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1 lial clearance of misfolded proteins and the inflammatory reaction.
2 titis with apoptotic hepatocytes and minimal inflammatory reaction.
3 and stimulates an innate and adaptive immune inflammatory reaction.
4  interplay of gut microbiota and host immune/inflammatory reaction.
5  synthesis is known to optimize local tissue inflammatory reaction.
6 e complement system plays a key role in this inflammatory reaction.
7 d, to decipher how syndecan-1 impacts on the inflammatory reaction.
8 nse by microglia while triggering a moderate inflammatory reaction.
9  an important role in the coordination of an inflammatory reaction.
10 entrations of bacteria yet only some show an inflammatory reaction.
11 ng at 48 hours and delayed resolution of the inflammatory reaction.
12 and mesenteric lymph nodes, causing an acute inflammatory reaction.
13 cells that are recruited and involved in the inflammatory reaction.
14 of proper neuro-vascular associations and an inflammatory reaction.
15 y in pulmonary sensory neurons during airway inflammatory reaction.
16 ional knockout mouse brain invoked a massive inflammatory reaction.
17 betes within a week, characterized by strong inflammatory reaction.
18 ng to the pathogenesis of this novel type of inflammatory reaction.
19 le response to vaccination versus that of an inflammatory reaction.
20 se plays a crucial role in host defenses and inflammatory reaction.
21 cosal healing, such as the persistence of an inflammatory reaction.
22 , and dendritic cells, in the local allergic inflammatory reaction.
23 ase pattern that is associated with an acute inflammatory reaction.
24 layed oral mucosa healing in the presence of inflammatory reaction.
25 phase of sepsis is characterized by a strong inflammatory reaction.
26 ferent antigens that trigger distinct immune-inflammatory reactions.
27 es to control pathologies with overexuberant inflammatory reactions.
28 lations in the steady-state and during acute inflammatory reactions.
29 function in pathogen- and autoimmune-induced inflammatory reactions.
30 d the types of T cells involved in different inflammatory reactions.
31 icant and influenced by diet, metabolic, and inflammatory reactions.
32  dictating the magnitude of subsequent acute inflammatory reactions.
33 itical role in myeloid cell-mediated in vivo inflammatory reactions.
34 amage inferred from attenuation of glial and inflammatory reactions.
35  T cells (Tregs) are thought to downmodulate inflammatory reactions.
36  by IL-33 probably play an important role in inflammatory reactions.
37  of mitochondria or in induction of untoward inflammatory reactions.
38 ons for bone disorders but may cause serious inflammatory reactions.
39 ocytic, phagocytic, proinflammatory, or anti-inflammatory reactions.
40  role of mast cells and IL-1 in NBP-mediated inflammatory reactions.
41 ns and for preventing excessive or prolonged inflammatory reactions.
42 to facilitate the resolution of pathological inflammatory reactions.
43 ling pathway to protect against exacerbating inflammatory reactions.
44 ide production is believed to participate to inflammatory reactions.
45 betaR) activation controls and downregulates inflammatory reactions.
46 opment and progression of local and systemic inflammatory reactions.
47  and prevents the development of exacerbated inflammatory reactions.
48 g homeostasis and preventing excessive acute inflammatory reactions.
49 dating the molecular mechanisms that lead to inflammatory reactions.
50 re prominent contributor to the pathology of inflammatory reactions.
51  genetically engineered mice induced similar inflammatory reactions.
52  conditions associated with retinal vascular inflammatory reactions.
53 onist could be useful to treat skin-mediated inflammatory reactions.
54  leukocyte recruitment in the development of inflammatory reactions.
55  they simultaneously support tolerogenic and inflammatory reactions.
56  Lactococcus lactis G121 to prevent allergic inflammatory reactions.
57 ly titanium dioxide) leading to peri-implant inflammatory reactions.
58 ced gene 6 (TSG-6), which is up-regulated in inflammatory reactions.
59 municable diseases and are driven by chronic inflammatory reactions.
60  responders" to tissue stress and drivers of inflammatory reactions.
61 n and from reduced allergic, autoimmune, and inflammatory reactions.
62 regulation, orchestrating both pro- and anti-inflammatory reactions.
