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1 ollagen accumulation and PAI-1 expression in serum-free, 0.1% ITS+ culture; larger increases in these
2 urements from mESCs cultured in serum/LIF or serum-free 2i/LIF conditions.
3 ethods by employing the secretion pathway of serum-free adapted human suspension cell lines, such as
4 (but which contains fetal calf serum), and a serum-free alternative, M2 (melanocyte medium), were exp
5                                           In serum, free and conjugated BPA were detected at sub ng/m
6 orneal stroma and in keratocytes cultured in serum-free and insulin-supplemented media.
7           Here, we have developed a defined, serum-free and low cell-density differentiation program
8                           We describe here a serum-free, artificial thymic organoid (ATO) system that
9 sk is found at doses that yield undetectable serum free BPA.
10                                              Serum free-BPA and BPA-glucuronide were quantitated in s
11  associated with a significant deficiency in serum free carnitine (43%; P < 0.001) and elevated acyl
12 protamine (HPF) nanocomplexes were stable in serum-free cell culture medium.
13 is our recommendation that researchers adopt serum-free cell culture methods to reduce animal use in
14 min (ALB) enhancer/promoter, we found that a serum-free chemically defined medium supports formation
15  stifle joints and cultured as monolayers in serum-free chemically defined medium.
16 age of bovine stifle joints were cultured in serum-free chemically defined medium.
17 g/mL bFGF, 10 ng/mL PDGF) supplementation of serum-free chondrogenic expansion medium enhances the po
18                                  Analysis of serum-free conditioned media from three breast cancer ce
19 nalysis was used to detect secreted BMP-4 in serum-free conditioned media of ONH cells and in human O
20                   ADAMTS13 in cell lysate or serum-free conditioned medium cleaved von Willebrand fac
21 n microvascular endothelial cells (HMECs) in serum-free conditioned medium of glioblastoma cells tran
22 y tandem mass spectrometry, we identified in serum-free conditioned medium of neuroblastoma cells sev
23 stablish these cultures in the fully defined serum-free conditioned medium that is required to sustai
24 protein in HEK293 cells and purified it from serum-free, conditioned medium.
25 ssing prorenin was generated and grown under serum free conditions in a hollow fiber bioreactor.
26 liferation of Chinese hamster ovary cells in serum-free conditions (in the absence of vitronectin).
27 ere observed in SK-N-SH cells under serum or serum-free conditions and in WT or Atg5(-/-) mouse embry
28              Protection from apoptosis under serum-free conditions correlated with bcl-2 transcriptio
29            Moreover, studies conducted under serum-free conditions demonstrated that specific nylon-3
30 entiation, human aortic SMC were cultured in serum-free conditions for 10 days.
31                                              Serum-free conditions greatly enhanced the sensitivity o
32 ricyte-induced tube maturation under defined serum-free conditions in 3-dimensional matrices.
33 phosphatidylinositol 3-kinase activity under serum-free conditions in vitro.
34 ly showed primary keratocytes cultured under serum-free conditions to secrete matrix similar to that
35 h replicating P. aeruginosa (strain PA01) in serum-free conditions was developed, and the influence o
36 F-beta, IL-1beta and IL-6, IL-21 or IL-23 in serum-free conditions were necessary and sufficient to i
37      Primary human corneal keratocytes under serum-free conditions were used as a model of corneal st
38 es of skin-derived mast cells cultured under serum-free conditions when activated by cross-linking of
39 lation and inducing cell proliferation under serum-free conditions without FGF addition.
40  demonstrated that cell death occurred under serum-free conditions, and that GDNF significantly reduc
41 ere expanded as monolayers, aggregated under serum-free conditions, and transplanted into normoglycem
42   GDNF also stimulated cell proliferation in serum-free conditions, as assessed by the BrdU incorpora
43 fferentiated in the presence of activin A in serum-free conditions, mouse embryonic stem cells effici
44                                   Even under serum-free conditions, NP cells did not induce autophagy
45 and the cytokines IL-3, IL-9, and IL-6 under serum-free conditions, or by KITLG alone in the presence
46 ibition during staurosporine induction, with serum-free conditions, results in down-regulation of APP
47 ese spheroids were cultured for 3-4 weeks in serum-free conditions, sustaining their phase I enzyme e
48                                           In serum-free conditions, these cells expressed IalphaI, le
49 dent three-dimensional coculture systems and serum-free conditions, we compared the ability of estrog
50 ut not AdipoR1 alone, supported growth under serum-free conditions, while simultaneous expression of
51 nd resumes invasion by the tumor cells under serum-free conditions.
