Currently, the clinical use of sweat as biofluid is limited. The collection of sweat and its analysis for determining ethanol, drugs, ions, and metals have been encompassed in this review article to assess the merits of sweat compared to other biofluids, for example, blood or urine. Moreover, sweat comprises various biomarkers of different diseases including cystic fibrosis and diabetes. Additionally, the normalization of sampled volume of sweat is also necessary for getting efficient and useful results.
The exposure to ultraviolet radiations (UVR) is the key source of skin sunburn; it may produce harmful entities, reactive oxygen species (ROS), leading to aging. The skin can be treated and protected from the injurious effects of ROS by using various pharmaceutical formulations, such as cream. Cream can be loaded with antioxidants to quench ROS leading to photo-protective effects. Moreover, modern medicines depend on ethnobotanicals for protection or treatment of human diseases. This review article summarizes various in vivo antioxidant studies on herbal creams loaded with phyto-extracts. These formulations may serve as cosmeceuticals to protect skin against injurious effects of UVR. The botanicals studied for dermatologic use in cream form include Acacia nilotica, Benincasa hispida, Calendula officinalis, Camellia sinensis, Camellia sinensis, Nelumbo nucifera, Capparis decidua, Castanea sativa, Coffea arabica, Crocus sativus, Emblica officinalis Gaertn, Foeniculum vulgare, Hippophae rhamnoides, Lithospermum erythrorhizon, Malus domestica, Matricaria chamomilla L., Moringa oleifera, Morus alba, Ocimum basilicum, Oryza sativa, Polygonum minus, Punica granatum, Silybum marianum, Tagetes erecta Linn., Terminalia chebula, Trigonella foenum-graecum, and Vitis vinifera. The observed anti-aging effects of cream formulations could be an outcome of a coordinating action of multiple constituents. Of numerous botanicals, the phenolic acids and flavonoids appear effective against UVR-induced damage; however the evidence-based studies for their anti-aging effects are still needed.
Heat shock proteins show remarkable variations in their expression levels under a variety of toxic conditions. A research span expanded over five decades has revealed their molecular characterization, gene regulation, expression patterns, vast similarity in diverse groups, and broad range of functional capabilities. Their functions include protection and tolerance against cytotoxic conditions through their molecular chaperoning activity, maintaining cytoskeleton stability, and assisting in cell signaling. However, their role as biomarkers for monitoring the environmental risk assessment is controversial due to a number of conflicting, validating, and nonvalidating reports. The current knowledge regarding the interpretation of HSPs expression levels has been discussed in the present review. The candidature of heat shock proteins as biomarkers of toxicity is thus far unreliable due to synergistic effects of toxicants and other environmental factors. The adoption of heat shock proteins as “suit of biomarkers in a set of organisms” requires further investigation.
Cancer causing materials are found in air, water and in some other consumer products in the form of heavy metals. Biomedical research has shown that exposure to heavy metals is an important source of DNA damage in human beings and in animals. Heavy metals like iron, copper, chromium, lead, zinc, mercury, nickel etc. and reactive oxygen species enhance peroxidation of lipids and DNA damage. Elements like arsenic, nickel and cadmium are the ambassadors of mutagenic changes in cell. In mammalian cells it was found that DNA single strand breaks chromosomal aberrations occurred and sister chromatids exchange due to various nickel salts. It is now a wellestablished fact that cadmium causes cancer in tissues of animals. Exposure to cadmium develops cancer in prostate gland, kidney, liver and stomach. Through base pair mutation cancer causing metals damage DNA. However, some heavy metals directly damage the DNA thus generating negative results. The synthesis of nucleic acids and proteins is affected by cadmium. However, cadmium does not have a strong mutagenic nature when compared to other heavy metals. The present review aims to prospect the exposure (of human beings and animals) to heavy metals, cause of different diseases in both and mutagenic effect of heavy metals on double strand repair.
Various obsessive procedures include free radical intervened oxidative anxiety. The elaboration of solid and nonintrusive strategies for the assessment of oxidative worry in human body is a standout amongst the most critical strides towards perceiving the assortment of oxidative disorders apparently created by Reactive Oxygen Species (ROS). Lipid peroxidation is a standout amongst the most well-known components related with oxidative anxiety, and the estimation of lipid peroxidation items has been utilized to assess oxidative worry in vivo conditions. The estimation of conjugated dienes and lipid hydro peroxide, while the evaluation of optional final results incorporates thiobarbituric acid reactive substances, vaporous alkanes and prostaglandin F2-like items, named F2-isoprostanes (F2-iPs). As of late, F2-iPs have been viewed as the most significant, precise and solid marker of oxidative worry in vivo and their evaluation is suggested for surveying oxidant wounds in people. The motivation behind this paper is to give some data on organic chemistry of isoprostanes and their use as a marker of oxidative anxiety.
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