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1 contribution of microbial residues to soil N transformation.
2 d oxidation of organics, inorganics, and CO2 transformation.
3  the progress of reversible topotactic phase transformation.
4 f cells under cellular stress, such as tumor transformation.
5 holangiocellular proliferation and oncogenic transformation.
6 r energetics, stress defense, and neoplastic transformation.
7 blasts and recapitulates early steps of cell transformation.
8 d adverse effects during viral infection and transformation.
9 ination is not a significant process in this transformation.
10 cells that ultimately led to their malignant transformation.
11 ulfonate derivatives) are effective for this transformation.
12 ors, augmenting PI3K signaling and oncogenic transformation.
13 RUNX3-a protein induced by EBV during B cell transformation.
14 ncoded transgenes, a process known as stable transformation.
15 ve CLL, and in 1 patient with prolymphocytic transformation.
16  with a few of the lesions showing malignant transformation.
17 with as many as 60 targeted mutations in one transformation.
18 ular magnesium levels that promote oncogenic transformation.
19 kers of early fallopian tube epithelial cell transformation.
20 n plays an important role in marking DNA for transformation.
21 he transition corresponding to the parabolic transformation.
22 -transporting material via a simple chemical transformation.
23 d to provide a selectable screen for plastid transformation.
24 vitro model of human mammary epithelial cell transformation.
25 and organoboron limitations of this valuable transformation.
26 igenetic plasticity that underlies malignant transformation.
27 s have correlated individual biomarkers with transformation.
28 or cooperate with Flt3-ITD to induce myeloid transformation.
29 hat BCL11B was a stimulative regulator of MD transformation.
30 nd incidence and localization of relapse and transformation.
31  for uncontrolled cellular proliferation and transformation.
32 l, pathological, and genetic risk factors to transformation.
33 ellular enzyme responsible for intracellular transformation.
34 se processes, thereby facilitating malignant transformation.
35 approximately 20% more rules from the shared transformations.
36 ound to be suitable for a variety of further transformations.
37 ed to capture the intermediate states of the transformations.
38 gram scale, testifying the robustness of the transformations.
39  that allow small file sizes and operational transformations.
40 ate ligand is responsible for multiple redox transformations.
41  demonstrates new options for monitoring WOC transformations.
42 al nanoparticles throughout various chemical transformations.
43 hronised Na/Fe cooperation operates in these transformations.
44 ncover the circuit structure of sensorimotor transformations.
45 explored through a series of diverse product transformations.
46 nd in the reactivity in various irreversible transformations.
47  therefore amenable to homogeneous catalytic transformations.
48 ssion sources, dilution, and physicochemical transformations.
49                                   In the key transformation, a protected dialdehyde precursor undergo
50 identify and localize the origins of sensory transformations across synaptically connected neural pop
51                     Further stereocontrolled transformations allowed for completion of the synthesis.
52                                 This one-pot transformation allows unprecedented functional group tol
53  the critical temperature for the hcp-to-fcc transformation also rises.
54 ly of each other can direct reversible phase transformations among three different material phases: t
55 have implemented DNNs to handle both problem transformation and algorithm adaption type multi-label m
56 us phenotypes were verified through separate transformation and analysis of multiple independent line
57     All patients were screened for Richter's transformation and cases confirmed by biopsy were exclud
58  observations on its importance in malignant transformation and development of drug resistance in ova
59 n important role for RUNX3/CBF during B cell transformation and EBV latency that was hitherto unexplo
60  defect dynamics in determining nanoparticle transformation and formation.
61 e locality-constrained tasks of entanglement transformation and its classical analog of secrecy manip
62 FTO enhances leukemic oncogene-mediated cell transformation and leukemogenesis, and inhibits all-tran
63 dults, because they rarely undergo malignant transformation and show excellent overall survival under
64 omplements our previous investigation on the transformation and sorption of drug biomarkers in the pr
65 option, even though their impact on leukemic transformation and survival has not been proved.
66 p130Cas/BCAR1 is a crucial mediator of ErbB2 transformation and that its overexpression confers invas
67 however, the molecular mechanisms underlying transformation and the requirement for additional geneti
68                      SATB2 induced malignant transformation and these transformed cells gained the ch
69 e of the detector by application of Hadamard transformation and to suppress correlation noise induced
70 itutively activated state to drive malignant transformation and tumor growth.
71 eased stemness, increased calcium signaling, transformation, and novel E-cadherin-RalBP1 interaction.