52 d progenitors to neural stem cells (NSCs) in serum-free conditions.
53 enged with endotoxin-free MSU crystals under serum-free conditions.
54 m cell-derived cardiomyocytes under defined, serum-free conditions.
55 phagic death, allowing prolonged survival in serum-free conditions.
56 in response to serum and estrogen, and under serum-free conditions.
57 s on a two-dimensional collagen matrix under serum-free conditions.
58  langerin(high)-expressing cells but only in serum-free conditions.
59 D PHH spheroid system in chemically-defined, serum-free conditions.
60  activities when compared with high-glucose, serum-free conditions.
61 ended periods when compared to high-glucose, serum-free conditions.
62 th the lowest IC(50) values below 10nM under serum-free conditions.
63 oblasts with organotypic functionality under serum-free conditions.
64                       FN initiates EMT under serum-free conditions; this response is partially revers
65 ed in primary cultures under wholly defined (serum-free) conditions that we developed for short-term
66 nd retinal ciliary bodies were maintained in serum-free culture and genetically modified by electropo
67 n that it uses entirely defined, feeder- and serum-free culture conditions and produces very consiste
68 ue macrophage populations, we have optimized serum-free culture conditions to permit robust survival
69            Supplementing defined stroma- and serum-free culture conditions with recombinant DPT prote
70              Remarkably, under hematopoietic serum-free culture conditions, hematopoietic outgrowth o
71 od after high-salt intake can potentiate, in serum-free culture conditions, the differentiation of fr
72 ach to cultivate primary human ECs (hECs) in serum-free culture conditions.
73 pendently increased viable cell number under serum-free culture conditions.
74 uripotent stem (iPS) cells that uses defined serum-free culture conditions.
75                                            A serum-free culture containing SCF, TPO, FGF-1, angiopoie
76 studies, hTCEpi cells were cultured in KGM-2 serum-free culture media containing 0.15 mM calcium.
77                         IL-9 was detected in serum-free culture medium harvested from ALK+ ALCL-cell
78 ature bovine articular cartilage explants in serum-free culture medium.
79 ntiation occurred in a clinically applicable serum-free culture model and was not accompanied by apop
80                         Adapting a line to a serum-free culture system resulted in additional epigene
81 ratinocytes cultured in a chemically defined serum-free culture system, devoid of animal-derived feed
82                                In a minimal, serum-free culture system, the synthetic GC dexamethason
83                                      Using a serum-free culture system, we discovered that IGF2 can s
84 m mouse ciliary epithelium and maintained in serum-free culture were genetically modified by electrop
85 8.5 p.c.-ectoplacental cone (EPC) explant in serum-free culture, we have found parathyroid hormone-re
86 ce of human serum, which was not observed in serum-free culture.
87 ar cells and HBEGF promote their survival in serum-free culture.
88                In this study, we report that serum-free cultured human monocyte-derived DCs after TLR
89                                              Serum-free cultured rabbit corneal keratocytes and TGFbe
90 m albumin secretion was increased by 350% in serum-free cultures and by 166% in serum-containing cult
91 -term urea secretion was increased by 79% in serum-free cultures and by 76% in serum-containing cultu
92 me P450IA1 activity was increased by 140% in serum-free cultures and by 820% in serum-containing cult
93  human brains and to maintain these cells in serum-free cultures.
94 le sca-1(+)/c-kit(+)/Gr-1(-) marrow cells in serum-free cultures.
95               The medium was exchanged for a serum-free defined medium containing corresponding stero
96 om human prenatal donor eyes and cultured in serum-free defined medium containing the commercially fo
97 f total cell RNA from cultures maintained in serum-free defined medium for up to 190 days.
98                        RGCs were cultured in serum-free defined medium in 96-well plates.
99                                         In a serum-free defined medium, OLG undergo apoptosis and dif
100 expansion for >150 population doublings in a serum-free, defined medium and with a doubling time of a
101 ynthemax(R) Surface, for culture of hMSCs in serum-free, defined medium.