63                                              Inflammatory reactions activated by pattern recognition
64 om repeated injections, a potential toxic or inflammatory reaction after exposure to the biologic age
65 tin-like domain of TM resulted in a stronger inflammatory reaction after Stx2/LPS with more neutrophi
66 chistosomes results in a CD4 T cell-mediated inflammatory reaction against parasite eggs that varies
67 gainst pathogens while avoiding harmful auto-inflammatory reactions against the host.
68 VCAM-1 in regulating the immune response and inflammatory reactions against viral infections.
69 the poorly understood instant blood-mediated inflammatory reaction and a thorough understanding of ea
70  factors and antigens that stimulate a local inflammatory reaction and activation of the innate immun
71                    In pulmonary fibrosis, an inflammatory reaction and differentiation of myofibrobla
72 ommitment of cholangiocytes and enhances the inflammatory reaction and liver fibrosis.
73 ating that TLR2 activation limited the toxic-inflammatory reaction and maintained assembly of the dru
74 fective means of controlling a virus-induced inflammatory reaction and may act mainly by the effects
75 is critically involved in the postinfarction inflammatory reaction and mediates adverse dilative remo
76                  We examined neuronal death, inflammatory reaction and neurogenesis in hippocampus 72
77 f sepsis for cytokine storm, and deregulated inflammatory reaction and proapoptotic environment, as w
78 f MRSA pneumonia by attenuating an excessive inflammatory reaction and protecting the lung from patho
79 portant for resolution of the postinfarction inflammatory reaction and regulates fibroblast function.
80 lls (MCs) contribute to the control of local inflammatory reactions and become hyporesponsive after p
81 ntiviral immunity but can exacerbate harmful inflammatory reactions and cause hematopoietic stem cell
82 EX1, NOTCH3, and Col4A1 are known to provoke inflammatory reactions and damage the brain in a wide va
83 teine proteases, have been shown to increase inflammatory reactions and lymphocyte apoptosis.
84                        Thus, Foxd1 modulates inflammatory reactions and prevents autoimmunity by dire
85      Inhalation of agricultural dusts causes inflammatory reactions and symptoms such as headache, fe
86 ortant in bacterial killing, but also drives inflammatory reactions and tissue oxidation.
87 eoporosis but have also been found to induce inflammatory reactions and to delay the progression of b
88 shown to cause foreign-body sensation, local inflammatory reaction, and conjunctival hyperemia.
89 insufficient re-epithelialization, decreased inflammatory reaction, and reduced collagen remodeling.
90 ing immunomodulatory effects in allergic and inflammatory reactions, and also plays a key regulatory
91 ns, including IgE-dependent allergies, other inflammatory reactions, and mastocytosis.
92 f regulatory T cells, which help to suppress inflammatory reactions, and plays a significant role in
93 tors, FPR1 and FPR2, play critical roles for inflammatory reactions, and receptor-specific antagonist
94 tions, such as inadequate bone regeneration, inflammatory reactions, and wound infection.
95  receptors, rod and cone opsins; inhibit the inflammatory reactions; and induce the expression of ant
96                                     Although inflammatory reactions are beneficial and necessary for
97  complement system, known to produce a local inflammatory reaction, are associated with the plaques a
98 d liver dysfunctions and the severity of the inflammatory reaction as evaluated by biomarkers kinetic
99 ar TA injection markedly decreased the acute inflammatory reaction associated with intravitreous Ad-L
100                 Controlling the overwhelming inflammatory reaction associated with polymicrobial seps
101 o bone (entheses), the key territory for the inflammatory reaction associated with PsA, being subject
102 nvolved in the generation of the more severe inflammatory reaction associated with the late central n
103 ole for VCAM-1 in promoting successful local inflammatory reactions associated with efficient viral c
104                           This results in an inflammatory reaction at several sites, including the sy
105    We also assessed oxidative stress and the inflammatory reaction at the injury site, neuronal and o
106 ipants (40%) experienced a localized sterile inflammatory reaction at the site of the injection, whic
107 ies show the presence of a lymphohistiocytic inflammatory reaction at the sites of delivery of alloge
108  involvement in immediate as well as chronic inflammatory reactions at both local and distal sites po
109 s suggest that vitamin D modulates cutaneous inflammatory reactions, at least in part, by increasing
110  transcription factors has a central role in inflammatory reactions, being stimulated by multiple cyt
111 sue-resident macrophages during infection or inflammatory reactions, besides self-replication of tiss
