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DRUG ABSORBPTION
DRUG ABSORBPTION

... A micelle is formed with the drug incorporated into its structure. Therefore, when the micelle is absorbed, so is the drug. ***Facilitated diffusion/active transport All cells have specialized transport systems and channels which allow the active (requiring energy) uptake of materials from the E ...
CHAPTER 6sThe Chemistry of Life2015
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... violent on the other. Emotional depression and self-pity are also not uncommon. ...
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... A micelle is formed with the drug incorporated into its structure. Therefore, ?• .when the micelle is absorbed, so is the drug Facilitated diffusion/active transport*** All cells have specialized transport systems and channels which allow the ?• active (requiring energy) uptake of materials from the ...
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... myelin basic protein (MBP) may be observed during active demyelinization. – Perform on CSF – Used to monitor therapy ...
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... element has an element cube that gives information about the element. The symbol is the short name for the element. Notice that for an element, there is only ONE capital letter! Sometime the chemical symbol doesn’t look like it comes from the name of the element. This happens when the symbol comes f ...
Drugs & Crime
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... 1. Does not give a specific identification & cannot separate mixtures. 2. In a mass spectrometer, an electron beam is directed at sample molecules in a vacuum chamber. The electrons break apart the sample molecules into many positivecharged fragments. These are sorted and collected according to thei ...
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... mood, relaxing you or even giving you more energy. However, they can also have negative impacts on your mental and physical health, your relationships, and your life in general. • If you are taking drugs, it is possible you believe that you can manage the effects of the drugs and that • you can deal ...
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... 19. Which of the following statements about drug testing is true? A. human testing is always done before animal testing B. in vivo testing takes place in humans or animals C. a clinical trial takes place on animals D. in vitro testing takes place in humans 20. When a pharmaceutical company develops ...
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Drug discovery



In the fields of medicine, biotechnology and pharmacology, drug discovery is the process by which new candidate medications are discovered. Historically, drugs were discovered through identifying the active ingredient from traditional remedies or by serendipitous discovery. Later chemical libraries of synthetic small molecules, natural products or extracts were screened in intact cells or whole organisms to identify substances that have a desirable therapeutic effect in a process known as classical pharmacology. Since sequencing of the human genome which allowed rapid cloning and synthesis of large quantities of purified proteins, it has become common practice to use high throughput screening of large compounds libraries against isolated biological targets which are hypothesized to be disease modifying in a process known as reverse pharmacology. Hits from these screens are then tested in cells and then in animals for efficacy.Modern drug discovery involves the identification of screening hits, medicinal chemistry and optimization of those hits to increase the affinity, selectivity (to reduce the potential of side effects), efficacy/potency, metabolic stability (to increase the half-life), and oral bioavailability. Once a compound that fulfills all of these requirements has been identified, it will begin the process of drug development prior to clinical trials. One or more of these steps may, but not necessarily, involve computer-aided drug design. Modern drug discovery is thus usually a capital-intensive process that involves large investments by pharmaceutical industry corporations as well as national governments (who provide grants and loan guarantees). Despite advances in technology and understanding of biological systems, drug discovery is still a lengthy, ""expensive, difficult, and inefficient process"" with low rate of new therapeutic discovery. In 2010, the research and development cost of each new molecular entity (NME) was approximately US$1.8 billion. Drug discovery is done by pharmaceutical companies, with research assistance from universities. The ""final product"" of drug discovery is a patent on the potential drug. The drug requires very expensive Phase I, II and III clinical trials, and most of them fail. Small companies have a critical role, often then selling the rights to larger companies that have the resources to run the clinical trials.Discovering drugs that may be a commercial success, or a public health success, involves a complex interaction between investors, industry, academia, patent laws, regulatory exclusivity, marketing and the need to balance secrecy with communication. Meanwhile, for disorders whose rarity means that no large commercial success or public health effect can be expected, the orphan drug funding process ensures that people who experience those disorders can have some hope of pharmacotherapeutic advances.
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