102                      Through the use of this serum-free, defined system, we demonstrate that pericyte
103                                            A serum-free differentiation (SFD) medium completely lacki
104 arious developmental stages of a feeder- and serum-free differentiation method and show that the larg
105                  Here we report an optimized serum-free differentiation protocol to efficiently produ
106 epared from human donor eyes and cultured in serum-free DMEM.
107        Control cultures were exposed only to serum-free DMEM.
108                All cytokines were diluted in serum-free DMEM.
109                             RCKs cultured in serum-free DMEM/F12 without frequent changes of medium m
110        As a result of this muscle diversion, serum-free FA and ketone bodies rose much less after fas
111  mediated by beta-arrestin1, but lowering of serum free fatty acid levels is not.
112  nicotinic acid, although the improvement in serum free fatty acid levels was similar to that observe
113 visceral fat were positively correlated with serum free fatty acid levels, suggesting that collagen a
114 temperature at 4 degrees C, despite elevated serum free fatty acid levels.
115                                     Elevated serum free fatty acids (FFAs) and hepatocyte lipoapoptos
116 licing with the levels of plasma glucose and serum free fatty acids (FFAs) in three independent studi
117                                              Serum free fatty acids (FFAs) profile is highlighted in
118                                              Serum free fatty acids increased by 10 micromol/L in the
119 cantly reduced, medium chain fatty acids and serum free fatty acids were elevated.
120 es of FGF21 improve glucose tolerance, lower serum free fatty acids, and lead to weight loss in obese
121 ve lipase activity results in a reduction of serum free fatty acids, leading to improved peripheral i
122  that is associated with increasing level of serum-free fatty acids and worsening glycemic control.
123           This was associated with increased serum free-fatty acids, reduced total white adipose, and
124 the COMECS protocol, using a feeder-free and serum-free (FFSF) culture system.
125                                        Using serum-free fully-defined culture medium formulations, we
126      The aNSCs proliferated when cultured in serum-free growth media on peptide-modified vmIPNs with
127 n low (i.e., <260 micromol/L)-calcium (Ca2+)-serum-free, growth factor-defined (SFD) medium, what gro
128 t were preservable for at least 3 weeks in a serum-free, high-calcium medium and, with brief trypsin/
129 lity of HCEC aggregates was preservable in a serum-free, high-calcium, but not low-calcium, medium fo
130 factors and cytokines, in combination with a serum-free, hormonally defined medium (HDM) tailored for
131 CL wear) before and after PA exposure and in serum-free human corneal epithelial cell culture (hTCEpi
132 referred to as FGRS), and then propagated on serum-free instructive vascular niche monolayers to indu
133 elial cells and cell line were cultured in a serum-free keratinocyte medium and DMEM/F12 medium conta
134 r these clinical programs and that comprises serum-free Kubota's Medium (KM) supplemented with 10% di
135 decreased ex vivo tissue contraction down to serum-free levels.
136 tein electrophoresis with immunofixation and serum free light chain (FLC) analysis were performed on
137 ined significance (MGUS), as detected by the serum free light chain (FLC) assay increases the risk of
138                                          The serum free light chain (FLC) assay quantitates free kapp
139 g multiple myeloma (SMM), as detected by the serum free light chain (FLC) assay, indicates an increas
140 ospectively evaluated serial paraprotein and serum free light chain (FLC) measurements and found that
141     The median IgM paraprotein was 8 g/L and serum free light chain (FLC) ratio was abnormal in 77 (8
142                                              Serum free light chain (sFLC) assays are well establishe
143                               Alternatively, serum free light chain (sFLC) measurements have better s
144                                              Serum free light chain (sFLC) ratio was 0.0001.
145 at the relative clinical influence is of the serum free light chain ratio (sFLCr) and bone marrow (BM
146 sion in myeloma has been defined by a normal serum free light chain ratio (SFLCR) in addition to the
147                      Combination of elevated serum free light chain, M-spike, and GEP70 risk score id
148 difference between involved minus uninvolved serum free light chains (dFLC) has been established as a
149 nal B cells from normal B cells, we measured serum free light chains (FLCs).
150 identify gene defects and the measurement of serum free light chains to identify secondary hypogammag
151 phoresis in 21 patients (77.8%), and only by serum free light-chain analysis in 6 patients (22.2%).