112                 Loss of Bmal1 aggravated the inflammatory reaction both in vivo and in vitro.
113              Panx3 expression coincided with inflammatory reactions both in vivo and in vitro.
114 ltalpxP32::P(lpxL) lpxL) stimulated a strong inflammatory reaction but sickened mice before recovery
115              In contrast, CD39-null mice had inflammatory reactions but developed only minor pancreat
116 n is important because TNF not only furthers inflammatory reactions but might also be neuroprotective
117 onse to chemical or physical stimuli repress inflammatory reactions, but cells that undergo nonapopto
118                    MKP-1 serves to limit the inflammatory reaction by inactivating JNK and p38, thus
119 ther propose that dynamic modulation of this inflammatory reaction by interrupting the vicious cycle
120  CX(3)CR1(+) lining macrophages restrict the inflammatory reaction by providing a tight-junction-medi
121                                         This inflammatory reaction can spread throughout the systemic
122                         Isolated intraocular inflammatory reactions can be an initial manifestation o
123 ces between PPC and CCC in corneal edema, AC inflammatory reaction, capsular fibrosis, ACO, and PCO.
124 ncreatic islet transplantation (PITx), early inflammatory reactions cause an immediate loss of more t
125  occurs during isolation and from the severe inflammatory reactions caused by the transplantation pro
126 9 transgenic mice mounted an enhanced innate inflammatory reaction characterized by increased express
127 egimen-dependent induction of an acute local inflammatory reaction, characterized in part by rapid ne
128                                              Inflammatory reaction clears dead cells and matrix debri
129 hases of atherogenesis, including well-known inflammatory reactions consequent to intimal trapping an
130 oil' to the stem cells' seed), such as local inflammatory reactions, contribute to successful tissue
131 ith ridge height; thereafter, a more intense inflammatory reaction corresponded to reduction in alveo
132 vironment extended immobility, injuries, and inflammatory reactions demand local microcirculatory ada
133 m day 4 to day 14 (P < 0.001), with distinct inflammatory reaction demonstrated by lymphocyte and neu
134     Although frequently accompanied by local inflammatory reactions detectable in cerebrospinal fluid
135                                           An inflammatory reaction developed in all nine of the survi
136                                       A mild inflammatory reaction disappeared after 12 weeks.
137                         Loss of T and B cell inflammatory reactions does not protect from impaired ly
138 syndrome is characterized by an overwhelming inflammatory reaction driven by excessive expansion of T
139 itations apply, most notably a chronic local inflammatory reaction due to permanent implantation of a
140 izing autoantibodies, who developed a severe inflammatory reaction during anti-tuberculosis treatment
141 zing bacteria, which is likely to impact the inflammatory reaction during mucosal diseases.
142 n regulates immune cell infiltration and the inflammatory reaction during sepsis, suggesting that act
143 t bear therapeutic potential by reducing the inflammatory reaction during the early phase of AILI.
144 y, focusing on muscle satellite cells (SCs), inflammatory reaction, fibrosis, and formation of new bl
145 gists when there is a need to review diverse inflammatory reactions; for identification of fungi, par
146 lected: VA, degree of anterior and posterior inflammatory reaction, foveal thickness measured by opti
147 hase plasma protein, is a major component of inflammatory reactions functioning as a mediator of inna
148  vs 45 years, P = .05), presence of vitreous inflammatory reactions &gt;2+ (35.9% vs 6.2%, P = .04), vas
149                                The remaining inflammatory reactions had a change in the ratio of CD4
150                                     Systemic inflammatory reactions have been postulated to exacerbat
151 re main effector cells of allergic and other inflammatory reactions; however, only a few anti-MC agen
152 ticipation in allergic responses and related inflammatory reactions; however, the glycan-containing l
153  poor survival of donor cells in response to inflammatory reactions, hypoxia, oxidative stress, or nu
154                  This instant blood-mediated inflammatory reaction (IBMIR) activates the coagulation
155                       Instant blood-mediated inflammatory reaction (IBMIR) causes significant destruc
156 lets can result in an instant blood-mediated inflammatory reaction (IBMIR) that contributes to early
157 iveness because of an instant blood-mediated inflammatory reaction (IBMIR) that occurs immediately af
158 re is hampered by the instant blood-mediated inflammatory reaction (IBMIR), a thromboinflammatory res
159 adversely trigger the instant blood-mediated inflammatory reaction (IBMIR).
