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1 catalyzed by enzymes (e.g., phosphatases) at intercellular space.
2 ell as tight junctions which seal the apical intercellular space.
3 ilic or heterophilic interactions across the intercellular space.
4 nd the ability to accommodate differences in intercellular space.
5 t not along the flagellum or randomly in the intercellular space.
6 (ECM), which they secrete and mold into the intercellular space.
7 ggest that water diffuses mainly through the intercellular space.
8 rho changes are consistent with swelling of intercellular spaces.
9 h while their tips elongate and intrude into intercellular spaces.
10 iltrate, basal zone hyperplasia, and dilated intercellular spaces.
11 s (1.3 % vs. 1.1 %) in cotyledons, and fewer intercellular spaces.
12 e of basal keratinocytes, and enlargement of intercellular spaces.
13 pansion of cell wall regions in contact with intercellular spaces.
14 helia and can be described as tightly sealed intercellular spaces.
15 lar vacuoles, and hyperreflective epithelial intercellular spaces.
16 leading to altered cell shape and increased intercellular spaces.
17 sterified into pyrethrins that accumulate in intercellular spaces.
18 a series of cell layers, separated by small intercellular spaces.
19 ss bacterial type III gene expression in the intercellular spaces.
20 vacuoles and expansion of intracellular and intercellular spaces.
21 ia, blood vessels, neuropile, and areas with intercellular spaces), 4-190 microM, are significantly l
23 Injecting 50 mm KCl or silicone oil into the intercellular spaces also caused stomata to close, but t
25 ased, decreased mesophyll surface exposed to intercellular space and chloroplast density induced long
26 ily ligands are constitutively shed into the intercellular space and demonstrate that a step increase
28 nd transduced from the cell surface into the intercellular space and will aid in facilitating the tre
29 al part of the plant, where it is present in intercellular spaces and as intracellular coils but abse
33 patients with these variants retain dilated intercellular spaces and decrease DSP and PPL expression
34 logically and ultrastructurally, widening of intercellular spaces and disruption of desmosomes were e
35 mpact cotyledon cell arrangement, with fewer intercellular spaces and distinct tri-cellular junctions
36 poorly formed with widening of keratinocyte intercellular spaces and perturbed desmosome/keratin int
38 the diffusible calcium in the lens is in the intercellular spaces and that lens lipids in the outer l
39 n through stomata or wounds, colonization of intercellular spaces, and concomitant disruption of plan
41 kin, focal detachment of desmosomes into the intercellular spaces, and perinuclear condensation of th
42 n, basal zone hyperplasia (BZH), and dilated intercellular spaces, and the underlying processes that
43 spaces between epithelial cells, the lateral intercellular spaces, and this in turn drives water tran
44 pathogen-driven establishment of an aqueous intercellular space (apoplast) is another important step
48 ed across lateral membranes to subjunctional intercellular spaces are delivered to abluminal surfaces
49 glycans (GAGs) and collagen) in the synovial intercellular spaces, because these polymers create hydr
50 physiological magnitude shrinks the lateral intercellular space between bronchial epithelial cells,
55 ltrastructural examination revealed enlarged intercellular spaces between spermatogenic and Sertoli c
56 alls of these particular cells as well as to intercellular spaces between stylar transmitting tissue
57 truncated occludin proteins were leaky; the intercellular spaces between the apical cells were penet
58 d ORS showed an expansion of the basolateral intercellular spaces between villus absorptive epithelia
59 alt)-labeled substrates were introduced into intercellular spaces by infiltration instead of injectio
65 as basal zone hyperplasia (BZH) and dilated intercellular spaces (DIS), are thought to contribute to
66 Basal zone hyperplasia (BZH) and dilated intercellular spaces (DISs) are thought to contribute to
68 eas in immature cartilage, it moves into the intercellular space during the same period, i.e. aggreca
73 imulations to predict the forces driving the intercellular space formation required for their growth.