152 horesis, immunofixation electrophoresis, and serum free light-chain analysis were performed on all se
153                                     We did a serum free light-chain assay on all samples with suffici
154                                        Using serum-free light chain for assessing response, 77% of pa
155 e the need for BM studies; 10% with a normal serum-free light chain ratio had BM plasma cells more th
156 dding a requirement for normalization of the serum-free light chain ratio to negative immunofixation
157     Strategies to rapidly remove nephrotoxic serum-free light chains combined with novel antimyeloma
158 yields CD34(+) cells that can be expanded in serum-free liquid culture into large numbers of megalobl
159 o promote survival of neurons cultured under serum-free, low-insulin conditions, with FGF-2 surprisin
160 ectin (VN), or collagen (CL) in supplemented serum-free media alone or with TGF-beta1 or fibroblast g
161      Furthermore, cultured RGC maintained in serum-free media are also C1q and C3 immunoreactive, dem
162                  CSp-EMVs were isolated from serum-free media conditioned for 3 days by cardiospheres
163 ult (12 weeks) rat ganglia and maintained in serum-free media containing glucose (10-100 mM) in the p
164 SC were cultured as free-floating pellets in serum-free media for 3 weeks.
165  TRA-1-60(-)/SSEA4(-)/SOX1(+) cells grown in serum-free media give rise to multipotent NSCs with an e
166 an pancreatic cells were proliferated with a serum-free media in monolayer cultures through multiple
167 ed marker shows spheroid colony formation in serum-free media in vitro, as well as tumorigenic abilit
168 NA levels in neuroblastoma cells cultured in serum-free media increased after 8 to 16 hours in BDNF.
169 incubation of mouse embryonic fibroblasts in serum-free media induces caspase-3 activation, an effect
170                            Exposing cells to serum-free media on their basolateral side significantly
171 ures of hepatocytes and endothelial cells in serum-free media seeded under 95% oxygen maintain functi
172                           Here, we define in serum-free media the minimal factor requirement controll
173                  Pellet cultures of hCSSC in serum-free media upregulated the expression of keratocyt
174 media and forms neurospheres in supplemented serum-free media was developed from retinal tumors isola
175 NTM5 and GTM3) human TM cells conditioned in serum-free media were incubated in the absence or presen
176 ts before SCT, which were cultured 4 days in serum-free media with hematopoietic growth factors.
177 neration lentiviral vector in FreeStyle 293 (serum-free media) in suspension.
178 al cells results in sustained cell growth in serum-free media, a predisposition to develop hyperplasi
179 roliferation induced by nonconducting EAG in serum-free media, and EAG increased p38 MAP kinase activ
180 sal-like phenotype in vitro when cultured in serum-free media, and undergoes phenotypic changes consi
181 f complement on CD19 loss was examined using serum-free media, C3- and C5-deficient sera, and a C5-bl
182 n as VEGFA) and dickkopf homolog 1 (DKK1) in serum-free media, human embryonic-stem-cell-derived embr
183 ated dishes and cultured for up to 7 days in serum-free media, platelet derived growth factor BB (PDG
184                          However, culture in serum-free media, presence of nerve growth factor, or ad
185 growth factor and hematopoietic cytokines in serum-free media, yielded a precursor population enriche
186                                          The serum-free media-induced decrease in permeability was co
187 ined, even when these cells were cultured in serum-free media.
188 fection using standard cell culture media or serum-free media.
189 n synthase kinase-3 (GSK3) inhibitor, and in serum-free media.
190 ter monolayer expansion, and after 1 week in serum-free media.
191  WNT signaling, cell growth, and survival in serum-free media.
192 and then TGF-beta2 was added for 24 hours in serum-free media.
193 ere assessed on deer hair follicle growth in serum-free median without streptomycin.
194                           After challenge in serum free medium, CPCs treated with the 3 microRNA cock
195  division (P = 0.01), increased migration in serum-free medium (72 +/- 18 migrated cells versus 33 +/
196                     Rat aortic ECs (n=30) or serum-free medium (controls; n=29) were seeded endovascu
197 ed cell cycle entry by >5-fold compared with serum-free medium (from 13.5 to 78%), but at the single
198 inar-like phenotype when the [Ca(2+)] in the serum-free medium (keratinocyte growth medium, KGM) was
199 (DMEM/10% FBS), or in a defined keratinocyte serum-free medium (KSFM).
200 +) cells, Dox(-)cells, or an equal volume of serum-free medium after surgically induced myocardial in
201 -derived stem cells to naive pluripotency in serum-free medium alone.
