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1 inhibitor Z-Val-Ala-Asp-fluoromethyl ketone (Z-VAD-fmk).
2 loxycarbonyl-Val-Ala-Asp fluoromethylketone (Z-VAD-FMK).
3 markedly prevented by the caspase inhibitor z-VAD-FMK.
4 ted by a broad specificity caspase inhibitor Z-VAD-fmk.
5 ich only phosphatidylserine was protected by z-VAD-fmk.
6 he same extent in the absence or presence of z-VAD-fmk.
7 t was inhibited by the pan-caspase inhibitor Z-VAD-fmk.
8 hibited apoptosis using pancaspase inhibitor Z-VAD-FMK.
9 inhibited by pretreatment of HeLa cells with Z-VAD-fmk.
10 re blocked by the general caspase inhibitor, Z-VAD-fmk.
11 prominent N-terminal product was blocked by Z-VAD-FMK.
12 lamed cerebrospinal fluid and was blocked by z-VAD-fmk.
13 AD-CMK, and the tripeptide pan-ICE inhibitor Z-VAD-FMK.
14 ocked by the ICE family inhibitors, CrmA and z-VAD-fmk.
15 ivo treatment with the pan-caspase inhibitor Z-VAD-FMK.
16 and was unaffected by the caspase inhibitor Z-VAD-fmk.
17 beta1 was inhibited only in the presence of z-VAD-FMK.
18 was not blocked by the pan-caspase inhibitor z-VAD-FMK.
19 that is blocked by the pan-caspase inhibitor Z-VAD-fmk.
20 with either CsA or the pan-caspase inhibitor z-VAD-fmk.
21 ited by the broad spectrum caspase inhibitor z-VAD-fmk.
22 of this effect by the pan-caspase inhibitor Z-VAD-fmk.
23 was reversed by a peptide caspase inhibitor, Z-VAD-fmk.
24 ibitor Z-YVAD-fmk, and pan-caspase inhibitor Z-VAD-fmk.
25 ssing of caspases-3 and -7 were prevented by Z-VAD.FMK.
26 prevented by the general caspase inhibitor, Z-VAD.FMK.
27 ibited by the pan-caspase peptide inhibitor, Z-VAD.FMK.
28 ctive loss of eIF4G, which is inhibitable by Z-VAD.FMK.
29 presence of a broad-range caspase inhibitor, Z-VAD-fmk (100 microM, 24 h), abrogated DNA fragmentatio
31 optosis, because caspase apoptosis inhibitor Z-VAD-FMK (20 microM), had no effect on this response.
32 yl-leucyl-norleucinal (a calpain inhibitor), z-VAD-fmk (a pan-caspase inhibitor), and ammonium chlori
34 oxycarbonyl-val-ala-asp-fluoromethyl ketone (z-VAD.FMK), a nonselective caspase inhibitor, did not af
35 f apoptosis to organ damage, we administered Z-VAD-FMK, a broad-spectrum caspase inhibitor, to mice w
36 iii) the transfected cells were treated with Z-VAD-fmk, a broad-spectrum caspase inhibitor, which red
38 optosis could be inhibited by treatment with Z-VAD-fmk, a caspase inhibitor, and by overexpression of
39 optosis was inhibited by treating cells with Z-VAD-fmk, a cell-permeable fluoromethylketone inhibitor
45 block the activation-induced cell death with z-VAD-fmk, a tripeptide inhibitor of IL-1 beta-convertin
47 Cotreatment with the caspase-3 inhibitor Z-VAD-FMK abrogated the effect of FTY720 on facilitating
49 loxycarbonyl-Val-Ala-Asp-fluoromethylketone (z-VAD.FMK), acetyl-Tyr-Val-Ala-Asp-chloromethylketone, o
54 luoromethylornithine, the caspase inhibitors Z-VAD FMK and Z-DEVD FMK, and c-Myc antisense oligodeoxy
55 o effect on TNF alpha-induced apoptosis, and z-VAD-fmk and Boc-D-fmk inhibited TNF alpha-stimulated r
57 tion was inhibited by the caspase inhibitor, z-VAD-fmk and by cycloheximide, which also prevented pro
58 ily blocked by the general caspase inhibitor Z-VAD-Fmk and by the caspase 1 inhibitor Z-YVAD-Fmk.
