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1

G, Thomas, Sabatini D. M, and Hall Michael N, eds. TOR, target of rapamycin. Berlin: Springer, 2003.

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2

G, Thomas, Sabatini D. M, and Hall Michael N, eds. TOR, target of rapamycin. Berlin: Springer, 2003.

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3

1934-, Neu Harold C., Young Lowell S, and Zinner Stephen H. 1939-, eds. The New macrolides, azalides, and streptogramins: Pharmacology and clinical applications. New York: M. Dekker, 1993.

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4

1935-, Ōmura Satoshi, ed. Macrolide antibiotics: Chemistry, biology, and practice. 2nd ed. Amersterdam: Elsevier Science (USA), 2002.

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5

J, Bryskier André, ed. Macrolides: Chemistry, pharmacology and clinical uses. Paris: Arnette Blackwell, 1993.

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6

Schönfeld, Wolfgang, and Herbert A. Kirst, eds. Macrolide Antibiotics. Basel: Birkhäuser Basel, 2002. http://dx.doi.org/10.1007/978-3-0348-8105-0.

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7

1939-, Zinner Stephen H., and ICMASK (4th : 1998 : Barcelona, Spain), eds. New considerations for macrolides, azalides, streptogramins, and ketolides. New York: Marcel Dekker, 2000.

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8

Zebrowski, George. Macrolife: A mobile utopia. Amherst, NY: Pyr, 2006.

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9

M, Popkova A., Vërtkin A. L, and Kolobov S. V, eds. Makrolidy: Monografii͡a︡. Moskva: Dialog-MGU, 2000.

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10

1939-, Zinner Stephen H., and International Conference on the Macrolides, Azalides, and Streptogramins (3rd : 1996 : Lisbon, Portugal), eds. Expanding indications for the new macrolides, azalides, and streptogramins. New York: Dekker, 1997.

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11

Smith, Peter Mark. Approaches to the synthesis of galbonolide macrolides. Manchester: University of Manchester, 1994.

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12

1957-, Rimando Agnes M., Baerson Scott R, and American Chemical Society. Division of Agricultural and Food Chemistry., eds. Polyketides: Biosynthesis, biological activity, and genetic engineering. Washington, DC: American Chemical Society, 2007.

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13

Parker, Philip M., and James N. Parker. Biaxin: A medical dictionary, bibliography, and annotated research guide to internet references. San Diego, CA: ICON Health Publications, 2003.

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14

Johnston, Nicole J. Prevalence and characterization of the mechanisms of macrolide, lincosamide, and streptogramin resistance among isolates of Streptococcus pneumoniae and viridans streptococci. Ottawa: National Library of Canada, 1999.

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15

Preventing worker deaths and injuries when handling Micotil 300. Cincinnati, OH: U.S. Dept. of Health and Human Services, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 2007.

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16

Lehn, J. M. Aspects de la chimie des compose s macrocycliques: Notes re dige es, augmente es et actualise es. Paris: InterEditions, 1991.

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17

Macrolides. Blackwell Science Ltd, 1993.

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18

Zebrowski, George. Macrolife. Audible Studios on Brilliance Audio, 2016.

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19

Omura, Satoshi. Macrolide Antibiotics: Chemistry, Biology, and Practice. Elsevier Science & Technology Books, 2002.

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20

Macrolide Antibiotics. Elsevier, 2003. http://dx.doi.org/10.1016/b978-0-12-526451-8.x5000-0.

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21

Schönfeld, W., and H. A. Kirst. Macrolide Antibiotics. Birkhauser Verlag, 2012.

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22

Schönfeld, W., and H. A. Kirst. Macrolide Antibiotics. Springer Basel AG, 2012.

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23

Biljana / Novak, Predrag / Kragol, Goran / Barber, Jill / Rimoli, Maria Grazia / Sodano, Federica Arsic. Macrolides. De Gruyter, 2018.

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24

Zebrowski, George. Macrolife: A Mobile Utopia. Open Road Integrated Media, Inc., 2014.

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25

Zebrowski, George. Macrolife: A Mobile Utopia. Open Road Integrated Media, Inc., 2014.

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26

Zebrowski, George. Macrolife: A Mobile Utopia. Open Road Integrated Media, Inc., 2014.

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27

Omura, Satoshi. Macrolide Antibiotics: Chemistry, Biology, and Practice, Second Edition. 2nd ed. Academic Press, 2002.

