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1 h of xenografted cervical tumor implanted in nude mouse.
2 ly angiogenic tumors when implanted into the nude mouse.
3 bility when inoculated subcutaneously in the nude mouse.
4 nd were unable to form tumors in the athymic nude mouse.
5 nesis upon subcutaneous transplantation in a nude mouse.
6 d human kidney xenografts of Caki-2 cells in nude mouse.
7 ted in hollow fibers and were implanted in a nude mouse.
8 umors grew extensively in the transgenic GFP nude mouse.
9 e winged-helix nude (whn) gene result in the nude mouse and rat phenotypes.
10 s phenomenon with a human tumor growing in a nude mouse and show that it is caused by secretion by th
11 y cells are injected subcutaneously into the nude mouse, and it converts human 293 cells from nontumo
12 utic efficacy of 212Pb-AE1 were evaluated in nude mouse ascites or solid tumor models, wherein SK-OV-
13         Here we demonstrate that traditional nude mouse assays impose an artificial anoikis and proli
14 ransforming in both soft-agar and orthotopic nude mouse assays.
15  = 93), islet ATP content (n = 27), diabetic nude mouse bioassay (n = 72), and the insulin secretory
16                                              Nude mouse bioassay demonstrated better islet function f
17 et isolation, in vitro potency assays, and a nude mouse bioassay.
18             On-tissue enzymatic digestion of nude mouse brain tissue permitted the detection of 43 N-
19 x derivative to induce new bone formation in nude mouse calf muscle, or to enhance the bone induction
20 plantation under the renal capsule of a male nude mouse confirmed a complete loss of VP determination
21 antisense virus, which were also tested in a nude mouse diaphragm invasion model, showed suppression
22 l staining of sections of M. leprae-infected nude mouse footpads resulted in strongly positive staini
23            We report here a novel transgenic nude mouse for the visualization of human tumor angiogen
24 appendage formation, we have been studying a nude mouse grafting model that permits the combination o
25  ras in culture or benign tumor formation in nude mouse grafts, disruption of this pathway impairs gr
26 tion assay, we demonstrate that the abnormal nude mouse hair development is attributable to a functio
27 ing C2C12 myoblasts were grafted into normal nude mouse hearts.
28 a mutant HhaI control) and tumorigenicity in nude mouse heterotransplants (75% for sense HhaI-transdu
29                            When regrafted to nude mouse hosts epithelial cells isolated from CAF- or
30 v-ras(Ha) encoding retrovirus and grafted to nude mouse hosts to test whether the p53 null phenotype
31  mesenchyme and implanted into athymic male, nude mouse hosts, the recombinants developed into fully
32 mbryos under the renal capsule of adult male nude mouse hosts.
33 group of five compounds was evaluated in the nude mouse HT-29 xenograft model.
34 eraction of these two agents in vivo using a nude mouse HT29 xenograft tumor model.
35 n preclinical efficacy against p53-deficient nude mouse-human ovarian carcinomatosis xenografts.
36 or intravenous administration of ONYX-015 to nude mouse-human tumor xenografts; efficacy with ONYX-01
37  cerebral cortex in the congenitally athymic nude mouse is related to the thymus, a gland necessary f
38                                 Furthermore, nude mouse keratinocytes displayed a 100-fold increased
39 ty observed for both 14 and 15 in an athymic nude mouse MDA-MB-231 human breast cancer xenograft mode
40 xpression of Smurf2 promotes metastasis in a nude mouse model and increases migration and invasion of
41 as found to selectively target human KS in a nude mouse model and inhibit tumor growth at a therapeut
42 eatment with INH1 retarded tumor growth in a nude mouse model bearing xenografts derived from the hum
43 ssing Cox-2 had aggressive tumor growth in a nude mouse model compared with control cells.
44                        The ND-GFP transgenic nude mouse model enables the visualization of nascent an
45                             In a colon tumor nude mouse model in vivo, mAb 4H6 treatment without addi
46                         Tumor formation in a nude mouse model is inhibited by TRC8 in a RING-dependen
47 leukemia mouse model and shows efficacy in a nude mouse model of chronic myelomonocytic leukemia.
48 nsional culture and in an in vivo orthotopic nude mouse model of HNSCC through a novel transcription-
49                                         In a nude mouse model of human fibrosarcoma, we show that the
50 )PE38 was tested for antitumor activity in a nude mouse model of human lymphoma.
51 ibody can extend survival significantly in a nude mouse model of human ovarian cancer at levels that
52                             In an orthotopic nude mouse model of human pancreatic cancer, p.o. admini
53 asis of uveal melanoma cells was tested in a nude mouse model of intraocular melanoma.
54 ing a mutant cyclin G1 (dnG1) construct in a nude mouse model of liver metastasis.
55 lin, was studied in vitro and in the athymic nude mouse model of microsporidiosis.
56 ssue factor, EPCR or PAR1, and an orthotopic nude mouse model of MPM.
