In developing countries, infectious keratitis being the probable cause of preventable blindness, also have a varied epidemiological profile. This study was conducted to know the microbiological profile, risk factors, epidemiology and antimicrobial susceptibility pattern of bacteria isolated from patients with a corneal ulcers. A total of 193 patients who were clinically diagnosed with cases of infective keratitis in the Department of Ophthalmology were included in the study. The sample collected by an ophthalmologist was received in the Microbiology department. All the demographic details and relevant clinical data were noted. The bacterial identification and antimicrobial susceptibility were done using automated methods while the fungal identification was done using the conventional method (Vitek2 Compact system, BioMerieux). Out of 193 patients, 69% were male and 31% % were females. The Majority of cases were from the age group 41- 50 years. Of 193 cases, 83 (43%) showed microbial etiology in culture. Of 83 culture positive cases, 55 (66.3%) were fungal and 28 (33.7%) were bacterial. The most common isolated fungus was Fusarium species detected in 24 (28.9%) cases followed by Aspergillus species in 14 (16.8%) cases. Gram positive bacteria were predominantly isolated from cases of infective keratitis. Staphylococcus aureus was the most common isolated bacteria in 12 (14.4%) out of 83 positive cases followed by Coagulase negative Staphylococcus. Pseudomonas aeruginosa was the most common Gram negative bacteria isolated from the cases. Among the topical antimicrobials, both Gram positive bacteria as well as Gram negative bacteria showed maximum sensitivity to levofloxacin. Proper knowledge of the clinical presentation and etiological agents aided with microbiological examination is necessary in order to effectively treat corneal ulcers and prevent further complications that can lead to blindness.
Early and effective diagnosis of cancer is decisive for its proper management. In this context biomarker-based cancer diagnosis is budding as one of the promising ways for early detection, disease progression monitoring, and effective cancer therapy. Integration of Biosensing devices with different metallic/nonmetallic nanoparticles offers amplification and multiplexing capabilities for simultaneous detection of cancer biomarkers (CB’s). This study provides a comprehensive analysis of the most recent designs and fabrication methodologies designed for developing electrochemical biosensors (EB) for early detection of cancers. The role of biomarkers in cancer therapeutics is also discussed.
Non-fermenting gram-negative bacteria (NFGNB) endeavouring as major pathogen in infectious disease, predominantly in urinary tract infection (UTI) and increased resistance in NFGNB are matter of concern. This study aimed to evaluate the frequency of NFGNB, antibiotics resistance pattern, plasmid profiling, and antibacterial efficacy of Moringa oleifera against NFGNB. NFGNB were isolated from clinically suspected UTI patients. Identification of isolates and their antibiotics sensitivity pattern were analyzed according to conventional method, and Vitek 2 automated system. Moreover, NFGNB were evaluated for biofilm production and presence of plasmid. Furthermore, antibacterial activity of Moringa oleifera was evaluated against NFGNB. P. aeruginosa (86.0%), and A. baumannii (10.0%) were the most frequent NFGNB followed by Providencia rettgeri 2.0%, Stenotrophomonas maltophilia 1.0%, myroides species 1.0%. 68.6% P. aeruginosa and 60.0% A. baumannii were biofilm producers whereas imipenem and meropenem were the most effective antibiotics. Isolated NFGNB showed multiple bands of plasmid. Furthermore, Moringa oleifera leaves extract showed antibacterial activity against tested NFGNB. MDR-NFGNB presents challenges in treatment and Moringa oleifera leaf extract may be used as an alternative medicine. However, the therapeutic role of specific ingredients present in extract needs further investigation and purification.
Euphorbia milii Des Moul is a deciduous bush indigenous to Madagascar. The present study aims to investigate the presence of the phytochemical, in-vitro antioxidant and antimicrobial potency, and in-silico computational analysis of ethanolic and aqueous preparations of E. milii leaves and flowers. The ethanolic and aqueous extracts were tested for in-vitro antioxidant activity by DPPH, H2O2, TAC, and FRAP assay. In addition, antimicrobial potentials were assayed by agar well diffusion technique against Escherichia coli, Pseudomonas aeruginosa, Klebsiella pneumoniae, Staphylococcus aureus, and Candida albicans for various clinical isolates. The qualitative phytochemical analysis results confirmed the existence of alkaloids, flavonoids, phenolics, and tannins. The quantitative analysis elicits the availability of a magnificent number of alkaloids, flavonoids, phenolics, flavonols, and tannins. Among all the extracts, aqueous extracts of leaves exhibited potent antioxidant activity in DPPH, FRAP, and H2O2 assay with the IC50 value of 30.70, 60.05, and 82.92µg/mL, respectively. In agar well diffusion assay, all extracts displayed zone of inhibition varies from 2-24mm at different concentrations ranging from 10-320 mg/mL, whereas no activity was observed against Candida albicans. Furthermore, docking-based computational analysis has revealed that beta-sitosterol and taraxerol are the plant's active constituents responsible for their antimicrobial and antioxidant activities. Research findings suggest that the E. milii plant has an excellent prospect for further study for its extended antioxidative and antimicrobial potential. It could be a natural source of various ailments and can be utilized to develop new drugs.
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