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1  diseases in which the immune system plays a critical role.
2 ration at T >/= 300 degrees C, also played a critical role.
3 ion induced secondary electron emission play critical roles.
4 tions, in which "silent" NMDA receptors play critical roles.
5     In particular, it highlights some of the critical roles and functions of anodes in MFCs, strategi
6 ly seen in blood disorders underscores their critical roles and highlights the need to develop target
7  in over half of all cancers, reflecting its critical role as a tumor suppressor.
8 ace receptors to activate the pathway, plays critical roles both in embryonic development and the mai
9                 Epigenetic mechanisms play a critical role during differentiation of T cells by contr
10  In plants, regulated cell death (RCD) plays critical roles during development and is essential for p
11                      MKLP2, a kinesin-6, has critical roles during the metaphase-anaphase transition
12          In addition, our results point to a critical role for a single amino acid within the membran
13                       Our findings suggest a critical role for Arg1 in mono/MPhi in suppressing CHS t
14                    Our results demonstrate a critical role for Arid1b in interneuron development and
15             Here, however, we have exposed a critical role for BCL-W in B cell survival and lymphomag
16  have impaired glucose sensing, indicating a critical role for brain GLUT4 in sensing and responding
17                           Here we identify a critical role for ETAA1 in this process by surveying ran
18 etic loss-of-function experiments revealed a critical role for FOXO transcription factors in mediatin
19                  These results demonstrate a critical role for genetic variation in ChrY in regulatin
20 sue of Immunity, Liew et al. (2017) reveal a critical role for invariant natural killer T (iNKT) cell
21        Taken together, this study suggests a critical role for LIL3 in the organization of later step
22 RTANCE We describe here for the first time a critical role for miR-424 in the regulation of HPV repli
23                               Here we show a critical role for mTORC2 signalling in the generation of
24                                 We defined a critical role for mycobacterial membrane phenolic glycol
25 lation, and the NGD pathway, and establish a critical role for NGD in maintaining ER homeostasis.
26  severe human disease, thereby emphasizing a critical role for NK cells in human antiviral defense.
27                         These data suggest a critical role for NKG2D ligands in anti-HIV-1 ADCC respo
28                           Our data suggest a critical role for nonclassical monocytes in the patholog
29           These and other findings suggest a critical role for NPAS proteins in neuropsychiatric func
30                       The findings support a critical role for pedunculopontine tegmental nucleus glu
31                       Our data demonstrate a critical role for perisomatic inhibition mediated by PV-
32                      Instead, we establish a critical role for phosphatidylinositol 3-kinase (PI3-kin
33 ger polySia chains on SynCAM 1, suggesting a critical role for polyST autopolysialylation in substrat
34                 Our results reveal a new and critical role for positive feedback onto dopamine neuron
35 ear extinction in the amygdala, suggesting a critical role for RIN1 in preventing the persistence of
36             Together, our study implicates a critical role for Set1A catalytic methyltransferase acti
37 ilds on prior work to further substantiate a critical role for skin migratory dendritic cells and in
38             Several observations implicate a critical role for T cell dysregulation as a central prob
39          Altogether, our results highlight a critical role for TBC1D1 in exercise tolerance and contr
40                      These findings reveal a critical role for telomere length in a mouse model of ag
41                    Our results demonstrate a critical role for the ancestral phenolic metabolism in m
42          Furthermore, our results indicate a critical role for the cholinergic Ipc in this gating pro
43                  This information suggests a critical role for the delta peptide in Ebola virus disea
44 Drosophila and mouse TRPA1 channels reveal a critical role for the fifth transmembrane domain (S5) in
45                               We uncovered a critical role for the IL-1beta pathway in patients with
46                              We identified a critical role for Traf2 in myocardial survival and homeo
47  brown adipose tissue (BAT) is known to play critical roles for both basal and inducible energy expen
48                  Importantly, we demonstrate critical roles for FGFBP1 at NMJs in developing, aging a
49 ased SR luminal Ca(2+) These findings define critical roles for Stac3 in EC coupling and human diseas
50 iseases are neurological in nature revealing critical roles for this class of proteins in the brain.
