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1 phore-bridge-electrode nonadiabatic electron transfer system.
2 coupled to chicken gamma-globulin, in a cell transfer system.
3 s genome with a genetic marker rescue/marker transfer system.
4 c foamy viruses (FV) are an alternative gene-transfer system.
5 sisting antibodies to components of the gene transfer system.
6 eport the discovery of a new class of energy-transfer system.
7  obtained for VirB4, a second ATPase of this transfer system.
8 in)-infected cells, using an adenovirus gene transfer system.
9 une activity were assessed using an adoptive transfer system.
10 matory forms of antigen in a T cell-adoptive transfer system.
11 wo independent replicons to produce a binary transfer system.
12 nhancing the efficiency of this in vivo gene transfer system.
13  of RP4 and to VirD4 of the Ti plasmid T-DNA transfer system.
14 sence of a genetically tractable anterograde transfer system.
15 ockout (FVIII-KO) mice using a nonviral gene-transfer system.
16  transfer system and a related single proton transfer system.
17 er to arrive at an optimal, phage-based gene transfer system.
18 g a standardized protocol with an integrated transfer system.
19 nique nature of the M. smegmatis chromosomal transfer system.
20 ere used to inhibit arthritis in an adoptive transfer system.
21 ions for the design of more effective charge-transfer systems.
22 lar thermo-photovoltaics and nano-scale heat transfer systems.
23 t a model for the evolution of this group of transfer systems.
24  different from that of prototypical plasmid transfer systems.
25  share extensive homology with many conjugal transfer systems.
26  been hindered by the lack of effective gene transfer systems.
27 he incorporation of emissive AuNPs in energy transfer systems.
28 able of plugging pipets and automated liquid-transfer systems.
29 ming the lentivirus of choice for human gene transfer systems.
30 retion apparatus similar to type IV conjugal transfer systems.
31 ivo yeast two-hybrid and fluorescence energy transfer systems.
32 t gene therapy protocols use retroviral gene transfer systems.
33 mids of Agrobacterium tumefaciens encode two transfer systems.
34  the construction of supramolecular electron transfer systems.
35  are conveniently modeled by the K/BxN serum transfer system, a robust model well suited for genetic
36 robacterium tumefaciens transfer DNA (T-DNA) transfer system, a type IV secretion pathway required fo
37    In an OVA-TCR class I-restricted adoptive transfer system, administration of anti-Ox40 strongly en
38 ent of an extracellular matrix (ECM)-to-cell transfer system allowing efficient infection of primary
39 asured experimentally for this double proton transfer system and a related single proton transfer sys
40 hots support a model for biogenesis of the F transfer system and allow for detailed comparisons with
41                            Using an adoptive transfer system and an erythroid-specific knockout syste
42 ued work on development of a chlamydial gene transfer system and application of genomic approaches to
43 vo endothelial cell-specific retroviral gene transfer system and found that a single Kaposi's sarcoma
44 ng type II cell line using the SB-based gene transfer system and found that hIDO-overexpressing lung
45                            Using an adoptive transfer system and plasticity-prone Mir146a(-/-) Tregs,
46 ve electrons from the extracellular electron transfer system and support L. monocytogenes growth.
47 nd compare the characteristics of these gene transfer systems and conclude that, although significant
48 4 vs CD8 cells using TCR transgenic adoptive transfer systems and soluble gp96-peptide complexes.
49 nt of versatile cloning vectors, robust gene transfer systems and transposable elements.
50 pecifically, an integrative approach of gene transfer, systems and brain slice electrophysiology, beh
51 nce similarity to genes encoding conjugative transfer systems, and it is believed that they are respo
52   In an OVA-TCR class II-restricted adoptive transfer system, anti-Ox40 treatment greatly enhanced th
53 e constants for the single and double proton transfer systems are in agreement with the experimental
54                                         Most transfer systems are plasmid-encoded and require protein
55 sion, and AAV vectors, similar to other gene transfer systems, are being evaluated for delivery of re
56 ons of the global soil-vegetation-atmosphere transfer system as advances in plant physiological and h
57                                         This transfer system, assembled from the products of the virB
58 framework of a highly efficient N-uptake and transfer system based on mycorrhizas, with c.
