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1 ch more effective at neutralization than its Fab fragment.
2 anised and reformatted as a human IgG gamma1 Fab fragment.
3  competition with the C1 region-specific A32 Fab fragment.
4 ex with a specifically engineered monoclonal Fab fragment.
5 ell aggregation only as an IgG, but not as a Fab fragment.
6 ents linked site-specifically to a different Fab fragment.
7 ormation (-17 Da), were also detected in the Fab fragment.
8  solved structure of an antigen-bound 4-4-20 Fab fragment.
9  CyRPA alone and in complex with an antibody Fab fragment.
10 AMD who were treated with the HtrA1-blocking Fab fragment.
11  and by cryo-EM of complexes of virions with Fab fragments.
12  whole antibody but not with its F(ab)(2) or Fab fragments.
13 a quaternary complex with three neutralizing Fab fragments.
14 f intact antibodies relative to their Fc and Fab fragments.
15 rected to the B site neutralize the virus as Fab fragments.
16 IL-17A dimer sandwiched between two CAT-2200 Fab fragments.
17 iles comparable to that of the corresponding Fab fragments.
18  and the virion in complex with neutralizing Fab fragments.
19 in at 1.9 A, both in complex with monoclonal Fab fragments.
20  compared with that of 3-4 nm for the parent Fab fragments.
21 late complexes were expressed as recombinant Fab fragments.
22 ectra with the X-ray data for three antibody Fab fragments.
23 cket formed between VH and VL domains of the Fab fragments.
24 binary and ternary complexes between SEB and Fab fragments.
25 ) delivery of a sclerostin antibody-Fab (Scl-Fab) fragment.
26 ents based on both full-sized antibodies and Fab' fragments.
27                              The most potent Fab fragment (2A4(GTP)) showed over 100-fold GTP-specifi
28 for 430 proteolytic peptide sequences of the Fab fragment (~78 900 centroids), giving ~100% coverage,
29  complex with strongly neutralizing antibody Fab fragments (8B10 and 5F10) were determined using cryo
30 lipid membranes and studied using monoclonal Fab fragments, a voltage-sensor toxin, and avidin bindin
31                             An anti-factor D Fab fragment (AFD) was generated to inhibit the alternat
32              The nucleophilic sulfide of the Fab' fragments allows for specific orientations to be ac
33                                 NT4X and its Fab fragment also rescued working memory deficits in wil
34                      However, monovalent 2D6 Fab fragments also inhibited V. cholerae motility, demon
35 enoted as Bs-F(ab)2] by linking two antibody Fab fragments, an anti-epidermal growth factor receptor
36                                Modeling of a Fab fragment and crystal structures of the P dimer into
37 ally incorporated into an anti-Her2 antibody Fab fragment and full-length IgG in Escherichia coli and
38        In this study, the first GTP-specific Fab fragment and its application are described.
39 ure of a complex between the LT1009 antibody Fab fragment and S1P refined to 1.90 A resolution.
40  preincubated with an IL-6-blocking antibody Fab fragment and subjected to injury and TNFalpha treatm
41 sed conformation is most likely bound to the Fab fragment and that the antibody contact is localized
42 rowth factor) and two monovalent proteins (a Fab fragment and the transcription factor TBP) with low
43 ographic and competition binding analyses of Fab fragments and scFvs defined three spatially distinct
44  The beads were mixed with the corresponding Fab fragments and the sample.
45 erpreted using the crystal structures of the Fab fragments and the VLP structure.
46 rd open (O(o)) conformation, stabilized by a Fab fragment, and a ligand-bound inward-facing (I(f)) co
47  examined the elbow angles for 365 different Fab fragments, and observe that Fabs with lambda light c
48 phrin type A receptor 2 (EphA2) bound to the Fab (fragment antigen binding) of an agonistic human ant
49 display library, we identified an anti-PCSK9 Fab (fragment antigen binding), 1G08, with subnanomolar
50            The crystal structure of DISC0280 Fab (fragment antigen binding), in complex with human IL
51  be attributed to cross-reactive, polyclonal Fab (fragment antigen-binding) specificities in serum as
52 ary was created with a natural repertoire of Fabs [fragment antigen binding (Fab)] from human naive B
53                                        A new Fab fragment antivenom (CroFab) for the treatment of cro
54    The increase in sensitivity obtained when Fab fragments are used instead of whole antibodies is ex
55 ing an oriented immobilization approach, the Fab' fragments are covalently attached to gold surface t
56 plex with rat monoclonal antibody YTS 105.18 Fab fragment at 2.88 A resolution.
