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1 epatocytes (parenchymal cells) and LSEC (non-parenchymal cells).
2  label-free identification of lipid-rich non-parenchymal cells.
3 ly in mice that had TLR4 expression on their parenchymal cells.
4 emical analysis of interleukin (IL)-1beta in parenchymal cells.
5 delivered by intact MyD88 signaling on renal parenchymal cells.
6 erentiation into fully mature and functional parenchymal cells.
7 b-mediated destruction of transplanted liver parenchymal cells.
8  PDL1 exclusively on either hematopoietic or parenchymal cells.
9 hose concentration is regulated by the liver parenchymal cells.
10  manifested mainly by stimulation of genital parenchymal cells.
11 cropatterned alone and in coculture with non-parenchymal cells.
12 e generation of lipid nutrients for adjacent parenchymal cells.
13 d at higher levels than by the corresponding parenchymal cells.
14 ciated with proteinuria and injury by kidney parenchymal cells.
15 e antigens that are expressed exclusively in parenchymal cells.
16 PPARalpha-regulated gene expression in liver parenchymal cells.
17 interactions between blood vessels and brain parenchymal cells.
18 en by IL-15 produced by either BM-derived or parenchymal cells.
19 s of leukocytes, epithelial cells, and other parenchymal cells.
20 phyrin accumulation), more iron was found in parenchymal cells.
21 bral microvessels and central nervous system parenchymal cells.
22 ment, where they are ingested by neighboring parenchymal cells.
23  in innate and adaptive immunity, as well as parenchymal cells.
24 ng T cells and potentially tolerogenic graft parenchymal cells.
25 tence of an efflux transport system in brain parenchymal cells.
26 eas TIMP-1 RNA was detected predominantly in parenchymal cells.
27 ation can replenish large numbers of hepatic parenchymal cells.
28 the opportunity for lymphocyte attachment to parenchymal cells.
29 tion of whether HIV-1 directly infects renal parenchymal cells.
30 ized in primary cultures of mature liver non-parenchymal cells.
31  to malignant cells by disadvantaging normal parenchymal cells.
32 expression of this cell adhesion molecule on parenchymal cells.
33 with ET, neutrophils transmigrate and attack parenchymal cells.
34 nduced by peptide-MHC complexes expressed on parenchymal cells.
35 l between the sinusoidal lumen and the liver parenchymal cells.
36 myofibroblasts (MFBs) in place of functional parenchymal cells.
37 rves distinct functions in immune and tissue parenchymal cells.
38 mitting diffuser, with no intervening viable parenchymal cells.
39 ecialized to fulfill the particular needs of parenchymal cells.
40 ission of multiple metabolic vasodilators by parenchymal cells.
41 ire IL-15 produced by both hematopoietic and parenchymal cells.
42 anced ASO delivery to hepatocytes versus non-parenchymal cells.
43  libraries of ECs devoid of lymphatic ECs or parenchymal cells.
44 t develop in mice lacking TLR4 expression on parenchymal cells.
45                                          Non-parenchymal cells (3T3 fibroblasts) were added to hepato
46                                              Parenchymal cell activation via TLR4 is a key component
47 fic IRF3-KO mice, deficiency of IRF3 only in parenchymal cells aggravated alcohol-induced liver injur
48                                        Liver parenchymal cell allografts initiate both CD4-dependent
49 focused on inflammatory cell TLR4 responses, parenchymal cells also express TLR4.
50 LT and liver injury, and this suggested that parenchymal cell and BMDC B7-H1 expression was involved
51    To evaluate the relative contributions of parenchymal cell and bone marrow-derived cell (BMDC) B7-
52 termined the CD phenotype of normal prostate parenchymal cells and are now extending this analysis to
53 efflux transport processes at both the brain parenchymal cells and blood-brain barrier (BBB); one or
54 on transporters for the efflux of VPA at the parenchymal cells and capillary endothelium in the brain
55 of antigen that is actually transferred from parenchymal cells and cross-presented in vivo is unknown
56 ecognition receptors expressed by immune and parenchymal cells and drive innate immunity that can in
57 gy is conserved in both immune and nonimmune/parenchymal cells and is fundamental for the respective
58 3-dioxygenase (IDO) is expressed by APCs and parenchymal cells and is further inducible by inflammati
59 ous HGD promoter was localised to only liver parenchymal cells and kidney proximal tubules in adultho
60         Heterotypic cell interaction between parenchymal cells and nonparenchymal neighbors has been
61  examination revealed that a large number of parenchymal cells and other types of cells in the liver
62 Our results indicate that IRF3 activation in parenchymal cells and resulting type I IFNs have protect
63 t dendritic cells can acquire MHC from graft parenchymal cells and simultaneously present it as intac
64 ired for CD8 T-cell allorecognition of graft parenchymal cells and suggest a mechanism by which indir
65 t not only in immune cells but also in liver parenchymal cells and the complexity of the cell populat
66  lymphocytes and the surrounding stromal and parenchymal cells and together with the two related cyto
67 ve observed that MF6p/FhHDM-1 is produced by parenchymal cells and transported to other tissues (e.g.