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28

(Editor), W. Schönfeld, and H. A. Kirst (Editor), eds. Macrolide Antibiotics (Milestones in Drug Therapy). Birkhäuser Basel, 2002.

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29

A Diver's Guide to Underwater Malaysia Macrolife. Nautilus Publishing SDN. BHD, 2003.

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30

Miller, Mark, Marcus Miller, and Octavious Sage. Macrolis: Happiness and Heaven. Primedia eLaunch LLC, 2021.

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31

Barber, Jill, Biljana Arsic, Predrag Novak, Goran Kragol, and Maria Grazia Rimoli. Macrolides: Properties, Synthesis and Applications. de Gruyter GmbH, Walter, 2018.

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32

Barber, Jill, Biljana Arsic, Predrag Novak, Goran Kragol, and Maria Grazia Rimoli. Macrolides: Properties, Synthesis and Applications. de Gruyter GmbH, Walter, 2018.

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33

Akella, Annapoorna. The synthesis of macrolactones from [omega]-hydroxyacyl xanthates. 1991.

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34

1934-, Neu Harold C., and International Conference on the Macrolides, Azalides, and Streptogramins (2nd : 1994 : Venice, Italy), eds. New macrolides, azalides, and streptogramins in clinical practice. New York: M. Dekker, 1995.

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35

Neu, Harold C. Macrolides, Azolides and Streptogramins in Clinical Practice (Infectious Disease and Therapy). Informa Healthcare, 1995.

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36

Weber, E. Topics in Current Chemistry: Macrocycles (Topics in Current Chemistry). Springer-Verlag Berlin and Heidelberg GmbH & Co. KG, 1991.

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37

(Editor), Agnes M. Rimando, and Scott R. Baerson (Editor), eds. Polyketides: Biosynthesis, Biological Activity, and Genetic Engineering (Acs Symposium Series). An American Chemical Society Publication, 2006.

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38

Harrison, Mark. Infections. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198765875.003.0042.

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This chapter describes the pharmacology of infections as they apply to Emergency Medicine, and in particular the Primary FRCEM examination. The chapter lists notifiable diseases and outlines the key details of antibacterial drugs, penicillins, cephalosporins tetracyclines, aminoglycosides, macrolides, the management of tuberculosis, quinolones, urinary tract infections, antifungal preparations, herpes virus infections, and antimalarials. This chapter is laid out exactly following the RCEM syllabus, to allow easy reference and consolidation of learning.
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39

Viscardi, Rose M., and Ken B. Waites. Ureaplasma urealyticum and Ureaplasma parvum. Oxford University Press, 2018. http://dx.doi.org/10.1093/med/9780190604813.003.0022.

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The Mycoplasma species Ureaplasma parvum and Ureaplasma urealyticum colonize the human adult urogenital tract and are not typically associated with disease. Perinatal transmission, however, has been implicated in the pathogenesis of preterm birth, chorioamnionitis, and other complications of extreme prematurity, including neonatal pneumonitis, bronchopulmonary dysplasia (BPD), meningitis, and necrotizing enterocolitis (NEC). This chapter reviews the biology of these organisms. Epidemiologic and experimental evidence supporting a role for ureaplasmas in the pathogenesis of neonatal disease, clinical manifestations of infection in the infant, current microbiologic diagnostic methods, and the present status of treatment options are reviewed. Macrolide antibiotic therapy is controversial for infected infants, and current concepts regarding candidates for treatment are discussed. Key unanswered questions that need to be addressed in future research studies are also suggested.
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40

Rojas Álvarez, Oscar Eduardo, ed. La contaminación industrial de aguas: Una mirada microbiológica y molecular. Editorial Universidad Santiago de Cali, 2018. http://dx.doi.org/10.35985/9789585522381.

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Los Grupos de Investigación en Química y Biotecnología (QUIBIO) y Microbiología Industrial y Medio Ambiente (GIMIA) hacen parte del Centro de Estudios e Investigaciones en Ciencias Básicas Ambientales y Desarrollo Tecnológico (CICBA), adscrito a la Facultad de Ciencias Básicas de la Universidad Santiago de Cali. Desde su nacimiento el CICBA, a propendido por estar a la vanguardia al interior de la Universidad en la investigación, conciencia por el medio ambiente y desarrollo tecnológico. Los grupos de investigación acordes con esta macrolinea, se han preocupado por aportar sus desarrollos investigativos y de innovación en un marco de responsabilidad social, es así como en este libro de investigación titulado “LA CONTAMINACIÓN INDUSTRIAL DE AGUAS: Una Mirada Microbiológica y Molecular” se recopilan 4 trabajos de investigadores pertenecientes a los dos grupos de investigación con el fin de dar a conocer estudios realizados en Colombia y Venezuela sobre la problemática de la contaminación en cuerpos acuíferos.
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41

Taber, Douglass. Organic Synthesis. Oxford University Press, 2011. http://dx.doi.org/10.1093/oso/9780199764549.001.0001.

