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1

Zhou, Jun, red. Multi-Drug Resistance in Cancer. Totowa, NJ: Humana Press, 2010. http://dx.doi.org/10.1007/978-1-60761-416-6.

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Multi-drug resistance in cancer. Totowa, N.J: Humana, 2010.

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3

Vinšová, Jarmila. Development of new MDR-tuberculosis drugs. Hauppauge, N.Y: Nova Science Publisher, 2010.

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4

C, Mahajan R., Therwath Amu i Indian National Science Academy, red. Multi-drug resistance in emerging and re-emerging diseases. New Delhi: Indian National Science Academy, 2000.

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Hopkins, Tanne Janice, red. Timebomb: The global epidemic of multi-drug-resistant tuberculosis. New York: McGraw-Hill, 2002.

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6

Society of Critical Care Medicine, red. ICU infection in an era of multi resistance: Selected proceedings from the 8th Summer Conference in Intensive Care Medicine. Mount Prospect, IL: Society of Critical Care Medicine, 2009.

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7

Kaushik, Sanket, i Nagendra Singh, red. Current Developments in the Detection and Control of Multi Drug Resistance. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/97898150498791220101.

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The rise in the incidence of infections is caused by multi drug resistant (MDR) bacteria, it is essential to elucidate the basic mechanism of antibiotic resistance to discover effective methods for diagnosis and treatment of infections. The use of pathogen-specific probes offers a faster alternative for pathogen detection and could improve the diagnosis of infection. High resolution melting analysis techniques are useful for the detection of multi drug resistant pathogens. Rational Structural Based Drug Design is a common method to identify a lead compound and take it forward for further developments. This book provides information about recent strategies involved in the diagnosis and treatment of infections caused by MDR bacteria. The volume covers the use of molecular probes for the quantification of pathogenic bacteria, along with other techniques mentioned above. Chapters also cover the use of identification of novel drug targets from the Lipid A biosynthesis and also from quorum sensing mediated biofilm formation in MDR bacteria. Chapters also cover herbal alternatives for the treatment of MDR bacteria like the use of Cassia aungustifolia in treatment of various diseases. The reference is suitable for biomedical students, cellular and molecular biologists.
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Multi-Drug Resistance in Cancer. Humana, 2012.

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9

Reichman, Lee B., i Janice Hopkins Tanne. Timebomb:The Global Epidemic of Multi-Drug Resistant Tuberculosis. McGraw-Hill Companies, 2001.

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10

Reichman, Lee B., i Janice Hopkins Tanne. Timebomb:The Global Epidemic of Multi-Drug Resistant Tuberculosis. McGraw-Hill Companies, 2001.

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11

(Editor), R. C. Mahajan, i Amu Therwath (Editor), red. Multi-Drug Resistance in Emerging and Re-Emerging Diseases. Narosa, 2001.

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12

Nagendra, Sanket Kaushik;. Current Developments in the Detection and Control of Multi Drug Resistance. Bentham Science Publishers, 2022.

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13

Nagendra, Sanket Kaushik;. Current Developments in the Detection and Control of Multi Drug Resistance. Bentham Science Publishers, 2022.

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14

Kaushik, Sanket, i Nagendra Singh. Current Developments in the Detection and Control of Multi Drug Resistance. Bentham Science Publishers, 2022.

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15

Farrell, Richard J. Multi drug resistance (PGP - 170): A novel therapeutic strategy for inflammatory bowel disease. 1997.

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16

Vargiu, Attilio Vittorio, Klaas Martinus Pos, Keith Poole i Hiroshi Nikaido, red. Bad Bugs in the XXIst Century: Resistance Mediated by Multi-Drug Efflux Pumps in Gram-Negative Bacteria. Frontiers Media SA, 2016. http://dx.doi.org/10.3389/978-2-88919-931-0.

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Q. Zhou, M. Tang, X. Zhang, J. Zhang i Y. Gao*. Multi-drug resistance to antibiotics and disinfectants in Campylobacter isolates from chicken and poultry meat in Jiangsu Province, China. Verlag Eugen Ulmer, 2018. http://dx.doi.org/10.1399/eps.2018.252.

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18

Remberger, Stephan. Beziehungen des "Multi-drug-resistance"-Phänotyps zu prognostischen Faktoren, Tumorproliferation, tumorassoziierten Makrophagen und T-Lymphozyten im mammkarzinom des Menschen. 1991.

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19

Damani, Nizam. Manual of Infection Prevention and Control. Oxford University Press, 2019. http://dx.doi.org/10.1093/med/9780198815938.001.0001.

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The Manual of Infection Prevention and Control provides practical guidance on all aspects of healthcare-associated infections (HAIs). It outlines the basic concepts of infection prevention and control (IPC), modes of transmission, surveillance, control of outbreaks, epidemiology, and biostatistics. The book provides up-to-date advice on the triage and isolation of patients and on new and emerging infectious diseases, and with the use of illustrations, it provides a step-by-step approach on how to perform hand hygiene and how to don and take off personal protective equipment correctly. In addition, this section also outlines how to minimize cross-infection by healthcare building design and prevent the transmission of various infectious diseases from infected patients after death. The disinfection and sterilization section reviews how to risk assess, disinfect and/or sterilize medical items and equipment, antimicrobial activities, and the use of various chemical disinfectants and antiseptics, and how to decontaminate endoscopes. The section on the prevention of HAIs reviews and updates IPC guidance on the prevention of the most common HAIs, i.e. surgical site infections, infections associated with intravascular and urinary catheters, and hospital- and ventilator-acquired pneumonias. In view of the global emergence of antimicrobial resistance to the various pathogens, the book examines and provides practical advice on how to implement an antibiotic stewardship programme and prevent cross-infection against various multi-drug resistant pathogens. Amongst other pathogens, the book also reviews IPC precautions against various haemorrhagic and bloodborne viral infections. The section on support services discusses the protection of healthcare workers, kitchen, environmental cleaning, catering, laundry services, and clinical waste disposal services.
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