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Journal ArticleDOI

Effect of exogenous melatonin on X-ray induced cellular toxicity in lymphatic tissue of Indian tropical male squirrel, Funambulus pennanti.

TLDR
Exogenous melatonin with its anti-apoptotic and antioxidant properties additively increased the immunity of the squirrels, by protecting their hematopoietic system and lymphoid organs against X-ray radiation induced cellular toxicity.
Abstract
Purpose: The radioprotective ability of melatonin was investigated in the Indian tropical rodent, Funambulus pennanti during its reproductively inactive phase (RIP) when peripheral melatonin is high and the animal is under the influence of environmental stresses. Materials and methods: Fifty male squirrels were divided into two sets of 25 each; with set 1 receiving 0.9% saline and set 2 receiving 25 mg melatonin/100 g body weight/day for four weeks during evening hours. Five saline-treated and five-melatonin treated squirrels were sacrificed at times of 4, 24, 48 and 72 hours following 2.06 Gy X-ray radiation. Remaining squirrels that were not exposed to X-ray were used as control and melatonin treated, respectively. Total leukocyte count (TLC) and lymphocyte count (LC) in peripheral blood and lipid peroxidation (LPO) status, superoxide dismutase (SOD) activity, total antioxidant status (TAS), apoptotic percentage on the basis of morphological changes and DNA fragmentation and caspase3 activity were measured in the spleens of squirrels. Results: Peripheral blood and spleens with higher intrinsic levels of environmental and X-radiation induced free radical generation had inhibited TLC, LC, SOD activity and TAS and increased LPO and apoptosis. Melatonin pre-treatment significantly reduced and altered the changes brought on by X-radiation. Conclusion: Exogenous melatonin with its anti-apoptotic and antioxidant properties additively increased the immunity of the squirrels, by protecting their hematopoietic system and lymphoid organs against X-ray radiation induced cellular toxicity.

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Journal ArticleDOI

Melatonin Protects CD4+ T Cells from Activation-Induced Cell Death by Blocking NFAT-Mediated CD95 Ligand Upregulation

TL;DR: It is found that melatonin protects human and murine CD4+ T cells from apoptosis by inhibiting CD95 ligand mRNA and protein upregulation in response to TCR/CD3 stimulation and reveals a novel biochemical pathway that regulates the expression of CD 95 ligand and potentially other downstream targets of NFAT activation.
Journal ArticleDOI

Ionizing Radiation as a Source of Oxidative Stress-The Protective Role of Melatonin and Vitamin D.

TL;DR: Interestingly, both melatonin and vitamin D have been found to selectively radiosensitise cancer cells, which makes them promising adjuvants in radiotherapy.
Journal Article

Evaluation of Radio-Protective Effect of Melatonin on Whole Body Irradiation Induced Liver Tissue Damage

TL;DR: It is suggested that administration of melatonin before and after irradiation may reduce liver damage caused by gamma irradiation, and Hepatic MDA levels in irradiated rats that were treated with melatonin were significantly decreased, while GSH levels were significantly increased, when compared to either of the control groups or the melatonin only group.
Journal ArticleDOI

Radio-protective effects of melatonin against irradiation-induced oxidative damage in rat peripheral blood

TL;DR: Pre-treatment with melatonin (10 mg/kg) is likely to be a threshold concentration for significant protection against lower dose of 2 Gy gamma irradiation compared to higher dose of 8 Gy, therefore it seems that radio-protective effects of melatonin are dose-dependent.
Journal ArticleDOI

Circadian Regulation of Adult Stem Cell Homeostasis and Aging.

TL;DR: How circadian rhythms regulate and synchronize adult stem cell functions and how alterations in clock function during aging modulate the extrinsic and intrinsic mechanisms that determine adult stem cells homeostasis are discussed.
References
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Journal ArticleDOI

Circadian variations in immune values and serum melatonin in asthmatics.

TL;DR: The correlations of immune values between each other and with melatonin over the circadian cycle increased after treatment, and the number of correlations between immune values and blood melatonin level increased too.
Journal Article

Divalent cations and radiation induced lipid peroxidation

TL;DR: In this paper, the response of Co2+, Cu2+, Fe2+, Ni2+ and Mn2+ against radiation induced lipid peroxidation has been examined and shown that the effect of divalent cations may be due to their reactivity towards oxygen and oxygen free radicals, and at least part to their hard/soft acid character.
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