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1 fold, probably protecting it from UV-induced photodamage.
2 ults, who are at highest risk of ultraviolet photodamage.
3 al stress on skin, causing acute and chronic photodamage.
4 tion may lead to enhanced protection from UV photodamage.
5 ure by the photosynthetic antenna to prevent photodamage.
6 ndonuclease that makes an incision 5' to the photodamage.
7 ted by death receptors, lipid mediators, and photodamage.
8 dants may counteract and prevent UVR-induced photodamage.
9 e higher plant photosynthetic apparatus from photodamage.
10 alanced state of photomorphogenesis to avoid photodamage.
11 -type Bcl-2 with respect to localization and photodamage.
12 ion over 20-30 min without photobleaching or photodamage.
13 sensitization of mitochondrial membranes to photodamage.
14 asia and considerably reduced penetration of photodamage.
15 maximizing the ability of the plant to avoid photodamage.
16 ibution of laser-induced hyperthermia to the photodamage.
17 indicate the level of protection against DNA photodamage.
18 tributed to the higher bax:bcl-2 ratio after photodamage.
19 against psoralen plus ultraviolet A-induced photodamage.
20 n disorders and recommendations for reducing photodamage.
21 aging and avoids out-of-focus background and photodamage.
22 hotochemical efficiency and/or resilience to photodamage.
23 track the lifetime changes in S cones after photodamage.
24 ly luminescence, and reductive repair of DNA photodamage.
25 throughput and increases photobleaching and photodamage.
26 e requirement while minimizing laser-induced photodamage.
27 g must also be balanced against the risks of photodamage.
28 ght drives photosynthesis but can also cause photodamage.
29 ort wavelengths, however, causes significant photodamage.
30 loyed DNA damage as a sensitive indicator of photodamage.
31 enables low-dose IR imaging of skin without photodamage.
32 at very low light levels to protect against photodamage.
33 ainst overdose of irradiance and to minimize photodamage.
34 olution while minimizing image artifacts and photodamage.
35 also the mechanisms for this new pathway to photodamage.
36 fficient force, short working distances, and photodamage.
37 , minimizing light absorption and preventing photodamage.
38 during 24 h time-lapse imaging with minimal photodamage.
39 e the efficiency of photosynthesis and avoid photodamage.
40 ng up to 26%, without increasing the risk of photodamage.
41 organisms due to its high speed and reduced photodamage.
42 ture is in preventing biologically momentous photodamage.
43 the photochemical pathways leading to uracil photodamage.
44 tiphoton microscope while limiting potential photodamage.
45 ent a novel prophylactic approach to corneal photodamage.
46 t their photosynthetic efficiency and induce photodamage.
47 oninvasive and label-free and does not cause photodamage.
48 in the mutant is not strictly the result of photodamage.
49 effects on the rate of photosystem II (PSII) photodamage.
50 tes, producing singlet oxygen and subsequent photodamage.
51 ht to optimize light capture and to minimize photodamage.
52 , and lipid vesicles, without any detectable photodamage.
53 stunted growth and accumulation of apparent photodamage.
54 st be balanced to prevent photoinhibition or photodamage.
55 icated that these plants experience stronger photodamage.
56 atial resolution, low photobleaching and low photodamage.
57 to protect the photosynthetic system against photodamage.
58 thylakoid membranes and repair of PSII after photodamage.
59 omain, spread diffusely in cells and was not photodamaged.
60 Bcl-2 missing alpha-helices 5/6 was also not photodamaged.
61 ic reticulum, and nuclear membranes and were photodamaged.
62 on interact with sunlight and can induce DNA photodamages.
63 had significantly less clinical evidence of photodamage (0% graded 6-8 on a photonumeric scale) than
64 action center protein is the main target for photodamage(2), with repair involving the selective degr
65 ntation group A (XPA) to sites of nuclear UV photodamage, accelerating clearance of UV-induced photol
66 s of RNA folding and catalytic behavior, but photodamage accrued during ultraviolet (UV) shadowing st
70 (5)/alpha(6) region of Bcl-2 is required for photodamage and cross-linking, and domain-dependent phot
73 volumetric acquisition, leading to increased photodamage and inability to capture fast cellular and t
74 n short wavelength visible light, leading to photodamage and incompatibility with large-scale reactio
75 ntrol of DNA damage/repair and prevention of photodamage and nonmelanoma skin cancer in vitiligo.
76 luorescence and self-absorption, and reduced photodamage and photobleaching and therefore is particul
80 ynthetic ERbeta agonist inhibited UV-induced photodamage and skin wrinkle formation in a murine model
83 minated by D1a Symbiodinium experienced less photodamage and symbiont loss compared to control corals
84 th the redox state of the stroma rather than photodamage and that CGL71 functions under atmospheric O
85 similar action spectra for erythema and DNA photodamage and that erythema is a clinical surrogate fo
86 ndicate that the cpUPR mitigates chloroplast photodamage and that manipulation of this pathway is a p
87 y induce nonphotochemical quenching to avoid photodamage and trigger expression of "photoprotective"
90 radiation as quickly as possible to prevent photodamages and corruption of the carried genetic infor
92 by endogenous chromophores, minimized tissue photodamage, and improved tissue penetration, highlighti
93 htforward to implement, free of radiation or photodamage, and provide ample multiplexing capability,
98 dard course of fluorouracil on the extent of photodamage as measured using 4 photonumeric scales.
