CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Jaundice: Neonatal

  • Low-cost home-use light-emitting-diode phototherapy as an alternative to conventional methods.

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    Abstract Title:

    Low-cost home-use light-emitting-diode phototherapy as an alternative to conventional methods.

    Abstract Source:

    J Trop Pediatr. 2015 Apr ;61(2):113-8. Epub 2015 Jan 23. PMID: 25617633

    Abstract Author(s):

    Aygen Yilmaz, Servet Ozkiraz, Abdullah Baris Akcan, Murat Canpolat

    Article Affiliation:

    Aygen Yilmaz

    Abstract:

    BACKGROUND:The aim of our study was to evaluate whether a portable, light-weight, light-emitting-diode phototherapy unit designed for home use is as effective as conventional blue-light fluorescent phototherapy (CFP) for treating hyperbilirubinemia in neonates.

    METHODS:A total of 50 patients were recruited sequentially for treatment using CFP (n = 25) and the home-type phototherapy unit (n = 25).

    RESULTS:The average rate of decrease in bilirubin levels was 0.17± 0.02 and 0.20 ± 0.01 mg/dL/hours at the end of 24 hours in the groups receiving phototherapy by CFP and home-type phototherapy units, respectively. There was no statistically significant difference in the rate of the decrease in bilirubin levels between the groups (p = 0.104).

    CONCLUSIONS:It has been shown that the home-type phototherapy unit is as effective as CFP units in the treatment of neonatal hyperbilirubinemia and has the potential to become a standard of care for treatment of jaundiced neonates.

  • Phototherapy with blue and green mixed-light is as effective against unconjugated jaundice as blue light and reduces oxidative stress in the Gunn rat model.

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    Abstract Title:

    Phototherapy with blue and green mixed-light is as effective against unconjugated jaundice as blue light and reduces oxidative stress in the Gunn rat model.

    Abstract Source:

    Early Hum Dev. 2015 Jul ;91(7):381-5. Epub 2015 May 15. PMID: 25984653

    Abstract Author(s):

    Yumiko Uchida, Yukihiro Morimoto, Takao Uchiike, Tomoyuki Kamamoto, Tamaki Hayashi, Ikuyo Arai, Toshiya Nishikubo, Yukihiro Takahashi

    Article Affiliation:

    Yumiko Uchida

    Abstract:

    OBJECTIVE:Phototherapy using blue light-emitting diodes (LED) is effective against neonatal jaundice. However, green light phototherapy also reduces unconjugated jaundice. We aimed to determine whether mixed blue and green light can relieve jaundice with minimal oxidative stress as effectively as either blue or green light alone in a rat model.

    METHODS:Gunn rats were exposed to phototherapy with blue (420-520 nm), filtered blue (FB; 440-520 nm without<440-nm wavelengths, FB50 (half the irradiance of filtered blue), mixed (filtered 50% blue and 50% green), and green (490-590 nm) LED irradiation for 24h. The effects of phototherapy are expressed as ratios of serum total (TB) and unbound (UB) bilirubin before and after exposure to each LED. Urinary 8-hydroxy-2'-deoxyguanosine (8-OHdG) was measured by HPLC before and after exposure to each LED to determine photo-oxidative stress.

    RESULTS:Values<1.00 indicate effective phototherapy. The ratios of TB and UB were decreased to 0.85, 0.89, 1.07, 0.90, and 1.04, and 0.85, 0.94, 0.93, 0.89, and 1.09 after exposure to blue, filtered blue, FB50, and filtered blue mixed with green LED, respectively. In contrast, urinary 8-OHdG increased to 2.03, 1.25, 0.96, 1.36, 1.31, and 1.23 after exposure to blue, filtered blue, FB50, mixed, green LED, and control, indicating side-effects (>1.00), respectively.

    CONCLUSIONS:Blue plus green phototherapy is as effective as blue phototherapy and it attenuates irradiation-induced oxidative stress.

    PRACTICE IMPLICATIONS:Combined blue and green spectra might be effective against neonatal hyperbilirubinemia.

  • Phototherapy with blue and green mixed-light is as effective against unconjugated jaundice as blue light and reduces oxidative stress in the Gunn rat model.

    facebook Share on Facebook
    Abstract Title:

    Phototherapy with blue and green mixed-light is as effective against unconjugated jaundice as blue light and reduces oxidative stress in the Gunn rat model.

    Abstract Source:

    Early Hum Dev. 2015 Jul ;91(7):381-5. Epub 2015 May 15. PMID: 25984653

    Abstract Author(s):

    Yumiko Uchida, Yukihiro Morimoto, Takao Uchiike, Tomoyuki Kamamoto, Tamaki Hayashi, Ikuyo Arai, Toshiya Nishikubo, Yukihiro Takahashi

    Article Affiliation:

    Yumiko Uchida

    Abstract:

    OBJECTIVE:Phototherapy using blue light-emitting diodes (LED) is effective against neonatal jaundice. However, green light phototherapy also reduces unconjugated jaundice. We aimed to determine whether mixed blue and green light can relieve jaundice with minimal oxidative stress as effectively as either blue or green light alone in a rat model.

    METHODS:Gunn rats were exposed to phototherapy with blue (420-520 nm), filtered blue (FB; 440-520 nm without<440-nm wavelengths, FB50 (half the irradiance of filtered blue), mixed (filtered 50% blue and 50% green), and green (490-590 nm) LED irradiation for 24h. The effects of phototherapy are expressed as ratios of serum total (TB) and unbound (UB) bilirubin before and after exposure to each LED. Urinary 8-hydroxy-2'-deoxyguanosine (8-OHdG) was measured by HPLC before and after exposure to each LED to determine photo-oxidative stress.

    RESULTS:Values<1.00 indicate effective phototherapy. The ratios of TB and UB were decreased to 0.85, 0.89, 1.07, 0.90, and 1.04, and 0.85, 0.94, 0.93, 0.89, and 1.09 after exposure to blue, filtered blue, FB50, and filtered blue mixed with green LED, respectively. In contrast, urinary 8-OHdG increased to 2.03, 1.25, 0.96, 1.36, 1.31, and 1.23 after exposure to blue, filtered blue, FB50, mixed, green LED, and control, indicating side-effects (>1.00), respectively.

    CONCLUSIONS:Blue plus green phototherapy is as effective as blue phototherapy and it attenuates irradiation-induced oxidative stress.

    PRACTICE IMPLICATIONS:Combined blue and green spectra might be effective against neonatal hyperbilirubinemia.

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