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1 a positive result on a fecal test (guaiac or immunochemical).
2                                              Immunochemical analyses after pervanadate treatment show
3                                              Immunochemical analyses at embryonic days 5 and 14 revea
4                              Biochemical and immunochemical analyses demonstrate that zebrafish Plin6
5                              Biochemical and immunochemical analyses identified this protein as the t
6                                  Genetic and immunochemical analyses indicate that p20 is dispensable
7                                              Immunochemical analyses indicated that ribose and glucos
8 tity of the target antigen was determined by immunochemical analyses of candidate antigens using the
9                                              Immunochemical analyses of protein expression and locali
10                         Quantitative PCR and immunochemical analyses of the process preparation revea
11                                              Immunochemical analyses reveal that TSA blocks specific
12                                              Immunochemical analyses revealed a robust expression of
13                       Mass spectrometric and immunochemical analyses showed that NTHi LOS contained t
14         Additionally, mass spectrometric and immunochemical analyses showed that the LOS from H. haem
15                             Here, we show by immunochemical analyses that Pelle-mediated signaling in
16                                              Immunochemical analyses using phosphorylation-dependent
17 tein sequencing, peptide fingerprinting, and immunochemical analyses were used to identify the four s
18   Based on mass spectrometry, knockdown, and immunochemical analyses, the proteoglycan contains two m
19 been performed by using cysteine mapping and immunochemical analyses.
20                                              Immunochemical analysis demonstrates that CMF1 protein i
21                                         This immunochemical analysis has provided valuable insight in
22 g electrophysiological, tracer coupling, and immunochemical analysis in brain slices of rat and mouse
23                                              Immunochemical analysis indicated lower levels of both t
24              The results of microsequencing, immunochemical analysis of 2D-PAGE blots and size exclus
25                                  Previously, immunochemical analysis of a series of breast cancer cel
26 of Alzheimer's disease is currently based on immunochemical analysis of brain slices with the AT8 ant
27                                              Immunochemical analysis of CCD41, apparently the murine
28                                Unexpectedly, immunochemical analysis of COS-7 cells transfected with
29                                              Immunochemical analysis of endogenous dynamin distributi
30 operties of the mutant ATPase and results of immunochemical analysis of F0 subunit polypeptides.
31 ined from these survivors provide a detailed immunochemical analysis of individual human solutions to
32                                              Immunochemical analysis of murine mammary tumors shows n
33                                              Immunochemical analysis of preganglionic nerve extracts
34                                        Using immunochemical analysis of protein samples extracted fro
35 , but a prior lack of antibodies has limited immunochemical analysis of the ST6Gal-I protein.
36                                              Immunochemical analysis revealed the appearance or a not
37                              Biochemical and immunochemical analysis showed that PFA0210c associates
38                      Electron microscopy and immunochemical analysis showed that S-phase variants syn
39                                              Immunochemical analysis was performed for detecting foca
40 ween TuAg.1 and pE4 was further confirmed by immunochemical analysis with mAb 324.5 and mAb E4.
41 na thermophila using in vivo mutagenesis and immunochemical analysis with modification-specific antib
42                                              Immunochemical analysis with smooth muscle alpha-actin-s
43                                     Based on immunochemical analysis, Mn(II)-induced apoptosis does n
44 aphy and identified by mass spectrometry and immunochemical analysis.
45 essed high levels of osteopontin as shown by immunochemical analysis.
46 the pH and buffering the sample prior to the immunochemical analysis.
47 R) confirmed the results of light microscopy immunochemical analysis.
48  first time with the aim to produce valuable immunochemical analytical assays.
49                    With these antibodies, an immunochemical analytical procedure able to quantify bot
50                          In this context, an immunochemical analytical protocol has been established
51 n was isolated from rat platelets, which had immunochemical and biochemical identity to plasma factor
52 chick also allowed us to merge histological, immunochemical and cell proliferation labelling studies
53 d its subcellular localization by the use of immunochemical and cellular fractionation techniques.