51                             U1 snRNP plays a critical role in 5'-splice site recognition and is a fre
52  representation of the sensory space plays a critical role in acuity and fine discrimination during s
53 reveal that Ag-specific CD4 TRM cells play a critical role in adaptive immunity against reinfection a
54 M)-rich environments, oncogenic KRAS plays a critical role in adenocarcinomas by promoting PI3K/Akt s
55 a-secretase phosphorylation by SRPK2 plays a critical role in aggravating AD pathogenesis.
56                         NM myosin II plays a critical role in airway SM contraction that is independe
57                     Scaffold proteins play a critical role in an increasing number of biological sign
58 l lateral parabrachial nucleus (PBel) play a critical role in arousal to elevated CO2 or hypoxia.
59 se studies show that BET proteins may have a critical role in asthma pathogenesis by altering type 17
60                             Platelets play a critical role in atherogenesis and thrombosis-mediated m
61                  Protein acetylation plays a critical role in biological processes by regulating the
62 informatics and computational biology play a critical role in bioscience and biomedical research.
63  AMP-activated protein kinase (AMPK) plays a critical role in blocking modifications to the chromatin
64 es (PRCs) and BAF (mSWI/SNF) complexes has a critical role in both development and disease.
65 cellular fitness through competition plays a critical role in both development and disease.
66                                  Despite its critical role in both expression and replication of the
67 (2) dissolution of available calcite plays a critical role in buffering pH; (3) high salinity in gene
68 nosensitive transcriptional activator with a critical role in cancer, regeneration, and organ size co
69 e hypothesis that 5-HT2CR in the BLA plays a critical role in CeA plasticity and neuropathic pain beh
70         Reactive oxygen species (ROS) play a critical role in cell signaling and proliferation.
71 hondria-associated ER membrane (MAM) plays a critical role in cellular energetics and calcium homeost
72 usion, our study suggests that I-PTH plays a critical role in cellular proliferation, proteoglycan di
73 -dependent activation of PP2A(Cdc55) plays a critical role in checkpoint signaling.
74              Apolipoprotein E (apoE) plays a critical role in cholesterol transport in both periphera
75 vidence demonstrating that APC(Cdh1) plays a critical role in choosing the repair pathways in S/G2 ce
76 n paid to mean cloud properties due to their critical role in climate projections; however, less rese
77 ent movement patterns, and sites that play a critical role in connecting subpopulations.
78   Epigenetic regulation of chromatin plays a critical role in controlling embryonic stem (ES) cell se
79 .IMPORTANCE The antiviral kinase PKR plays a critical role in controlling HCMV replication.
80 TEMENT The extracellular environment plays a critical role in coordinating neuronal migration and neu
81 onent of the SC lateral element, SYCP3 has a critical role in defining the specific chromosome archit
82 esearch suggests evolution could also play a critical role in determining expansion speed but control
83 teractions that occur in the skin may have a critical role in determining outcome of infection.
84 otions of the tectorial membrane (TM) play a critical role in determining the frequency selectivity o
85 ntly downregulated in prostate cancer, has a critical role in determining tumor-initiating potential
86                               Despite Atro's critical role in development and disease, relatively lit
87                             Cytokines play a critical role in directing the discrete and gradual tran
88 memory, the hippocampus is thought to play a critical role in disambiguating (pattern separating) rep
89 etinoid X receptor alpha (hRXRalpha) plays a critical role in DNA binding and transcriptional activit
90  53BP1-dependent end-joining pathway plays a critical role in double strand break repair and is uniqu
91       Ebola viral protein 30 (eVP30) plays a critical role in EBOV transcription initiation at the nu
92  barrier at the tip-sample interface plays a critical role in efficient d.c.
93 khead box transcription factor FOXC1 plays a critical role in embryogenesis and the development of ma
94 tion in caveolae biogenesis, Cavin-2 plays a critical role in endothelial cell maintenance and functi
95 Collectively, our data show that p32 plays a critical role in energy homeostasis and represents a pot
96 despite their size, small-bodied bees play a critical role in facilitating long-distance pollen-media
97 ovide evidence suggested that Netrin-1 has a critical role in glioma growth.
98 y and expression has been reported to play a critical role in glucocorticoid resistance.
99 lopment.Phosphofructokinase 1 (PFK1) plays a critical role in glycolysis.
100 together, we conclude that autophagy plays a critical role in growth, asexual/sexual sporulation, deo
101  virus (HBV)-encoded X protein (HBx) plays a critical role in HBV-related hepatocarcinoma development
102       Control of glucose homeostasis plays a critical role in health and lifespan and its dysregulati
103 s encountered, suggests that they may play a critical role in immune responses to Leishmania.