72  pathway can regulate cell proliferation and transformation, and suggest oncogene-specific roles for
73 HPI) esters is crucial to the success of the transformation, and the reaction is amenable to in situ
74                             A critical early transformation applied to cone signals is horizontal-cel
75 elf-renewing brain stem cells from oncogenic transformation are poorly defined.
76  and their relations with anthropogenic land transformation are scarcer.
77 minescence (PL) probes, the NC-SL structural transformations are correlated at both atomic and mesosc
78 on and kinetic modeling of the nitroso oxide transformations as well as the product analysis allowed
79 edge of the evolutionary pathways leading to transformation, as well as the scarcity of comprehensive
80 nges in iron oxide reducibility during phase transformations, as shown for Fe(2+)-facilitated transfo
81 larger than the rate constants measured with transformation assays.
82 showed that the HNC-SLs underwent structural transformation at both atomic- and mesoscales during the
83 cations, is metastable and undergoes a phase transformation at high temperatures (typically 2000 degr
84 tumors were considered at risk for malignant transformation at the time; for example, there was no pa
85          Far-less-well studied are triggered transformations at constant conditions.
86 pproximate invariance to identity-preserving transformations at the top level of the processing hiera
87                                          The transformation between BPs, where crystal features arise
88                     We identify two modes of transformation between stereochemical states and find th
89              However, several aspects of the transformation between the two areas have not been empir
90 1 improves EBNA-LP levels and the quality of transformation by the B95-8 bacterial artificial chromos
91 the C-terminal His-rich fragment show unique transformations by either intensifying the alpha helical
92 or toxicology exposure media, the same redox transformations can occur, causing altered behavior and
93 ArMs, this was done using a functional-group transformation classification.
94 ion of the methyl group and functional group transformation complete the synthesis of aphanorphine an
95 ps, and use it to demonstrate that malignant transformation compromises the DNA-nuclear matrix interf
96 as been an enigma, because the basis for its transformation defect has not been apparent.
97                    However, engineering this transformation deliberately using ion irradiation could
98                                          The transformation depends on the anatase titanium dioxide s
99 79.7%]; P = .49) and symptomatic hemorrhagic transformation (drip and ship, 2 [2.0%]; mothership, 2 [
100 harmacological inhibition effectively blocks transformation driven by partial p85alpha loss both in v
101                   Our results identify viral transformation-driven synthetic lethal targets for thera
102 rranean, these forests are undergoing severe transformations due to pressures from global change.
103  packed Cu NP ensembles underwent structural transformation during electrolysis into electrocatalytic
104 ransgenic cotton plants with equal or higher transformation efficiencies compared to the commonly use
105                                              Transformations employ [B(pin)]2-methane as a conjunctiv
106 he approach is highlighted by stereospecific transformations entailing allylation, tandem cross coupl
107 nt-like state, but with occasional malignant transformation events.
108 on of life chances during the post-socialist transformation for women.
109  from multiple sources, and non-linear input transformations, for example thresholds or refractory pe
110 e survival (FFS), event-free survival (EFS), transformation-free survival (TFS), and overall survival
111                        We also demonstrate a transformation from amorphous to crystalline thermal tra
112 amics simulations, reveal the details of the transformation from solid metal nanoparticles to hollow
113                                   This novel transformation has been optimized to 30 mol% p-toluenesu
114  tea shoots, chemical synthesis to microbial transformation have been tried to meet its demand.
115 trength via the hydrogen sintering and phase transformation (HSPT) process.
116  important cell model for studying oncogenic transformation in breast tissues.
117 y exhibiting a positive relationship between transformation in culture and the development of tumors.
118  and low PO4(3-) treatments, with negligible transformation in higher PO4(3-) treatments.
119 des a rational template to implement plastid transformation in related recalcitrant crops.
120 are required for effective cartilage-to-bone transformation in the fracture callus and for undisturbe
121 is study explores ibuprofen (IBP) uptake and transformation in the wetland plant species Phragmites a
122 patial and temporal distributions of nitrate transformation in the Yellow River, the second-longest r
123 es also serve as an inducing cue for natural transformation in Vibrio species.
124 genitor cells and also potentiated oncogenic transformation in vitro.
125  (HPV16) oncoproteins contribute to cellular transformation in vitro.
126            We interpret multiquons and their transformations in a natural way.
127                        Similar to fcc-to-hcp transformations in Al and the noble gases, the transform
128 sfers (NAD(P)H/NAD(P)(+)) to drive metabolic transformations in and across most primary pathways.
129 imental and theoretical work on photoinduced transformations in fluorescent proteins.
130 al forms and could be revealed via geometric transformations in morphological space.
131  temperature than usual beta --> alpha phase transformations in SiC.