54 g quantitative polymerase chain reaction and immunochemical and confocal imaging analyses.
55                                    By use of immunochemical and cysteine residue modification techniq
56 ally to the amygdala and, as defined by both immunochemical and electrophysiological criteria, genera
57                  Thus, we have shown by both immunochemical and functional criteria that GPI-anchored
58    Then, by combining live-cell imaging with immunochemical and genetic approaches, we report that VP
59                                          The immunochemical and genetic data identify the genes and p
60 ein-E-deficient recipients were evaluated by immunochemical and histological techniques.
61 of the stimuli used to model immune insults, immunochemical and hybridization histochemical methods w
62 t evidence on the identity of NFs in NFTs by immunochemical and mass spectrometric analysis.
63              Using quantitative biochemical, immunochemical and morphological methods, we demonstrate
64                                  In terms of immunochemical and NADH dehydrogenase activity-staining
65 for identification of immunotypes defined by immunochemical and neutralization data generated with an
66 nly related to screening techniques based on immunochemical and physiochemical methods, whose major l
67                          Though conventional immunochemical and polymerase chain reaction (PCR)-based
68               Calreticulin was identified by immunochemical and sequence analyses to be the higher mo
69 generation of Rh1 Drosophila rhodopsin using immunochemical and spectroscopic probes for the release
70                                     Previous immunochemical and surface plasmon resonance-based studi
71                                              Immunochemical and ultrastructural studies showed dystro
72  sucrose did not change the electrophoretic, immunochemical, and lysine-binding properties of Lp(a) i
73 ssembly behavior of EtxB by electrophoretic, immunochemical, and spectroscopic techniques and compare
74 ron types, each with distinct morphological, immunochemical, and/or physiological properties.
75 nstant outperformed a monoclonal antibody in immunochemical applications.
76 tive abundance of cAMP, we developed a novel immunochemical approach based on acrolein fixation to vi
77               The development of a sensitive immunochemical approach reported here made it possible t
78                                      A novel immunochemical approach to diagnose Pseudomonas aerugino
79                                           An immunochemical approach was employed as a direct test fo
80                            In this study, an immunochemical approach was used to circumvent the insol
81 y offers significant advantages over current immunochemical approaches for monitoring Src activity.
82 ant advances have been made in the design of immunochemical approaches that permit the replacement of
83  In this study, we have used biochemical and immunochemical approaches to more critically assess the
84  combined use of insertional mutagenesis and immunochemical approaches to probe the structural determ
85                Using a combination of MS and immunochemical approaches we found that 5-15% of the AID
86 combined molecular genetic, biochemical, and immunochemical approaches, we demonstrate that WRN also
87 Using a combination of mass spectrometry and immunochemical approaches, we found that in addition to
88 ation of bacterial genetics, microscopy, and immunochemical approaches.
89 pal neurones, using electrophysiological and immunochemical approaches.
90                                      A rapid immunochemical assay for serum procalcitonin was utilize
91             We have developed a lateral flow immunochemical assay for the measurement of DNase I acti
92 al sensor which employs a modification of an immunochemical assay format for the immobilization of no
93 upled to AuNP, on double and single-antibody immunochemical assay steps, respectively), in respect to
94 ods of measuring DNase I relies either on an immunochemical assay, which requires multiple washing st
95 ervical, thoracic and lumbar spinal cord for immunochemical assay.
96 cardial cytokine expression was evaluated by immunochemical assay.
97                                              Immunochemical assays constitute complementary analytica
98 size can be a limitation for biochemical and immunochemical assays requiring protein extraction.
99                                Enzymatic and immunochemical assays show a phosphatidylinositol 4-kina
100 the outcome from the effect of the pH on the immunochemical assays suggests that the selectivity coul
101            Synchronous fluorescence (SF) and immunochemical assays were used to study glycation in vi
102 tes were studied by atomic force microscopy, immunochemical assays, fluorescence microscopy, and vibr
103 hus mimicking the function of an antibody in immunochemical assays.
104 ed nuclear cataracts were analyzed by SF and immunochemical assays.