57 encapsulated endostatin-secreting cells in a nude mouse model resulted in a 72.3% reduction in subcut
58 ession of neuroblastoma in children and in a nude mouse model system.
59      These results were confirmed in vivo in nude mouse model system.
60 umor xenografts, to regain tumorigenicity in nude mouse model systems.
61                                         In a nude mouse model using LNCaP cells, the hyperfusogenic P
62                             In this study, a nude mouse model was used to test whether combinations o
63 l lines and a spleen subcapsular inoculation nude mouse model were also used.
64 ments in vivo were carried out in an athymic nude mouse model with an i.m. xenograft of LNCaP cells.
65                                       In the nude mouse model, levels of radioactivity in tumor reach
66                                         In a nude mouse model, OPG treatment completely prevented rad
67 duced the growth of the HT-29 xenograft in a nude mouse model, suggesting that 3b is a promising new
68  vivo the growth of the HT-29 xenograft in a nude mouse model, suggesting that 4l is a promising new
69 enesis and liver metastasis in an orthotopic nude mouse model, suggesting that constitutive NF-kappaB
70 tumor growth and metastasis in an orthotopic nude mouse model, the proapoptotic potency of Bik can be
71                                  In the NMRI nude mouse model, we observed up to a 4.5-fold increase
72 e as a means of delivery to tumor sites in a nude mouse model.
73  human breast tumors from an in vivo athymic nude mouse model.
74 elayed MPNST formation in an MPNST xenograft nude mouse model.
75 sis, growth, and metastasis in an orthotopic nude mouse model.
76 r-induced angiogenesis and tumor growth in a nude mouse model.
77 ess angiogenesis and growth in an orthotopic nude mouse model.
78 pressed the growth of renal cell cancer in a nude mouse model.
79 n in vitro and tumor growth in an orthotopic nude mouse model.
80 h in human pancreatic cancer xenografts in a nude mouse model.
81 ility in vitro and pulmonary metastasis in a nude mouse model.
82 tenuated human pancreatic cancer growth in a nude mouse model.
83 cally implanted human colorectal cancer in a nude mouse model.
84 lony formation, as well as tumor growth in a nude mouse model.
85 genic potential of ovarian cancer cells in a nude mouse model.
86 he cell culture model and in a tumorigenesis nude mouse model.
87 te cancer LNCaP cells to distant organs in a nude mouse model.
88  (via orthotopical injection) in a xenograft nude mouse model.
89 ncer in vivo was assessed with an orthotopic nude mouse model.
90 c cancer cell line, PANC-1, in an orthotopic nude mouse model.
91 lls in a fluorescent, orthotopic, metastatic nude-mouse model of human prostate cancer.
92                                      Athymic nude mouse models are used to guide radioimmunotherapy i
93 ty for CD22+ cells and antitumor activity in nude mouse models bearing human B-cell lymphomas.
94                                           In nude mouse models GFB-111 also shows significant inhibit
95 to surgical navigation was demonstrated in 2 nude mouse models that represent difficult surgical chal
96                                In orthotopic nude mouse models, dasatinib treatment effectively inhib
97 or and kidney uptake in pancreatic xenograft nude mouse models, including AR42J.
98 ctive cytotoxicity to tumours in culture and nude mouse models.
99 etastatic invasion using in vitro assays and nude mouse models.
100 cancer cells in 4T1.2 BALB/cJ and MDA-MB-231 nude mouse models.
101  and tumorigenicity and growth in orthotopic nude mouse models.
102 etastases in ectopic or orthotopic xenograft nude mouse models.
103                   Both in vitro and in vivo (nude mouse) models were used for growth assays.
104 lls in vitro, tumor growth inhibition in the nude mouse of human A375 melanoma xenografts resulted fr
105 d with PTEN cDNA were tested for growth in a nude mouse orthotopic brain tumor model.
106                                      Using a nude mouse orthotopic xenograft model, we assessed the e
107  ovarian carcinoma heterotransplanted in the nude mouse (OVCAR-3).
108 periodically imaged intravitally in a single nude mouse over a 19-day period.
109 oliferation index (P > 0.1) in an orthotopic nude mouse PaCa model.
110 forkhead transcription factor, result in the nude mouse phenotype.
111                               Examination of nude mouse primary keratinocytes in culture revealed tha
112 a LCI-D35 were orthotopically implanted into nude mouse prostate and liver, respectively.
113 mportantly, when orthotopically implanted in nude mouse prostate, both 15-LOX2 and 15-LOX2sv-b suppre
114 om a 24-h FTI infusion to that of a DPI in a nude mouse/PSN-1 tumor cell xenograft model and in Ki-ra
115 ly examined MMP-2 in live cells and tumor on nude mouse, respectively.
116                                       In the nude mouse, SCH 66336 demonstrated potent oral activity
117                                  All athymic nude mouse strains showed active infections at both cuta
118 nt, beige natural killer cell-deficient, and nude mouse strains.
119              In vitro clonogenic and in vivo nude mouse studies showed that overexpression of the A a
120 melanoma cell line to become metastatic in a nude mouse system.