101 nt of fluorescence leads to the reduction of photodamage, because the sample can be illuminated with
102 tistically significant changes were found in photodamage between baseline and 6 months (Griffiths sca
103 y, upon comparing the efficiency of membrane photodamage between two of these MgPzs (with the highest
106 synthetic apparatus of plants and algae from photodamage by dissipating as heat the energy absorbed i
108 se strategies minimize photosystem II (PSII) photodamage by keeping the photosynthetic electron trans
111 at a substantial reduction of these types of photodamage can be achieved by imaging samples on covers
113 mporal resolution of and/or reduce potential photodamage caused by optical imaging in live neural tis
114 ed rate of damage entails an accumulation of photodamaged centers (80% of all PSII) and the formation
115 lants to intense light, NBR1 associates with photodamaged chloroplasts independently of ATG7, a core
123 tion as a protease in the degradation of the photodamaged D1 protein, they also are required, either
125 nd a six- to 20-fold decrease in the rate of photodamage during calcium imaging of rat hippocampal br
126 tosynthesis and protect against ROS-mediated photodamage during high light exposure or desiccation.
128 e to study cellular processes because of low photodamage, efficient background rejection, and improve
129 xygenase system is a risk factor for retinal photodamage, especially in individuals with Stargardt di
133 uous pigmented facial macules and 12 control photodamaged facial areas were included in the study.
134 titative benchmarks for acceptable levels of photodamage, facilitating the optimisation of imaging pr
137 ctions as a rapid and sensitive model of UVA photodamage for the identification and comparison of com
138 ( approximately 65 and 57%, respectively) in photodamaged forearm skin compared to sun-protected hip
139 ced capacity of skin fibroblasts in severely photodamaged forearm skin to synthesize procollagen, or
142 if oral pomegranate consumption will reduce photodamage from UVB irradiation and alter the compositi
145 transformative approach designed to mitigate photodamage in biological and biomedical studies, enabli
147 orward electron transfer, back-reactions and photodamage in Chl-f-PSII, Chl-d-PSII, and Chl-a-PSII.
148 e have determined the action spectra for DNA photodamage in different human epidermal layers in situ.
149 Histologically, there was less evidence of photodamage in ETR than in TP, which had wispy collagen
153 r: transient growth arrest and repair of DNA photodamage in keratinocytes (KCs); elimination of KCs w
154 ave established that optical tweezers induce photodamage in live cells, the effects of trap irradiati
155 PSI structure and photochemistry to mitigate photodamage in response to changes in electron utilizati
157 gh light-acclimated cells partially overcome photodamage in the latter half of the day prior to cell
158 poptotic member of the Bcl-2 family, was not photodamaged in Pc 4-PDT-treated human carcinoma cells M
159 ebiotic environment, UV-induced formation of photodamages in polymeric nucleic acids, such as cyclobu
160 es the stability of protein-OSC complexes to photodamage, increasing the lifetime of the chromophores
164 nge for Acropora muricata with no measurable photodamage is defined based upon polyp expansion, coral
166 s higher plant photosynthetic machinery from photodamage, is triggered by acidification of the thylak
167 ages such as deep light penetration, minimal photodamage, low autofluorescence, and high spatial reso
169 ng time range with respect to unraveling the photodamage mechanism, including the formation of the mo
171 ting components of solar light and therefore photodamage mechanisms and photoprotection interventions
172 ing technology, signal generation rates, and photodamage mediation are bringing us closer to the goal
176 ed stomach mucosa of anesthetized mice while photodamage of gastric epithelial surface cells created
177 ast psbA mRNA in angiosperms is activated by photodamage of its gene product, the D1 subunit of photo
181 evel of PSI does not result from accelerated photodamage of the PSI centers in var1 or var2 under mod
183 roaming atoms are radicals that can lead to photodamage, offering a new perspective on the photostab
184 f photoprotection by examining the effect of photodamage on the behavior of a switchable mutant of ki
185 submicron resolution and little out-of-focus photodamage or bleaching, its ability to record fast ele
186 be attributable to a true lack of effect in photodamage or limitations of the photonumeric scales in
188 x that also serves to protect Rubpy dye from photodamaging oxidation, the Rubpy-dye-doped nanoparticl
191 m effectors of gastric restitution following photodamage (PD) to single cells within the gastric orga
192 zing, and thereby minimizing the dynamics of photodamage (PD), a frequent limiting factor in the opti
198 n, may render it vulnerable to unprecedented photodamage, possibly involving nonadjacent bases that a
199 ependent analysis revealed not only the high photodamaging potential of both natural DNA modification
