scholarly journals Melatonin, Its Beneficial Effects on Embryogenesis from Mitigating Oxidative Stress to Regulating Gene Expression

2021 ◽  
Vol 22 (11) ◽  
pp. 5885
Author(s):  
Dmitry Ivanov ◽  
Gianluigi Mazzoccoli ◽  
George Anderson ◽  
Natalia Linkova ◽  
Anastasiia Dyatlova ◽  
...  

Embryogenesis is a complex multi-stage process regulated by various signaling molecules including pineal and extrapineal melatonin (MT). Extrapineal MT is found in the placenta and ovaries, where it carries out local hormonal regulation. MT is necessary for normal development of oocytes, fertilization and subsequent development of human, animal and avian embryos. This review discusses the role of MT as a regulator of preimplantation development of the embryo and its implantation into endometrial tissue, followed by histo-, morpho- and organogenesis. MT possesses pronounced antioxidant properties and helps to protect the embryo from oxidative stress by regulating the expression of the NFE2L2, SOD1, and GPX1 genes. MT activates the expression of the ErbB1, ErbB4, GJA1, POU5F1, and Nanog genes which are necessary for embryo implantation and blastocyst growth. MT induces the expression of vascular endothelial growth factor (VEGF) and its type 1 receptor (VEGF-R1) in the ovaries, activating angiogenesis. Given the increased difficulties in successful fertilization and embryogenesis with age, it is of note that MT slows down ovarian aging by increasing the transcription of sirtuins. MT administration to patients suffering from infertility demonstrates an increase in the effectiveness of in vitro fertilization. Thus, MT may be viewed as a key factor in embryogenesis regulation, including having utility in the management of infertility.

2005 ◽  
Vol 17 (2) ◽  
pp. 278 ◽  
Author(s):  
C. Suzuki ◽  
K. Yoshioka

We previously developed an in vitro production system for porcine embryos and reported that the addition of glutamine and hypotaurine during in vitro culture improved blastocyst yield and the total number of cells in the blastocysts. Glutamine and hypotaurine might reduce oxidative stress, allowing the development of embryos cultured in vitro, because glutamine reportedly protects embryos against oxidative stress by helping to maintain intracellular levels of cysteine, a precursor of glutathione (GSH), and hypotaurine is a potent antioxidant. In the present study we evaluated the effects of the presence of glutamine and hypotaurine from Day 2 (Day 0 = the day of in vitro fertilization) to Day 3 on oxidative stress during in vitro development of porcine embryos. Porcine cumulus-oocytes complexes from prepubertal gilts were matured and fertilized in vitro using frozen-thawed ejaculated boar semen (Yoshioka et al. 2003 Biol. Reprod. 69, 2092–2099). Presumptive zygotes were cultured in porcine zygote medium (PZM)-5 (Suzuki et al., 2002) containing 2 mM of glutamine and 5 mM of hypotaurine as a basal culture medium until Day 2. The cleaved embryos were then transferred into one of four media prepared as follows: (1) containing no glutamine or hypotaurine (G−H−), (2) containing glutamine (G+H−), (3) containing hypotaurine (G−H+), (4) containing glutamine and hypotaurine (G+H+) (= PZM-5), and cultured for 24 h. After culture, the total number of cells, intracellular GSH content, and level of hydrogen peroxide (H2O2), which is a reactive oxygen species, in the cleaved embryos were examined. Some cleaved embryos were cultured in PZM-5 from Day 3 until Day 5 and the percentage of embryos that developed into blastocysts and the total number of cells in the blastocysts were investigated. Intracellular GSH content and H2O2 level on Day 3 were determined by a dithionitrobenzoic acid-glutathione disulfide (DTNB-GSSG) reductase recycling assay and dichlorohydrofluorescein diacetate (DCHFDA)-based assay, respectively. Data were statistically analyzed by ANOVA and Fisher's PLSD test. The total number of cells (4.3 to 4.4 cells) and intracellular GSH content (2.3 to 2.9 pmol/embryo) in the cleaved embryos on Day 3 did not differ among treatments. On Day 3, the intracellular H2O2 level of the cleaved embryos cultured in G+H+ decreased by 49% compared with those cultured in G−H− (100%) (P < 0.05). On Day 5, the percentage of embryos that developed into blastocysts in G+H+ (52%, 47/90) and G+H− (41%, 36/88) was significantly higher than in G−H− (11%, 11/90) and G−H+ (21%, 19/89) (P < 0.05). The total number of cells in the Day 5 blastocysts from G+H+ (34.5 cells) was significantly (P < 0.05) greater than in those from G−H− (25.8 cells). These results suggest that the presence of glutamine and hypotaurine in PZM-5 from Day 2 to Day 3 improves the subsequent development of porcine embryos into blastocysts by reducing intracellular H2O2 levels. This work was supported by MAFF, Japan.


