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Methodenartikel

Blue Light Therapy for Drug-Resistant Bacterial Infections in Burn Wounds in a Mouse Model

195 weergaven

31 maart 2026

In dit artikel

Samenvatting

Source: Wang, Y., et al. In Vivo Investigation of Antimicrobial Blue Light Therapy for Multidrug-resistant Acinetobacter baumannii Burn Infections Using Bioluminescence Imaging. J. Vis. Exp. (2017)

This video demonstrates the procedure for treating burn wound infections caused by bioluminescent, drug-resistant bacteria in mice using blue light therapy, followed by bioluminescence imaging to monitor treatment efficacy.

Protocol

All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board.

1. Antimicrobial Blue Light Therapy for A. baumannii Infection in Mice

  1. Anesthetize the mice with an intraperitoneal injection of a ketamine-xylazine cocktail (100 mg/kg - 20 mg/kg). An absence of the palpebral reflex suggests an appropriate anesthetic depth.
  2. Randomly divide the mice into an aBL-treated group (n = 10) and an untreated control group (n = 10).
  3. For the antimicrobial blue light (aBL)-treated group, cover the mice's eyes with aluminum foil to avoid overexposure to light. Place the mouse burns directly under the light-emitting diode (LED), with the lid of a 35-mm petri dish underneath the mouse abdomen to keep their backs horizontal.
  4. Replace the power/energy meter mentioned in step 3.5 with a mouse on a square petri dish. Adjust the mouse's height back to a position where the distance between the LED aperture and the surface of the mouse burn is equal to that between the LED aperture and the level of the light sensor of the power/energy meter.
  5. Irradiate the infected burns at an irradiance of 100 mW/cm2. Deliver aBL in doses of 72 J/cm2 until a total dose of 360 J/cm2 is reached (e.g., 0, 72, 144, 216, 288, and 360 J/cm2). After each light dose, perform bioluminescence imaging for the mice.
  6. For the untreated control group, perform bioluminescence imaging of the mouse burns, using the same time intervals as used for the aBL-treated group.
  7. Before the recovery of the mice, place the mice on the water-heated surgical bed to prevent heat loss and hypothermia. Observe the activity and the palpebral reflex of the mice until recovery. After the recovery of the mice, house them 2-3 per cage.

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Materialen

Lijst van materialen gebruikt in dit artikel
NaamBedrijfCatalogusnummerOpmerkingen
IVISPerkinElmer Inc, Waltham, MAIVIS Lumina Series IIIPre-clinical in vivo imaging
Light-emitting diode LEDVieLight Inc, Toronto, Canada415 nmLight source for illumination
Power/energy meterThorlabs, Inc., Newton, NJPM100DLight irradiance detector
MouseCharles River Laboratories, Wilmington, MABALB/c7-8 weeks age, 17-19 g weight
Acinetobacter baumanniiBrooke Army Medical Center, Fort Sam Houston, TXClinical isolateEngineered luminescent strain
Phosphate Buffered Saline, 1x SolutionFisher ScientificBP24384A standard phosphate buffer used in many biomolecular procedures
Fisher Scientific Redi-Tip Pipet Tips, 1-200 µLFisher Scientific02-707-502Pipet Tips
Brass BlockSmall Parts, Inc., Miami, FL10 mm by 10 mmFor creation of burns in mice
Extreme Dragon PBI/Kevlar High-Heat GlovesSuperior Glove Works Ltd, Cheektowaga, NYPBI83514Heat Resistant Gloves
Greiner dishesSigma-Aldrich Co. LLCP5112-740EA35 mm ×10 mm
Corning Digital Hot PlateCole-Parmer Instrument Company, LLCUX-84301-6510" x 10", 220 VAC, for boiling water
Mouse/Rat Thin Line Water Heated Surgical BedE-Z SystemsEZ-211Prevents heat loss and hypothermia during surgery
Vet ointmentS&K Pharma, GmbHKerato Biciron 5%, AugensalbeOpthalmic ointment to prevent eye dryness

Tags

Medicijnresistente bacteriënbrandwondinfectiebioluminescentie-imagingLED-bestralingreactieve zuurstofspeciesantimicrobiële behandelingbacteriële celdoodpenetratie van wondweefsel