200 erior reaction yields, but also resolves the photodamage problem, regardless of whether they are sing
203 his study we pursue a closer analysis of the photodamage promoted on giant unilamellar vesicles membr
210 with a rate over five times higher than its photodamage rate and has a maximum reaction yield exceed
217 lumination, suggesting that Deltapsi-induced photodamage represents a previously unrecognized limitin
218 ing photosynthetic efficiency while avoiding photodamage requires equally rapid regulation of photopr
219 mplex (OEC) synthesis, and resynthesis after photodamage, requires significantly higher Cl(-) concent
220 n-limited shot noise, but photobleaching and photodamage restrict the number and duration of simultan
222 markedly reduces overall photobleaching and photodamage, resulting in extended viability of biologic
224 mine, circumvents the limitations imposed by photodamage, scattering, and indiscriminate background e
226 gen, or whether contextual influences within photodamaged skin act to down-regulate type I procollage
228 d underlie the loss of collagen synthesis in photodamaged skin and, to a lesser extent perhaps, in ag
232 therefore, that factors within the severely photodamaged skin may act in some manner to inhibit proc
233 n of partially degraded collagen observed in photodamaged skin may inhibit, by an as yet unidentified
234 Collagen synthesis is reduced in severely photodamaged skin relative to collagen synthesis in corr
235 ollagen is approximately 3.6-fold greater in photodamaged skin than in sun-protected skin, and some f
236 udy of ambiguous pigmented facial macules on photodamaged skin was conducted in a tertiary referral c
237 confocal microscopy improves LM diagnosis in photodamaged skin with good histopathologic correlation
242 f these patients, there is neither increased photodamage/skin aging nor a higher incidence for sun-in
243 re susceptible to all-trans-retinal-mediated photodamage than are the major proteins from the rod out
244 ton fluorescence microscopy causes much less photodamage than conventional confocal microscopy, expan
245 chloroplasts exhibit greater photosystem II photodamage than is observed in the wild type, particula
246 skin (MED) is a more useful predictor of DNA photodamage than is racial/ethnic origin or skin phototy
247 ochondria was considerably more sensitive to photodamage than was Bcl-xL in the cytosol, indicating t
248 titute a previously unrecognized type of DNA photodamage that may interfere with telomere replication
250 RBD1 is central to the perception of the D1 photodamage that triggers D1 synthesis and that it activ
251 able deep subsurface penetration and reduced photodamage, there are few luminescent probes that can b
252 to UV radiation are subject to irreversible photodamage through covalent modification of tryptophans
256 r a modification of this approach, confining photodamage to arteries on the cortical surface (artery-
257 mage and cross-linking, and domain-dependent photodamage to Bcl-2 offers a unique mechanism for activ
258 (TC50 > 400 muM) and high ability to induce photodamage to endothelial cells (EA.hy926) without prei
261 enotype of npq1 lor1 was not due to enhanced photodamage to photosystem II but rather to a less local
263 hich presumably diminishes the likelihood of photodamage to reaction centers that have either lost an
264 CF136 and RBD1 as the signal that reports D1 photodamage to regulate psbA translation rate as needed
267 activation yield by suppressing irreversible photodamage to the cofactor-free apo-WOC-PSII (photoinhi
268 that acute disruption of synaptic ribbons by photodamage to the ribbon markedly reduced both sustaine
272 e to the large penetration depth and reduced photodamage, two-photon imaging is an highly promising t
275 analyzed the amount and distribution of DNA photodamage using RIAs and immunofluorescence micrograph
276 arison of cell shape in 1-microm sections of photodamaged versus healthy skin at the light microscopi
277 d antenna complexes become protected against photodamage via shortening of the excited-state lifetime
282 thesis, life expectancy was <40 y; long-term photodamage was not a concern; and vitamin D(3) deficien
283 High-intensity 730-nm light (two-photon photodamage) was used to cause single-cell damage in gas
284 lity of these mice as a model of UVA-induced photodamage, we administered four lotions to the skin of
288 The RNA nucleobase uracil can suffer from photodamage when exposed to UV light, which may lead to
289 oscopy, we demonstrate substantially reduced photodamage when imaging rapid morphological changes in
290 of ribosomes to psbA mRNA is triggered by D1 photodamage, whereas the global stimulation of translati
291 esults confirm existing literature values of photodamage, whereas we now quantified the susceptibilit
293 omplex consisting of AKAP12-ATR-pS435-XPA at photodamage, which is essential for cAMP-enhanced NER.
294 rce is crucial for protection of PSI against photodamage, which occurred particularly during the high
295 ltraviolet (UV) light, bears the majority of photodamage, which results in skin thinning, wrinkling,
297 hat there may be specific protein targets of photodamage within the outer segment, and they may be es