| Literature DB >> 29057263 |
Tripti Thapa Gupta1, Surya B Karki1, Jyl S Matson2, Daniel J Gehling3, Halim Ayan1,4.
Abstract
Nosocomial infections caused by opportunistic bacteria pose majorEntities:
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Year: 2017 PMID: 29057263 PMCID: PMC5625801 DOI: 10.1155/2017/6085741
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1Schematic diagram and photograph of the jet plasma setup. (a) demonstrates the schematic diagram of the jet plasma and (b) shows the actual experimental setup of jet plasma.
Figure 2(a) Voltage and current waveforms of Jet plasma. Two complete cycles based on 1000 Hz frequency and 4 µs pulse width are shown. (b) A close-up view of the voltage and the current waveforms.
Effect of inactivation solution on planktonic bacteria and biofilm viability.
| Treatment method | Surviving cells/ml on planktonic bacteria | Surviving cells/ml on biofilm |
|---|---|---|
| Untreated biofilm | 6.50 | 3.8 |
| Biofilm treated with inactivation solution only | 6.50 | 2.5 |
Figure 3Typical emission spectrum of He plasma jet using 1000 Hz pulse frequency and 4 µs pulse width (measured at output of 10 kV and He flow rate of 1 SLPM).
Figure 4Surviving bacterial cells of control and treated (C + P and P + C) biofilm. Titanium coupons containing biofilms were treated for different time intervals at 1 kHz frequencies using He jet plasma and CHX. After treatment, the coupon was subjected to the colony count assay (as described in Materials and Methods) and the number of viable cells was calculated. The results are expressed as mean ± standard deviation of cell number (n = 3). Asterisks (∗∗) denote statistical significant differences between NaCl and other treatment groups (C + P, P + C, CHX only, and plasma only), respectively (P < 0.01). P + C (black bar) in the graph represents 0 cells/ml.
Figure 5Metabolically active bacterial cells of control and treated (C + P and P + C) biofilms. Titanium coupons containing biofilms were treated for different time intervals at 1 kHz frequencies using He jet plasma and CHX. After treatment, the coupon was subjected to the XTT assay (as described in Materials and Methods) and the absorbance reading was measured using a spectrophotometer. The results are expressed as mean ± standard deviation of absorbance reading (n = 3). Asterisks (∗∗) denote statistical significant differences between NaCl and other treatment groups (C + P, P + C, CHX only, plasma only, and blank control), respectively (P < 0.01).
Figure 6SEM images of control and treated (C + P and P + C) biofilms on titanium coupons. The titanium coupons (both treated and control) containing biofilms were subjected to SEM and representative images were taken from the coupon. (a) SEM images of biofilms of negative (NaCl) and positive controls (CHX and plasma only). (c, e) SEM images of biofilms after combinatorial treatments: (c) C + P and (e) P + C at different treatment times. Magnification is 5000x, 10 µm, for (a), (c), and (e) and 10000x, 5 µm, for (b), (d), and (f).
Figure 7Confocal laser scanning microscope (CLSM) images of biofilms at titanium coupons in controls and combination treatment group: C + P and P + C. The titanium coupons (both treated and control) containing biofilms were subjected to CLSM and representative images were taken from the coupon. (b), (e), and (h) show 2D confocal images of control and treated (C + P and P + C) biofilms and (c), (f), and (i) represent the 3D volume image of the control and treated (C + P and P + C) biofilms, respectively. (a), (d), and (g) are merged images with multiple images. (b), (e), and (h) are a single image at the treated region. Green coloration and yellow coloration represent live and dead cells as stained by SYTO9 and PI (propidium iodide), respectively. The round black region at the center is the area directly treated by the plasma jet. The scale bar is 250 µm.