59 avoid this concern, we have constructed gene transfer systems based on a nonprimate lentivirus, bovin
60 realize a radically different class of power transfer system, based on a wave, whose existence has be
61 rate constant is lower for the double proton transfer system because of the smaller overlap integral
62 adrenodoxin P450 and photosynthetic electron-transfer systems but is different from the kinetic contr
63 FMN serves as a redox centre in the electron-transferring system by mediating the electron transfer f
64  In both sexes, PB125 (1) increased electron transfer system capacity; (2) attenuated the disease/age
65                  In an in vitro minus-strand transfer system consisting of a (-) SSDNA mimic and a TA
66 cription of excited state dynamics in energy transfer systems constitutes a theoretical and experimen
67 t that the HSV-tk/GCV metabolic suicide gene transfer system could serve as an adjuvant of the presen
68 eponema, Salmonella, and Bacillus phosphoryl-transfer systems could be demonstrated.
69 lic acid cycle to the mitochondrial electron transfer system creates ambiguities regarding respirator
70                  The tissue culture and gene transfer systems currently employed to produce these tra
71 h, suggested the use of alternative electron transfer systems dependent on growth modality.
72 al graphical representations of the electron transfer system depict FADH(2) in the mitochondrial matr
73                      The autologous adoptive transfer system described in this study reveals novel fe
74            We describe herein a novel charge transfer system designed with BiVO(4) as a prototype.
75 res has been limited to donor/radical charge-transfer systems due to the poor luminescence of alterna
76 of inflammatory arthritis in the K/BxN serum transfer system, either preventively or therapeutically.
77                                      Two DNA transfer systems encoded by the tumor-inducing (Ti) plas
78                            For pure pathogen transferring, system equilibria can be derived analytica
79 ndrial density and the abundance of electron transfer system (ETS) complexes I-IV and ATP-synthase as
80                       Mitochondrial electron transfer system (ETS) complexes, mRNA transcripts relate
81 in traG(RP4) with defined effects on the RP4 transfer system exhibited similar phenotypes for Ti plas
82 tection from arthritis using the K/BxN serum-transfer system, focused on the effector phase of inflam
83                To establish a wireless power transfer system for an electric vehicle, optimal power a
84 e there is no reliable laboratory-based gene transfer system for C. trachomatis, in vitro generation
85 placement or a special, bulky wireless power transfer system for continuous device operation, respect
86                         A chiral anion phase-transfer system for enantioselective halogenation is des
87 in) reductase (Fpr) can serve as an electron-transfer system for microsomal cytochrome P450s.
88  barrier to a fully successful nonviral gene transfer system for the liver.
89 nodeficiency virus type 1 (HIV-1)-based gene transfer systems for delivery of genes into nondividing
90 ecent advances in the development of genetic transfer systems for the Archaea provide the first glimp
91                     A peptide-based electron-transfer system has been designed in which the specific
92                              This novel gene transfer system has the potential to confer long-term ep
93                             A number of gene transfer systems have been designed that enable the gene
94  trees closer to reality, and efficient gene transfer systems have been developed for a number of con
95 stems of care, and particularly pre-hospital transfer systems, have to be changed.
96           A novel and functional conjugative transfer system identified in O119:H2 enteropathogenic E
97  component of the energy-conserving electron transfer system in methanogens.
98  describe novel aspects of a chromosomal DNA transfer system in Mycobacterium smegmatis.
99  study, we took advantage of a dual-adoptive transfer system in the mouse to simultaneously follow th
100 nvasion initiation site using a minus strand transfer system in vitro, containing the 97-nucleotide f
101 ly, the increased interest in utilizing this transfer system in vivo has posed new problems for heter
102 duced into the eye, we have used an adoptive transfer system in which a limiting number of OVA peptid
103 theria toxin, with a TCR-transgenic adoptive transfer system in which either naive or Th1 effector CD
104 immunogenic APC function we used an adoptive transfer system in which naive TCR transgenic hemaggluti
105 address this issue, we have used an adoptive transfer system in which naive TCR transgenic hemaggluti
106 Similar results were obtained in an adoptive transfer system in which TCR transgenic T cells were tra
107 amental challenge to create a wireless power transfer system in which the transfer efficiency is robu
108 netic studies owing to the discovery of gene-transfer systems in these genera.
