A solution to the evolutionary arms race- Presented by .ppt
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1、A solution to the evolutionary arms race? Presented by Alexandra Roland,Antibiotic Cycling,An “evolutionary arms race” is an evolutionary struggle between competing sets of co-evolving genes that develop adaptations and counter-adaptations against each other, resembling an arms race. The term has be
2、en used more and more for the battle between bacteria and antibiotics. An example of a co-evolving gene set is a parasite and its host. In recent years, many bacteria and diseases have been evolving faster than humans can create new antibiotics to treat them.,What are antibiotics?,When someones immu
3、ne system cant fight off a bacterial infection by itself, they may need more aggressive medical treatment Antibiotics and other antibacterial drugs are the major weapons against disease-causing bacteria, and they can kill bacteria or suppress their activity in various ways They can be natural, synth
4、etic, or semi-synthetic organic chemical compounds which can kill or stop the growth of infections Penicillin is the most well-known antibiotic and has been used to fight many infectious diseases, including syphilis, gonorrhea, tetanus, and scarlet fever,http:/ Resistance History,Louis Pasteur: firs
5、t observed antibiotic effect in 19th century, who discovered that certain saprophytic bacteria can kill anthrax bacilli Paul Ehrlich: developed salvarsan in 1909, a synthetic compound that remained the only effective treatment for syphilis until purification of penicillin in the 1940s Sir Alexander
6、Fleming: 1928, accidentally discovered Penicillin World War II: renewal of research, Sir Howard Florey and Ernst Chain purified enough penicillin to show that it would protect mice from infection,Soon after antibiotics were introduced into clinical circulation, cases arose where their ability to eff
7、ectively stop infection was decreased As the use of antibiotics became more widespread, the prevalence of antibiotic resistant bacteria increased Different time frames apply to different bacteria because the number of mutations necessary to develop resistance depend on the strain ex. Staphylococcus
8、aureus took 5 years to become resistant to penicillin, while Streptococcus pneumoniae took over 50 years,Relevant Definitions,Gram-positive vs. gram-negative bacteria: When gram-positive bacteria are stained with a dye, the cell wall holds the dye inside and the bacteria are stained dark purple. Cel
9、l walls of gram-negative bacteria are more permeable - they do not retain much of the dye, and so their cell walls do not show much stain Selective pressure: The influence exerted by some factor (such as an antibiotic) on natural selection to promote one group of organisms over another. In the case
10、of antibiotic resistance, antibiotics cause a selective pressure by killing susceptible bacteria, allowing antibiotic-resistant bacteria to survive and multiply.,Increasing Trend of Penicillin Resistance in US,Source: http:/ Coli have become increasingly resistant to antibiotic treatment,Diseases co
11、nnected with antimicrobial resistance,Tuberculosis Head Lice Malaria Methicillin-Resistant Staphylococcus aureus (MRSA) Streptococcus pneumoniae,Gonorrhea Typhoid Fever Vancomycin/Glycopeptide-Intermediate Staphylococcus aureus (VISA/GISA) Vancomycin-Resistant Enterococci (VRE),How bad is it?,Today,
12、 as many as 5 to 10 patients are colonized with resistant bacteria for every patient known to be infected The majority of antimicrobial resistance occurs in intensive care unit (ICU) due to patients who are more susceptible to nosocomial (hospital-obtained) infections because of underlying illnesses
13、, suppressed immune systems and frequent use of invasive devices Recently in Atlanta, 25% of bacterial pneumonia cases were shown to be resistant to penicillin, while an additional 25% of cases were resistant to more than one antibiotic.,Perpetual research and development has become necessary to fin
14、d new antibiotics to maintain a pool of effective drugs While the development of resistant strains is inevitable, the speed and scale of development has been aggravated by the practices we use to distribute antibiotics Variations in resistance exist among different countries, due at least in part to
15、 individual antimicrobial use patterns,Antibiotic Cycling: Basics,Organisms resistant to antibiotics have genes that are either carried on the bacterial chromosome or on the small circular DNA plasmids, which direct the synthesis of the traits that protect bacteria from antibodies Certain resistance
16、 genes code for enzymes that degrade antibiotics or chemically modify them to the point of inactivation Other resistance genes may cause bacteria to modify or replace molecules that are normally bound by an antibiotic, removing the drugs target Others may possess genes that help eliminate entry poin
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