Introduction The science of microbiology is all about microorganisms‚ what they do and how they work. Microorganisms are ubiquitous‚ and are a very important part of life everywhere since they have been around for billions of years. The two main themes associated with microbiology are (1) having an understanding of the nature and function of the microbial world‚ and (2) being able to apply that understanding of the microbial world so that the benefits to the Earth and humans are known(6). This lab
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Identification of Bacterial Pathogens basic skills in diagnostic bacteriology Dr.T.V.Rao MD Dr.T.V.Rao MD 1 Identification of Microorganisms • For many students and professionals the most pressing topic in microbiology is how to identify unknown specimens. • Why is this important? • Labs can grow‚ isolate and identify most routinely encountered bacteria within 48 hrs of sampling. • The methods microbiologist use fall into three categories: ♣Phenotypic- morphology (micro and
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DEPARTMENT OF PURE AND APPLIED CHEMISTRY College of Art and Sciences Visayas State University Chemistry 31a Biochemistry Laboratory Experiment No. 09 CHEMISTRY OF URINE Name: Artajo‚ Zeal Conbrio A. DVM-2 Date performed: Feb. 26‚ 2013 Group: 6 Date submitted: March 5‚ 2013 Objective: 1. Test urine for pH‚ specific gravity‚ and the presence of electrolytes and organic compounds. 2. Test
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The free radical pathway for the first phase of the oxidative rancidification of fats. Antioxidants are often added to fat-containing foods to delay the onset or slow the development of rancidity due to oxidation. Natural antioxidants include polyphenols (for instance flavonoids)‚ ascorbic acid (vitamin C) and tocopherols (vitamin E). Synthetic antioxidants include butylated hydroxyanisole (BHA)‚ butylated hydroxytoluene (BHT)‚ TBHQ‚ propyl gallate and ethoxyquin. The natural antioxidants tend to
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LOVELY PROFESSIONAL UNIVERSITY CAPSTONE PROJECT REPORT TOPIC- ANTIMICROBIAL ACTIVITY OF DIFFERENT TYPES OF HONEY. PROJECT GUIDE- SUBMITTED BY- DR. AKSHAY GARG MOHIT KUMAR DEPT. OF BIOTECHNOLOGY REG. NO.- 10800037 ROLL NO- RB1R07B02 B.TECH BIOTECH.(8th sem.)
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WHAT DOES IT DO Through the action of photo-stimulation of light reactive biological receptors (chromophores) in the body‚ Low Level Laser Therapy (LLLT) has demonstrated the ability to significantly accelerate and enhance the body’s natural defense and repair components in the presence of injury‚ inflammation and certain disease processes. By modifying the effects and limiting the duration of inflammation as well as enhancing specific repair and healing processes‚ LLLT is consistent in providing
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are related to the positive health benefits attributed to ginseng (Marcone 2014). These glycosides are made up of two parts; Rg1 and Rg2‚ which allow neurotransmitters to be more effective (Marcone 2014). Ginsenosides moderate the enzyme monoamine oxidase (MAO)‚ which increases protein synthesis (Marcone 2014). An increase in protein synthesis allows for a better immune system‚ and an increased or moderated amount of neurotransmitters which can alleviate depression and anxiety (Marcone 2014). In summation
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This is a request for your participation in my research focusing on the effect of cognitive behavioural therapy (CBT) in conjunction with medication‚ in the treatment of Body Dysmorphic Disorder (BDD). The purpose of this study is to assess if both treatment strategies‚ delivered concurrently‚ are more successful in treating BDD. Within psychology research‚ there has been ample evidence documenting the efficacy of both CBT and the drug fluoxetine in treating BDD‚ but there no studies have assessed
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of dialysis and gel filtration chromatography will be used to separate a glucose monomer from a starch polymer. Colorimetric glucose oxidase assay will be used to monitor the presence of glucose and a colorimetric iodine assay will be used to monitor the presence of starch in prepared solutions after separation Results and Discussion Table 1: Glucose oxidase assays |Reagents |Volume (mL) |Positive Response
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Subchronic level of arsenic exposure can affect the level of monoamine neurotransmitters in mice brains. Arsenic can downregulate the concentrations of norepinephrine (NE)‚ dopamine (DA)‚ monoamine oxidase (MAO) and 5-OH tryptamine (5-HT) in the cerebrum or cerebellum of mice. Arsenic increases acetylcholinesterase in brain tissue [7‚ 8]. The oxidative damage results in structural deformities in the myelin sheath of nerve fibers and degradation in the
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