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Therapeutic Methods and Therapies TCIM
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1.
J Basic Microbiol ; 58(8): 679-685, 2018 Aug.
Article in English | MEDLINE | ID: mdl-29921020

ABSTRACT

Spore (akinete) formation in the heterocystous and branched filamentous cyanobacterium Fischerella muscicola involves a significant increase in cell size and formation of several endospores in each of the cells. In present study, the physico-chemical factors (pH, light sources, nutrient deficiency, nitrogen sources, carbon sources, and growth hormones) affecting the germination of spores of F. muscicola were examined. Increase in spore germination frequency was detected above pH 8 with maximum germination (46.04%) recorded at pH 9, whereas a significant decrease in germination was observed at pH 6 when compared to control (pH 7.6). Spore germination was not observed at pH 5. Among light sources germination frequency followed the following order, that is, red light (39.9%) > white light (33.8%) > yellow light (3.4%) > green light (1.3%) whereas germination did not take place in dark and blue light. Ammonium chloride (NH4 Cl) supported maximum (99.5%) germination frequency followed by calcium nitrate (Ca(NO3 )2 ), potassium nitrate (KNO3 ), and minimum germination was observed in urea. Nutrient (phosphorus, calcium, and magnesium) deficiency significantly enhanced the germination frequency with maximum increase in magnesium (Mg) deficient condition. Further, supplementation of carbon sources (glucose, fructose, and sodium acetate) and growth hormones (IAA and GA) also enhanced the germination frequency in this cyanobacterium. Therefore, it may be concluded that, those factors supporting higher germination frequency could be considered for successful production and use of this cyanobacterium in biofertilizer and other algal production technologies.


Subject(s)
Cyanobacteria/physiology , Spores, Bacterial/physiology , Carbon/metabolism , Culture Media , Cyanobacteria/growth & development , Hydrogen-Ion Concentration , Light , Nitrogen/metabolism , Plant Growth Regulators
2.
J Pharm Pharmacol ; 70(2): 159-177, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29034952

ABSTRACT

OBJECTIVES: The aim of this study was to review and highlight traditional and ethnobotanical uses, phytochemical constituents, IP status, biological activity and pharmacological activity of Viscum articulatum. METHODS: Thorough literature searches were performed on Viscum articulatum, and data were analysed for reported traditional uses, pharmacological activity, phytochemicals present and patents filed. Scientific and patent databases such as PubMed, Science Direct, Google Scholar, Google patents, USPTO and Espacenet were searched using different keywords. KEY FINDINGS: Viscum articulatum has been traditionally used in different parts of the world for treatment of various ailments. Almost all the parts such as leaves, root, stem and bark are having medicinal values and are reported for their uses in Ayurvedic and Chinese system of medicine for the management of various diseases. Modern scientific studies demonstrate efficacy of this plant against hypertension, ulcer, epilepsy, inflammation, wound, nephrotoxicity, HIV, cancer, etc. Major bioactive phytochemicals include oleanolic acid, betulinic acid, eriodictyol, naringenin, ß-amyrin acetate, visartisides, etc. CONCLUSIONS: Side effects of allopathic medicines have created a global opportunity, acceptance and demand for phytomedicines. Viscum articulatum could be an excellent source of effective and safe phytomedicine for various ailments if focused translational efforts are undertaken by integrating the existing outcomes of researches.


Subject(s)
Medicine, Traditional , Phytochemicals/therapeutic use , Plant Extracts/therapeutic use , Viscum/chemistry , Animals , Humans , Phytochemicals/adverse effects , Phytochemicals/isolation & purification , Phytotherapy , Plant Extracts/adverse effects , Plant Extracts/isolation & purification , Plants, Medicinal , Viscum/adverse effects
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