57                                 However, the Fab' fragment-based biosensor displayed better regenerab
58 e antibodies/ethanolamine) and one optimized Fab' fragment-based surface (TUBTS/Fab' fragments) were
59                     The autoantibody and its Fab fragment bind to the thyroid stimulating hormone (TS
60                                         24E9 Fab fragments bind DBLbeta3_D4 with nanomolar affinity a
61                                          The Fab fragment binding the J1 epitope was crystallized, an
62                              Finally, an A32 Fab fragment blocked the majority of ADCC-mediating Ab a
63 T cell receptor (TCR)-like antibody 25-D1.16 Fab fragment bound to a complex of SIINFEKL peptide from
64 tion cryo-electron microscopy structure of a Fab fragment bound to CHIKV E2 B domain provided an expl
65 ystal structures: the murine antibody 125-2H Fab fragment bound to human IL-18, at 1.5 A resolution;
66 ptamine 2B (5-HT2B) receptor and an antibody Fab fragment bound to the extracellular side of the rece
67            Reconstructions of complexes with Fab fragments bound to N or C termini of PDE6gamma revea
68 tralized by the addition of the anti-beta(3) Fab fragment, c7E3, or specific ANDV- or HTNV-neutralizi
69                                        Thus, Fab fragments can adopt a conformation that is compatibl
70 (13)C NMR spectra of protease-cleaved Fc and Fab fragments can provide accurate reporters on the doma
71 ng complexes composed of three stably linked Fab fragments capable of selective delivery of radiotrac
72  In contrast, monovalent invasion-inhibitory Fab fragments caused accumulation of 66- and 52-kDa form
73 r chimeric or human in sequence, a PEGylated Fab' fragment (certolizumab), and an IgG1-TNFR2 fusion p
74   In the case of the AD-2S1 peptide, the KE5 Fab fragment complex identified nine germline-encoded co
75 urine monoclonal IgG2b(kappa) antibody NC6.8 Fab fragment complexed with high-potency sweetener compo
76                  CryoEM maps of neutralizing Fab fragments complexed with VLPs have been interpreted
77 the scFv SAM PZ is superior to Fab fragment, Fab fragment containing a free sulfhydryl group (i.e., F
78 V(H) domain between Cys22 and Cys96, and the Fab fragment, containing the unpaired cysteine residues,
79                                 Neutralizing Fab fragments cover the outer surface of each copy of th
80 ithin one trimeric spike, whereas the 3B4C-4 Fab fragment cross-links E2 proteins from neighboring sp
81                                       The F5 Fab fragment cross-links E2 proteins within one trimeric
82                       Both of these antibody Fab fragments cross-link the surface E2 glycoproteins an
83 nal ovine anti-TNF fragment antigen binding (Fab) fragments (CytoFab) on plasma TNF-alpha, interleuki
84 2+ and the bivalent (Fab)2 or the monovalent Fab fragments derived from limited proteolysis of the co
85 TGN1412 was investigated using F(ab')(2) and Fab fragments derived from TGN1412 recovered from the tr
86       Monoclonal antibody fragments included Fab' fragments derived from C225, which binds both EGFR
87 highly potent anti-human interleukin (IL)-13 Fab fragment designed for administration by inhalation.
88 ellular domain (ECD) complexed to the ABT007 Fab fragment, determined at 0.32 nm, identifies a bindin
89 ate exocytosis, because the W6/32 monovalent Fab fragment did not activate VWF release, but the bival
90              In contrast, the monovalent 2F5 Fab fragment did not exhibit any appreciable change in n
91 ar measurements in the presence of anti-CS20 Fab fragments did not show any effect, indicating that b
92                                          The Fab fragment differed from the intact antibody only in t
93                             Certain antibody Fab fragments directed against the C terminus of outer s
94                                        Bound Fab' fragments display higher surface densities, yieldin
95 are required for enhanced binding, since 3G4 Fab' fragments do not bind EC with exposed PS.
