Kaempferia Galanga

Bitki adı: Kaempferia Galanga
Bilimsel adı: Kaempferia galanga
Cins: Kaempferia
Familya: Zingiberaceae

Genel Bilgiler


Duke – Ethnobotany

Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Hartwell
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Uphof
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Steinmetz
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Bliss
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Keys
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Burkill,1966
Kaynak: James A. Duke
Bilgi: Duke USEAGE: G | Woi.5
Kaynak: James A. Duke

Bilimsel Araştırmalar

Gold nanoparticles (AuNPs) are extensively studied nanoparticles (NPs) and are known to have profound applications in medicine. There are various methods to synthesize AuNPs which are generally categorized into two main types: chemical and physical synthesis. Continuous efforts have been devoted to search for other more environmental-friendly and economical large-scale methods, such as environmentally friendly biological methods known as green synthesis. Green synthesis is especially important to minimize the harmful chemical and toxic by-products during the conventional synthesis of AuNPs. Green materials such as plants, fungi, microorganisms, enzymes and biopolymers are currently used to synthesize various NPs. Biosynthesized AuNPs are generally safer for use in biomedical applications since they come from natural materials themselves. Multiple surface functionalities of AuNPs allow them to be more robust and flexible when combined with different biological assemblies or modifications for enhanced applications. This review focuses on recent developments of green synthesized AuNPs and discusses their numerous biomedical applications. Sources of green materials with successful examples and other key parameters that determine the functionalities of AuNPs are also discussed in this review.

Makaleyi görüntüle
Antimicrobial natural preparations involving cinnamon, storax and propolis have been long used topically for treating infections. Cinnamic acids and related molecules are partly responsible for the therapeutic effects observed in these preparations. Most of the cinnamic acids, their esters, amides, aldehydes and alcohols, show significant growth inhibition against one or several bacterial and fungal species. Of particular interest is the potent antitubercular activity observed for some of these cinnamic derivatives, which may be amenable as future drugs for treating tuberculosis. This review intends to summarize the literature data on the antimicrobial activity of the natural cinnamic acids and related derivatives. In addition, selected hybrids between cinnamic acids and biologically active scaffolds with antimicrobial activity were also included. A comprehensive literature search was performed collating the minimum inhibitory concentration (MIC) of each cinnamic acid or derivative against the reported microorganisms. The MIC data allows the relative comparison between series of molecules and the derivation of structure-activity relationships.

Makaleyi görüntüle
This study was undertaken to determine the in vitro antimicrobial activities of 15 commercial essential oils and their main components in order to pre-select candidates for potential application in highly perishable food preservation. The antibacterial effects against food-borne pathogenic bacteria (Listeria monocytogenes, Salmonella Typhimurium, and enterohemorrhagic Escherichia coli O157:H7) and food spoilage bacteria (Brochothrix thermosphacta and Pseudomonas fluorescens) were tested using paper disk diffusion method, followed by determination of minimum inhibitory (MIC) and bactericidal (MBC) concentrations. Most of the tested essential oils exhibited antimicrobial activity against all tested bacteria, except galangal oil. The essential oils of cinnamon, oregano, and thyme showed strong antimicrobial activities with MIC ≥ 0.125 μL/mL and MBC ≥ 0.25 μL/mL. Among tested bacteria, P. fluorescens was the most resistant to selected essential oils with MICs and MBCs of 1 μL/mL. The results suggest that the activity of the essential oils of cinnamon, oregano, thyme, and clove can be attributed to the existence mostly of cinnamaldehyde, carvacrol, thymol, and eugenol, which appear to possess similar activities against all the tested bacteria. These materials could be served as an important natural alternative to prevent bacterial growth in food products.

Makaleyi görüntüle
Approximately 20 of the 30 mammalian transient receptor potential (TRP) channel subunits are expressed by specific neurons and cells within the alimentary canal. They subserve important roles in taste, chemesthesis, mechanosensation, pain and hyperalgesia and contribute to the regulation of gastrointestinal motility, absorptive and secretory processes, blood flow, and mucosal homeostasis. In a cellular perspective, TRP channels operate either as primary detectors of chemical and physical stimuli, as secondary transducers of ionotropic or metabotropic receptors, or as ion transport channels. The polymodal sensory function of TRPA1, TRPM5, TRPM8, TRPP2, TRPV1, TRPV3 and TRPV4 enables the digestive system to survey its physical and chemical environment, which is relevant to all processes of digestion. TRPV5 and TRPV6 as well as TRPM6 and TRPM7 contribute to the absorption of Ca²⁺ and Mg²⁺, respectively. TRPM7 participates in intestinal pacemaker activity, and TRPC4 transduces muscarinic acetylcholine receptor activation to smooth muscle contraction. Changes in TRP channel expression or function are associated with a variety of diseases/disorders of the digestive system, notably gastro-esophageal reflux disease, inflammatory bowel disease, pain and hyperalgesia in heartburn, functional dyspepsia and irritable bowel syndrome, cholera, hypomagnesemia with secondary hypocalcemia, infantile hypertrophic pyloric stenosis, esophageal, gastrointestinal and pancreatic cancer, and polycystic liver disease. These implications identify TRP channels as promising drug targets for the management of a number of gastrointestinal pathologies. As a result, major efforts are put into the development of selective TRP channel agonists and antagonists and the assessment of their therapeutic potential.

Makaleyi görüntüle
Among the wide diversity of naturally occurring phenolic acids, at least 30 hydroxy- and polyhydroxybenzoic acids have been reported in the last 10 years to have biological activities. The chemical structures, natural occurrence throughout the plant, algal, bacterial, fungal and animal kingdoms, and recently described bioactivities of these phenolic and polyphenolic acids are reviewed to illustrate their wide distribution, biological and ecological importance, and potential as new leads for the development of pharmaceutical and agricultural products to improve human health and nutrition.

Makaleyi görüntüle

Kaynaklar ve Görseller

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