109 g the contact electrification induced charge transfer systems in triboelectric nanogenerators in futu
110 embrane subunits of the A. tumefaciens T-DNA transfer system, in E. coli and homotypic complexes of V
111     We have therefore used a double-adoptive transfer system, in which all of the above events can be
112  more complex anaerobic and aerobic electron transfer systems indicates that this is a versatile fold
113   Here, we demonstrate a prebiotic phosphate transfer system involving an ATP analog (imidazole phosp
114           Herein, we developed a unique cell transfer system involving the adoptive transfer of a gen
115  harmonics generation in the extended charge-transfer system is augmented by the effective electronic
116                                          The transfer system is chromosomally encoded and requires re
117 By contrast, the Mycobacterium smegmatis DNA transfer system is chromosomally encoded.
118                                         This transfer system is most like conjugal DNA transfer in th
119 omponent of the ascorbate-dependent electron transfer system is necessary to detoxify H(2)O(2), which
120     A multichannel pipet or automated liquid-transfer system is used to transfer sample aliquots with
121       Development of safe and effective gene transfer systems is critical to the success of gene ther
122 ne of the most efficient conjugative plasmid transfer systems known in bacteria.
123 shaping devices, nonradiative wireless power-transfer systems, microscopy, and lithography.
124                            Using an adoptive transfer system, migration of nonlymphoid memory cells w
125                                  An electron transfer system of NADPH, spinach NADPH-ferredoxin oxido
126 xylic acid cycle and is part of the electron transfer system of the mitochondrial inner membrane feed
127 e, thus accounting for the activation of the transfer system of this plasmid by the two opine types.
128 trate interactions exist among the three DNA transfer systems of Agrobacterium.
129 oded by traA share lineage with those of the transfer systems of RSF1010 and plasmid F, while genes o
130 d VirD4 from the conjugal transfer and T-DNA transfer systems of Ti plasmids, are believed to dictate
131 le, and a repeater coil-based wireless-power-transfer system operating at the body scale.
132              Using a DO11.10 T cell adoptive transfer system, OVA-specific T cell IL-4 production and
133 alogenated organics, donor-acceptor electron-transfer systems, polyhalide ionic liquids, and others.
134 ms with a well characterized horizontal gene transfer system, possessing a suite of oncogenes that, w
135                      Two poised one-electron transfer systems (potassium ferricyanide/ferrocyanide an
136 h the DM13 domain comprises a novel electron-transfer system potentially involved in oxidative modifi
137       Taken together, this unique eosinophil transfer system provides an unprecedented opportunity to
138 r sugar branches of the bacterial phosphoryl transfer system (PTS).
139 ilution rate) and methanogen on the electron transfer systems, ratios of interspecies electron carrie
140 for physical connections, the wireless power transfer system reduces potential heating effects and lo
141 ~72.5% after 500 cycles, and the sealed heat transfer system showed an increased thermal conductivity
142  of site-specific inhibitors of the electron transfer system showed that NAD(+) regenerated by Comple
143  not have obvious orthologs in other type IV transfer systems, since these determinants could govern
144 ently, several primate lentivirus-based gene transfer systems, such as those based on human and simia
145 ic T cells and established a neonatal T cell transfer system suitable for these investigations.
146                         Similarly, in a cell transfer system, T cell responses to OVA measured in viv
147                                         Gene transfer systems targeting various receptors have been d
148 eveloped a simple Salmonella-specific T cell transfer system that allowed direct visualization of hep
149 y (SB) transposon is a natural nonviral gene transfer system that can mediate long-term transgene exp
150                            Using an adoptive transfer system that enables tracking of OVA-specific CD
151 pears to constitute components of a conjugal transfer system that has been adopted to prevent phagoso
152 a stretchable battery and a stretchable heat transfer system that involve volatile fluids, including
153 erized a flavin-based extracellular electron transfer system that is present in the foodborne pathoge
154                            The use of a tape transfer system that obviates the need to wet paraffin s
155 ferred by the Qmo-MQ-Qrc loop as an electron transfer system that permits higher lactate oxidation ra
156                We present a high-vacuum cryo-transfer system that streamlines the entire handling of
157 ystems are highly promiscuous macromolecular transfer systems that impact human health significantly.
158 assembling components in electron and energy transfer systems that utilize DNA as a scaffold and/or p
159            We demonstrate, using an adoptive transfer system, that the ability of the central nervous
160      In the mammalian mitochondrial electron transfer system, the majority of electrons enter at comp
161 interrelated cellular high energy phosphoryl transfer systems through which the majority of newly gen
162 udy, we used a TCR-transgenic mouse adoptive transfer system to assess whether CY plus IL-2 treatment
163 e WldS phenotype, we used an adenoviral gene transfer system to deliver the WldS to rat DRG neurons.
