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1 y immunofluorescence light microscopy nor by immunogold electron microscopy.
2 frozen cells grown at 76 degrees C by using immunogold electron microscopy.
3 mass spectrometry, immunohistochemistry, and immunogold electron microscopy.
4 ths) Sprague Dawley rats using postembedding immunogold electron microscopy.
5 of the human exocrine pancreas, as judged by immunogold electron microscopy.
6 ts by both immunofluorescence microscopy and immunogold electron microscopy.
7 tinin and is found at the Z-disc as shown by immunogold electron microscopy.
8 was seldom found in nucleus and myofibers by immunogold electron microscopy.
9 using biochemical analyses and quantitative immunogold electron microscopy.
10 different region of the TGN than AtTLG2b by immunogold electron microscopy.
11 ions, and this distribution was confirmed by immunogold electron microscopy.
12 ion in the infected tissue was identified by immunogold electron microscopy.
13 al compartments by confocal fluorescence and immunogold electron microscopy.
14 elson-transformed pre-B lymphocytes by using immunogold electron microscopy.
15 the hair cells at various time points using immunogold electron microscopy.
16 ular distribution of HAP1 was examined using immunogold electron microscopy.
17 bimolecular fluorescence complementation and immunogold electron microscopy.
18 in IMCD cells of potassium-deprived rats by immunogold electron microscopy.
19 .1 in normal hearts using immunostaining and immunogold electron microscopy.
20 -membrane-localized VLPs as visualized using immunogold electron microscopy.
21 lasma membrane microdomains, as localized by immunogold electron microscopy.
22 calizes with NFL on single neurofilaments by immunogold electron microscopy.
23 th cardiac amyloid deposits was confirmed by immunogold electron microscopy.
24 he mitochondrial matrix of hepatocytes using immunogold electron microscopy.
25 -exponential growth, which was reinforced by immunogold electron microscopy.
26 calized the epitope on the capsid surface by immunogold electron microscopy.
27 tophysin, syntaxin, and synaptotagmin and by immunogold electron microscopy.
28 n blot analyses of cell wall proteins and by immunogold electron microscopy.
29 These results were further validated via immunogold electron microscopy.
30 coprotein (GPC) on the cell surface by using immunogold electron microscopy.
31 ileptic DGCs was examined with postembedding immunogold electron microscopy.
32 mouse retina was visualized by pre-embedding immunogold electron microscopy.
33 situ hybridization, immunofluorescence, and immunogold electron microscopy.
34 emonstrated by subcellular fractionation and immunogold electron microscopy.
35 measured by mass spectrometry and located by immunogold electron microscopy.
36 noblotting, immunofluorescence analysis, and immunogold electron microscopy.
37 alizes with NF-M on single neurofilaments by immunogold electron microscopy.
38 interact, we employed immunofluorescence and immunogold electron microscopy.
39 d in lung tissue by immunohistochemistry and immunogold electron microscopy.
40 escence resonance energy transfer (FRET) and immunogold electron microscopy.
41 he axoplasmic organelles, as demonstrated by immunogold electron-microscopy.
49 35 rat hepatoma cells, as determined both by immunogold electron microscopy and by autoradiography.
55 calized inside the in vivo pollen tube using immunogold electron microscopy and found to be present i
56 ocalizes in lamellar bodies as determined by immunogold electron microscopy and immunoblot of lamella
61 Subsequent analyses of HSV-infected cells by immunogold electron microscopy and live-cell confocal im
62 lanted and host neurons was identified using immunogold electron microscopy and patch-clamp recording
63 c reticulum (ER) in cholangiocytes, but both immunogold electron microscopy and super-resolution micr
64 1 and Kir6.2 subunits with Western blotting, immunogold electron microscopy and the identification of
65 m also cross-reacted with the LP fimbriae in immunogold electron microscopy and Western blot experime
66 tative real-time PCR and in mouse kidneys by immunogold electron microscopy, and its agonism 1) incre
67 inguished from that of collagen filaments by immunogold electron microscopy, and mimicked by that of
68 nsity gradient validated by proteomics, CD63-immunogold electron microscopy, and nanoparticle trackin
69 ly at the pilus tip, a location supported by immunogold electron microscopy, and suggests that, as fo
70 edium and utilized for immunohistochemistry, immunogold electron microscopy, and western blotting.
71 e acidocalcisomes and that was identified by immunogold electron microscopy as the contractile vacuol
72 to PLD1 together with immunofluorescence and immunogold electron microscopy as well as cell fractiona
77 n by using antibodies for alpha-actinin, and immunogold electron microscopy confirms localization spe
78 facilitate nutrient uptake from host blood, immunogold electron microscopy confirms that the protein
81 otobleaching (FRAP), immunofluorescence, and immunogold electron microscopy demonstrate that the GC i
84 g, immunofluorescence, confocal imaging, and immunogold electron microscopy demonstrated that LRRC8A
90 ing rat brain slice, immunofluorescence, and immunogold electron microscopy detection of VMAT2 (vesic
91 current assumptions, pre- and postembedding immunogold electron microscopy (EM) revealed that MHCI p
92 ng immunoprecipitation of COPII vesicles and immunogold electron microscopy (EM), we characterize the
94 ll fractionation, coimmunoprecipitation, and immunogold electron microscopy experiments confirmed tha
101 of Neph1 to the glomerular slit diaphragm by immunogold electron microscopy in rodents and describe i
102 ts (MEFs) by indirect immunofluorescence and immunogold electron microscopy in the presence or absenc
104 ribution of the GC by immunofluorescence and immunogold electron microscopy in whole fibers from diff
116 d with the presynaptic membrane, we employed immunogold electron microscopy of forebrain synaptosomes
123 raK-FLAG3 in otherwise wild-type cells using immunogold electron microscopy of thin sections revealed
128 , immunofluorescent confocal microscopy, and immunogold-electron microscopy reveal that the 15b-IDE p
129 tly with markers of the Golgi apparatus, and immunogold electron microscopy revealed a predominant lo
137 pared with non-MTLE hippocampi, quantitative ImmunoGold electron microscopy revealed that the density
146 st exclusively in RPE Immunofluorescence and immunogold electron microscopy showed that HFE protein w
154 ed against these GIPCs were further used for immunogold-electron microscopy strategy, revealing the d
160 l approaches, including live immunolabeling, immunogold electron microscopy, surface biotinylation an
166 3 (AQP3) was found by immunofluorescence and immunogold electron microscopy to be expressed at the pl
169 ution structured illumination microscopy and immunogold electron microscopy to localize major compone
172 ined immunocytochemistry and high-resolution ImmunoGold electron microscopy to study cellular and sub
178 5-, or 7-d cultured cells and examined by 1) immunogold electron microscopy using antibodies to known
180 ne transporter (DAT) by immunoperoxidase and immunogold electron microscopy, using monoclonal antibod
187 ted emission depletion (STED) microscopy and immunogold electron microscopy, we determined the distri
190 een fluorescent protein fusions to Rsp5p and immunogold electron microscopy, we found that Rsp5p was
193 bedding immunoperoxidase and silver-enhanced immunogold electron microscopy, we localized T-channel s
195 unoblotting, high-resolution microscopy, and immunogold electron microscopy were used to analyze huma
196 his expectation is borne out by results from immunogold electron microscopy, which revealed that hydr
197 he modified Flp1 in fibrils was confirmed by immunogold electron microscopy with monoclonal antibody