Author(s):  
Mona Pourjafar ◽  
Sara Malih ◽  
Akram Ranjbar

: In recent years, the applications of nanoparticles have received a great attention due to their industrial and biomedical applications, while their beneficial effects suffer from controversial results at clinical stages. In the current study, cytotoxicity of cerium oxide (CeNP) nanoparticles (100 nm) were evaluated using mitochondria derived from wistar rat's liver. Isolated mitochondria from rat’s liver were divided into 7 groups including group 1 as control and group 2 to 7 as treatment group with different doses of CeNP (5, 10, 50, 100, 250 and 500mg/ml, respectively), for 24,48 and 72 hours. After exposure, oxidative stress biomarkers such as total ‎antioxidant capacity (TAC), lipid peroxidation (LPO), total thiol groups (TTG), catalase activity (CAT) and mitochondrial viability, were determined in isolated rat liver mitochondria. Results have shown that CeNPs increase TAC, TTG, CAT, LPO and viability of mitochondria in various exposure times and confirm antioxidant properties of CeNPs in mithocondria while mitochondria is a main source for the generation of reactive oxygen species (ROS).


2017 ◽  
pp. 99-104
Author(s):  
V.V. Orlova ◽  
◽  
L.V. Suslikova ◽  

The prevalence of infertility, including tubal-peritoneal genesis, led to the development of assisted reproductive technology (ART) as the most effective treatment and achievement of the expected pregnancy. But the success of ART is about 40% and depends on many factors: genetic, immunological, hormonal, age, control ovarial stimulation, sperm quality, quantity and quality received oocytes and embryos and implantation ability of endometrium. Therefore, it is important to consider the mechanisms and factors behind the successful implantation. Particular attention is given to the study of disturbances of oxidative stress and apoptosis in the reproductive tract of infertile women. Under the influence of adverse factors and in pathology, as a result of reducing the cell’s ability to neutralize free radicals and active forms of oxygen, antioxidant protection is disturbed, and oxidative stress develops, which promotes the onset of apoptosis. The programmed cell death occurs in the physiological functioning of the reproductive system: follicular atresia and regression of the functional layer of the endometrium when pregnancy is not occur. However, today the negative influence of oxidative stress and violation of the regulation of apoptosis on the reproductive function, namely the success of in vitro fertilization, has been confirmed. Also, the use of ART has some of the negative effects on gametes and embryos, which is accompanied by the emergence of oxidative stress and reduces the probability of pregnancy. Melatonin is a universal hormone that plays a key role in the functioning of sex hormones and has powerful antioxidant properties. As a key antioxidant regulator As a key antioxidant regulator at the biochemical and hormonal levels, melatonin positively influences the maturation of oocytes and the preparation of the endometrium before implantation. Therefore, there is a reasonable justification for the use of melatonin during treatment with ART. Many studies are devoted to the study of the effectiveness of the use of exogenous melatonin in the treatment of infertility, but to date, the level of evidence is insufficient for use in it ART. Key words: melatonin, infertility, oxidative stress, apoptosis, ART.


2014 ◽  
Vol 2014 ◽  
pp. 1-11 ◽  
Author(s):  
L. C. Cruz ◽  
J. E. S. Batista ◽  
A. P. P. Zemolin ◽  
M. E. M. Nunes ◽  
D. B. Lippert ◽  
...  