68 opoietic cell-produced IL-10 acting on brain parenchymal cells and vice versa.
69 ntrifugation into two portions, hepatocytes (parenchymal cells) and LSEC (non-parenchymal cells).
70 ion between infiltrating cells, endothelium, parenchymal cells, and components of extracellular matri
71 rphogenic processes that sculpt vasculature, parenchymal cells, and mesenchyme to form the multifacet
72    SmSmad2 was localized in the subtegument, parenchymal cells, and sex organs in both male and femal
73 ysema, in which there is both increased lung parenchymal cell apoptosis and defective AC uptake by AM
74 T)-induced liver failure is characterized by parenchymal cell apoptosis and inflammation leading to l
75 In this study, we tested the hypothesis that parenchymal cell apoptosis may induce neutrophil transen
76                   We conclude that excessive parenchymal cell apoptosis represents an important signa
77 intercellular adhesion molecule-1 (sICAM-1), parenchymal cell apoptosis, and neutrophil sequestration
78 proteases is critical for the development of parenchymal cell apoptosis.
79                                              Parenchymal cells are closely associated with lineages o
80  a new paradigm in which parenchymal and non-parenchymal cells are continuously replaced by newly for
81    Our findings show for the first time that parenchymal cells are released from organs under non-pro
82 eric mice show that both leukocytes and lung parenchymal cells are sources of profibrotic MMP-8 durin
83 sms of cellular crosstalk between immune and parenchymal cells are still elusive.
84            These findings suggest that liver parenchymal cells are the dominant source of Type I IFN
85                      We have also shown that parenchymal cells are tolerogenic in vitro.
86 t alpha-tanycytes, but not beta-tanycytes or parenchymal cells, are neurospherogenic.
87 se data demonstrate an unanticipated role of parenchymal cells, as shown here for hepatocytes, in tis
88 ocytes produced neoorgans populated by these parenchymal cells, as well as by chimeric human vessels
89  with extensive infection and destruction of parenchymal cells at the margins of granulomas.
90 ent and disorganized pancreatic fibrosis and parenchymal cell atrophy occur.
91                 FGFR type 4 (FGFR4) in liver parenchymal cells binds only FGF-1, whereas FGFR1 binds
92 n the regulation of innate immunity in liver parenchymal cells both in vitro and in vivo and to our k
93 t p62/SQSTM1, a protein upregulated in liver parenchymal cells but downregulated in HCC-associated HS
94 , the protective phenotype tracked with lung parenchymal cells but not bone marrow-derived cells.
95           Interestingly, mice with wild-type parenchymal cells but TNFRsf1a/1b(-/-) hematopoietic cel
96 d with diffuse increases in iron staining of parenchymal cells but without evidence of significant li
97 n which IFN-gammaR expression was limited to parenchymal cells, but resolution was significantly dela
98 striatal injections led to beta-gal-positive parenchymal cells, but, unlike rAAV2betagal, rAAV5betaga
99 idue assists in preferential transduction of parenchymal cells by AAV6 vectors in comparison with AAV
100 ne only in their leukocytes or only in their parenchymal cells by lethal radiation and reconstitution
101 ults in the generation of significantly more parenchymal cells by P28, composed mostly of ventromedia
102 thesis that acute damage of allogeneic liver parenchymal cells by the CD4-dependent pathway is alloan
103 n recognition receptors (PRRs) on immune and parenchymal cells can detect danger-associated molecular
104 local lipid release and a mechanism by which parenchymal cells can modulate tissue macrophage differe
105 ntributing to the postnatal expansion of the parenchymal cell compartment.