104 data strongly suggest that MZ B cells play a critical role in initiating FVIII inhibitor formation an
105 ases, EDEM1, EDEM2, and ERManI, which play a critical role in initiating HA degradation.
106 he pre- and postsynaptic compartments play a critical role in initiating plastic changes in biologica
107        Cytochrome P450 monooxygenases play a critical role in insecticide resistance by allowing resi
108 ts clathrin-mediated endocytosis and plays a critical role in iron/transferrin uptake in vivo.
109 on of a specific pair of interneurons with a critical role in learning.
110 ranscripts and isoforms, and both may play a critical role in lifespan extension through insulin sign
111 IL-10 is an immunomodulatory cytokine with a critical role in limiting inflammation in immune-mediate
112       A new study reveals that FBXL5 plays a critical role in limiting IRP1 and IRP2 overaccumulation
113 or, 15-epi lipoxin A4 (15-epi LXA4), plays a critical role in limiting neutrophil activation and tiss
114     Here, we show that BMP signaling plays a critical role in looping morphogenesis of the avian smal
115 genetic background-dependent manner, plays a critical role in mammalian eyelid development and closur
116                             Estrogen plays a critical role in many physiological processes and exerts
117 el fluctuations and seamount location play a critical role in marine evolution, mainly by intermitten
118 protein-tyrosine phosphatases (PTPs), play a critical role in metastatic progression of cancers.
119 hese results indicate that calpain-1 plays a critical role in mGluR-LTD and is involved in many forms
120  findings establish that cholesterol plays a critical role in modulating GIRK activity in the brain.
121 We also demonstrate that cholesterol plays a critical role in modulating neuronal GIRK currents.
122 excitatory cholinergic modulation may play a critical role in mPFC deactivation in neuropathic pain a
123                   The cytokine IL-22 plays a critical role in mucosal barrier defense, but the mechan
124  whether the N-linked glycan has a similarly critical role in multimeric, avidly binding Fcs, is unkn
125       Oscillations in neural activity play a critical role in neural computation and communication.
126 also been implicated in playing a unique and critical role in neurodegeneration; however, structural
127 actor for ADHD, potentially by virtue of its critical role in neurodevelopment and synaptic plasticit
128      Therefore, we suggest that SHANK3 has a critical role in neuronal morphogenesis in placodal neur
129 ng techniques, with the goal to decipher its critical role in neuronal protection.
130 ng protein (CBP) and its paralog p300 play a critical role in numerous cellular processes.
131     The p53 tumor suppressor protein plays a critical role in orchestrating the genomic response to v
132 -cell-specific transcription factor, plays a critical role in oxidative stress-mediated drug resistan
133 rst direct evidence that Kir channels play a critical role in physiological endothelial responses to
134                   The MAPK/ERK pathway has a critical role in PNS development.
135  (TG), and TG-resident CD8(+) T cells play a critical role in preventing its reactivation.
136 icating that tissue microenvironment plays a critical role in promoting AML cell survival.
137 y, these data demonstrate that IL-33 plays a critical role in promoting ILC2 egress from the bone mar
138 ntestinal intraepithelial lymphocytes play a critical role in promoting intestinal homeostasis, altho
139 t the peptidyl-tRNA in the P site and play a critical role in promoting the synthesis of polyproline
140 r findings indicate that PBF and PTTG have a critical role in promoting thyroid cancer that is predic
141 or ERG is recurrently rearranged and plays a critical role in prostate oncogenesis.
142 porting materials (ETMs) used in PSCs play a critical role in PSCs performance.
143 it of the Lassa glycoprotein complex plays a critical role in receptor recognition.
144 ) and Antarctic Bottom Water (AABW) played a critical role in regulating hemispheric and global clima
145 t WASp is a novel substrate of ALK and has a critical role in regulating invasiveness and oncogenesis
146 tly, it has been reported that GSDMD plays a critical role in regulating lipopolysaccharide and NLRP3
147 ed a novel cellular signaling network with a critical role in regulating the replication of multiple
148                 Macrophages (Mvarphi) play a critical role in regulation of immune responses to hepat
149 mechanism of kappaOR regulation that plays a critical role in reinstatement of drug seeking.