160 t has been termed the instant blood-mediated inflammatory reaction (IBMIR).
161 nts without HIV infection caused intraocular inflammatory reaction in all cases and demonstrated more
162  autoimmune disease characterized by a local inflammatory reaction in and around islets followed by s
163 ation of active B burgdorferi infection, the inflammatory reaction in mice with persistent joint infl
164 t cytosolic RLR-RNA-sensing pathway mediated inflammatory reaction in response to acute liver IR.
165 PE-PLD-deficient mice fail to mount a normal inflammatory reaction in response to carrageenan adminis
166 nterica serotype Typhimurium causes an acute inflammatory reaction in the ceca of streptomycin-pretre
167 nterica serotype Typhimurium causes an acute inflammatory reaction in the ceca of streptomycin-pretre
168 SV-1 infection has been shown to initiate an inflammatory reaction in the cornea that leads to tissue
169 h herpes simplex virus 1 (HSV-1) sets off an inflammatory reaction in the cornea which leads to both
170 This infection usually results in a blinding inflammatory reaction in the cornea, orchestrated mainly
171 ve colitis are caused by an excessive immune-inflammatory reaction in the intestinal wall.
172 eficit in short term memory (STM) and strong inflammatory reaction in the ipsilateral cortex and hipp
173      Poly(I:C) injection induced a sustained inflammatory reaction in the SN and in the dorsolateral
174 wild-type or CXCR3-/- mice, they elicited an inflammatory reaction in wild-type but not in CXCR3-/- m
175 epidermis of adult mice also led to stronger inflammatory reactions in a tape-stripping test and in a
176                                              Inflammatory reactions in anterior segments developed in
177 ection against disease onset, and attenuated inflammatory reactions in arthritic mice.
178  Interleukin 6 plays a key role in mediating inflammatory reactions in autoimmune diseases and cancer
179                                              Inflammatory reactions in both IRI and infections share
180  invading microorganisms but also potentiate inflammatory reactions in cases of excessive or misdirec
181 R knocked down cholangiocytes fail to induce inflammatory reactions in control large cholangiocytes.
182 lving histamine-induced and allergen-induced inflammatory reactions in forearm skin.
183 sual sphingolipids that are known to promote inflammatory reactions in gingival fibroblasts and Toll-
184 e receptors (TLR) activate multiple steps in inflammatory reactions in innate immune responses.
185 FI is promising for noninvasive detection of inflammatory reactions in IR myocardium because of its m
186 that establish chronic infections and elicit inflammatory reactions in mammals.
187 dampen, rather than provoke, T cell-mediated inflammatory reactions in many clinical conditions where
188 ifs" were recently shown to block pathologic inflammatory reactions in murine models of autoimmune di
189  and IL-1beta was associated with comparable inflammatory reactions in patients and controls.
190 tenance of immune homeostasis or breakout of inflammatory reactions in patients with chronic inflamma
191 3CL1 mRNA, providing fine-tuning of cellular inflammatory reactions in response to IFN-gamma stimulat
192 fied as important factors amplifying the pro-inflammatory reactions in these pathologies.
193 -1 in the negative control of MAPK-regulated inflammatory reactions in vivo.
194 vation and has been used to study immune and inflammatory reactions in which nitric oxide (NO) is a v
195 evalence of ophthalmic findings (intraocular inflammatory reactions [including transient, isolated re
196 gulating tissue homeostasis and coordinating inflammatory reactions, including those involved in chro
197  and that suppressing Pcsk9 can decrease the inflammatory reaction induced by imiquimod treatment and
198                        There were no visible inflammatory reactions, infections or extrusions around
199 gates" for transmigrating neutrophils in all inflammatory reactions investigated (elicited by leukotr
200 ils are minimized, which suppress subsequent inflammatory reaction involved in the liver.