106 ne cells or between immune cells and hepatic parenchymal cells contribute to the exacerbation of live
107 s to show that B7-H1 expression by recipient parenchymal cells controls the second wave of alloreacti
108 cant decrease in lymphocyte infiltration and parenchymal cell damage in the submandibular salivary gl
109 l oxidant production is a critical factor in parenchymal cell death caused by alcohol.
110 ccumulation is an inescapable consequence of parenchymal cell death has not been explored.
111 diffused into hepatocytes and contributed to parenchymal cell death in vivo.
112 lay a key role in hepatocyte dysfunction and parenchymal cell death upon reperfusion.
113                                     Further, parenchymal cell-derived Type I IFNs increase antiinflam
114                              We propose that parenchymal cells direct SIRS in response to LPS.
115 nt protein-1 (MCP-1) is upregulated in renal parenchymal cells during kidney disease.
116  the crosstalk between liver lymphocytes and parenchymal cells during liver regeneration after partia
117                  Loss of B7-H1 expression by parenchymal cells during the course of GVHD was associat
118 In liver and pancreas, replication of mature parenchymal cells ensures the physiological turnover and
119 orce separated plasma through packed beds of parenchymal cells exhibited significant necrosis with a
120  Given that activated endothelial and tissue parenchymal cells express both class I and class II MHC
121               These studies demonstrate that parenchymal cell expression of B7-H1 is required for tol
122 beta IEL populations, depended completely on parenchymal cell expression of IL-15R alpha and IL-15 bu
123                                  The hepatic parenchymal cells extract mebrofenin from the blood usin
124 lk between organotypic endothelial cells and parenchymal cells for identification of determinants of
125  in the targeting of transplanted allogeneic parenchymal cells for macrophage-mediated cytotoxic immu
126 R alpha expression by bone marrow-derived or parenchymal cells for mediating lymphocyte subset develo
127  and accumulated in nonparenchymal more than parenchymal cells for prolonged periods, significantly a
128 important not only in leukocytes but also in parenchymal cells for the progression of inflammation.
129 l cells play an important role in protecting parenchymal cell from rejection.
130                                Detachment of parenchymal cells from a solid matrix switches contextua
131 arenchymal cells may effectively protect the parenchymal cells from immune attack.
132       Flow cytometry analysis of hepatic non-parenchymal cells from infected mice reveals that IKKbet
133 se that T cells activated in the presence of parenchymal cells from the eye (an immune privileged sit
134 tterning and differentiation, maintenance of parenchymal cell function, and the size, shape, and inva
135      Both groups of mice with TNFR-deficient parenchymal cells had low bronchoalveolar lavage fluid t
136                    Direct infection of renal parenchymal cells has been implicated in the pathogenesi
137  by bone-marrow (BM) derived versus infected parenchymal cells has on T cell exhaustion.
138                                              Parenchymal cells have a major role in the trans-present
139 pffer cell NADPH oxidase, and peroxisomes in parenchymal cells have been proposed as the potential so
140             The rate of consumption of NO by parenchymal cells (hepatocytes) linearly depends on both
141 mphocytes to produce IL-1beta, which induces parenchymal cell IL-8 release.
142    cKK-E12 was highly selective toward liver parenchymal cell in vivo, with orders of magnitude lower
143  by labile plasma iron, which is taken up by parenchymal cells in a dysregulated manner; in contrast,
144 at NO production from NOS2 expressed in lung parenchymal cells in a murine model of ARDS would correl
145 e detected a large number of apoptotic renal parenchymal cells in advanced nephritis and determined t
146 led patterns of increased C5aR expression in parenchymal cells in all four organs following CLP.
147                                              Parenchymal cells in aorta, liver, and lung bearing TLR4
148 ers and differentiated to mature, functional parenchymal cells in approximately 1 week, remaining via
149 ities, but the extent to which leukocytes vs parenchymal cells in different organs contribute to the
150  cells and vascularization by these cells of parenchymal cells in implants.
151  pathway that leads to regulated necrosis of parenchymal cells in ischemia-reperfusion injury (IRI),
152 nuclear cells and CCL20 induction by hepatic parenchymal cells in liver disease patients.
153 pPar1, c-kit, and alpha-fetoprotein (AFP) in parenchymal cells in massive necrosis.
154       Further, selective MyD88 deficiency in parenchymal cells in mice with wild-type BM failed to pr
155 F-alpha), and apoptotic destruction of renal parenchymal cells in MRL-Fas(lpr) autoimmune kidney dise
156                   These results suggest that parenchymal cells in some organs may contribute substant
157 ociated with decreased TGF-beta derived from parenchymal cells in the BAL fluid, lower nitrite levels
158 nflammatory cells and activation of resident parenchymal cells in the central nervous system.
