceuticals are derived from plants, none are used as antimicrobials. Traditional healers have long used plants to prevent or cure infectious conditions; Western medicine is trying to duplicate their successes. Plants are rich in a wide variety of secondary metabolites, such as tannins, terpenoids, alkaloids, and flavonoids, which have been found in vitro to have antimicrobial properties. This review attempts to summarize the current status of botanical screening efforts, as well as in vivo studies of their effectiveness and toxicity. The structure and antimicrobial properties of phytochemicals are also addressed. Since many of these compounds are currently available as unregulated botanical preparations and their use by the public is increasing rapidly, clinicians need to consider the consequences of patients self-medicating with these preparations.

Makaleyi görüntüle

Kaynaklar ve Görseller

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