96               Structurally, the E16 antibody Fab fragment engages 16 residues positioned on four loop
97 esult from their bivalent nature: monovalent Fab fragments exhibited a similar affinity for the fibri
98                                          The Fab fragment exhibits novel complementarity determining
99                The footprint of the ZIKV-195 Fab fragment expands across two adjacent envelope (E) pr
100                  It combines high-throughput Fab fragment expression and purification with surface pl
101 plex with two strongly neutralizing antibody Fab fragments (F5 and 3B4C-4) have been determined using
102             One peptide is conjugated to the Fab' fragment (Fab'-CCE), the other is conjugated in mul
103 onucleotide (MORF1) attached to an anti-CD20 Fab' fragment (Fab'-MORF1); (2) multiple copies of compl
104 ata show that the scFv SAM PZ is superior to Fab fragment, Fab fragment containing a free sulfhydryl
105 as to use (64)Cu-labeled anti-CD105 antibody Fab fragment for noninvasive assessment of angiogenesis
106 1 cleavage results in formation of identical Fab fragments for each of the molecular forms, thereby a
107 ful radiotracers (e.g., (99m)Tc, (188)Re) to Fab fragments for potential noninvasive imaging and ther
108  are functionalized with anti MC-LR antibody Fab' fragments for the selective capture of MC-LR from a
109 ncept using bovine serum albumin (BSA) and a Fab fragment from a BSA-binding polyclonal antibody.
110 mmune responses of rat lymph node cells by a Fab fragment from a CD5 mAb shown to block homophilic in
111 ain 1 was inhibited by mutation or by IgG or Fab fragment from a CD5 mAb.
112 have determined the crystal structure of the Fab fragment from F105, a broadly reactive human antibod
113 revious study, repertoire cloning to recover Fab fragments from bone marrow mRNA of chimpanzees infec
114 interested in the codon usage of an antibody Fab fragment gene exhibiting extreme toxicity in the E.
115                         Moreover, monovalent Fab fragments generated from the purified IgG of three o
116 -PcpA, and -Ply antibodies were purified and Fab fragments generated.
117 H-induced phosphorylation, whereas monomeric Fab fragments had no effect.
118                            The nature of the Fab' fragment had an influence on its residence time as
119 rogation of intact antibodies or F(ab')2 and Fab fragments has the potential to significantly streaml
120                                     Antibody Fab fragments have been exploited with significant succe
121    Using this technique, monoclonal scFv and Fab fragments have been produced that bind to the 51-kDa
122  as well as their complexes with each of two Fab fragments (HuM-P and HuM-R1), which recognize N- and
123 , we determined the crystal structure of 5G6 Fab fragment in complex with its epitope peptide KL10 (G
124 ture of the linear-linkage-specific antibody Fab fragment in complex with linear diubiquitin provides
125 l structure of an anti-LPA antibody (LT3015) Fab fragment in its antigen-free form to 2.15 A resoluti
126 sical properties of a selection of humanised Fab fragments in a number of assays allowed us to select
127 ic constants (kon and koff) for 96 different Fab fragments in a single experiment.
128 c level, we determined crystal structures of Fab fragments in complex with Abeta.
129 ere are two crystallographically independent Fab fragments in the asymmetric unit.
130    The extracellular surface location of the Fab fragments in the map is consistent with the membrane
131 d domain interactions for IgG antibodies and Fab fragments in the structural database.
132      Here, the crystal structure of the B4e8 Fab' fragment in complex with a 24-mer V3 peptide (RP142
133 fect on the residence time of an anti-IL-17A Fab' fragment in the lungs of mice.
134 given to show the versatility of immobilized Fab' fragments in different applications and future dire
135 dence time of the anti-IL-17A and anti-IL-13 Fab' fragments in the lungs but PEGylation was able to p
136 lly, we engineer mouse hybridomas to secrete Fab' fragments instead of the whole Ig.