105                                              Immunochemical, biochemical and pharmacological studies
106 ess achieved during the recent five years in immunochemical biosensors (immunosensors) combined with
107                     Similar histological and immunochemical changes were observed in the olfactory bu
108 f three model IC preparations with different immunochemical characteristics.
109                                              Immunochemical characterization has shown that the epito
110                                              Immunochemical characterization indicated that the NH2-t
111 be of general utility in the biochemical and immunochemical characterization of recombinant antibodie
112 This was accomplished by physicochemical and immunochemical characterization of the NC1 hexamers usin
113                                              Immunochemical characterization was performed by Western
114                                      Further immunochemical characterization was performed in mice wi
115 ding site was identified using an integrated immunochemical, chemical, and molecular modeling approac
116 linergic, calretinin, and nitrergic neuronal immunochemical codes in the myenteric plexus.
117 neumoniae amidase was raised in rabbits, and immunochemical comparisons were made with amidases from
118                     Force was applied to the immunochemical complex by labeling the secondary antibod
119 les but was not strong enough to rupture the immunochemical complex.
120         This assay may serve as an important immunochemical correlate for inhibition of invasion.
121                                        Broad immunochemical cross-reactivity was noted when the mAbs
122            Serum antibodies exhibited strong immunochemical cross-reactivity with V3 peptides from cl
123                              Biochemical and immunochemical data from the present investigation revea
124                              Here we present immunochemical data showing that ethanol causes transloc
125 -phenylindole staining, suggesting, with the immunochemical data, a link between these organelles and
126 licated in Alzheimer's disease (AD) based on immunochemical detection of alpha1-antichymotrypsin (ACT
127 induced activation of PKD1, as determined by immunochemical detection of autophosphorylation.
128                                              Immunochemical detection of Fos protein was used as a me
129 ex in hematoxylin-eosin (HE) sections and by immunochemical detection of Ki67 nuclear antigen.
130 ration into hepatic DNA and mitotic index by immunochemical detection of Ki67) and 40 h (mitotic inde
131 ration into hepatic DNA and mitotic index by immunochemical detection of Ki67) and at 32 h (mitotic i
132 petitive RT-PCR measurements of PDS mRNA and immunochemical detection of PDS protein, we determined t
133 rboxylated osteocalcin followed by increased immunochemical detection of plasma under-gamma-carboxyla
134 tilized two-dimensional gel electrophoresis, immunochemical detection of protein carbonyls, and mass
135       The present method, when combined with immunochemical detection of protein carbonyls, should be
136  gel electrophoresis (SDS-PAGE), followed by immunochemical detection.
137 ore reverse phase separation, and postcolumn immunochemical detection.
138 n the present study we further characterized immunochemical distinctions among mouse inhibitory corti
139                              We developed an immunochemical dot blot method for quantitation of prote
140                               Histologic and immunochemical evidence of differentiation, as assessed
141 conclusions are based on pharmacological and immunochemical evidence, although these approaches are i
142                            Fractionation and immunochemical experiments indicate that this novel conf
143                                              Immunochemical experiments show that Est2p is an integra
144                                              Immunochemical experiments showed that the patient and h
145                                  We compared immunochemical findings with those from colonoscopy usin
146                       Prompted by our recent immunochemical findings, we sought evidence for an assoc
147 n degree of positivity on guaiac FOBT and on immunochemical FOBT (p<0.003).
148  for colorectal cancer by use of a sensitive immunochemical FOBT could select more appropriately thos
149                                              Immunochemical FOBT for individuals with positive guaiac
150  two samples, each from separate stools, for immunochemical FOBT while awaiting colonoscopy.
151 tal cancer screening, we advocate the use of immunochemical FOBTs as the preferred screening strategy
152 testing, molecular model visualizations, and immunochemical identification of both proteins.