121 in both CD4(+)- and CD8(+)-depleted mice and nude mouse systems, indicating that the therapeutic effe
122 iphasic, in vivo tumor growth pattern in the nude mouse that is essentially identical to EBV-positive
123                                   An athymic nude mouse that received a s.c. implant of a primary NE
124                               When tested in nude mouse, the average size of tumours produced by PC-3
125 y, these in vitro results were replicated in nude mouse transplanted tumor models.
126                                Finally, in a nude mouse tumor xenograft model, Cuc Q, but not Cuc A,
127 and induces p21(WAF1) and MDM2 expression in nude mouse tumor xenografts.
128 s cell carcinoma using gene transfer and the nude mouse tumorigenesis assay.
129 activities in both cell colony formation and nude mouse tumorigenicity assays.
130 optosis, and inhibition of tumor growth in a nude mouse tumoriginicity model.
131   A dose-escalation study of this agent in a nude mouse U87 glioma model system demonstrated a concen
132                                      The GFP nude mouse was obtained by crossing nontransgenic nude m
133 varian carcinoma) xenograft grown in athymic nude mouse window chambers.
134 e transgenic green fluorescent protein (GFP) nude mouse with ubiquitous GFP expression.
135 g from 5.6 to 9.3 MBq (150--250 microCi) per nude mouse, with no significant difference in response r
136 d growth of human colon carcinoma cells in a nude mouse xenograft assay and was accompanied by a sign
137 K inhibitory potency and greater efficacy in nude mouse xenograft assays.
138 ion and a marked decrease in tumor growth in nude mouse xenograft assays.
139 ial applications of this result, we used the nude mouse xenograft model of carcinogenesis.
140                           In vivo tests in a nude mouse xenograft model of human pancreatic cancer (M
141 CD44 in ovarian cancer metastasis by using a nude mouse xenograft model of peritoneal implantation.
142                We have previously shown in a nude mouse xenograft model that restoration of CEACAM1(a
143 nd paclitaxel treatments were evaluated in a nude mouse xenograft model using ARO and KAT-4 cells.
144 s tested and prevented glioma formation in a nude mouse xenograft model.
145 in a MDR human non-small cell lung carcinoma nude mouse xenograft model.
146 in also inhibited tumor growth in an athymic nude mouse xenograft model.
147 regulation on tumor growth was analyzed in a nude mouse xenograft model.
148 -PP inhibited Her-2/neu tumor formation in a nude mouse xenograft model.
149 ic to highly tumorigenic and metastatic in a nude mouse xenograft model.
150      EphA2 siRNA treatment was assessed in a nude mouse xenograft model.
151 lls, and is efficacious in the Min mouse and nude mouse xenograft models of colon cancer.
152        TTI-237 was active in vivo in several nude mouse xenograft models of human cancer, including L
153 IFN-beta) cDNA was delivered systemically in nude mouse xenograft models of human colorectal cancer l
154                         Concurrent dosing in nude mouse xenograft models of human lung adenocarcinoma
155 ation with Adriamycin (ADR) or paclitaxel in nude mouse xenograft models of human osteosarcoma and no
156 ere shown to inhibit tumor growth in several nude mouse xenograft models, with high potency and effic
157 demonstrated in our tumorigenesis studies in nude mouse xenograft models.
158 itory activity against human glioblastoma in nude mouse xenograft models.
159 inst human glioblastoma in cell cultures and nude mouse xenograft models.
160                                           In nude mouse xenograft settings, iso-fludelone was able to
161                                           In nude mouse xenograft studies, 27 reduced PSA levels by 9
162                                           In nude mouse xenograft studies, 5 reduced circulating PSA
163                          Experiments using a nude mouse xenograft system show that Schwann cells expr
164                                         In a nude mouse xenograft tumor model, the (67)Ga-complex pro
165            However, when compared in vivo in nude mouse xenograft tumor models, E2F/GM/E3b spread thr
166                        Growth suppression of nude mouse xenograft tumors carrying a tetracycline-indu
167 s to lung and regional lymph nodes from s.c. nude mouse xenografts and were found to express P-select
168  cancer cell growth in culture as well as in nude mouse xenografts by inhibiting the NF-kappaB-depend
169                                     In vivo, nude mouse xenografts established from SULF2-transfected
170 thium preferentially inhibited the growth of nude mouse xenografts of HCT-116 colon cancer cells with
171                                           In nude mouse xenografts, GGTI-2418 suppresses the growth o
172 iminate established tumors within 6 weeks in nude mouse xenografts.
173 minated established tumors within 6 weeks in nude mouse xenografts.
174 gulated by this system, both in vitro and in nude mouse xenografts.
175 mation, formed foci in culture and tumors in nude mouse xenografts.
176 n of GPC3 and tumor growth were confirmed in nude mouse xenografts.
177 es with a reduced ability to form tumours in nude mouse xenografts.
178  clearance, and timing for signal capture in nude mouse xenografts.
179 y and did not form tumors following human-to-nude mouse xenotransplantation.

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