61 s are not inhibited by the caspase inhibitor z-VAD-fmk and form independently of apoptotic DNA fragme
63 efficiently blocked by the caspase inhibitor Z-VAD-fmk and partially blocked by Ac-DEVD-fmk, suggesti
64 were inhibited by the pan-caspase inhibitor Z-VAD-FMK and partially inhibited by the caspase-3 inhib
66 trast, the broad-spectrum caspase inhibitors Z-VAD-fmk and Z-DEVD-fmk failed to protect infected cell
67 Furthermore, caspase-specific inhibitors, z-VAD-fmk and z-DEVD-fmk, significantly attenuate the ac
68 and addition of caspase peptide substrates (Z-VAD-FMK and Z-IETD-FMK) to NS3-transfected cells block
70 ls to a combination of the caspase inhibitor z-VAD.FMK and the survival factor erythropoietin prevent
72 oxycarbonyl-Val-Ala-Asp-fluoromethyl ketone (Z-VAD-FMK) and N-benzyloxycarbonyl-Asp-glu-Val-Asp-fluor
74 oxycarbonyl-Val-Ala-Asp-fluoromethyl ketone (z-VAD-fmk), and found that it caused partial inhibition
75 arbonyl-Val-Ala-Asp(OMe)-fluoromethylketone (Z-VAD-FMK), and moderately blocked by the specific caspa
76 ere pretreated with a pan-caspase inhibitor, Z-VAD-FMK, and a specific caspase-9 inhibitor, Z-LEHD-FM
77 a (TNFalpha) and the broad caspase inhibitor Z-VAD-FMK, and by immunoblotting of lysates from endothe
78 ase-mediated anoikis, an effect abrogated by Z-VAD-fmk, and decreased Akt phosphorylation (Ser-473) u
79 revented by a generalized caspase inhibitor, z-VAD-FMK, and the more specific caspase inhibitor, z-DE
81 The caspase inhibitor peptides, DEVD-CHO, Z-VAD.fmk, and Boc-Asp.fmk, blocked Fas-induced PS exter
82 pathway and that the proapoptotic effects of z-VAD-fmk are compound specific and ROS independent.
83 y blocked by the cysteine protease inhibitor Z-VAD-fmk (benzyloxycarbonyl-Val-Ala-Asp-fluoromethylket
85 Treatment with the pan-caspase inhibitor Z-VAD-fmk blocked MHV-induced apoptosis, suggesting an i
87 itor Z-Val-Ala-Asp(OMe)-fluoromethyl ketone (Z-VAD-FMK) blocked >50% of ouabain-induced neuronal deat
88 tment with caspase inhibitors (Z-DEVD-FMK or Z-VAD-FMK) blocked MMT-induced proteolytic cleavage of P
89 [benzyloxy Val-Ala-Asp-fluoromethyl ketone (z-VAD-fmk)] blocked apoptosis induced by all three of th
91 reatment of cells with the caspase inhibitor Z-VAD-fmk blocks both TPA-induced apoptosis and monocyti
92 o, the addition of the pan-caspase inhibitor Z-VAD-FMK blocks formation of the 23-kDa ErbB-2 fragment
94 pramipexole (PPX) and the caspase inhibitor Z-VAD-FMK but not by the poly (ADP-ribose) polymerase (P
96 was blocked by a general caspase inhibitor, Z-VAD-FMK, but not by specific inhibitors against caspas
97 z-IETD-fmk, as well as pan-caspase inhibitor z-VAD-fmk, but not the calpain inhibitor E-64d, prevents
99 and 86%, respectively, pan-caspase inhibitor Z-VAD-fmk completely abolished the induced apoptosis.
100 The broad-specificity caspase inhibitor z-VAD-fmk completely blocked Mcl-1 cleavage induced by P
101 is study, crmA antagonized, and YVAD-CMK and Z-VAD-FMK completely inhibited, Fas activation of p38 ki
102 ease was blocked by cycloheximide but not by z-VAD-fmk, consistent with caspase activation downstream
103 insensitive to the general caspase inhibitor z-VAD.FMK, consistent with a caspase-independent mechani
104 and breaks using an alkaline comet assay (+/-z-VAD-fmk cotreatment) and by levels of iododeoxyuridine
107 , since the broad-spectrum caspase inhibitor z-VAD-fmk delayed T/HS lymph-induced HUVEC cell death, b
112 asome inhibitor MG-132 and caspase inhibitor Z-VAD-FMK do not block ATRA-induced PML-RARalpha cleavag
114 a broad-range inhibitor of caspase activity, z-vad-FMK, efficiently blocked DNA fragmentation, (ii) c
115 owever, the broad-spectrum caspase inhibitor z-VAD-fmk enhances tumor necrosis factor-alpha (TNF alph
117 fusion protein or general caspase inhibitor Z-VAD-FMK followed by silicon phthalocyanine 4 photodyna
118 n Fas, Ac-DEVD-CHO (caspase-3 inhibitor), or Z-VAD-FMK (general caspase inhibitor), apoptosis and pro
121 apoptotic cells in the CL group, the use of z-VAD-FMK had no effect on the frequency of these cells.