132 to contribute to a diverse array of nitrogen transformations in the sponge holobiont.
133                               Diverse online transformations, in which the substrate and/or product o
134 ssembly represents a novel mechanism of cell transformation induced by the environmental and occupati
135                                            A transformation-induced plasticity (TRIP) assisted HEA wi
136                        Lastly, we found that transformation into a mutant genotype followed by introg
137 The superconductivity is due to a structural transformation into another allotrope and accompanied by
138                     Here we show whitlockite transformation into merrillite by shock-compression leve
139         The process of stem cell myogenesis (transformation into skeletal muscle cells) includes seve
140 ult in the same level of silencing as direct transformation into the wild type.
141 ive dehydration followed by three pericyclic transformations: intramolecular Diels-Alder and hetero-D
142                              This remarkable transformation involves decarboxylation followed by an o
143                                These unusual transformations involving a (kappa(2) -P,N)Pt(eta(3) -be
144  property has enabled correspondingly unique transformations involving carbon-carbon, carbon-hydrogen
145 ral implications for the design of selective transformations involving deprotonation of high-energy i
146 ns arise through a sequence of morphological transformations involving nematic stripes and locally al
147 ion and fluorescence data evidence that this transformation is accompanied by a charge separation bet
148  competent pneumococcal cells to ensure that transformation is complete before resumption of cell div
149 ting and cooling, the beta <--> alpha' phase transformation is observed repeatedly.
150                                The Cu2O-->Cu transformation is observed to occur initially along the
151  development of new marker genes for plastid transformation is of crucial importance to all efforts t
152                                    Malignant transformation is often accompanied by significant metab
153 water into the desire to drink, but how this transformation is performed remains unknown.
154                                      Plastid transformation is routine in tobacco (Nicotiana tabacum)
155 ansformations in Al and the noble gases, the transformation is sluggish, occurring over a range of >4
156                             Critical to such transformation is to provide affordable and sustainable
157                                     Melanoma transformation is unlikely to be due to height per se; h
158 local changes in complexity during synthetic transformations is described.
159                           The scope of these transformations is discussed as well as mechanistic expe
160                We suggest how, upon suitable transformations, it may become possible to go beyond inf
161 ntity and robust against identity-preserving transformations, like depth rotations [1, 2].
162 ing diffuse large B-cell lymphoma, Richter's transformation, mantle cell lymphoma, follicular lymphom
163             This is a reversible martensitic transformation mechanism that leads to a final nanolamin
164       Therefore, this study investigated the transformation mechanisms of 20 OMPs during the methanog
165 ether evidence exists in the literature that transformation might be prevented altogether, based on t
166 g from chronic lymphocytic leukemia (Richter transformation; n = 7), Waldenstrom macroglobulinemia (n
167 ent in 19 of the 51 cases of non-hemorrhagic transformation NHS (37%).
168 can lead to the discovery of new reactivity, transformations not known in biology, and reactivity ina
169                      Many important chemical transformations occur in two-phase reactions, which are
170 ed KRAS is a documented driver for malignant transformation, occurring early during the pathogenesis
171 array of cells, and thus for the topological transformation of a radially symmetric disc to a bilater
172 4-hydroxycumyl alcohol (HCA), in tandem with transformation of a synthetic, Mn(III)-rich delta-MnO2.
173 ur study indicated that DW altered microbial transformation of added-N, and the effect was drying int
174       Microscopy investigations revealed the transformation of an extended fiber assembly into discre
175 nsmission electron microscope to observe the transformation of an HfO2 nanorod from monoclinic to tet
176        The results imply that Fe(2+)-induced transformation of As/Sb-jarosite can increase Sb mobilit
177 5) and leaves (0.5), suggesting an intensive transformation of CBZ in these compartments.
178 s been extensively studied for the reductive transformation of chlorinated or nitroaromatic compounds
179              The subsequent ripening-induced transformation of chloroplasts to tubular chromoplasts w
180  system, absent of counterions, to study the transformation of clusters to films and nanopatterns.
181                                 The chemical transformation of CO2 not only mitigates the anthropogen
182 kinase (JNK) plays a vital role in malignant transformation of different cancers, and JNK is highly a
183     LSEC-restricted deletion of Gata4 caused transformation of discontinuous liver sinusoids into con
184 sformations, as shown for Fe(2+)-facilitated transformation of ferrihydrite to goethite.
