PDF] Hybrid Diffuse Reflectance Spectroscopy: Non-Erythemal in vivo Testing of Sun Protection Factor
Por um escritor misterioso
Last updated 18 dezembro 2024
For the first time a robust alternative test method of SPF- and UVA-PF values is described, taking into account the interaction of sunscreen formulation and skin, and due to the elimination of any erythemal relevant UVB and U VA doses, absolutely no skin reaction occurs. Background/Aims: In order to define a label sun protection factor (SPF) of topically applied sunscreens, in vivo test methods like ISO 24444, FDA guideline, or the Australian standard are used worldwide. The basis of all these methods is provoking an erythemal skin reaction by UV irradiation to find the level of unprotected and protected minimal erythemal doses (MED). In vitro methods replacing the human skin by any kind of non-human material are still not available. Thus, offering the new hybrid diffuse reflectance spectroscopy (HDRS) technique that is able to stay on an in vivo level for SPF testing but meanwhile neglecting the UV-dose-related erythemal skin reaction is a perfect combination to take care of sun protection and any ethical concerns in SPF testing nowadays. Methods: HDRS is a combination of in vivo diffuse reflectance spectroscopy (DRS) measurements on the skin and in vitro transmission measurements of a sunscreen on a roughened polymethylmethacrylate plate. By this technique, the in vivo behavior of the investigated sunscreen on the skin is measured as well as the UVB absorption, which is still non-visible in the reflectance technique. In order to establish an alternative method for in vivo SPF testing, a huge number of sunscreens (80 samples) was measured by HDRS and compared to the worldwide accepted standard ISO 24444. The variety of sunscreens measured reflects a wide range of different types of formulations as well as a wide range of SPFs (5–120) to validate this new alternative SPF testing procedure. Results: The applied quantity of product as well as skin color dependencies of signal generation are shown to support any basic correlation of DRS signal generation and sun protection expectations. Far-reaching statistical data analyses show an excellent link of the new non-erythemally driven HDRS-SPF technique and ISO 24444 results. In the same way, HDRS-UVA-PF results can be correlated with UVA-PF values calculated from ISO 24443. Conclusion: Due to the elimination of any erythemal relevant UVB and UVA doses, absolutely no skin reaction occurs. Consequently there is no need to define a MED any more. For the first time an alternative way to SPF is shown without any ethical concerns of SPF testing in vivo and/or any restriction of SPF testing in vitro. Regardless of the type of formulation or the level of protection, an excellent correlation of SPFHDRS and SPF24444 for sunscreen labeling could be found. By this new alternative non-erythemal technique, not only SPF values can be measured, but also UVA-PF values can be calculated with an excellent correlation to ISO 24443 from the same set of data. For the first time a robust alternative test method of SPF- and UVA-PF values is described, taking into account the interaction of sunscreen formulation and skin.
New noninvasive approach assessing in vivo sun protection factor (SPF) using diffuse reflectance spectroscopy (DRS) and in vitro transmission - Ruvolo Junior - 2014 - Photodermatology, Photoimmunology & Photomedicine - Wiley Online Library
PDF) In vitro measurement of sun protection factor of sunscreens by diffuse transmittance
PDF] Hybrid Diffuse Reflectance Spectroscopy: Non-Erythemal in vivo Testing of Sun Protection Factor
Hybrid Diffuse Reflectance Spectroscopy: Non-Erythemal in vivo Testing of Sun Protection Factor - Document - Gale OneFile: Health and Medicine
Hybrid Diffuse Reflectance Spectroscopy: Non-Erythemal in vivo Testing of Sun Protection Factor - Document - Gale OneFile: Health and Medicine
Zinc-metal–organic frameworks with tunable UV diffuse-reflectance as sunscreens, Journal of Nanobiotechnology
In vivo sun protection factor and UVA protection factor determination using (hybrid) diffuse reflectance spectroscopy and a multi‐lambda‐LED light source - Throm - 2021 - Journal of Biophotonics - Wiley Online Library
Frontiers Expert Recommendations on the Evaluation of Sunscreen Efficacy and the Beneficial Role of Non-filtering Ingredients
PDF) SUN PROTECTION FACTOR DETERMINATION STUDIES OF SOME SUNSCREEN FORMULATIONS USED IN COSMETICS FOR THEIR SELECTION
Recomendado para você
-
vivo x90 pro camera zoom test vivo x90 pro zoom test18 dezembro 2024
-
Commonly used techniques for in vivo testing with NPs, which may lead18 dezembro 2024
-
FAM-FLIVO In vivo Poly Caspase Assay18 dezembro 2024
-
The Vivo 2 tested by Flybubble — AirDesign - Paragliders18 dezembro 2024
-
vivo X100 Pro test: Dimensity 9300 throttles after 2 minutes - S2418 dezembro 2024
-
Vivo Y76 5G Review: Two Pro- and three major cons18 dezembro 2024
-
Ready-to-use ex vivo human skin models for cosmetic testing18 dezembro 2024
-
Setting Up An in-vivo Experiment On Aurora Scientific's 3-In-1 Muscle Test System - Aurora Scientific18 dezembro 2024
-
Vivo X30 Pro has passed Antutu performance test18 dezembro 2024
-
IJMS, Free Full-Text18 dezembro 2024
você pode gostar
-
Resuelve el caso del asesino en serie de Red Dead Redemption 218 dezembro 2024
-
What free Cyberpunk 2077 items have been added to Death Stranding18 dezembro 2024
-
MX Player Pro Apk Mod 1.75.0 Full Unlocked Download18 dezembro 2024
-
Introducing Supernatural Anime🦾✍️👁️18 dezembro 2024
-
Como Criar Um Jogo Clicker18 dezembro 2024
-
Jogo De Tabuleiro De Montar Minha Fazenda Com 41 Peças em Promoção18 dezembro 2024
-
Qui-Gon Jinn lightsaber18 dezembro 2024
-
Lucas Cardoso vibra com conquista da vaga na Conference League pelo KF Ballkani - Lance!18 dezembro 2024
-
COMO JOGAR GTA RP NO CELULAR DE GRAÇA!!!18 dezembro 2024
-
Counter-Strike 2: Release Date, Source 2 Engine, Skins and Everything You Need To Know18 dezembro 2024