Simarouba Glauca

Bitki adı: Simarouba Glauca
Bilimsel adı: Simarouba glauca
Cins: Simarouba
Familya: Simaroubaceae

Genel Bilgiler


Bilimsel Araştırmalar

Interest in nanomaterials and especially nanoparticles has exploded in the past decades primarily due to their novel or enhanced physical and chemical properties compared to bulk material. These extraordinary properties have created a multitude of innovative applications in the fields of medicine and pharma, electronics, agriculture, chemical catalysis, food industry, and many others. More recently, nanoparticles are also being synthesized 'biologically' through the use of plant- or microorganism-mediated processes, as an environmentally friendly alternative to the expensive, energy-intensive, and potentially toxic physical and chemical synthesis methods. This transdisciplinary approach to nanoparticle synthesis requires that biologists and biotechnologists understand and learn to use the complex methodology needed to properly characterize these processes. This review targets a bio-oriented audience and summarizes the physico-chemical properties of nanoparticles, and methods used for their characterization. It highlights why nanomaterials are different compared to micro- or bulk materials. We try to provide a comprehensive overview of the different classes of nanoparticles and their novel or enhanced physicochemical properties including mechanical, thermal, magnetic, electronic, optical, and catalytic properties. A comprehensive list of the common methods and techniques used for the characterization and analysis of these properties is presented together with a large list of examples for biogenic nanoparticles that have been previously synthesized and characterized, including their application in the fields of medicine, electronics, agriculture, and food production. We hope that this makes the many different methods more accessible to the readers, and to help with identifying the proper methodology for any given nanoscience problem.

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
Abiotic stresses (such as metals/metalloids, salinity, ozone, UV-B radiation, extreme temperatures, and drought) are among the most challenging threats to agricultural system and economic yield of crop plants. These stresses (in isolation and/or combination) induce numerous adverse effects in plants, impair biochemical/physiological and molecular processes, and eventually cause severe reductions in plant growth, development and overall productivity. Phytohormones have been recognized as a strong tool for sustainably alleviating adverse effects of abiotic stresses in crop plants. In particular, the significance of salicylic acid (SA) has been increasingly recognized in improved plant abiotic stress-tolerance via SA-mediated control of major plant-metabolic processes. However, the basic biochemical/physiological and molecular mechanisms that potentially underpin SA-induced plant-tolerance to major abiotic stresses remain least discussed. Based on recent reports, this paper: (a) overviews historical background and biosynthesis of SA under both optimal and stressful environments in plants; (b) critically appraises the role of SA in plants exposed to major abiotic stresses;

Makaleyi görüntüle
In this review we describe and discuss several approaches to selecting higher plants as candidates for drug development with the greatest possibility of success. We emphasize the role of information derived from various systems of traditional medicine (ethnomedicine) and its utility for drug discovery purposes. We have identified 122 compounds of defined structure, obtained from only 94 species of plants, that are used globally as drugs and demonstrate that 80% of these have had an ethnomedical use identical or related to the current use of the active elements of the plant. We identify and discuss advantages and disadvantages of using plants as starting points for drug development, specifically those used in traditional medicine.

Makaleyi görüntüle
One of the prerequisites for the success of primary health care is the availability and use of suitable drugs. Plants have always been a common source of medicaments, either in the form of traditional preparations or as pure active principles. It is thus reasonable for decision-makers to identify locally available plants or plant extracts that could usefully be added to the national list of drugs, or that could even replace some pharmaceutical preparations that need to be purchased and imported. This update article presents a list of plant-derived drugs, with the names of the plant sources, and their actions or uses in therapy.

Makaleyi görüntüle

Duke Ethnobotany - Tamamlayıcı Kullanımlar

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Costa Rica

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Brutus

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Standley

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Salvador

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Costarica

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Standley,Steyermark

Kaynak: James A. Duke

Ülke: Dominican Republic

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Elsewhere

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Duke,1972

Kaynak: James A. Duke

Ülke: Mexico

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Standley

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Ülke: Elsewhere

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Duke,1972

Kaynak: James A. Duke

Ülke: Salvador

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Martinez

Kaynak: James A. Duke

Ülke: Haiti

Duke USEAGE: M

Taxon: Simarouba glauca

Referans: Liogier

Kaynak: James A. Duke

Kaynaklar ve Görseller

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