185 roundwater and loss of 558 km of stream, and transformation of fish assemblage structure from dominan
186                             We propose a log transformation of forecast errors for price projections
187 hronic inflammation is a major driver of the transformation of genetically defective liver stem cells
188 p overexpression inhibited the morphological transformation of HESCs in response to deciduogenic cues
189 acilitates our understanding of the fate and transformation of IAPP in vivo, which are expected to ha
190 hematologic malignancy that results from the transformation of immature T-cell progenitors.
191 ondary intracerebral hemorrhage, hemorrhagic transformation of ischemic injury, and presumed perinata
192  for first step of the domino isomerization, transformation of isoxazole to 2H-azirine, which is comp
193 xplore the effects of abiotic Fe(2+)-induced transformation of jarosite on the mobility, speciation,
194                We demonstrate that an arcsin transformation of Laplace-smoothed data is at least as g
195 ndings provide evidence for a dynamic neural transformation of low-level speech features as they prop
196 SP3 or ENDOG prevented Myc-induced oncogenic transformation of MCF10A cells.
197 l detrended fluctuation analysis and Fourier transformation of microscopy images.
198 nd growth as well as subsequent superlattice transformation of NC assembles and underneath mechanisms
199 ogenic KRAS G12V mutant to cause morphologic transformation of NIH 3T3 mouse fibroblasts and of WT KR
200 ter, we report the crystallization and phase transformation of p-xylene under high pressure.
201  to image defects during the hydriding phase transformation of palladium nanocrystals.
202 is (MPV and other), 17 (17.3%) had cavernous transformation of portal vein, and 3 (3.1%) had post-tra
203                                      Partial transformation of schwertmannite to goethite occurred in
204 ution appears to be constrained by the rapid transformation of schwertmannite to goethite, which ther
205 y associated with the functional decline and transformation of stem cells that characterize aging.
206 ation of release rate and form were applied: Transformation of the bulk material was analyzed by Scan
207                                      Further transformation of the cyanide group allowed the synthesi
208 ders in the field of toxicology called for a transformation of the discipline and a shift from primar
209               Our findings indicate that the transformation of the field of toxicology is partly impl
210 tic interactions were identified by en masse transformation of the human disease genes into a pool of
211                                              Transformation of the surface of the transplanted myofas
212  lymphomas may arise as a consequence of the transformation of the underlying indolent lymphoma.
213      We report the stepwise and quantitative transformation of the Zr6(mu3-O)4(mu3-OH)4(HCO2)6 nodes
214 ion analysis, we report the first successful transformation of wild-type NCCs into NBL by enforced ex
215                                    Iterative transformations of a complex pool of oligonucleotides ra
216            Here, we characterize origins and transformations of dissolved organic matter (DOM) in fiv
217               Understanding Fe(II)-catalyzed transformations of Fe(III)-(oxyhydr)oxides is critical f
218  temporal resolution and, uniquely, physical transformations of lipid bilayers can be monitored on a
219 s by the boronic acid also enables selective transformations of mixtures of carbohydrates.
220 capable of conducting asymmetric oxygenative transformations of organic molecules and, in line with t
221 bserved during photooxidation of 1a, whereas transformations of the nitroso oxide isomers derived fro
222                 Knowledge about the rates of transformations of these ENMs in realistic environments
223 erogeneity will affect large-scale Wolbachia transformations of urban mosquito populations.
224                         Adsorption and redox transformations on clay mineral surfaces are prevalent i
225 s been demonstrated that it can tune further transformations on the NCs, leading to more complex patt
226                                         This transformation operates via a hybrid Pd-radical mechanis
227                              Here we present transformation optics applied to thermoelectric phenomen
228                                              Transformation optics, as the underlying mathematical to
229  ibrutinib has been attributed to histologic transformation or acquired mutations in BTK and PLCG2.
230                                Investigating transformation over time along these dimensions will rev
231 rtex core exhibiting a reversible hysteretic transformation path.
232 ing factor for melanocytes with potent tumor transformation potential.
233 etic curcumin analogs that undergo oxidative transformation potently inhibited the pro-inflammatory t
234                                          The transformation processes enhanced Sb mobilization into t
235                           Microbial nitrogen transformation processes such as denitrification represe
236 the regional scale and can be used to assess transformation processes.
237  the past few years, the characterization of transformation products (TPs) is still a major concern,
238  a custom exact mass database with predicted transformation products (TPs).
239  the potential for generation of undesirable transformation products, and the release of toxic metals
240                        Taken together, these transformations provide a fundamentally different approa
241 e in Arabidopsis is an impediment to plastid transformation provides a rational template to implement
242                                          The transformation provides access to highly useful chiral b
243  Our new approach using nanostructured phase transformation provides new opportunities for applicatio
244                      Factors influencing the transformation rate of the poorly crystalline iron (oxyh
245 etermining direct and indirect photochemical transformation rates of imidazolium, pyridinium, pyrroli
246                              First-order PHE transformation rates, kPHE, and half-lives, t1/2, for PH
247 oor to a detailed atomistic understanding of transformation reactions in even larger systems.The comp
248 ghts behind some of the observed novel phase transformation reactions.