137 lographically determined structures of these Fab fragments into the cryo-electron density maps, we sh
138 Sequence analysis of 55 6B-specific antibody Fab fragments isolated from six vaccinated donors reveal
139 ing proteins, each consisting of 2 identical Fab fragments linked site-specifically to a different Fa
140 eir variable segments, suggesting that bound Fab fragments may neutralize the inhibitory effect of ne
141                           Neither H-specific Fab fragments nor H-specific IgM could enhance MV entry
142                            The structures of Fab fragments not determined crystallographically were p
143 dothelial cell activation, whereas monomeric Fab fragments not only did not cause activation, but blo
144 e Fab fragment of MA28-7 shows that only one Fab fragment occupies each 5-fold vertex.
145 d alphaVbeta3 ectodomain in complex with the Fab fragment of 17E6.
146  burnetii infection, we examined whether the Fab fragment of 1E4 (Fab1E4), a recombinant murine singl
147 cture of the HCMV gB ectodomain bound to the Fab fragment of 1G2, a neutralizing human monoclonal ant
148 mbinant PAK pilin peptide in complex with an Fab fragment of a cross-reactive monoclonal antibody, PA
149 /2013, French Polynesia) in complex with the Fab fragment of a highly therapeutic and neutralizing hu
150 ies of the GI.1 P domain in complex with the Fab fragment of a human IgA monoclonal antibody (IgA 5I2
151 f a soluble form of CD28 in complex with the Fab fragment of a mitogenic antibody.
152 ether bond modification was confirmed in the Fab fragment of a monoclonal antibody by LC-MS and nonre
153                                          The Fab fragment of a monoclonal IgM cleaved gp120, suggesti
154                                           An Fab fragment of a monospecific antibody, which binds to
155 .4 angstrom resolution of VP7 bound with the Fab fragment of a neutralizing monoclonal antibody.
156 terferon alpha-2A (IFN-alpha2A) bound to the Fab fragment of a therapeutic monoclonal antibody (sifal
157 etermined the X-ray crystal structure of the Fab fragment of Ab52 and derived an antibody-antigen com
158 e, we describe the crystal structures of the Fab fragment of AL-57 in complex with IA, as well as in
159  structure to 1.8 angstrom resolution of the Fab fragment of an affinity-matured human monoclonal ant
160 ere we describe the crystal structure of the Fab fragment of an antagonistic monoclonal antibody KTN3
161 l means of antigen recognition, in which the Fab fragment of an antibody acts as an adaptor, linking
162 ex formed by LTalpha1beta2, LTbetaR, and the fab fragment of an antibody that blocks LTbetaR activati
163  linked to the C terminus of the heavy chain Fab fragment of an HIV-1 envelope antibody.
164  our results to the crystal structure of the Fab fragment of anti-Le(x) mAb 291-2G3-A complexed with
165 The co-crystal structure of Shh bound to the Fab fragment of ch5E1 reveals that 5E1 binds at the pseu
166 ructure of the Michaelis complex between the Fab fragment of ferrochelatase antibody 7G12 and its sub
167 I domain of the alpha1beta1 integrin and the Fab fragment of humanized AQC2 antibody.
168 th HepG2 cells in culture indicated that the Fab fragment of M27 does not block binding and uptake of
169  structure of a complex between EV71 and the Fab fragment of MA28-7 shows that only one Fab fragment
170  We determined the crystal structures of the Fab fragment of mAb 107 complexed to the low- and high-a
171                               Binding of the Fab fragment of mAb 107 to CD11bA did not trigger the ac
172                 Upon binding to Der p 1, the Fab fragment of mAb 10B9 was found to form a very rare a
173 rystal structure of the epitope bound to the Fab fragment of MAb 2F5 has shown that the 2F5 peptide a
174 ure of the nAChR alpha1 subunit bound by the Fab fragment of mAb35, a reference monoclonal antibody t
175 ect evaluated deuterium uptake data from the Fab fragment of NISTmAb reference material (PDB: 5K8A )
176 tal structure of the ECD in complex with the Fab fragment of one antibody, mAb1, reveals that this an
177        Here, we present the structure of the Fab fragment of such an antibody.
178       The structure of a complex between the Fab fragment of the antibody (SYA/J6) specific for the c
179 e reported for mesoporphyrin IX bound to the Fab fragment of the ferrochelatase antibody 7G12.