We characterized, for the first time, the quality and identity of Brazilian Pampa biome honey and its antioxidant propertiesin vitro(FRAP, DDPH and ABTS). The potential protective effect of honey against oxidative stress induced by iron (Fe) and paraquat, (PQ) in aDrosophila melanogastermodel (in vivo) was also tested. The results indicated that all honey samples tested showed antioxidant activityin vitro. Flies treated with honey showed increased lifespan and were protected against oxidative stress induced by Fe and PQ. Despite the high concentration of sugars in honey (approximately 70–80%), our results demonstrate a hypoglycemic-like effect of honey inDrosophila. Thus, this study demonstrates the high quality of Brazilian Pampa biome honey as well as its significant antioxidant activityin vitroandin vivo, pointing to the potential use of this natural product as an alternative in the therapy of oxidative stress-associated diseases.


2021 ◽  
Vol 2021 ◽  
pp. 1-12
Author(s):  
Tongyu Gu ◽  
Nianmin Wang ◽  
Tong Wu ◽  
Qi Ge ◽  
Liang Chen

Over the past decade, oxidative stress was shown to be a key factor for various diseases. The term “antioxidant” also rapidly gained attention worldwide, viewed as beneficial in disease prevention. Resveratrol (RSV), a natural polyphenol, is a plant antitoxin formed in response to harmful environmental factors such as infection and injury. This antitoxin is found in grapes, strawberries, peanuts, or herbal medicines and exhibits many pharmacological effects involved in antitumor, anti-inflammatory, antiaging, and antioxidation stress mechanisms. Recently, numerous in vitro and in vivo experiments have shown that RSV harbors antioxidative stress properties and can be used as an antioxidant. Here, we review the free radical scavenging ability, antioxidant properties, signaling pathways, expression and regulation of antioxidant enzymes, and oxidative stress-related diseases associated with RSV.


2009 ◽  
Vol 34 (6) ◽  
pp. 1093-1097 ◽  
Author(s):  
Kanti Bhooshan Pandey ◽  
Syed Ibrahim Rizvi

Many of the biological actions of resveratrol have been attributed to its antioxidant properties. In this work, we subjected human erythrocytes to in vitro oxidative stress by incubating them with tert-butylhydroperoxide (t-BHP). This caused a significant increase in the malondialdehyde (MDA) level and the protein carbonyl group content above the basal values. The presence of trans-resveratrol at micromolar concentrations in the incubation medium protected the erythrocytes from t-BHP-induced oxidative stress, as evidenced by the decrease in the MDA level and the protein carbonyl group content. The effect of resveratrol was concentration and time-dependent. Our findings help to explain some of the beneficial effects of resveratrol.


Antioxidants ◽  
2021 ◽  
Vol 10 (4) ◽  
pp. 507
Author(s):  
Rosaria Meccariello ◽  
Stefania D’Angelo

Aging and, particularly, the onset of age-related diseases are associated with tissue dysfunction and macromolecular damage, some of which can be attributed to accumulation of oxidative damage. Recently, growing interest has emerged on the beneficial effects of plant-based diets for the prevention of chronic diseases including obesity, diabetes, and cardiovascular disease. Several studies collectively suggests that the intake of polyphenols and their major food sources may exert beneficial effects on improving insulin resistance and related diabetes risk factors, such as inflammation and oxidative stress. They are the most abundant antioxidants in the diet, and their intake has been associated with a reduced aging in humans. Polyphenolic intake has been shown to be effective at ameliorating several age-related phenotypes, including oxidative stress, inflammation, impaired proteostasis, and cellular senescence, both in vitro and in vivo. In this paper, effects of these phytochemicals (either pure forms or polyphenolic-food) are reviewed and summarized according to affected cellular signaling pathways. Finally, the effectiveness of the anti-aging preventive action of nutritional interventions based on diets rich in polyphenolic food, such as the diets of the Blue zones, are discussed.


Antioxidants ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 160
Author(s):  
Vladana Domazetovic ◽  
Irene Falsetti ◽  
Caterina Viglianisi ◽  
Kristian Vasa ◽  
Cinzia Aurilia ◽  
...  