164 ent study, we used a TCR transgenic adoptive transfer system to demonstrate that in a dose-dependent
165 ll receptor (TCR) antagonist and an adoptive transfer system to examine the influence of TCR signal q
166            We used a TCR-transgenic adoptive transfer system to further characterize the Ag and adjuv
167  of memory CD4+ T cells, we used an adoptive transfer system to generate a stable population of Ag-sp
168                            Using an adoptive transfer system to incrementally raise the precursor fre
169                      Using a murine adoptive transfer system to probe monocyte homing and differentia
170           In this study, we used an adoptive transfer system to re-examine the role of CD40 in the pr
171  We used the DO11.10 TCR transgenic adoptive transfer system to show that cells of similar phenotype
172 beta amyloidosis, we used an adenoviral gene transfer system to study the effects of human (h)COX-1 a
173                      We employed an adoptive transfer system to understand this disease and show that
174                Thus, using a dynamic in vivo-transfer system, to our knowledge our study is the first
175 esidues from the peptide, utilizing a charge-transfer system unprecedented in MHC molecules, allows p
176 esign and implementation of a wireless power transfer system using an ultrawideband (UWB) circularly
177 f these cells, we have developed an adoptive transfer system using in vitro-activated T cells express
178 oming, we constructed a novel and safer gene transfer system using modified SIN-based LV gene transfe
179 rane-associated ascorbate-dependent electron transfer system, using ascorbate peroxidase and monodehy
180        In this work, a minimal and inducible transfer system was constructed and used in transfer and
181 ppresses immune complex disease, an adoptive transfer system was developed in a model of immune throm
182                                      A novel transfer system was developed to identify neutrophil pro
183     Herein, an antigen-presenting cell (APC) transfer system was devised and applied to experimental
184 ponsible for GVHD in this model, an adoptive transfer system was used in which the function and kinet
185                 Additionally, the wet bridge transfer system was used to evaluate surfactant spreadin
186  Salmonella-specific TCR transgenic adoptive transfer system was used to further define the involveme
187                             A novel adoptive transfer system was used to track the fate of naive Salm
188                    A transgenic TCR adoptive transfer system was used to visualize Ag-specific T cell
189                            Using an adoptive transfer system we assessed the role of Th1 and Th2 cell
190                            Using an adoptive transfer system, we assessed the roles of Th1, Th2, and
191             In this study, using an adoptive transfer system, we compare the efficacy of two routes o
192 no-associated virus serotype 9-mediated gene transfer system, we confirmed in whole animal that GJA1-
193 poson mutagenesis with Tn3HoHo1 and a binary transfer system, we delimited this second region, called
194                 Using a competitive adoptive transfer system, we demonstrate that selective loss of T
195 ar queuing network or, alternatively, a mass transfer system, we derive a plethora of results concern
196         Furthermore, using a retroviral gene transfer system, we find that stable expression of LRP6
197                          By using an in vivo transfer system, we show that CD11c(+) CD11b(+) DCs from
198 n contrast, using a newly developed adoptive transfer system, we show that naive OVA-specific DO11 CD
199 t and BM chimaeras as well as in vivo T cell transfer systems, we demonstrate that in vivo regulation
200 comparing this vector to other Ad-based gene transfer systems, we have illustrated that the features
201 me to function as an effective self-electron transfer system where the donor and acceptor proteins ar
202 e take advantage of the combinatorial biotin transfer system, where polysome-associated mRNAs are sel
203               Here we report a unique energy-transfer system, where the sensitized acceptor emission
204 lts were further confirmed using a GC B cell transfer system, where wild-type and PTEN-deficient GC B
205  TNF show compromised effector function in a transfer system, whereas those treated neonatally with a
206 ate potential mechanisms we used an adoptive transfer system wherein ova-specific T cells were infuse
207 iviral vector is a simple and effective gene transfer system which shows potential for gene therapy o
208 onal and mutually orthogonal horizontal gene transfer systems, which permit the transfer of genetic i
209 alcium/calmodulin modulation of the electron transfer system, while the inducible isoform binds calmo
210                            Using an adoptive transfer system with IL-2- or IL-2R-deficient TCR transg
211                            Using an adoptive transfer system with low numbers of trackable nontransge
212                            Using an adoptive transfer system with OT-II TCR transgenic CD4 T cells, w
213 ous anemia virus (using the lentivector gene transfer system) with the glycoprotein of the Evelyn-Rok
214 nificant potential for use in wireless power transfer systems (WPTs) targeting biomedical implants, p

 
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