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Organic synthesis is a vibrant and rapidly evolving field; we can now cyclize amines directly onto alkenes. Like the first two books in this series, Organic Synthesis: State of the Art 2003-2005 and Organic Synthesis: State of the Art 2005-2007, this reference leads readers quickly to the most important recent developments. Two years of Taber's popular weekly online column, "Organic Chemistry Highlights", as featured on the organic-chemistry.org website, are consolidated here, with cumulative indices of all three volumes in this series. Important topics that are covered range from powerful new methods for C-C bond construction to asymmetric organocatalysis and direct C-H functionalization. This go-to reference focuses on the most important recent developments in organic synthesis, and includes a succinct analysis of the significance and applicability of each new synthetic method. It details and analyzes more than twenty complex total syntheses, including the Sammakia synthesis of the Macrolide RK-397, the Ley synthesis of Rapamycin, and the Kobayashi synthesis of (-)-Norzoanthamine.
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42

Rahimi, Rod. Atypical Pulmonary Infections. Oxford University Press, 2016. http://dx.doi.org/10.1093/med/9780199976805.003.0027.

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Legionellosis or Legionnaires’ disease (LD) is a common cause of community-acquired pneumonia and can cause rapidly progressive respiratory failure and septic shock. Respiratory symptoms generally predominate; nonspecific symptoms include fever, malaise, myalgias, anorexia, and headache. There are no characteristic presenting clinical or radiological features, and the severity of illness can range from mild to severe. Although erythromycin was initially used to treat LD, trials have demonstrated that the newer macrolides and the respiratory fluoroquinolones are the antimicrobial agents of choice. Given the potential for outbreaks of LD, documented cases should be reported to the local or state health department. Along with LD, Legionella may cause Pontiac Fever, an influenza-like illness without pneumonia, which is self-limiting and does not require treatment.
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43

De La Cadena Vivas, Elsa, Adriana María Correa Bermúdez, Ruth Ana Rojas Serrano, Aura Dayana Falco Restrepo, Carlos Andrés Aranaga Arias, Guillermina Alonso, and Marcela Perenguez Verdugo, eds. Estudios en resistencia a los antibióticos beta-lactámicos en bacterias Gram negativas. Editorial Universidad Santiago de Cali, 2020. http://dx.doi.org/10.35985/9789585583924.

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Los grupos de Investigación en Microbiología, Industria y Ambiente (GIMIA) y en Química y Biotecnología (QUIBIO) hacen parte del Centro de Estudios e Investigaciones en Ciencias Básicas Ambientales y Desarrollo Tecnológico (CICBA), adscrito a la Facultad de Ciencias Básicas de la Universidad Santiago de Cali. Desde su comienzo esta unidad académico-administrativa ha procurado estar a la vanguardia en la investigación, en la tecnología y en la innovación. Es por ello que los grupos de investigación acordes con esta macrolínea se han preocupado por compartir sus avances en investigación e innovación en un marco de responsabilidad social. Es por ello que, en este libro llamado “Estudios en resistencia a los antibióticos beta-lactámicos en bacterias Gram negativas”, se recopilan tres trabajos de investigadores que forman parte de la producción intelectual de los grupos GIMIA y QUIBIO, en alianza con el Grupo de Resistencia y Epidemiología Hospitalaria (RAEH) de la Universidad El Bosque.
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44

Gibreel, Amera. Characterization of Resistance to Quinolones, Sulfonamide and Trimethoprim in Campylabacter Jejuni As Well As to Macrolides in the Related Bacterium, (Comprehensive ... from the Faculty of Pharmacy, 202). Uppsala Universitet, 1999.

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45

(Editor), Bruce K. Rubin, and Jun Tamaoki (Editor), eds. Antibiotics as Anti-Inflammatory and Immunomodulatory Agents (Progress in Inflammation Research). Birkhäuser Basel, 2005.

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46

Tamaoki, Jun, and Bruce K. Rubin. Antibiotics As Anti-Inflammatory and Immunomodulatory Agents. Springer London, Limited, 2005.

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