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1.
Lasers Med Sci ; 31(7): 1363-70, 2016 Sep.
Article in English | MEDLINE | ID: mdl-27412288

ABSTRACT

The aim of this study was to evaluate the influence of laser photobiomodulation in cutaneous healing of rats under a hyperlipidic diet. Forty-eight Wistar Albinus rats, weaned, received standard diet (SD) or hyperlipidic diet (HD) for 20 weeks. The groups were divided into SD rats and HD rats, SD-irradiated rats (LSD), and HD-irradiated rats (LHD). Standard cutaneous wound (1 cm(2)) was created on the dorsum of each rat. The irradiation started immediately after surgery and every 48 h for 7 or 14 days (λ660 nm, 40 mW, 6 J/cm(2), ϕ 0,04 cm(2), CW), when they were killed under deep anesthesia. The specimens were removed, routinely processed, stained with hematoxylin/eosin (H/E), and evaluated by light microscopy. Rats fed with hyperlipidic diet had greater intensity in the inflammatory process and prolonged hyperemia. At day 7, the intensity of inflammation was reduced in LSD and LHD groups when compared to their control groups, SD (p = 0.002) and HD (p = 0.02). There was an increase in fibroblast proliferation and collagen deposition, especially in the LHD group. At day 14, the HD group presented more intensive hyperemia than the SD group. It can be concluded that the hyperlipidic diet modified the inflammation pattern in wound healing and that laser light has a positive biomodulative effect on the healing process only in early stages.


Subject(s)
Low-Level Light Therapy , Skin/pathology , Skin/radiation effects , Wound Healing/radiation effects , Animals , Cell Proliferation , Diet, High-Fat , Female , Intra-Abdominal Fat/pathology , Intra-Abdominal Fat/radiation effects , Male , Rats, Wistar
2.
Vasc Health Risk Manag ; 11: 479-88, 2015.
Article in English | MEDLINE | ID: mdl-26316772

ABSTRACT

PURPOSE: The aim of this study was to evaluate the relationship between body composition, metabolic profile, adipokines, and carotid intima-media thickness (cIMT) in young survivors of childhood acute lymphocytic leukemia (ALL). PATIENTS AND METHODS: This cross-sectional study compared 55 ALL survivors, of chronological age between 15 years and 24 years, assigned into two groups according to the exposure to cranial radiation therapy (CRT; 25 irradiated and 30 nonirradiated) with 24 leukemia-free controls, and assessed body fat mass (dual-energy X-ray absorptiometry), computed tomography scan-derived abdominal adipose tissue, lipid profile, blood pressure (BP), adipokines, and cIMT by a multiple regression analysis. RESULTS: Treatment with CRT had an effect on all of the variables derived from the computed tomography scan: visceral adipose tissue (VAT) and subcutaneous adipose tissue (SAT) (P<0.050). In a multiple linear regression model, cIMT positively correlated with exposure to CRT (P=0.029), diastolic BP (P=0.016), and leptin-to-adiponectin ratio (P=0.048), while negatively related to SAT (P=0.007). CONCLUSION: In young survivors of childhood ALL, CRT modified the distribution of fat and played a critical role in determining cIMT. Leptin-to-adiponectin ratio, a biomarker of abdominal obesity and metabolic syndrome, and diastolic BP also influenced cIMT, a marker of subclinical atherosclerosis. Nonetheless, adiposity-associated vascular disease might be attenuated by SAT. Changes in body fat must be evaluated in this group of patients in the early course of survivorship in order to avoid premature cardiovascular disease associated with atherosclerosis. Yet, further research as regards the possible protective effect of SAT on vascular disease is warranted.


Subject(s)
Carotid Artery Diseases/etiology , Cranial Irradiation , Intra-Abdominal Fat/radiation effects , Precursor Cell Lymphoblastic Leukemia-Lymphoma/radiotherapy , Subcutaneous Fat/radiation effects , Survivors , Absorptiometry, Photon , Adiponectin/blood , Adiposity , Adolescent , Biomarkers/blood , Carotid Artery Diseases/blood , Carotid Artery Diseases/diagnostic imaging , Carotid Artery Diseases/physiopathology , Carotid Intima-Media Thickness , Case-Control Studies , Cranial Irradiation/adverse effects , Cross-Sectional Studies , Female , Humans , Intra-Abdominal Fat/diagnostic imaging , Intra-Abdominal Fat/metabolism , Intra-Abdominal Fat/physiopathology , Leptin/blood , Linear Models , Male , Multivariate Analysis , Precursor Cell Lymphoblastic Leukemia-Lymphoma/diagnosis , Predictive Value of Tests , Risk Factors , Subcutaneous Fat/diagnostic imaging , Subcutaneous Fat/metabolism , Subcutaneous Fat/physiopathology , Tomography, X-Ray Computed , Treatment Outcome , Young Adult
3.
Nutr Neurosci ; 12(5): 233-40, 2009 Oct.
Article in English | MEDLINE | ID: mdl-19761654

ABSTRACT

Melatonin levels, metabolic parameters, circadian rhythm activity patterns, and behavior were observed in rats subjected to a 12-h/12-h light/dark cycle (LD) compared to animals exposed to continuous dark (DD) or continuous light (LL). LD and DD animals were similar in melatonin levels, food intake, relative food intake, feed efficiency, water intake, circadian activity levels, and behavior. LL animals had lower melatonin levels in the subjective dark compared to LD and DD animals. Food intake, relative food intake, and water intake values were lower and feed efficiency was more positive in LL animals compared to LD and DD animals. In addition, LL animals exhibited greater visceral adiposity than the other two groups. The circadian rhythmicity of activity became free-running in LL animals and there was a decrease in overall activity. Notable behavioral changes in LL animals were an increase in irritability and excitability. Results indicate that a decrease in melatonin levels and concomitant changes in metabolism, circadian rhythms, and behavior are consequences of exposure to constant light.


Subject(s)
Adaptation, Psychological/radiation effects , Adiposity/radiation effects , Circadian Rhythm/radiation effects , Eating/radiation effects , Light/adverse effects , Melatonin/metabolism , Motor Activity/radiation effects , Algorithms , Animals , Body Weight/radiation effects , Drinking/radiation effects , Intra-Abdominal Fat/radiation effects , Male , Melatonin/blood , Rats , Rats, Long-Evans , Sleep Deprivation , Telemetry , Time Factors
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