249                                          The transformation relies on the use of nickel catalysis and
250 , the mechanisms used by LMP2A to facilitate transformation remain elusive.
251  mechanisms by which immune signaling drives transformation remain unclear.
252  that more pericyclic biosynthetic enzymatic transformations remain to be discovered in naturally occ
253                                However, this transformation remains unknown for heavier counterparts,
254                                         This transformation represents different chemoselectivity fro
255     Thus, to the best of our knowledge, this transformation represents the first example of catalytic
256  Peptide-directed binding uses few synthetic transformations, requires the production of a small numb
257                                          The transformation results in highly enantioenriched bicyclo
258 nce, and plasma protein binding also hold in transformation space, but there are also interesting exc
259 monomers or dimers, a few, including the E26 transformation-specific family repressors Drosophila mel
260         We noted that the closely linked E26 transformation-specific proto-oncogene 1 (ETS1) is overe
261                                      The E26 transformation-specific transcription factor, ETV4, whic
262 rine 2, gene (TMPRSS2) with the erythroblast transformation-specific-related gene (ERG), or TMPRSS2:E
263 nce of obesity, how adiposity contributes to transformation (stage a non-tumorigenic cell undergoes t
264  of centrosome overduplication depend on the transformation status of cells.-Yu, Z., Ruter, D.
265 substructure similarity and virtual chemical transformation techniques.
266 anorod from monoclinic to tetragonal, with a transformation temperature suppressed by over 1000 degre
267 mory, material and magnetic properties (e.g. transformation temperatures, strain, saturation magnetiz
268 nship between the work recoverable ratio and transformation temperatures, superelastic and plastic be
269 ype PDGFRA was even more potent in promoting transformation than the mutant PDGFRA, which is importan
270  Strychnos alkaloid, an elusive biosynthetic transformation that has been investigated for decades.
271 ts an overview of catalytic enantioselective transformations that allow convenient access to all ster
272 d broadly applicable and efficient catalytic transformations that deliver them diastereoselectively a
273 eparation of representative products through transformations that were performed without exclusion of
274 hly proliferative tissues prone to oncogenic transformation: the hematopoietic lineage and the intest
275      Rapid uptake of TrOCs and intracellular transformation through diverse enzymatic systems appears
276                                              Transformation to aggressive lymphoma is a critical even
277 which especially relate to optimal field and transformation to high-grade radiation-associated sarcom
278 s that matter most to patients, thus slowing transformation to higher-value team-based care.
279 in supercooled n-butanol is found to inhibit transformation to the crystal.
280 e stable silanone 2b (R = t-Bu), a selective transformation to the first reported room temperature st
281 ences in susceptibility to nevus initiation, transformation, tumorigenicity, and metastatic potential
282 vidual functional groups on the success of a transformation under various conditions and provides a s
283                             The biocatalytic transformations used by chemists are often restricted to
284  state-are among the most powerful synthetic transformations used to make multiple regioselective and
285 des and anilides have been evaluated for the transformation using aprotic conditions.
286       Fine characterization of intracellular transformation using ketoprofen showed that CYP450 is no
287 rst enantioselective oxidative Pummerer-type transformation using phase-transfer catalysis to deliver
288 te in the bond-forming/breaking event in the transformation via a substrate-TM interaction, an aspect
289 omplex may be a necessary step for the redox transformation via catalytic or direct oxidation pathway
290                                     Br-PFHxS transformation was approximately two times slower with l
291 PA treatment in ischaemic mice, haemorrhagic transformation was significantly decreased, and this was
292                           First, a new model transformation was used to whiten the covariance matrix
293 gH2 at any time but rather MgO; and that the transformation we observed was the formation of Kirkenda
294  years, rates of thrombosis, hemorrhage, and transformation were not significantly different; however
295                                From a single transformation with a CRISPR library targeting the immun
296 e electric-field control of multistate phase transformations with rich functionalities.
297 rage materials operate via first-order phase transformations with slow kinetics largely restricted by
298 ssion in hematopoietic cells induced myeloid transformation, with a fully penetrant, lethal chronic m
299  hyperbolic and loxodromic classes of Mobius transformations, with the critical point of the transiti
300  of metal-free catalysts of enantioselective transformations, yet the discovery of organic catalysts

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