75 fect of overhydration on the stratum corneum intercellular space, identifies large and numerous unant
79 ance of microvillus inclusions, and enlarged intercellular spaces in induced Myo5bfl/fl;Vil-CreERT2 i
80 nfirmed GERD-specific alterations as dilated intercellular spaces in the esophageal mucosa of patient
81 nal magnification factor rises more than the intercellular spacing in the same animals, the spatial r
83 nalyses showed that the area occupied by the intercellular space increased fourfold when isoprotereno
86 nt, or order, of desmosomal cadherins in the intercellular space is critical for adhesive strength.
87 how that while vesicle free diffusion in the intercellular space is rare, vesicles mostly disperse al
88 rough stomata or wounds, and colonization in intercellular spaces, leading to rotting and to the disr
89 autocrine ligands into a collapsing lateral intercellular space leads to increased local ligand conc
90 ons in the geometry of an epithelial lateral intercellular space (LIS) affect the concentrations of c
91 es geometric changes observed in the lateral intercellular space (LIS) of mechanically loaded airway
92 s of Au-Fc in dilated regions of the lateral intercellular space (LIS), likely representing exit site
93 measured in free solution and in the lateral intercellular spaces (LIS) of cultured Madin-Darby canin
94 field area compensates for this variation in intercellular spacing, maintaining constant dendritic co
97 he flow velocity profiles within the lateral intercellular spaces of a fluid-absorptive, cultured ren
98 ith a fluorescent tag were injected into the intercellular spaces of cotton cotyledons and, after inc
100 recombinant Dsg 3 showed specific binding to intercellular spaces of monkeys esophagus by indirect im
101 phospholipases that release choline into the intercellular spaces of plant tissues, such as for membr
105 cellular spaces, vacuum infiltrated into the intercellular spaces, or forced into the intercellular s
106 zone hyperplasia, desquamation, and dilated intercellular spaces; P < .0001), lamina propria eosinop
107 ydration induces large pools of water in the intercellular space, pools that can exceed the size of w
108 were smaller in size and displayed enlarged intercellular spaces relative to their 1682A-V counterpa
109 ased the chloroplast surface area exposed to intercellular space (S(c) /S); conversely this induced a
110 ery profile of c-Kit cells reveals regulated intercellular spacing, supporting the notion that they r
111 that compressive stress shrinks the lateral intercellular space surrounding epithelial cells, and tr
112 identified brevican immunoreactivity in the intercellular spaces surrounding presynaptic boutons and
113 hed over a substomatal cavity and network of intercellular spaces that is initially fluid filled.
114 the frequency, size, and specificity of the intercellular spaces that mediate the bulk transport of
115 Plants control nutrient availability in intercellular spaces (the apoplast) via transporters, ch
116 rsors of the stratum corneum lipids into the intercellular spaces, their site of origin remains unkno
117 interconnected network of branched cells and intercellular spaces to maximize the surface area availa
118 se occurred when water was injected into the intercellular spaces, vacuum infiltrated into the interc
120 Free and bound lipids in the 25 nm thick intercellular spaces were directly detected for the firs
121 GIN from the apical space to the basolateral intercellular space where BMP4 receptors were located.
122 ar granules and eventually extruded into the intercellular space where GlcCer is hydrolyzed to cerami
123 ranules and the discharge of lipids into the intercellular spaces, which would explain the epidermal
124 Tight junctions provide protection of the intercellular spaces while other surface molecules, such
125 and papillary hyperplasia, surface erosions, intercellular space width, endoscopic grade of esophagit
126 membrane protein SpoIIQ, interacts across an intercellular space with a mother cell-expressed membran
127 unction fat of obese patients caused dilated intercellular space with impaired barrier function in es
128 leukin 1 receptor 1 signaling caused dilated intercellular space with impaired esophageal barrier fun
129 ion electron microscopy revealed widening of intercellular spaces with chromatin condensation and mar
130 EPS produced by the opaque strain fills the intercellular space within the colony, resulting in incr
131 ere in infiltrating mononuclear cells and in intercellular spaces within inflammatory sites in the ep