Background: Septicemia continues to be a major cause of neonatal mortality and morbidity worldwide. Methodology: To know the rate of neonatal septicemia in our tertiary care centre, a retrospective analysis of 2,247 blood samples was done over a period of four years and three months (July 2003 to October 2007. Results: During that period, a total of 296 (13.17%) blood samples were found to be positive for bacterial isolates. Gram-negative septicemia (80.40%) was identified in more cases than Gram-positive septicemia (20.60%) with Klebsiella species 84 (28.3%) being the most common isolate. Maximum resistance among Gram-negative organisms was seen in amoxycillin/ampicillin and third-generation cephalosporins. Amikacin, cefoperazone/sulbactam and imipenem were found to be good alternative drugs. Among Gram-positive organisms, all strains were sensitive to Vancomycin. Conclusion: Continued surveillance for various pathogens and their susceptibility profile should be done to effectively and timely treat the patients of neonatal septicaemia.
Biofilms are surface-adherent populations of microorganisms consisting of cells, water and extracellular matrix material Nanotechnology is promising field of science which can guide our understanding of the role of interspecies interaction in the development of biofilm. Streptococcus mutans with other species of bacteria has been known to form dental biofilm. The correlation between genetically modified bacteria Streptococcus mutans and nanoscale morphology has been assessed using AFMi.e atomic force microscopy. Nanotechnology application includes 16O/18O reverse proteolytic labeling,use of quantum dots for labeling of bacterial cells, selective removal of cariogenic bacteria while preserving the normal oral flora and silver antimicrobial nanotechnology against pathogens associated with biofilms. The future comprises a mouthwash full of smart nanomachines which can allow the harmless flora of mouth to flourish in a healthy ecosystem.
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