180                The crystal structures of the Fab fragment of the germ-line precursor antibody to 7G12
181                       PNU-214936 is a murine Fab fragment of the monoclonal antibody 5T4 fused to a m
182 mice (MVMi) in complex with the neutralizing Fab fragment of the mouse monoclonal antibody (MAb) B7 w
183                                              Fab fragment of the recombinant human IgG was analyzed d
184      The structure of WNV complexed with the Fab fragment of the strongly neutralizing mAb E16 was de
185 s of the 'highly ordered' interaction of the Fab fragment of this antibody (Fab-2H10) with VEGF-B.
186 e crystal structure of C3b in complex with a Fab fragment of this antibody (S77) illustrates the stru
187                                              Fab fragment of TRC105, a mAb that specifically binds to
188 Here, we report the crystal structure of the Fab fragment of Z13e1, an affinity-enhanced variant of m
189       The crystal structures of four related Fab fragments of a family of catalytic antibodies displa
190                                              Fab fragments of a monoclonal IgM Ab expressed catalytic
191 modeling to visualize capsids decorated with Fab fragments of a receptor immunoglobulin, and surface
192                                  Addition of Fab fragments of an FcgammaRIIa-specific monoclonal anti
193 ), followed by dual enzymatic labeling using Fab fragments of anti-Dig and anti-FITC conjugated to pe
194 , although monovalent HEL, unlike monovalent Fab fragments of anti-Ig, readily triggered the BCR.
195                                 In contrast, Fab fragments of antibody 5F10 bind the tip of the E2 B
196 the cryo-electron density maps, we show that Fab fragments of antibody 8B10 extend radially from the
197  radii; (ii) determination of the binding of Fab fragments of anticapsular antibodies as a measure of
198 rminal half of the TcdB CROP domain bound to Fab fragments of bezlotoxumab.
199 termined the structure of WNV complexed with Fab fragments of CR4354 using cryoelectron microscopy.
200 resolution of 2.5 A of a complex between the Fab fragments of E1 and HM14c10 and provide the first de
201 resolution of 2.5 A of a complex between the Fab fragments of E1 and HM14c10 provides the first detai
202 f 8A11 with saturating concentrations of the Fab fragments of goat antibodies directed against the Fc
203 oreover, Lmsp1 binds to both purified Fc and Fab fragments of IgG from both humans and rabbits.
204  over intact IgG, as observed in the case of Fab fragments of MAb 4G2dc1.
205                       Structural analyses of Fab fragments of mAbs 023.102 and pn132p2C05 in complex
206 al structures of Der p 1 in complex with the Fab fragments of mAbs 5H8 or 10B9.
207             Blocking of BDCA-2 and DCIR with Fab fragments of monoclonal antibodies preserves the cap
208                             Here we used the Fab fragments of new monoclonal anti-FcRH1 antibodies an
209                                     Purified Fab fragments of NMO-IgG showed similar patterns of AQP4
210                                              Fab fragments of PG102, while retaining CD40 binding, di
211 ide (LPS), polyclonal anti-R. conorii serum, Fab fragments of polyclonal antiserum, or no antibodies
212                                    Moreover, Fab fragments of polyclonal IgG that fail to cross-link
213                   Co-crystal structures with Fab fragments of protective antibodies will further deli
214 rystallized Factor IX-(1-47) in complex with Fab fragments of the 10C12 antibody.