159 r (ASGP-R), which is abundantly expressed by parenchymal cells in the liver of mammals.
160 xpressed by sinusoidal endothelial cells and parenchymal cells in the liver, respectively.
161  role of productive HIV-1 infection of renal parenchymal cells in the pathogenesis of HIV-associated
162 l contribution of TLR4 on nonparenchymal and parenchymal cells in the pathogenesis of PH as determine
163 argeted sampling of the xylem sap and single parenchymal cells in the pith, thereby differentiating t
164  states of their 'client cells': namely, the parenchymal cells in the various tissues in which macrop
165 94, which is specifically expressed in liver parenchymal cells, in preventing liver cancer cell metas
166  transduce not only 3LL cells but also brain parenchymal cells including endothelial cells, neurons,
167 an anergic T cells can impair the ability of parenchymal cells (including endothelial and epithelial
168      These therapies target several types of parenchymal cells (including neural stem cells, cerebral
169 ch is expressed broadly on hematopoietic and parenchymal cells, including pancreatic islet cells; and
170 Fv was found to associate with postvascular, parenchymal cells, indicating its successful receptor-me
171 ble expression of viral antigens even in non-parenchymal cells, indicating that infection of these ce
172  animals expressing CCL2 in the CNS promoted parenchymal cell infiltration and ascending paralysis in
173 hat the observed signaling pathways regulate parenchymal cell injury and death in CCK-induced pancrea
174                        Neutrophils can cause parenchymal cell injury in the liver during ischemia-rep
175 iver is important for the genesis of hepatic parenchymal cell injury in this model.
176          However, the molecular mechanism of parenchymal cell injury remains controversial.
177 oliferation, activation, and apoptotic graft parenchymal cell injury, but the high frequency of apopt
178 ailure, which involves a neutrophil-mediated parenchymal cell injury.
179  may be a cause rather than a consequence of parenchymal cell injury.
180                           LPL is secreted by parenchymal cells into the interstitial spaces; it then
181 ne lupus nephritis, while apoptosis of renal parenchymal cells is a feature of advanced human lupus n
182  APC to cross-present Ag to MHC class I from parenchymal cells is essential for priming as well as to
183 tudies suggest that PD-L1 expression on host parenchymal cells is more critical than hematopoietic ce
184 kine receptor on circulating blood cells and parenchymal cells is often used to coordinate complex ti
185 -L1 expression on hemopoietic cells, and not parenchymal cells, is primarily responsible for limiting
186 we perform single-cell RNA sequencing on non-parenchymal cells isolated from healthy and NASH mouse l
187 DCs) cross-dressed by Ag from virus-infected parenchymal cells, it is unknown whether conditions exis
188 other DC subtypes, macrophages, B cells, and parenchymal cells lack of expression of the I-A(beta)(b)
189               Although the absence of Bim in parenchymal cells led to markedly attenuated liver damag
190 persistent expression of B7-H1 expression by parenchymal cells led to reduced proliferation of donor
191 epithelial cells acquire a cancer-associated parenchymal-cell-like phenotype when co-cultured with ca
192  E10.5 liver, when liver parenchymal and non-parenchymal cell lineages emerge.
193   However, HSV antigens were detected in non-parenchymal cells lining the ventricles.
194 enchymal stem cell (MSC) therapy can prevent parenchymal cell loss and promote tissue repair in model
195                   We studied mice with liver parenchymal cell (LPC)-specific disruption of the cylind
196                   Mice lacking NEMO in liver parenchymal cells (LPC) spontaneously develop steatohepa
197 While ablating either RIPK1 or RelA in liver parenchymal cells (LPCs) did not cause spontaneous liver
198 nhibition of catalytic IKK activity in liver parenchymal cells (LPCs; IKKalpha/beta(LPC-KO) ) were in
199 ed progressively to repopulate 60% to 80% of parenchymal cell mass in 60 days.
200       Therefore, activation of TLR4 on renal parenchymal cells may activate p38 MAPK pathways, leadin
201 V-induced responses, indicating that CCR1(+) parenchymal cells may also play a significant role in th
202 hat inflammatory mediators produced by renal parenchymal cells may influence the function of remote o
203  dependent on bone marrow stromal or hepatic parenchymal cell monolayers.
