Drug Sensitivity Assay on Biofilm Development in Mycobacteria
Details
The bacteria enclosed within the biofilm are extremely resistant to antibiotic treatments; such resistancecan be explained by hypotheses, not necessarily limited to the following ones. First, the EPS secreted bybiofilm bacteria, acts as a physical/chemical barrier, thus preventing penetration by antibodies or manyantibiotics. The EPS is negatively charged and functions as an ion-exchange resin which is capable ofbinding a large number of the antibiotic molecules that are attempting to reach the embedded biofilmcells. Second, embedded biofilm bacteria are generally not actively engaged in cell division, are smallerin size and less permeable to antibiotics. We demonstrate here for the first time that biofilm cultures of aMycobacterium are capable of growing at higher drug concentrations (i.e. have higher MICs) thansuspension cultures. The MIC of selected drugs concentration that inhibited exponentially growingbiofilm was found to be higher than the MIC for planktonic culture. The biofilm literature offers essentiallythree possible explanations for biofilm-associated drug resistance: (i) Slower biofilm growth, (ii)Decreased drug penetration into the bioflm due to architecture and/or e
Autorentext
El Dr. Nikunaj Bhardwaj está trabajando como A.P. en C.C.S.U., Meerut. El Dr. V.K. Sharma es el científico y jefe del Departamento de Microscopía Electrónica, Lepra Nacional JALMA y otras enfermedades micobacterianas (ICMR), Agra. El Sr. Jaideep Goyal está asociado con el Dr. Sharma. Como editor, el Dr. Vartika Sigh es A.P. en AMITY mientras que el Dr. Shashank es A.P. en C.C.S.U. Campus, Meerut.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Gewicht 131g
- Untertitel Drug sensitivity assay on development of biofilm in non-tuberculosis Mycobacteria
- Autor Nikunaj Bhardwaj , V. K. Sharma , Jaideep Goyal
- Titel Drug Sensitivity Assay on Biofilm Development in Mycobacteria
- Veröffentlichung 12.05.2020
- ISBN 6202554975
- Format Kartonierter Einband
- EAN 9786202554978
- Jahr 2020
- Größe H220mm x B150mm x T5mm
- Herausgeber LAP LAMBERT Academic Publishing
- Anzahl Seiten 76
- GTIN 09786202554978