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Old 03-20-2011, 10:06 AM   #1
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Default low giant cables Dr. Darlene Mccord Discusses N

Dr. Darlene Mccord Discusses Nutrients for Skin Care
Antioxidants
The outermost floor of the skin, the stratum corneum, is metabolically active and requires antioxidants and specific nutrients to maintain its integrity and proper function. Topically applied antioxidants depress free radicals in skin cells and substantially inhibit the biochemical waterfalls responsible for infected and angered skin. There is an expressed concern in the technological community that spoken antioxidants may reduce oxidizing free radicals created by radiotherapy. However, there is meaningful evidence that exogenous antioxidants produce salutary effects in numerous cancer cell lines. Multiple animal and human studies have demonstrated an additional effectiveness of cancer therapeutic agents,christian louboutin shop online, as well as decreased adverse effects, when given concomitantly with topical antioxidant application.

One of the most effective antioxidants in the terms of free radical scavenging is 3,4-dihydroxyphenyl ethanol or hydroxytyrosol (HT). HT is a simple phenol found predominantly in the aqueous fraction of olive pulp. HT application has been found to prevent both radiation-induced protein damage and radiation-induced oxidative DNA damage. The protective effects provided by HT are pertinent to the radiation-induced DNA damage manifested by single- and double-strand breaks in epidermal and dermal skin cells. Furthermore, several studies have shown that HT inhibits leukocyte and macrophage activation, as well as their subsequent infiltration into epidermal and dermal skin cells. HT��s modulation of immune function helps reduce the inflammatory processes associated with radiation dermatitis.

n-3 and n-6 Polyunsaturated Fatty Acids (PUFAs)
The stratum corneum is composed of epidermal cell remnants circled by a fusion of biological lipids. The epidermal cells producing these residues necessitate certain amino acids to sustain stratum corneum formation, while the lipid barrier requires specific PUFAs to maintain stratum corneum integrity. A medley of sphingolipids, cholesterol, and free fatty acids forms the intercellular membrane bilayers of the stratum corneum which regulate barrier function. PUFAs have also been shown to reduce or prevent numerous side effects associated with radiotherapy, including radiation dermatitis.
In particular,tods 2009, linolenic (n-3) and linoleic (n-6) PUFAs were found to protect against radiation dermatitis while potentiating radiation treatment via lipid peroxidation. The fatty acids�� effect on tumor growth depends on the balance between n-3 and n-6 PUFAs and antioxidants. The proper formulation of potent antioxidants, n-3 and n-6 PUFAs significantly enhances radiotherapy while preventing fatty acid-induced oxidative stress on epidermal and dermal skin cells. PUFAs play important roles as regulators of the intricate inflammatory processes created shortly after radiation-induced skin injury. PUFAs exert their functions in the form of protective phospholipids hooked in epidermal cell layers or as soluble lipoic mediators of the inflammatory response. Linolenic n-3 fatty acids specifically inhibit proinflammatory interleukin-1, interleukin-6 and tumor death factor-alpha (TNF?) product. Modulating the balance of lipid inflammatory mediators is an exceedingly expensive treatment for inflammatory skin disorders such as radiation dermatitis. Both n-3 and n-6 PUFAs balance lipid mediators and cultivate the reconstitution of epithelial integrity emulating skin injury.