204         In this process, the antigen-bearing parenchymal cells must somehow transfer their antigens t
205 d heart transplants and donor-specific renal parenchymal cells (n=4); group 4 animals received heart
206 , evaluation of ischemic death mechanisms in parenchymal cells needs to be performed with caution.
207 stem can uniquely address the ability of CNS parenchymal cells (neurons, astrocytes, and microglia) t
208 two different co-culture MT systems with non-parenchymal cell (NPC) fraction sourced from different d
209    The influence of irradiation on graft non-parenchymal cells (NPC) was determined by monoclonal ant
210 nd cues from surrounding environment and non-parenchymal cells (NPCs).
211  that form a barrier between blood and liver parenchymal cells, NS2(H126R) activates RNase L, which l
212  the hypothesis that oxLDL may be present in parenchymal cells of cerebrum after infarction and that
213 y stages of chemical hepatocarcinogenesis in parenchymal cells of Fischer 344 rats fed a diet supplem
214 MHC class II antigens is up-regulated on the parenchymal cells of the kidney.
215                         Hepatocytes, the key parenchymal cells of the liver, are a particularly attra
216            Hepatocytes, the highly metabolic parenchymal cells of the liver, are efficient at differe
217      Furthermore, we determined that the non-parenchymal cells of the liver, i.e. endothelial, Kupffe
218 te-specific, endocytic receptor expressed by parenchymal cells of the liver.
219 ibutes are all performed by hepatocytes, the parenchymal cells of the liver.
220 ed with an elevation of Bmp6 mRNA in the non-parenchymal cells of the liver.
221 lls to serve as precursors of differentiated parenchymal cells of the lung.
222  Fusion of donor mesenchymal stem cells with parenchymal cells of the recipient can occur in the brai
223  antigen on endothelial cells, and on tissue parenchymal cells once they have entered the tissue.
224                         Mice bearing TLR4 on parenchymal cells only, marrow-derived cells only, both,
225              A selective B7-H1 deficiency on parenchymal cells or BMDCs resulted in similar levels of
226 ients chimeric liver grafts lacking B7-H1 on parenchymal cells or BMDCs.
227 rks to support engineered tissues of desired parenchymal cell origin.
228  and for their expression in macrophages and parenchymal cells outside of the tumors by immunohistoch
229 eport that targeted deletion of PBP in liver parenchymal cells (PBP(Liv-/-)) results in the abrogatio
230                                              Parenchymal cells (PC), Kupffer cells (KC), and liver en
231 t MyD88 in immune cells rather than in liver parenchymal cells plays an important role in inflammator
232 clei constitute only a small fraction of the parenchymal cell pool.
233 rtance of inter-donor variability of the non-parenchymal cell population in the overall governance of
234 ression in crescentic GN, acting to regulate parenchymal cell populations by modulating both cell pro
235  proteins appear to be expressed in cerebral parenchymal cell populations that do not normally do so.
236                  Small, extraportal, hepatic parenchymal cells, positive for biliary-type cytokeratin
237 after IRI, suggesting that CD47 signaling in parenchymal cells predominantly mediates renal damage.
238 rating and resident immune cells, as well as parenchymal cells, present in nephritic kidneys.
239 otection; instead, they recognize antigen on parenchymal cells-presumably parasitized hepatocytes.
240                  Whereas the initial step of parenchymal cell proliferation was not affected by acute
241 aken together, these data imply that CD47 on parenchymal cells promotes injury after renal ischemia a
242 ta provide evidence that PD-L1 expression on parenchymal cells rather than hematopoietic cells protec
243 he effects of TRPM2 are due to expression in parenchymal cells rather than hematopoietic cells.
244             Transfer of IFN-gamma into brain parenchymal cells rather than tumor is both necessary an
245 ar network must be organized so that all the parenchymal cells receive adequate nutrients.
246 e generated by continual processing of graft parenchymal cells; recognition of donor haemopoietic fra
247 long-term protection to ischemically injured parenchymal cells regardless of how effectively they can
248 n the thymus, whereas both hematopoietic and parenchymal cells regulated iNKT cell numbers in the per
249 onstrate that compartmental placement of non-parenchymal cells relative to primary or induced pluripo
250                                     Further, parenchymal cell release may have applications in other
251 muscle gene activation, which may facilitate parenchymal cell remodeling and impair graft function.