153 ion of novel autoantibody, the autoantigen's immunochemical identification, clinical and magnetic res
154 ould identify the nature of the influence of immunochemical interaction constants and reagent concent
155 ical device that still provides the two-step immunochemical interactions - formation of a complex of
156                                              Immunochemical labeling showed that MUC5AC was localized
157  mouse inhibitory cortical neurons by double immunochemical labeling with chemical markers.
158                                          The immunochemical levels of KGDHC subunits Elk (-51%) and E
159                             High-performance immunochemical mapping, image registration, and quantita
160                             High-performance immunochemical mapping, image registration, and quantita
161                                 Quantitative immunochemical measurements showed that this reduction o
162      Here we report on the development of an immunochemical method for detecting sulfenic acid, the i
163  attention has shifted to the development of immunochemical methods and instrumentation to provide co
164                        Mass spectrometry and immunochemical methods demonstrate MPO-dependent formati
165                                     By using immunochemical methods in conjunction with cysteine-scan
166                            Here we have used immunochemical methods to study the structure and subcel
167                                Molecular and immunochemical methods were used to study ZNF804A messen
168      Detection of PrP(Sc) commonly relies on immunochemical methods, a strategy hampered by the lack
169 has been intensively studied using different immunochemical methods, but has never been analyzed in a
170 itation by MS also closely matched data from immunochemical methods.
171 DL) and of the LDL apoprotein as assessed by immunochemical methods.
172 iform structures can be detected by standard immunochemical methods.
173 eria content, and submitted to histological, immunochemical, molecular, and immunological analyses.
174  the surface modifications and the secondary immunochemical or enzyme-linked steps that are common in
175 o proteins was further demonstrated by using immunochemical, pharmacological, and biochemical approac
176 erns can produce the same conformational and immunochemical presentation on sodium dodecyl sulfate-ge
177                                 Utilizing an immunochemical probe for oxidatively modified proteins,
178 alian ecto-ATPases and were used as specific immunochemical probes to identify non-cross-linked and c
179 The results demonstrate the potential of the immunochemical procedure reported here to rapidly screen
180  with the aim to develop rapid and practical immunochemical procedures for trifloxystrobin determinat
181 s maximal gel mobility retardation and final immunochemical profile at substoichiometric phosphorylat
182                             Furthermore, the immunochemical profile of innervation was altered in som
183 ulins according to their electrophoretic and immunochemical properties.
184 ted to a substrate, followed by quantitative immunochemical protein detection, known to be particular
185                                    After the immunochemical reaction, the CdSNP are dissolved and the
186       Accordingly, we asked whether distinct immunochemical reactions might occur after xenotransplan
187 r the rapid and accurate characterization of immunochemical reactions that forms part of screening pr
188                                     Once the immunochemical reactions took place on the magnetic bead
189 comparison of electrophoretic mobilities and immunochemical reactivities before and after neuraminida
190                            Consequently, the immunochemical reactivities of 1,176 combinations of hum
191 ization-time of flight mass spectrometry and immunochemical reactivity using antibodies directed to 4
192                      With recently developed immunochemical reagents, we confirm this interaction and
193  Ab response to this antigen and the lack of immunochemical reagents.
194                          The biochemical and immunochemical results demonstrated that linkage specifi
195                    In addition, the obtained immunochemical results with naturally contaminated sampl
196                                           An immunochemical screen revealed that polypeptides of 58 a
197                      A rapid high-throughput immunochemical screening (HtiS) procedure for the analys
198   This study provides additional support for immunochemical similarities between Al-induced NFD in ra
199  between stiff byssus and the soft tissue by immunochemical staining and confocal Raman imaging, impl