There exist numerous n-3 and n-6 PUFA sources, several of which significantly defend against radiation-induced tissue abuse. Canola fuel has been reported for creature an of the most potent antimutagenic compounds obtainable as topical administration. Canola fuel induces intracellular oxidative tension and apoptosis in human malignancy cells when tabooing inflammatory leukocyte activity and subsequent skin irritation. Similarly, safflower fuel protects opposition normal compartment damage. Olive oil namely another PUFA namely has been shown apt exhibit substantial anticancer and antioxidative effects. In appending, olive oil specifically prevents radiation-induced skin harm by protecting normal DNA and sustaining skin compartment homeostasis. Altogether, the proper balance of certain PUFAs provides essential protection against radiation dermatitis.
Vitamins and Vitamin Derivatives
In addition to antioxidant application, specific micronutrients, including vitamins and vitamin derivatives, have been believed valuable for nourishing skin and protecting against radiation dermatitis. Moreover, micronutrient absence actually mimics radiation damage by causing DNA single- and double-strand wrecks and oxidative lesions in normal skin cells. Supplementing micronutrients via the topical application of vitamin precursors and vitamin derivatives protects against radiation-induced skin injury. Accordingly, retinyl palmitate, the precursor to retinoic acid and a biological form of vitamin A, has been shown to prevent radiation-induced DNA damage and erythema in normal skin cells. The topical application of retinyl palmitate counteracts vitamin A depletion caused by radiotherapy and promotes resumption. Retinyl palmitate likewise helps treat radiation-induced skin ulcerations by nourishing the migratory epithelial cells responsible for closing the wound41. Overall, retinyl palmitate has been found to increase radiation��s effect aboard tumor cells in vivo, while decreasing omens associated with radiation dermatitis.
Ascorbyl palmitate is another important vitamin derivative that nourishes human skin and assists prevent radiation dermatitis. The micornutrient is a lipid-soluble derivative of ascorbic acid competent of penetrating the stratum corneum to target sites of cell-signaling tracks that are no accessible to water-soluble particles. Ascorbyl palmitate has been base to retain tissue honesty while protecting against erythema and desquamation via its potent moisturizing effect. Furthermore, ascorbyl palmitate is an telling free radical scavenger and guards well against radiation-induced DNA damage in epithelial cell lines. Ascorbyl palmitate may activity a fussy character in preventing radiation-induced tissue damage by providing proper cell nourishment and antioxidative protection.
Cholecalciferol (CF), or vitamin D3, is hydroxylated in the kidney to generate 1,25-dihydroxyvitmain D, which is one lively metabolite and hormone that sustains proper cell function by fastening to vitamin D receptors. In particular,Effective tips to pass drug tests_1245, the derivative demonstrates mighty immunoreactivity in skin and cilia follicle vitamin D receptors, thereby protecting against radiation toxicity and preventing radiation dermatitis. The topical application of certain micronutrients and subsequent uptake by the stratum corneum, epidermis and dermis,abercrombie fitch cache locator Coupon Code 994LES, has a synergistic achieve with radiotherapy. Altogether, CF, ascorbyl palmitate and retinyl palmitate have been shown to boost tumor feedback during radiation management while protecting against radiation dermatitis.
Amino Acids
Symptoms associated with radiation dermatitis are a outcome of tissue collapse involving a decline in both collagen and glycosaminoglycans, as well as from alterations in their chemical building and 3-dimensional union. The transdermal delivery of certain amino acids has been shown to reinstate collagen synthesis and deposition, while thickening the epidermal skin layer. Selected amino acids have been shown to inhibit the genotoxicity of reactive oxygen species in dermal and epidermal skin cells during radiotherapy. In particular, N-acetyl-l- cysteine (NAC) exhibits significant protective effects on skin, including the extracellular prohibition of mutagenic agents from exogenous sources such as irradiation.
NAC modulates reactive metabolic pathways,cheap monster cables, protects normal DNA and nuclear enzymes,belstaff boots bargain How apt Rip Dapt to iTunes-, and prevents the formation of carcinogen-DNA adducts. The amino acid exerts its effects via its potent antioxidative properties, as well as its peerless competence to sequester nitric oxide (NO) and reverse TNF? toxicity in human cells. NO production was found to be significantly increased in cancer patients, particularly in individuals being treated for bust cancer. Breast cancer patients are understood to exhibit increased levels of both nitrate and nitrite, which may be in response to the abscess specific of bosom tumor growth. Since radiotherapy further increases NO activity and induces inflammation, the topical application of amino acids such as NAC ought be considered. NAC reacts instantly with NO to reduce the increased NO generation while reversing disadvantageous glutathione depletion.

Aritcle by Dr. Darlene McCord
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