215 bited by preincubation of the platelets with Fab fragments of the FcgammaRIIa-specific mAb IV.3 or wi
216                            Additionally, the Fab fragments of the mAbs were able to enter neurons, bu
217                            Here we have used Fab fragments of the neutralizing antibody DV2-E104 to s
218             This was accomplished by binding Fab fragments of the neutralizing antibody DV2-E104 to t
219 dies, monoclonal antibodies to OmpA or OmpB, Fab fragments of the polyclonal antibodies, or normal se
220 structure of the ZIKV virion in complex with Fab fragments of the potently neutralizing human monoclo
221 tructures of the EV71 virion in complex with Fab fragments of these potent and protective antibodies
222  structures of the allergens in complex with Fab fragments of three murine mAbs that interfere with I
223        We have investigated complexes of the Fab fragments of two antibodies that have parasite inhib
224 1 primary isolate spike, we crystallized the Fab fragments of two mAbs, GE136 and GE148.
225             In this study, we focused on the Fab fragments of two monoclonal antibodies, E1 and 3120.
226 D4-stabilized gp120 cores complexed with the Fab fragments of two nonneutralizing, A32-like monoclona
227 he German cockroach allergen Bla g 2 and the Fab' fragment of a monoclonal antibody 7C11 was solved a
228                The crystal structures of the Fab' fragment of H5M9 in complexes with H5 HAs of A/Viet
229  and CCK, forming antiparallel heterodimers; Fab' fragment of the 1F5 anti-CD20 antibody; and N-(2-hy
230 articles are reacted with the free thiols of Fab' fragments of an anti-alkaline phosphatase (ALP) ant
231 unoliposomes were constructed modularly with Fab' fragments of cetuximab (IMC-C225), covalently linke
232       However, treatment of Y7A KI mice with Fab' fragments of the function-blocking anti-CLEC-2 anti
233 n antibody; 5C4, a fragment antigen-binding (Fab fragment) of monoclonal rat immunoglobulin G; and m-
234 ified high affinity or bivalent single chain Fab fragments, offering higher specificity and possibili
235 ientation of the self-assembled monolayer of Fab' fragments on the gold-coated particles compared to
236 one and pendant MORF2, and comparison of two Fab' fragments, one from 1F5 antibody (Fab'1F5), the oth
237 required receptor dimerization as monovalent Fab fragments only eliminated receptor levels or reduced
238 tremendous progress in the immobilization of Fab' fragments onto gold, Si-based, polysaccharide-based
239                      CDP860 is an engineered Fab' fragment-polyethylene glycol conjugate, which binds
240 d by proteolytic cleavage of immunoglobulin, Fab fragments possess great promise as blocking reagents
241                                 A monovalent Fab fragment prepared from the native protein and a biva
242 ng and internalization of surface NMDARs, as Fab fragments prepared from patients' antibodies did not
243                      Binding of the DV2-E104 Fab fragments prevents domain III from rotating by about
244 e demonstrate that the antibody NT4X and its Fab fragment reacting with both the free N-terminus of A
245                                  Recombinant Fab fragments recognizing different conformations of thi
246  anti-beta(3) antibodies such as c7E3 or its Fab fragment ReoPro prevents hantavirus entry.
247 atic, exposure of V. cholerae to 2D6 IgA (or Fab fragments) resulted in a 5-fold increase in surface-
248 chia coli ClC channels bound to a monoclonal Fab fragment reveal three Cl- binding sites within the 1
249     X-ray crystallography of an anti-E-gp120 Fab fragment revealed two neighboring cavities, the typi
250 on with small interfering RNAs and anti-CD63 Fab fragments revealed that CD63 itself was not required
251 n issue in the development of the biosensor, Fab' fragments should be chosen as they are relatively c
252       We developed a ligand-mimetic antibody Fab fragment specific for Drosophila alphaPS2betaPS inte
253                                          The Fab fragments stabilized the position of the B domain re
254                         This antibody or its Fab fragments substantially decreased the level of bindi
255 were also disrupted by a monovalent A45-B/B3 Fab fragment, suggesting that the binding of the antibod
256 ix E monomers within one raft by four CR4354 Fab fragments suggests that the antibody neutralizes WNV
257                 An engineered human antibody Fab fragment that binds to the P. aeruginosa PcrV protei
258 acting the maleimide-derivatized trastuzumab Fab fragments that bind HER2 with a thiolated form of th
259  Certolizumab pegol is a pegylated humanized Fab' fragment that binds tumor necrosis factor alpha.
260  a recombinant, PEGylated, engineered, human Fab' fragment that specifically binds to a Pseudomonas a
261 smon resonance revealed a dense monolayer of Fab' fragments that are on average 90% active when speci
262 because both whole IgG anti-CD73 AD2 mAb and Fab' fragments thereof exhibited this effect.