200                         Phosphorylated opsin immunochemical staining and in vitro phosphorylation ass
201                                              Immunochemical staining demonstrates the distribution of
202      When methylation status was compared to immunochemical staining for E-Cadherin, we found signifi
203 A total of 88% of the 28-day cells exhibited immunochemical staining for GM-CSF.
204  expression and EBV presence was verified by immunochemical staining of EBV(+) and EBV(-) DLBCL, sugg
205                                              Immunochemical staining of human lung sections showed th
206                                              Immunochemical staining of liver sections indicated that
207 vo marker of perfused vessels, combined with immunochemical staining of PECAM-1 (CD31) as a marker of
208                                              Immunochemical staining of sentinel lymph nodes (SLNs) a
209  (70 days) and aged (200 days) adults, using immunochemical staining of the dendritic associated prot
210                                              Immunochemical staining of tissues from patients with MA
211                                              Immunochemical staining revealed colocalization of EGFR
212  of TGF-beta protein was also compared using immunochemical staining technique, and circulating level
213 xpression and subjected to dual fluorescence immunochemical staining using antibodies against Pgp, BC
214 ctrophoresis followed by electroblotting and immunochemical staining using monospecific antibodies ag
215  be present prominently at the sperm head by immunochemical staining with its specific mAb kdn3G.
216                                              Immunochemical staining with polyclonal antibodies showe
217 e detectable in inguinal lymph nodes by dual immunochemical staining.
218 ine were used for genetic cell targeting and immunochemical staining.
219 cimens were sent to a central laboratory for immunochemical staining; treating clinicians were blinde
220                                           By immunochemical studies and PCR, we confirmed previous st
221                        Affinity labeling and immunochemical studies characterized brucipain as the K1
222                            Compositional and immunochemical studies demonstrated a zwitterionic charg
223                                              Immunochemical studies demonstrated high levels of A ant
224 presence of fusion pores, and immunoAFM, and immunochemical studies demonstrated t-SNAREs to localize
225                                              Immunochemical studies demonstrated that t-SNAREs, NSF,
226                                              Immunochemical studies detected cytochrome P450 LAomega
227                                              Immunochemical studies have shown that most of the mutan
228                Subcellular fractionation and immunochemical studies indicate that LOX-1 is naturally
229                                              Immunochemical studies indicate that the GP-COL-1 protei
230                                 Furthermore, immunochemical studies localized F329 in the FepA ligand
231 CCX modular arrangements was correlated with immunochemical studies of C4A and C4B protein polymorphi
232                                              Immunochemical studies of conditioned medium demonstrate
233  against LanCL1 was generated and applied to immunochemical studies of spinal cord tissue from SOD1G9
234 a novel molecule, gp44, were observed during immunochemical studies on the expression of Qa-1b molecu
235 re of renal AA omega-hydroxylation kinetics, immunochemical studies revealed participation of two P45
236 nce from imaging, histological, genetic, and immunochemical studies support the involvement of axonal
237                                              Immunochemical studies used an affinity-purified, peptid
238 -specific probes, followed by histologic and immunochemical studies using anticytokeratin (AE1/AE3) a
239                                              Immunochemical studies with OD1 indicated that antibody
240 ay, together with in vitro kinase assays and immunochemical studies, we report that p38 MAPK plays a
241  high-performance liquid chromatography, and immunochemical studies.
242                         We have developed an immunochemical technique for the quantification of carbo
243                                        Using immunochemical techniques and high-performance liquid ch
244  The aim of this work was the development of immunochemical techniques based on recombinant antibodie
245 , three separate studies failed with various immunochemical techniques to detect AQP1 protein in adul
246 hes, it is compatible with histochemical and immunochemical techniques, as well as emerging molecular
247 based on either mass spectrometry (MS) or on immunochemical techniques, such as western blotting (WB)
248 ere studied during corneal development using immunochemical techniques: alpha 3 beta 1 integrin and a
249 ary analyses were performed, including fecal immunochemical test (FIT) as an alternative test, earlie
250 ary analyses were performed, including fecal immunochemical test (FIT) as an alternative test, earlie
251 ficity, but at a higher cost, than the fecal immunochemical test (FIT) can be used in screening.