150 he ubiquitin-proteasome system (UPS) plays a critical role in removing unwanted intracellular protein
151 igh-level MDM2 but not MDM4 has a consistent critical role in retinoblastoma cell proliferation in vi
152 ant features (e.g. species or genes) plays a critical role in revealing the contributors (i.e. pathog
153 eta-catenin, and sonic hedgehog) that play a critical role in root formation.
154 c furosemide, ClC-Kb/K2 is assumed to have a critical role in salt handling by the thick ascending li
155 ding domain 3 (Mbd3) and the complex plays a critical role in self-renewal and neuronal differentiati
156  factor (GEF) Son of Sevenless (SOS) plays a critical role in signal transduction by activating Ras.
157     Cytochrome P450 (P450, CYP) 17A1 plays a critical role in steroid metabolism, catalyzing both the
158 f CR+ interneurons suggests that they play a critical role in striatal microcircuits.
159 ward delays at the decision point and play a critical role in suppressing impulsive choice by regulat
160                                          The critical role in surface reactions and heterogeneous cat
161 that hydrogen(s) present at C10 of AA play a critical role in the catalysis of prostaglandin and thro
162  (erythroid-derived 2)-like 2 (NRF2) plays a critical role in the cellular antioxidant response under
163 dentify a mode of cIAP1 regulation playing a critical role in the cellular response to apoptotic path
164 nom peptide toxins such as conotoxins play a critical role in the characterization of nicotinic acety
165  immiscible systems of binary alloys plays a critical role in the design of multicomponent alloys.
166 eta in a synergistic manner, and NMD plays a critical role in the determination of the p53beta follow
167 cus bpsABCD has been demonstrated to serve a critical role in the development of mature biofilms form
168 and their metabolic products, likely plays a critical role in the development of obesity-associated i
169  through host innate immune receptors play a critical role in the disease manifestation.
170 xxphi motif, but not dileucine motif, play a critical role in the earliest stages of AP2 activation a
171 e data suggest that NCgl2760/Rv0227c plays a critical role in the elongation of the mannan backbone o
172  prominent theories arguing that it played a critical role in the evolution of vocal communication, i
173 a interactions at the sensory ganglia play a critical role in the genesis of herpetic neuralgia.
174 (IL-10)-producing B cells (B10 cells) play a critical role in the immune system balance by negatively
175  results suggest that FABP4 and FABP5 have a critical role in the maintenance, longevity and function
176                               Forage plays a critical role in the milk production of dairy cows; howe
177 is potentiated by TxA2 and that TxA2 plays a critical role in the most proximal event of CLEC-2 signa
178      Abnormalities of mucus viscosity play a critical role in the pathogenesis of several respiratory
179 HC; encoded by CBFB-MYH11) and RUNX1 plays a critical role in the pathogenesis of this leukemia.
180 ved in male cell differentiation and plays a critical role in the regulation of chromatin functions i
181                             Thus, Cygb has a critical role in the regulation of vascular tone and dis
182 el subunit of MCUC, has been shown to play a critical role in the response to beta-adrenoreceptor sti
183 or CXCR4 and its chief ligand CXCL12 plays a critical role in the retention and migration of hematopo
184        The neonatal Fc receptor FcRn plays a critical role in the trafficking of IgGs across tissue b
185 ction of double-strand breaks (DSBs) plays a critical role in their detection and appropriate repair.
186 d that the NPs chemical composition played a critical role in their in vivo biodistribution and toxic
187  development, and TGF-beta signaling plays a critical role in this process.
188 ransmembrane LRR protein-Lapsyn-that plays a critical role in this process.
189 is multifactorial but oxidative stress has a critical role in this process.
190 odel where the eVP30-eNP interaction plays a critical role in transcription initiation and provides a
191  activating receptor of NK cells and plays a critical role in tumor immunosurveillance.
192 is (PUMA) and showed that these cells play a critical role in tumor progression that is independent o
193 9 as a novel regulator of AKT pathway with a critical role in tumorigenesis and chemo-response in pan
194 n hypothesized the fungal metabolism plays a critical role in virulence though specific nutrient sour
195 tical circuit assembly are thought to play a critical role in vulnerability to schizophrenia (SZ), bu
196    Protein detection and quantification play critical roles in both basic research and clinical pract
197 ressed in lung epithelial cells, IL-33 plays critical roles in both innate and adaptive immune respon
198 rmediates, or excited states, which can play critical roles in both protein folding and function.