202 thus containing a mixture of them all, or in serum-free medium alone.
203 ostate development, fetal UGSs were grown in serum-free medium and 5 alpha dihydrotestosterone (DHT)
204 ptides prepared from M. arthritidis grown in serum-free medium and also from a 41-kDa known bioactive
205 and cantilever substrates with a DETA SAM, a serum-free medium and refined culture techniques.
206 as the spherogenicity of single CRC cells in serum-free medium and the size of the side population (S
207                       HCECs were cultured in serum-free medium and treated with 0 or 10 ng/mL TGFB1 o
208     Transformed RGC-5 cells were cultured in serum-free medium and were treated with 0.5 muM to 2.0 m
209 henotype can be maintained in a low-calcium, serum-free medium by downregulating Smad-mediated TGF-be
210 0 and Rdh16 mRNA in HepG2 cells incubated in serum-free medium by inhibiting transcription and destab
211  by substratum-independent pellet culture in serum-free medium containing ascorbate.
212                                            A serum-free medium containing SCF, TPO, and FGF-1 or Flt3
213 m of hyaluronans and Kubota's medium (KM), a serum-free medium designed for endodermal stem/progenito
214                      T. denticola grown in a serum-free medium did not exhibit increased susceptibili
215       Over more than 3 weeks, cells grown in serum-free medium expanded more than 800,000-fold, and 8
216 tes were incubated in an amino acid-free and serum-free medium for 3 hours prior to onset of anoxia.
217  endothelial cells (bAECs) were incubated in serum-free medium for 6 h before addition of 50 nmol/l f
218 ival were found in murine islets cultured in serum-free medium for 96 hr with 500 ng/ml NGF (P<0.05).
219 of sEVs secretion from TK6 cells cultured in serum-free medium for a culturing period from 1 to 48 h.
220 re isolated from human tracheas and grown in serum-free medium for one week.
221         CD133+ FACS-sorted cells cultured in serum-free medium form 3-fold more neurospheres than do
222 and 39 + or - 13% in the Dox(+), Dox(-), and serum-free medium groups, respectively (P<0.05 for the d
223 cells within six CRC lines form spheroids in serum-free medium in suspension.
224 orescence protein mice and grown for 48 h in serum-free medium in the presence or absence of Ang II.
225 NA levels in neuroblastoma cells cultured in serum-free medium increased after 8 to 16 hours in serum
226              The addition of exogenous FA in serum-free medium increased oxLDL binding and uptake to
227  TGF-beta1 alone or combined with PDGF-BB in serum-free medium induces a temporally correct expressio
228 ncompatible 3F7.A10 hybridoma cells grown in serum-free medium mounted strong anti-Id responses.
229  were added individually to cells growing in serum-free medium next to controls in medium supplemente
230                  This set-up included use of serum-free medium of defined composition with supplement
231 oblasts (HCFs) were cultured in supplemented serum-free medium on VN or collagen (CL) with 1 ng/mL tr
232                                            A serum-free medium revealed two effects of TNFalpha: (1)
233  Nanog enables somatic cell reprogramming in serum-free medium supplemented with LIF, a culture condi
234                              When grown in a serum-free medium supplemented with starch, M. arthritid
235 tant was able to grow to a higher density in serum-free medium than the wild-type strain, mimicking t
236 ent characteristics (HRA-19) and developed a serum-free medium that induces endocrine, mucous and abs
237 st-selection HMEC, that is, cells grown in a serum-free medium that overcame stasis via silencing of
238 rugs--ferumoxytol, heparin and protamine--in serum-free medium to form self-assembling nanocomplexes
239 moxifen or dexamethasone in phenol red-free, serum-free medium to measure the steady-state levels of
240 olyethylene glycol hydrogels and cultured in serum-free medium to model cellular interactions within
241 -human CD28 antibodies for 72 hours in AIM V serum-free medium to obtain T cell-conditioned medium, f
242 uman CB-derived CD34+ cells were cultured in serum-free medium together with SCF, TPO, FGF, with or w
243                                              Serum-free medium was added to RPE eyecups (a healthy mo
244                                              Serum-free medium was added to these RPE eyecups, and, a
245                      CD36-mediated uptake in serum-free medium was very low but greatly increased whe
246 d from rabbit corneal stroma and plated in a serum-free medium were treated with FGF-2/heparin or TGF
247  unstimulated T cells which were cultured in serum-free medium with circadian clock reporter systems.