252                                    The fecal immunochemical test (FIT) for detecting hemoglobin is us
253 ive, multitarget stool DNA test with a fecal immunochemical test (FIT) in persons at average risk for
254                                    The fecal immunochemical test (FIT) is a common method for colorec
255                                    The fecal immunochemical test (FIT) is commonly used for colorecta
256                                 Mailed fecal immunochemical test (FIT) outreach is more effective tha
257  capacity, it has been suggested that faecal immunochemical test (FIT) results could guide surveillan
258                                        Fecal immunochemical test (FIT) screening with colonoscopy sur
259 ne-time colonoscopy, sigmoidoscopy, or fecal immunochemical test (FIT) screening.
260                                    The fecal immunochemical test (FIT), as a direct measure of human
261  colonoscopy every 10 years and annual fecal immunochemical test (FIT).
262 f the 8 programs, screenings using the fecal immunochemical test annually and colonoscopy every 10 ye
263         Among patients with a positive fecal immunochemical test result, compared with follow-up colo
264 on, fecal occult blood test cards, and fecal immunochemical test tubes).
265  was detected in the wines studied in either immunochemical test, irrespective of the physicochemical
266 s were found in any of the samples by either immunochemical test, irrespective of the physicochemical
267 iac-based fecal occult blood test, the fecal immunochemical test, the multitargeted stool DNA test, a
268 tive guaiac fecal occult blood test or fecal immunochemical test.
269 he evidence supporting the use of both fecal immunochemical testing (FIT) and stool DNA (sDNA) has be
270                        Colonoscopy and fecal immunochemical testing (FIT) are accepted strategies for
271 d fecal occult blood testing (FOBT) or fecal immunochemical testing (FIT), and no screening.
272 aiac-based fecal occult blood testing, fecal immunochemical testing (FIT), multitarget stool DNA test
273  occult blood testing (HSFOBT), annual fecal immunochemical testing (FIT), or computed tomographic co
274 ning enhances patient participation in fecal immunochemical testing (FIT).
275 t screening programs worldwide rely on fecal immunochemical testing (FIT).
276    Current state-of-the-art method of Faecal Immunochemical Testing achieving sensitivity ~90%, unfor
277                                        Fecal immunochemical testing exhibits some advantages over gua
278                                        Fecal immunochemical testing is the most commonly used method
279 ter, Fullerton, California) testing or fecal immunochemical testing, and sigmoidoscopy every 5 years
280  prostate-specific antigen testing, or fecal immunochemical testing.
281               The latest generation of fecal immunochemical tests (FIT) allows for quantitation of he
282                                        Fecal immunochemical tests (FIT) were additionally performed f
283 imited on how many persons screened by fecal immunochemical tests (FIT), over multiple rounds, develo
284 al to compare the efficacy of repeated fecal immunochemical tests (FITs) and colonoscopy in detecting
285                                       Faecal immunochemical tests (FITs) are commonly used in colorec
286 he most commonly evaluated families of fecal immunochemical tests (FITs) demonstrated good sensitivit
287        BACKGROUND & AIMS: A variety of fecal immunochemical tests (FITs) for hemoglobin (Hb) are used
288                           Quantitative fecal immunochemical tests (FITs) identify individuals with co
289 cer (CRC) screening using quantitative fecal immunochemical tests (FITs) is rapidly gaining ground wo
290         Performance characteristics of fecal immunochemical tests (FITs) to screen for colorectal can
291 We investigated whether 2 quantitative fecal immunochemical tests (FITs) with the same cutoff concent
292 colorectal cancer (CRC), with biennial fecal immunochemical tests (FITs), was initiated in The Nether
293 colorectal cancer (CRC), with biennial fecal immunochemical tests (FITs), was initiated in The Nether
294 ecrease with repeated testing by using fecal immunochemical tests (FITs).
295                                        Fecal immunochemical tests are moderately sensitive, are highl
296                                         Both immunochemical tests used the same anti-total egg white
297 -based stool testing (consistent with Faecal Immunochemical Tests; FIT) or triennial colonoscopy.
298 wed greater ratios of inhibitory activity to immunochemical titer than Fas2.
299         We present evidence of within strain immunochemical variation of surface polysaccharides in p
300 n the human intestine was investigated using immunochemical, Western blotting, RT-PCR, and short-circ

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