199                               Microglia play critical roles in brain development, homeostasis, and ne
200                       STAT3 is known to play critical roles in cell growth, proliferation, differenti
201                       Mechanical forces play critical roles in collective cell behaviors such as cell
202 gration, and surface receptor integrins play critical roles in controlling the organization of cytosk
203 he mitochondrial adaptor molecule MAVS plays critical roles in coordinating both virus-induced type I
204                   Dendritic cells (DCs) play critical roles in developing immune defenses.
205 27me3, are evolutionarily conserved and play critical roles in development and cancer.
206             Mammalian SWI/SNF complexes have critical roles in development and differentiation, and a
207 inated alternative splicing (AS) events play critical roles in development and disease.
208 nd Igf2 are linked imprinted genes that play critical roles in development.
209                Epigenetic modifications play critical roles in diverse biological processes.
210 er regulator of brain development that plays critical roles in establishing cortical connections to o
211 rge among a variety of animals and may serve critical roles in fitness [1, 2].
212                          Boreal forests play critical roles in global carbon, water and energy cycles
213 f its downstream target AMPKalpha, which has critical roles in governing cancer cell energy metabolic
214 munity and allergic immune surveillance play critical roles in host responses to pathogens, parasites
215  both tumor- and host-derived PD-L1 can play critical roles in immunosuppression.
216                         These receptors play critical roles in inflammation, immunity, and pathogen r
217 RAKs) are serine/threonine kinases that play critical roles in initiating innate immune responses aga
218  residue toward the C terminus of ORF52 play critical roles in its ability to rearrange the architect
219          Vitamin A (all-trans retinol) plays critical roles in mammalian development and vision.
220 lopment in humans and other species and play critical roles in many physiological and pathophysiologi
221 ion as molecular coincidence detectors, have critical roles in models of learning, and are associated
222  an RNA- and channel-binding regulator, with critical roles in neural circuit formation and function.
223 PXLXP motif at the rice CAF1 N-terminus play critical roles in OsCCR4-OsCAF1 interaction.
224 e CCR4 and the PXLXP motif of rice CAF1 play critical roles in OsCCR4-OsCAF1 interaction.
225                                    IL-35 has critical roles in PDAC cell extravasation and metastasis
226 GAI, RGA and SCR (GRAS) family proteins play critical roles in plant development and signalling.
227 ivated protein kinase 6 (MPK6) and MPK3 play critical roles in plant reproduction.
228 tes catalyzed at faster rates with potential critical roles in protein activation, including the hist
229                    Muller glia play diverse, critical roles in retinal homeostasis, which are presuma
230 at is present in most mammalian cells, plays critical roles in signaling pathways and cell cycle prog
231                       Myosins play countless critical roles in the cell, each requiring it to be acti
232 e induced by interleukin-27 (IL-27) and have critical roles in the control of autoimmunity and resolu
233 miRNAs) are small, non-coding RNAs that play critical roles in the post-transcriptional regulation of
234 toimmune responses in the arterial wall play critical roles in the process of atherosclerosis.
235 ents of the cancer microenvironment and play critical roles in the regulation of tumor progression.
236 a and prefrontal cortex (PFC) appear to have critical roles in these disorders; however, abnormalitie
237 l, sphingomyelin, and membrane fluidity play critical roles in these processes.
238 ion as transcriptional coactivators and play critical roles in various cellular processes, including
239               These findings demonstrate the critical role of adult stem cells in tissue remodeling a
240 ifferential methylation analysis uncover the critical role of Aid as a key epigenetic regulator.
241  vessels and provide genetic evidence of the critical role of AVR in the countercurrent exchange mech
242                                    Given the critical role of BCRP in limiting fetal exposure to drug
243     Functional analysis further implicates a critical role of c-Fos in initiating, but not maintainin
244                    This study elucidates the critical role of calcium chelating salts in modulating c
245 e studies should be conducted to explore the critical role of CAR in survival of cancer patients.
246 patocyte-specific loss of CD1d, confirming a critical role of CD1d in this process.