126 of cell death was reduced by the addition of Z-VAD-FMK in chondroitinase ABC-treated explants and was
127 o determine the specificity of the effect of z-VAD-fmk in neutrophils and define the potential mechan
131 ingly, blocking of the apoptotic pathway, by Z-VAD-FMK, in p21(-/-) HCT116 cells following treatment
133 Treatment of L929 cells with TNFalpha and Z-VAD-FMK induced caspase-independent cell death with ne
137 loxycarbonyl-Val-Ala-Asp-fluoromethylketone (Z-VAD-fmk) inhibited PARP cleavage, DNA fragmentation, c
141 administration of the pan caspase inhibitor, Z-VAD-FMK into normal mice protected against Chlamydia-i
145 g diabetic mice with a pancaspase inhibitor, z-VAD-fmk (N-benzyloxycarbonyl-Val-Ala-Asp-fluoromethylk
147 loxycarbonyl-Val-Ala-Asp-fluoromethylketone (z-VAD-fmk), on airway inflammation in OVA-sensitized/cha
148 Finally, inhibition of caspase-3 activity by z-VAD-fmk only partially protected neurons from KA toxic
149 reatment with either a pan-caspase inhibitor z-VAD-fmk or a more specific caspase 3 inhibitor Ac-DEVD
152 tor Z-DEVD-FMK and general caspase inhibitor Z-VAD-FMK or Fas-deficient mice abrogated the complete d
155 either the broad-spectrum caspase inhibitor z-VAD-fmk or vehicle and compared with unmanipulated mic
157 -starved or cycloheximide-treated cells with Z-VAD.FMK or Z-DEVD.FMK, which inhibit caspases required
158 ycarbonyl-Val-Ala-DL-Asp-fluoromethylketone (Z-VAD-FMK), or Z-Asp-2,6-dichlorobenzoyloxymethylketone
159 de occurs in the absence of caspase-8 or any Z-VAD-fmk- or Boc-D-fmk-sensitive caspase activities.
160 ocked partially with LDL (P < 0.01) or LDL + z-VAD-fmk (P < 0.001) but not with z-VAD-fmk alone.
163 loxycarbonyl-Val-Ala-Asp-fluoromethylketone (Z-VAD-FMK pan-caspase inhibitor) blocked T lymphocyte pr
165 arbonyl-Val-Ala-Asp(OMe)-fluoromethylketone (z-VAD-FMK) prevented all of these events except release
166 yloxycarbonyl-Val-Ala-Asp-fluromethylketone (z-VAD-fmk) prevented FHV-induced cytopathology and prolo
167 oxycarbonyl-Val-Ala-Asp-fluoromethyl-ketone (z-VAD-fmk) prevented hippocampal neuronal cell death and
169 carbonyl-V-A-D-O-methyl fluoromethyl ketone (Z-VAD-FMK; R & D Systems) given to SCID mice 2 h prior t
172 val, since addition of the caspase inhibitor z-VAD-FMK rescues cell death associated with loss of Akt
173 as markedly induced and caspase inhibitor 1 (Z-VAD-FMK)-sensitive oligonucleosome-length DNA fragment
174 ed during apoptosis; p27KIP1 is cleaved by a Z-VAD-fmk-sensitive caspase during apoptosis induced by
178 administration of the pan-caspase inhibitor Z-VAD-FMK significantly reduced cartilage degradation, a
180 at addition of the general caspase inhibitor Z-VAD-FMK substantially increases the number of both mat
181 was inhibited by the pan-caspase inhibitor, z-VAD-FMK suggesting that ABT-263 potentiated caspase-de
182 sed in the presence of the caspase inhibitor Z-VAD-FMK, suggesting a new role of activated caspases i
184 t MEHP treatment was profoundly inhibited by Z-VAD-FMK, suggesting that 15d-PGJ(2) activates apoptosi
185 etely abrogated by the pan-caspase inhibitor Z-VAD-FMK, suggesting that downregulation of gp130 is me
186 e readily inhibited by the caspase inhibitor z-VAD-fmk, suggesting that high levels of BCL-2 expressi
187 and etoposide was resistant to YVAD-CMK and Z-VAD-FMK, suggesting the existence of an additional mec
188 not by the broad-spectrum caspase inhibitor z-VAD.fmk, suggesting that mitochondria are a major targ
194 was the ability of the pan-caspase inhibitor z-VAD-fmk to prevent T/HS lymph-induced cell death.
195 aspase inhibitors (B-D-Fluomethyl Ketone and Z-VAD-FMK) to reduce apoptosis, and by using the postpul
196 s described for using the caspase inhibitor, z-VAD-FMK, to block apoptosis and generate a synchronous
202 yl-Val-Ala-Asp(O-methyl)-fluoromethylketone (z-VAD-fmk) under conditions that abrogated apoptosis.
206 arbobenzoxy-Val-Ala-Asp fluoromethyl ketone [z-VAD-fmk]), were unable to block destruction of CLL tar
207 ), ROS scavengers, and the caspase inhibitor z-VAD-fmk (where z and fmk are benzyloxycarbonyl and flu
208 r benzyloxycarbonyl-VAD-fluoromethyl ketone (Z-VAD-fmk), which inhibits proteolysis of BCL-xL during
209 loxycarbonyl-Val-Ala-Asp-fluoromethylketone (Z-VAD-fmk), which suggests that an interleukin-1 beta co
210 ceramide production that was also blocked by Z-VAD-fmk, which suggests that ceramide generation requi
212 preincubated with the pan-caspase inhibitor z-VAD-fmk [Z-Val-Ala-Asp(OMe)-fluoromethyl ketone] and i
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