201                          A well-orchestrated inflammatory reaction involves the induction of effector
202                                Resolution of inflammatory reactions involves emigration of monocyte-d
203 s do not express COX-2), intensifies a broad inflammatory reaction involving numerous cytokines and o
204 ins unknown but a timely and well-controlled inflammatory reaction is essential for the integrity and
205 tants of B. cenocepacia, suggesting that the inflammatory reaction is likely induced by an as yet unc
206                                          The inflammatory reaction is orchestrated by gamma interfero
207 nd an inducible chemokine, whose role in the inflammatory reaction is poorly known.
208 ized to the vessel wall, the etiology of the inflammatory reaction is unknown.
209          A characteristic feature of chronic inflammatory reactions is their persistence and predilec
210 hibit a cell death-type modulatory effect on inflammatory reactions is unknown.
211  (FA) dietary supplementation would modulate inflammatory reactions leading to periodontal disease in
212 though beneficial at early stages, excessive inflammatory reaction leads to cell death and tissue dam
213    The current VPC regime induced local skin inflammatory reaction limited to subcutaneous injection
214                               To promote the inflammatory reaction, lipopolysaccharide was administra
215                    Failure to terminate such inflammatory reactions may lead to detrimental systemic
216                   The evidence for a chronic inflammatory reaction mediated by microglial cells in th
217                         During granulomatous inflammatory reactions, myeloid cells can differentiate
218                               No intraocular inflammatory reaction occurred after intravitreous injec
219 tachment appeared once more, however without inflammatory reaction of the anterior chamber.
220 ryptamine (5-HT)) is implicated in enhancing inflammatory reactions of skin, lung, and gastrointestin
221          Although signals that trigger acute inflammatory reactions often stimulate dendritic cell ma
222 (i.e. similar to untreated tissues), with no inflammatory reaction or fibrous encapsulation occurring
223       There were no intraocular hemorrhages, inflammatory reactions, or pigment dispersion and the IO
224      We propose that this plaque-independent inflammatory reaction originates from neurons burdened w
225                                          The inflammatory reaction over several days will drive robus
226                   That the human whole blood inflammatory reactions paralleled the host response show
227 c strategies incorporating methods to elicit inflammatory reactions, particularly NK cell-driven lysi
228  2 entities characterized by a granulomatous inflammatory reaction pattern but with unique genetic an
229 s play a crucial role during stroke, and the inflammatory reaction promotes neurodegeneration.
230  (anterior chamber cells and flare, vitreous inflammatory reactions, retinal whitening), without clin
231 -evoked responses are elevated during airway inflammatory reaction, revealing the potential convergen
232 ted disease (IgG4-RD) is characterized by an inflammatory reaction rich in IgG4-positive plasma cells
233 sed impaired life span and intensive cardiac inflammatory reactions, showing that the cardiotoxic IFN
234  E. coli may contribute to the resolution of inflammatory reactions since E. coli can inhibit hydroxy
235  Although the granulocytes contribute to the inflammatory reaction, stem cells may promote tissue rep
236 yelination and persists despite the residual inflammatory reaction subsiding to levels seen in contro
237 ter a treatment that deliberately induces an inflammatory reaction, such as intravesical instillation
238 t defense, but also relevant in pathological inflammatory reactions, such as sepsis.
239 occurs as part of the central nervous system inflammatory reaction suggests a potential mechanism of
240                                  The type of inflammatory reaction suggests cytotoxic CD8+ T lymphocy
241 r the cause, or a feature of severe systemic inflammatory reaction syndrome, whatever the cause.
242 pates in the molecular events underlying the inflammatory reaction that accompanies cerebral ischemia
243 ayed immune response, followed by an intense inflammatory reaction that causes widespread tissue dama
244              Myocardial necrosis triggers an inflammatory reaction that clears the wound from dead ce
245                    The injury causes a rapid inflammatory reaction that includes activation of the ti
246             Granulomas represent a localized inflammatory reaction that is characteristically observe
247            Myocardial infarction triggers an inflammatory reaction that is involved in cardiac remode
248  regeneration are closely associated with an inflammatory reaction that is usually characterized by s
249 ing that this is associated with the intense inflammatory reaction that occurs in this condition.
