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Keyword [Cell-surface]
Result: 161 - 180 | Page: 9 of 10
161. Regulatory mechanisms governing cell surface membrane type-1 matrix metalloproteinase
162. Design, synthesis, and evaluation of synthetic mimics of cell surface receptors
163. Heteromultivalent ligands directed targeting of cell-surface receptors---Implications in cancer diagnostics & therapeutics
164. An entirely cell-based system to generate single-chain antibodies against cell surface Toll-like receptors
165. Cell surface characterization of neural stem cells and brain tumour stem cells
166. Engineering endothelial cell behavior via cell-surface interactions with chemically-defined nanoscale adhesion sites
167. Adenovirus RIDalpha regulates endosome maturation by mimicking GTP-Rab7
168. Regulation of HT-29 colorectal carcinoma cell proliferation and cell-surface expression of dipeptidyl peptidase IV (DPPIV)/CD26 and CXCR4 by FGF-2 and other growth factors
169. Protein interaction and cell surface trafficking differences between wild-type and DeltaF508 cystic fibrosis transmembrane conductance regulator
170. Aptamer directed delivery via cell surface receptors
171. The role of annexin II in tPA dependent microglial activation
172. Amelogenin signaling: Effects and mechanisms
173. Cell surface proteome characterization using cell -binding arrays and mass spectrometry
174. NMDA receptor biochemical and activity-dependent regulation of p38 MAPK and glutamate transporter EAAC1
175. Molecular analysis of the CD20 oligomeric complex and its response to B cell antigen receptor activation
176. A mutagenesis approach to study the molecules involved in CD1 antigen presentation
177. A nanofiber matrix enhances the growth and survival of dopaminergic neurons in culture
178. Application of bi-cell surface plasmon resonance for the detection of aptamer mediated thrombin capture in serum
179. Antineoplastic drugs modulate CXCR4 and CD26 cell-surface expression and function on colorectal carcinoma cells
180. Engineering biomaterial surfaces using nanoparticle assemblies: A new paradigm for modulating cell function
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