Vitamin E, a fat-soluble compound, possesses both antioxidant and non-antioxidant properties. In this study we evaluated, in intestinal HT29 cells, the role of natural tocopherols, α-Toc and δ-Toc, and two semi-synthetic derivatives, namely bis-δ-Toc sulfide (δ-Toc)2S and bis-δ-Toc disulfide (δ-Toc)2S2, on TNFα-induced oxidative stress, and intercellular adhesion molecule-1 (ICAM-1) and claudin-2 (Cl-2) expression. The role of tocopherols was compared to that of N-acetylcysteine (NAC), an antioxidant precursor of glutathione synthesis. The results show that all tocopherol containing derivatives used, prevented TNFα-induced oxidative stress and the increase of ICAM-1 and Cl-2 expression, and that (δ-Toc)2S and (δ-Toc)2S2 are more effective than δ-Toc and α-Toc. The beneficial effects demonstrated were due to tocopherol antioxidant properties, but suppression of TNFα-induced Cl-2 expression seems not only to be related with antioxidant ability. Indeed, while ICAM-1 expression is strongly related to the intracellular redox state, Cl-2 expression is TNFα-up-regulated by both redox and non-redox dependent mechanisms. Since ICAM-1 and Cl-2 increase intestinal bowel diseases, and cause excessive recruitment of immune cells and alteration of the intestinal barrier, natural and, above all, semi-synthetic tocopherols may have a potential role as a therapeutic support against intestinal chronic inflammation, in which TNFα represents an important proinflammatory mediator.


Antioxidants ◽  
2021 ◽  
Vol 10 (7) ◽  
pp. 1024
Author(s):  
Sebastien Dupont ◽  
Paul Fleurat-Lessard ◽  
Richtier Gonçalves Cruz ◽  
Céline Lafarge ◽  
Cédric Grangeteau ◽  
...  

Although the functions and structural roles of sterols have been the subject of numerous studies, the reasons for the diversity of sterols in the different eukaryotic kingdoms remain unclear. It is thought that the specificity of sterols is linked to unidentified supplementary functions that could enable organisms to be better adapted to their environment. Ergosterol is accumulated by late branching fungi that encounter oxidative perturbations in their interfacial habitats. Here, we investigated the antioxidant properties of ergosterol using in vivo, in vitro, and in silico approaches. The results showed that ergosterol is involved in yeast resistance to tert-butyl hydroperoxide and protects lipids against oxidation in liposomes. A computational study based on quantum chemistry revealed that this protection could be related to its antioxidant properties operating through an electron transfer followed by a proton transfer mechanism. This study demonstrates the antioxidant role of ergosterol and proposes knowledge elements to explain the specific accumulation of this sterol in late branching fungi. Ergosterol, as a natural antioxidant molecule, could also play a role in the incompletely understood beneficial effects of some mushrooms on health.


2019 ◽  
Vol 2019 ◽  
pp. 1-14 ◽  
Author(s):  
Li Li ◽  
Huabo Jiang ◽  
Xuecong Wei ◽  
Dandan Geng ◽  
Ming He ◽  
...  

Vascular endothelial growth factor receptor-2 (VEGFR-2) regulates the mitogen-activated protein kinase (MAPK) signaling pathway and plays an important role in angiogenesis. Bu Shen Zhu Yun decoction (BSZYD) can improve endometrial receptivity and embryo implantation rates in patients undergoing in vitro fertilization. However, whether BSZYD improves endometrial receptivity via angiogenesis remains unclear. Here, we investigated the effects of BSZYD on the proliferation, migration, and angiogenesis of human endometrial microvascular endothelial cells (HEMECs) and found that BSZYD upregulated the expression of cyclin D1, matrix metalloproteinase 9 (MMP9), and proliferating cell nuclear antigen (PCNA) in HEMECs. Cell Counting Kit 8 assay, scratch-wound assay, and Tube Formation Assay results showed that BSZYD promoted the proliferation, migration, and angiogenesis of HEMECs. Western blot analysis results revealed the activation of the MAPK signaling pathway by BSZYD through the upregulation of VEGF and VEGFR-2 expression. Together, these findings highlight the novel mechanism underlying BSZYD-mediated improvement in endometrial receptivity through the MAPK signaling pathway.


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