250                  Surgery launches a systemic inflammatory reaction that reaches the brain and associa
251           Infarct healing is dependent on an inflammatory reaction that results in leukocyte infiltra
252 y preterm labor or preeclampsia, triggers an inflammatory reaction that results in spontaneous preter
253 rystals into the rat joint provoked a marked inflammatory reaction that was significantly inhibited (
254 innate immune response involves a variety of inflammatory reactions that can result in inflammatory d
255 deposits but damaged blood vessels caused by inflammatory reactions that lead to ischemia, amyloid ac
256      Bone loss in periodontitis results from inflammatory reactions that stimulate osteoclastic bone
257  of leprosy is challenging, particularly its inflammatory reactions, the major cause of irreversible
258 ponse to pathological stimuli by suppressing inflammatory reactions through AdipoR1/AMPK-dependent me
259  counteracts scar resolution by perpetuating inflammatory reactions through release of proinflammator
260 osapentaenoic acid (EPA, 20:5n-3)], modulate inflammatory reactions through various mechanisms, inclu
261     Macrophages play vital functions in host inflammatory reaction, tissue repair, homeostasis and im
262 n of CCR7 implies that during a TH2-mediated inflammatory reaction, TLSP-activated CD1c(+) DCs are re
263                          The immune-mediated inflammatory reaction to allogeneic and xenogeneic stem
264                       Histology found little inflammatory reaction to any hydrogel implant.
265                                          The inflammatory reaction to coated discs was assessed in th
266 letion of NK cells significantly altered the inflammatory reaction to corneal wounding, as evidenced
267 corneal healing by limiting the innate acute inflammatory reaction to corneal wounding.
268  uneventful bone healing, although the early inflammatory reaction to femur fracture was marginally e
269                                        Local inflammatory reaction to inoculation with E coli was att
270  may serve as a surrogate marker of unwanted inflammatory reaction to microbicide products topically
271 steady state and after induction of a type 2 inflammatory reaction to ovalbumin (OVA).
272                    Periodontal disease is an inflammatory reaction to the bacteria in dental plaque.
273                            Modulation of the inflammatory reaction to the wear products represents a
274 ts are dysregulated, leading to an increased inflammatory reaction to unspecific triggers.
275  test subject to assess cytotoxicity and pro-inflammatory reactions to diatom-biosilica.
276 cutaneous sensitization susceptibilities and inflammatory reactions to environmental insults in human
277 ppreciated mechanism that prevents prolonged inflammatory reactions to Gram-negative bacteria and LPS
278  try to draw an arc from initiation of acute inflammatory reactions to microbial pathogens to develop
279 f transplantation is associated with instant inflammatory reactions to the graft and subsequent islet
280 vidence that this concept holds true for the inflammatory reaction underlying AD, where IL-13 is over
281 ate HLA to evade host immune responses, host inflammatory reactions upregulate HLA, and differences a
282 behavioral deficits, neuronal injury and the inflammatory reaction using the kainic acid (KA) seizure
283 nly poised to initiate potentially injurious inflammatory reactions via immune complex formation asso
284                                         This inflammatory reaction was dependent on the interaction o
285                                 In 1 case an inflammatory reaction was observed in the anterior chamb
286  events, though a local sterile conjunctival inflammatory reaction was observed.
287 arization were increased, while the extended inflammatory reaction was repressed in the relaxin-treat
288  lymphatic system is a critical regulator of inflammatory reactions, we tested the hypothesis that ob
289 ith virulent pathogens often induce a strong inflammatory reaction, what drives the increased immune
290 culature and towards the core of the ensuing inflammatory reaction where they exert effector function
291 Th1 lymphocytes participate in cell-mediated inflammatory reactions, where the selectins play a role
292 resent the major effector cells driving this inflammatory reaction whereas Foxp3(+) regulatory T cell
293 at RAGE is a critical mediator of the type 2 inflammatory reactions which drive the development of T2
294         Sepsis is associated with a systemic inflammatory reaction, which can result in a life-endang
295  role of Foxp3(+)CD4(+) Tregs during ongoing inflammatory reactions, which is the topic of this artic
296                      In contrast, persistent inflammatory reactions, which may be driven by infection
297 of action of neuropeptides and on immune and inflammatory reactions will likely yield new treatment o
298 , and the orchestration of acute and chronic inflammatory reactions within the arterial wall.
299 afts in four recipients with MC developed an inflammatory reaction without skin graft loss.
300      These results affirm that metabolic and inflammatory reactions yield electrophilic products that

 
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