263 r with the neutralizing capacity of the 3/11 Fab fragment, this indicates an unexpected structural fl
264  and EGFR on BC cells by linking trastuzumab Fab fragments through a polyethylene glycol (PEG24) spac
265        The similar binding properties of 5G6 Fab fragment to GPIbalpha on human platelets as those to
266 s study, we have developed an HtrA1-blocking Fab fragment to test the therapeutic hypothesis that Htr
267   The affinities of intact rituximab and its Fab fragment to the isolated and purified CD20 are simil
268 of a Fc-specific anti-human immunoglobulin G Fab fragment to the virus-antibody mixture prior to infe
269          In an in vitro system, tethering of Fab fragments to DNA ends inhibits MRX-mediated DNA end
270                               Using blocking Fab fragments to each Plg-R, H2B supported approximately
271 rful platform for multimerizing antibody and Fab fragments to enhance the capabilities of human thera
272 nding of FITC-labeled 23G3 intact Ab and its Fab' fragment to cell-surface IgE.
273 echnetium-99m-labeled deimmunized antifibrin Fab' fragments to diagnose thromboemboli using single ph
274 o immobilize whole anti-PTHrP antibodies and Fab' fragments to surfaces as biorecognition elements.
275  of intact mAb and fragment antigen-binding (Fab) fragments to platelets showed that affinity is incr
276      Passive transfer of antibodies, but not Fab fragments, to E. muris protected C3H/SCID mice again
277                     We used a ligand-mimetic Fab fragment, TWOW-1, to assess talin's role in regulati
278                                  We selected Fab fragments using the phage display technology.
279 ty of an HA-specific MAb (VN and YR) and its Fab fragment (VN) by intranasal (i.n.) administration to
280 holo-PDE6 in complex with the ROS-1 antibody Fab fragment was determined by cryo-electron microscopy.
281               The crystal structure of ch8H9 Fab fragment was solved to 2.5-A resolution and used as
282  IgG, and the neutralization efficacy of E33 Fab fragments was not affected by changes in the virion
283 L with neutralizing monoclonal antibodies or Fab' fragments was also consistent with a two-step react
284 eding bacterial motility, whereas monovalent Fab fragments were 5- to 10-fold less effective.
285                                              Fab fragments were attached to 'voltage sensor paddles'
286      Crystal structures of the corresponding Fab fragments were determined in complex with hypusine-
287                                          Six Fab fragments were found against 2'/3'-GTP-biotin and 8-
288 the recipients of anti-LPS antibodies or the Fab fragments were not protected.
289 as not required for protection because C3.78 Fab' fragments were as effective as whole antibody molec
290 optimized Fab' fragment-based surface (TUBTS/Fab' fragments) were tested as biosensors.
291 herapeutic monoclonal antibody and a related Fab fragment, were combined to investigate the impact of
292  (single chain variable and antigen-binding (Fab) fragments), which recognize the structurally divers
293 G2 and the crystal structure of the antibody Fab fragment, which was solved at 2.4 A resolution.
294    We characterize these monoclonal antibody Fab fragments, which are known to abrogate VEEV infectiv
295                   Thus, masking the anti-CD3 Fab fragment with an anti-idiotypic mask and cleavage of
296 al structure of the complex between C5 and a Fab fragment with the same sequence as eculizumab at a r
297 and pharmacodynamics (PD) of 2F5 IgG and 2F5 Fab fragments with respect to protection against vaginal
298 f delivery of the anti-IL-17A and anti-IL-13 Fab' fragments within the lungs had a major impact on th
299               However, a novel CD4i-specific Fab fragment, X5, has recently been found to neutralize
300                   The immobilization of only Fab' fragments yields benefits over the more traditional

 
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