252                                   Therefore, parenchymal cells represent an effective and necessary t
253             Small, extraportal, biliary-type parenchymal cells represent cross-sections of the CoH th
254    To do so, we created mice harboring liver parenchymal cell-specific deletion of HOIP (Hoip(Deltahe
255 ase of heart valves but it is not present in parenchymal cells such as hepatocytes and renal tubular
256 However, mechanisms governing its release by parenchymal cells such as hepatocytes are unknown.
257  AhR activation changes the response of lung parenchymal cells, such that regulatory pathways in the
258 cated in the subendothelial space, and liver parenchymal cells, take on the roles of antigen-presenti
259 substrates in the bloodstream and the tissue parenchymal cells that require these substrates, a major
260                        Astrocytes are neural parenchymal cells that ubiquitously tile the central ner
261 tigen was expressed on graft vascular and/or parenchymal cells, the outcome was acute graft destructi
262 ace between circulating cells and underlying parenchymal cells, the vascular endothelium provides sig
263 ominent GmPIP2,2 hybridization to RNA in the parenchymal cells tightly juxtaposed to the syncytium.
264                           We have shown that parenchymal cell TLR4 activation drives LPS-induced syst
265            This study supports a key role of parenchymal cell TNFRs in lung injury induced by Pc and
266 hiPSCs) with various types of supporting non-parenchymal cells to attain a higher differentiation yie
267  alkaloid is sufficient to prime normal host parenchymal cells to be slowly replaced by transplanted
268 lation, in vivo mRNA paracrine transfer from parenchymal cells to ECs, or cell-autonomous expression
269 tegrate with host vessels and interface with parenchymal cells to form a functional tissue mimic.
270  range of stromal cells that co-develop with parenchymal cells to form tissues.
271  does not require cognate recognition of the parenchymal cells to occur.
272 n the capacity of the vasculature and/or the parenchymal cells to present Ag, the accumulation of cel
273 demonstrate coordination between T cells and parenchymal cells to regulate sympathetic innervation.
274                       The inability of renal parenchymal cells to secrete IL-1beta may explain why ur
275                     HOIP deficiency in liver parenchymal cells triggered tumorigenesis at 18 months o
276                   Adipocytes are the primary parenchymal cell type in adipose tissue, yet these cells
277 he intestinal epithelial cells (IEC) are the parenchymal cell type involved, a mouse model that expre
278 ells, yielding molecular definitions for non-parenchymal cell types that are found in healthy and cir
279                                          The parenchymal cell types whose TLR4 activation directs thi
280 ymphoid tissues and can mediate apoptosis of parenchymal cells upon injury and infiltration of inflam
281  show that targeted deletion of PBP in liver parenchymal cells, using the Cre-loxP system, results in
282 factors and individual cell types, including parenchymal cells, vascular cells, and immune cells, can
283 ermore, normally beta-tanycytes give rise to parenchymal cells via an intermediate population of alph
284 art by driving the expression of TGFbeta1 in parenchymal cells via the IL-17 receptor C (IL-17RC).
285 port here that transpresentation of IL-15 by parenchymal cells was crucial for generating normal numb
286 coprotein-receptor (ASGP-R) located on liver parenchymal cells was originally identified and characte
287  linear ubiquitination specifically in liver parenchymal cells, we investigated the physiological rol
288 (0.5% w/w) for 2 wk, killed, and their liver parenchymal cells were isolated.
289 r for 1 mo, were sacrificed, and their liver parenchymal cells were isolated.
290 ry, neutrophils and macrophages, rather than parenchymal cells, were the source of T/HS lymph-induced
291 em detects viral infections and mutations in parenchymal cells when antigens from these cells are cro
292 ed TGs to FAs for their subsequent uptake by parenchymal cells, whereas intracellular lipolysis gener
293 a expression by both bone marrow-derived and parenchymal cells, whereas memory-phenotype CD8 T cells
294 tained within endosomes of hematopoietic and parenchymal cells, whereupon IgG is diverted from degrad
295 um composed by a heterogeneous population of parenchymal cells which are structurally integrated but
296  We report the presence of cancer-associated parenchymal cells, which exhibit stem-cell-like features
297 large and progressively increasing number of parenchymal cells with aging.
298 s targeted injury in hepatic endothelial and parenchymal cells with suitable drugs will also help adv
299 (iNOS or NOS2) in cardiac myocytes and other parenchymal cells within the heart may in addition to co
300  capable of generating new blood vessels and parenchymal cells within tissues they have colonized has

 
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