247 udies of CD40L-deficient patients reveal the critical role of CD40L-CD40 interaction for the function
248                      These findings reveal a critical role of CRTC1 in the hippocampus during associa
249  of genome-wide mediation effects suggests a critical role of cryptic gene regulation underlying many
250      In conclusion, our data highlighted the critical role of CX45 in reprogramming and may increase
251                    These findings indicate a critical role of DDT in maintaining HSCs and progenitor
252  performed with Clec7a(-/-) mice support the critical role of Dectin-1 for inflammasome activation, r
253 un02 inactivation procedure to demonstrate a critical role of dorsomedial striatum neuronal ensembles
254 broad biological significance because of the critical role of folate in normal cell function and the
255 the induction of TH2 differentiation and the critical role of GATA-3 in this process.
256  mice from HSV-1 eye disease, indicating the critical role of HVEM in HSV-1 ocular infection.
257 ERK1/2 activation dynamics, highlighting the critical role of intracellular calcium in shaping the pE
258 core of the SDA complex, which clarifies the critical role of ISD11 in eukaryotic assemblies.
259                  These results establish the critical role of JIP3-dependent axonal lysosome transpor
260             Thus, these studies identify the critical role of KLF15 in mediating the salutary effects
261  Cripto-1 potentiated signaling, revealing a critical role of membrane association for its establishe
262           Accumulating evidence suggests the critical role of mGluR2/3 in different aspects of nicoti
263         Collectively, these results reveal a critical role of miR-122 in acetaminophen detoxification
264 odified by sensory entrainment, supporting a critical role of ongoing oscillations in the integration
265 ensory entrainment, providing evidence for a critical role of ongoing oscillations in the temporal or
266                    These results uncover the critical role of oxytocin signaling in a molecularly def
267                    These results confirm the critical role of parrotfish in maintaining coral-dominat
268                   These experiments reveal a critical role of presynaptic ER in the control of neurot
269                     We previously reported a critical role of reticulon (RTN) 1A in mediating endopla
270 ides additional evidence with respect to the critical role of RH as an influencing factor in AOD-prec
271            This review seeks to describe the critical role of safety culture and patient and family e
272                        Here, we identified a critical role of SNHG6-003 in HCC.
273                                  Herein, the critical role of structural H2 O on Zn(2+) intercalation
274 t1/GSK3beta/TAZ/YAP signaling and confirms a critical role of TAZ/YAP in mediating the profibrotic re
275                            Here, we reveal a critical role of the AS regulator epithelial splicing re
276 s absent fail to translocate, establishing a critical role of the ATD of GluA1.
277 IGNIFICANCE STATEMENT This paper unveils the critical role of the brake potassium current IKD in dama
278  for functional multimerization and reveal a critical role of the C-terminal tail region of IN in hig
279                                          The critical role of the CCL1-CCR8 axis in Treg cells was fu
280 auditory/vestibular impairments confirms the critical role of the HC proteome for normal IE function,
281 amma-secretase inhibitor L1790 confirmed the critical role of the Notch/Dll pathway.
282                       We also demonstrated a critical role of the p53-CXCR2 axis in mediating RSV-ind
283 ospho-mimetic mutants of FoxM1b identified a critical role of the Plk1 phosphorylation sites in regul
284        Separate lines of evidence point to a critical role of the primary motor cortex (M1) in consol
285            Together, our results establish a critical role of TRIB1 in cell cycle and survival that i
286                                          The critical role of two-phase hydrodynamic properties on no
287 n types of medical waste and highlighted the critical role of waste packaging in successful steriliza
288 h endothelial venules, the results highlight critical roles of innate/inflammatory responses in SIVma
289 poiesis and leukemogenesis and highlight the critical roles of METTL14 and m(6)A modification in norm
290              Genetic studies have elucidated critical roles of Piwi proteins in germline development
291                  Our results demonstrate the critical roles of T cells and IFN-gamma in mediating spl
292      These led to a proper estimation of the critical roles of volume of activation (Delta( not equal
293  peptide signals and their co-receptors play critical roles patterning and maintaining barrier integr
294               Our results also highlight the critical role played by antigen density in regulating CA
295      Not only does this study underscore the critical role that these proteins play in the viral repl
296                                    Given the critical roles that GAS6 and AXL play in refractory dise
297  broad participation in these evolutionarily critical roles, the anucleate platelet is uniquely mamma
298 hyl-D-aspartate (NMDA) receptors have played critical roles throughout the history of neuropharmacolo
299  within behavioral decision research gives a critical role to associative cognitive processes, sugges
300 d the interaction with gas molecules plays a critical role, which may represent a gas-molecular-adsor

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