248                 They grew as neurospheres in serum-free medium with epidermal growth factor and fibro
249          Further culture of myeloid cells in serum-free medium with GM-CSF and IL-4 generated cells t
250 om collagenase A digestion were preserved in serum-free medium with low or high calcium for up to 3 w
251 n alginate beads or as cartilage explants in serum-free medium with or without IGF-1 (100 ng/ml), OP-
252                               The model uses serum-free medium, a nonbiological substrate N-1[3(trime
253 eatment with HES1 shRNA, cell aggregation in serum-free medium, and a mixture of soluble factors furt
254    Mechanical activation of mTOR occurred in serum-free medium, indicating that it is independent of
255                                           In serum-free medium, most antibiotics (except polymyxins)
256            However, when they are starved in serum-free medium, ovarian cancer cells ceased producing
257 rom rabbit corneal stroma, and cultured in a serum-free medium, pretreated or not treated with JNK in
258 They clonogenically expand on plastic and in serum-free medium, tailored for endodermal progenitors,
259 so inhibited the growth of Hep3BX cells in a serum-free medium, which correlated with depressed level
260 acrine cells were cultured at low density in serum-free medium, with and without peptide trophic fact
261  cells form neurospheres when transferred to serum-free medium.
262 t neurospheres in growth factor supplemented serum-free medium.
263 land epithelial cells and to culture them in serum-free medium.
264 um treated with methyl-beta-cyclodextrin, or serum-free medium.
265 enosine nucleotides cannot support growth in serum-free medium.
266  were cultured in high-density monolayers in serum-free medium.
267  rabbit corneal keratocytes were cultured in serum-free medium.
268 posure to IL-1beta with or without NS-398 in serum-free medium.
269 nd keratocan) were expressed and secreted in serum-free medium.
270  an astrocyte feeder layer and maintained in serum-free medium.
271 x 10(11)M) with or without NS-398 (10 nM) in serum-free medium.
272  ((3)H-adenosine) in low-physiologic-glucose serum-free medium.
273 ccumulation, promoting cell proliferation in serum-free medium.
274 he antiproliferative effects of rapamycin in serum-free medium.
275 ), and fibroblast growth factor-1 (FGF-1) in serum-free medium.
276  nonadjuvanted, isologous mAbs purified from serum-free medium.
277  wild-type mice were avulsed and cultured in serum-free medium.
278 sa association with both substrates, only in serum-free medium.
279 aline-like translucent cartilage particle in serum-free medium.
280                      Our approach provides a serum-free method for differentiation and long-term main
281 actor (bFGF), Sonic hedgehog, and FGF-8 in a serum-free N-2 culture medium to foster differentiation
282                                  The current serum-free nasal polyp organ culture model allows physio
283                                           In serum-free neuronal differentiation media, a peak level
284 roma by collagenase digestion were plated in serum-free or insulin-, bFGF/heparin sulfate (HS)-, TGF-
285 TGF-beta1 or -2 up-regulates dye coupling in serum-free primary cultures of chick lens epithelial cel
286                                        Using serum-free primary cultures of chick lens epithelial cel
287  and contact-independent growth and promoted serum-free proliferation of human cells.
288                Here we present an efficient, serum-free protocol for directed differentiation of huma
289  the PSM-like cells, providing an efficient, serum-free protocol for the generation of striated, cont
290                         Importantly, using a serum-free protocol, we successfully generated insulin-p
291                                              Serum-free reconstitution experiments confirmed the invo
292 why necrotizing infections mainly develop in serum-free spaces (eg, pulmonary alveoli) and open optio
293 ogenitors can be expanded under nonadherent, serum-free, sphere-forming conditions.
294 a that can form nonadherent melanospheres in serum-free stem cell medium, mimicking aggressive malign
295  MEMO and NEUMO, and an antioxidant rich and serum free supplement called SOS.
296 ned a new neuronal medium (BrainPhys basal + serum-free supplements) in which we adjusted the concent
297  in a completely defined, growth factor- and serum-free system by temporal modulation of regulators o
298 his study was conducted to develop a simple, serum-free system to propagate and sustain human RPE in
299 mentation did not affect blood lymphocyte or serum free thyroxine concentrations.
300 p. revealed that all except H. felis grew in serum-free, unsupplemented F-12.

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