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1 le source of carbon and energy for growth in defined media.
2 g neural crest-like stem cells in chemically defined media.
3 gand is present even when cells are grown in defined media.
4 ture media, including commercially available defined media.
5 were analyzed during growth with complex and defined media.
6 n and recovery of H. pylori using chemically defined media.
7 ilization of nicotinamide in place of NAD on defined media.
8 ther cells are moved after 15 generations on defined media.
9 Its low mutation rate and ability to grow on defined media allow straightforward application of metho
10 Tcf7l1(-/-) double-knockout ESCs passaged in defined media alone (no LIF or inhibitors) and in wild-t
12 pseudo- and nonequilibrium conditions, using defined media and field samples spanning a wide range of
13 ve as DOM concentrations increased, both for defined media and natural water samples, consistent with
14 f the Deltasse strain in rich and chemically defined media and nonimmune human blood and sera was slo
16 al dapB gene restored the ability to grow in defined media and tabtoxin production to the dapB mutant
17 scherichia coli was grown in a complex, well-defined media and treated with either biochar or activat
18 ability of mutant E. coli strains to grow on defined media as well as time courses of cell growth, su
19 ived striatal neurons when they are grown in defined media at high or low density in serum, dopamine,
20 r zinA had no detectable effect on growth in defined media, but a double zurAM zinA mutant was unable
21 ent of new initiatives to develop chemically defined media, cell culture scientists screen many addit
23 us developments using stromal feeder layers, defined media cocktails, and bioengineering have enabled
24 lar development in fungi because it grows on defined media, completes its life cycle in 2 weeks, prod
26 east cancer and were cultured for 10 days in defined media containing 100 ng/mL each of rhSCF, rhG-CS
27 ion in confluent L6E9 myoblasts treated with defined media containing IGF-I revealed an initial trans
30 and metabolome of P. gigantea when grown on defined media containing microcrystalline cellulose and
31 s established by cultivation of D. toxica on defined media containing Na(15)NO3 and (15)N-labeled yea
34 surveyed by employing culture in chemically defined media devoid of peptide nutrients and treatment
35 top-down labeling methods are restricted to defined media/feed as well as amino acid auxotrophic org
37 egrees C: this formulation represents a more defined media for the continued optimization of growth f
38 symbiosis, including luminescence, growth in defined media, growth yield, siderophore activity, and m
40 ives were similar in nutrient-rich media and defined media in which the generation time was approxima
42 ow normally in rich media but do not grow in defined media lacking aromatic amino acids, and the grow
43 presentative gut microbes using a chemically defined media lacking glucose supplemented with porcine
47 and have been continually cultured in three defined media, one of which contains exogenous epidermal
48 d as non-adherent tumorspheres when grown in defined media or as attached monolayers when grown in se
50 rning Synthemax Surface, in combination with defined media, provides a complete synthetic, xeno-free,
51 of L-,L-, D,D-, and meso-diaminopimelate to defined media restored growth but not tabtoxin productio
52 uitary adenomas cells cultured for 7 days in defined media showed a biphasic response to TGF-beta wit
53 del systems: (stage 1) growth of microbes in defined media; (stage 2) microinjection of intestinal or
54 with MGEC on collagen I gels for 1-6 days in defined media, stained for beta-galactosidase, and exami
55 such as biomimetic scaffolds and chemically defined media supplemented with essential nutrients, hav
56 ates of known matrix proteins and chemically defined media supplemented with exogenous growth factors
57 type, the RibU mutant was unable to grow in defined media supplemented with FMN or FAD or to replica
58 cal metabolic profiles, growth in complex or defined media, surface hydrophobicity, or coaggregation
59 sing suspension cultures of HEK293S cells in defined media that contained 6-15N-lysine and 2-13C-glyc
61 ess hESC self-renewal and the development of defined media that support long-term hESC expansion.
64 rentiation of murine PSCs was used in factor-defined media to produce expandable embryonic macrophage
66 drogen exposure, were grown in a low protein-defined media under androgen-stimulated (A+) and -starve
69 x media, growth on aspartate or glutamate in defined media was completely prevented, whereas growth w
70 athway in beating embryoid bodies (EBs) with defined media, we established an efficient ARVD/C in vit
71 M1 and M4 Mga mutants to grow in chemically defined media with a single sugar source compared with t
72 onatal rats and growing dissociated cells in defined media with added nerve growth factor, brain-deri
74 xtracellular matrix, triturated and grown in defined media with or without growth factors and additio
76 tin synthesis, supplementation of chemically defined media with salicylate was required for equibacti
78 cylinders that were incubated in chemically defined media with stromal-derived factor-1alpha (SDF1),
79 ced when S. aureus is cultured in chemically defined media with thiosulfate (TS) as a sole sulfur sou