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1 ecco's minimum essential medium-Hanks' F-12 (DMEM-F-12) medium with and without exogenous hormone sup
7 ured in a serum-free keratinocyte medium and DMEM/F12 medium containing 10% FBS in a 37 degrees C inc
9 lls were exposed to hyperosmolar conditions (DMEM-F12 culture medium plus 50 mM NaCl or 100 mM mannit
10 uman aqueous humor (DMEM-AH), heat-denatured DMEM-AH, 10% fetal bovine serum (DMEM-FBS, the standard
12 ent, and then cultured until day 4 in either DMEM/F-12 alone, to retain the keratocyte phenotype, or
13 ulbecco's modified Eagle's medium/Ham's F12 (DMEM) and Roswell Park Memorial Institute 1640 medium (R
15 designated phenotypes: baseline fibroblasts (DMEM with 10% serum), activated fibroblasts (10% serum+b
16 s were randomly injected with the following: DMEM (G-1), BMSCs (G-2), and preconditioned BMSCs (G-3).
17 DMEM, with or without 10% FBS, in serum-free DMEM containing insulin-transferrin-sodium selenite (ITS
18 sue pieces were also incubated in serum-free DMEM for 48 h at 37 degrees C in 95% air/5% CO(2) to det
24 in our "cultures" was transferable to fresh DMEM, molecular examination of decalcified biofilms fail
25 The results favor the use of high-glucose DMEM with pyruvate for future RPE differentiation studie
26 M supplemented with 50% human aqueous humor (DMEM-AH), heat-denatured DMEM-AH, 10% fetal bovine serum
30 by digestion in 1 mg/mL of collagenase A in DMEM and seeded on plastic or the stromal matrix of huma
32 plastic or amniotic membrane matrix (AM) in DMEM, with or without 10% FBS, in serum-free DMEM contai
33 epithelial cells frozen at -80 degrees C in DMEM-F-12 medium with 10% dimethyl sulfoxide for several
36 neralization studies, cells were cultured in DMEM containing 10% FBS and a) vehicle only; b) ascorbic
37 uggest that OMECs from LL and TZ cultured in DMEM give rise to undifferentiated cells with high growt
38 ated from mouse bone marrow were cultured in DMEM supplemented with 10% fetal bovine serum, cell popu
39 ne was measured in ARPE-19 cells cultured in DMEM-F12 medium without or with the addition of 50 mM Na
40 an corneal epithelial cells were cultured in DMEM/F12 medium containing 10% FBS and 5 microg/mL insul
41 neal epithelial (HCE) cells were cultured in DMEM/F12 medium containing 10% FBS in a 37 degrees C inc
43 /mm2), and high (500 cells/mm2) densities in DMEM/F12 containing insulin, transferrin, selenium, and
44 for 24 hours with control (0.015% ethanol in DMEM) or the free acid forms of bimatoprost (0.01 or 0.1
50 becular meshwork cell cultures were grown in DMEM supplemented with 50% human aqueous humor (DMEM-AH)
52 at 200 cells/mm(2), and cells were grown in DMEM/F12 containing (1) 10% FBS or (2) 10% FBS with FGF
54 4,000-35,000) from hyperapoB cells, grown in DMEM/F12 medium without BP, had significantly decreased
55 were serum starved by growth for 48 hours in DMEM/F12 with 0.2% FBS and subsequently were either scra
56 ased outflow resistance in eyes incubated in DMEM, but only if myocilin was preincubated with porcine
58 also altered: Trabecular cells incubated in DMEM-AH showed larger-, broader-, and flatter-appearing
63 re cultured on filters for up to 3 months in DMEM/F12 or DMEM media with or without pyruvate and 1% f
65 e, to retain the keratocyte phenotype, or in DMEM containing 10% fetal bovine serum, to cause the ker
68 ratocytes from bovine corneas were plated in DMEM/F-12 containing 1% horse plasma, to allow cell atta
69 eous humor (78% +/- 77% when preincubated in DMEM containing porcine aqueous humor versus 13% +/- 15%
71 l; (b) autoclaving 10 and 100 ng/ml ricin in DMEM at 121 degrees C for 30 min completely abolished ac
75 yrosine derivative, 3-Nitro-L-tyrosine, into DMEM can mitigate the degradation of PSM at 8 degrees C
76 were incubated in three cell culture media (DMEM, RPMI-1640, and DCCM-1) to examine the impact of Ag
77 ained for 2 to 3 months in the basal medium (DMEM containing 2% fetal bovine serum) with one medium c
79 ced in 10% Dulbecco's modified Eagle medium (DMEM) and slowly frozen to -196 degrees C), or Vitro (Pl
81 th (LB) or Dulbecco's modified Eagle medium (DMEM), and transcription was examined during different p
87 astic in Dulbecco's modified Eagle's medium (DMEM) containing insulin-transferrin-sodium selenite (IT
88 0 microL Dulbecco's modified Eagle's medium (DMEM) or 1.5 x 10(7) bone marrow-derived mononuclear cel
89 h either Dulbecco's modified Eagle's medium (DMEM) or DMEM supplemented with 50% porcine aqueous humo
90 tured in Dulbecco's modified Eagle's medium (DMEM) plus 2% fetal bovine serum (FBS) or 2% FBS plus EM
92 medium (Dulbecco's modified Eagle's medium [DMEM]) containing 1% antibiotic/antimycotic solution and
99 on filters for up to 3 months in DMEM/F12 or DMEM media with or without pyruvate and 1% fetal calf se
106 t-denatured DMEM-AH, 10% fetal bovine serum (DMEM-FBS, the standard culture supplement), or heat-dena
107 lement (DMEM/ITS) or 10% fetal bovine serum (DMEM/10% FBS), or in a defined keratinocyte serum-free m
109 ransferrin-sodium selenite (ITS) supplement (DMEM/ITS) or 10% fetal bovine serum (DMEM/10% FBS), or i
111 Daily administration of ascorbic acid to DMEM-AH failed to increase myocilin expression beyond th
112 the astrocyte culture medium was changed to DMEM containing various concentrations of 8-CPT-cAMP, a
115 fluence in serum-free medium and switched to DMEM/F12 with 10% serum to promote differentiation.
117 nischemic legs) and between subjects (BMC vs DMEM treatment) were significant for total blood vessel
121 e in standard organ culture dishes, fed with DMEM/F12 plus 2% B-27 supplement and 1% fetal bovine ser
125 oned medium isolated from cells treated with DMEM-FBS (442%), but only a 10% increase in myocilin was
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