Biomedical Engineering Reference
In-Depth Information
150. Campbell EJ, Campbell MA, Owen CA. Bioactive proteinase three on the cell
surface of human neutrophils: quantification, catalyic activity and susceptibil-
ity to inhibition. J Immunol 2000; 165:3366-3374.
151. Fadok VA, Bratton DL, Guthrie L, Henson PM. Differential effects of apop-
totic versus lysed cells on macrophage production of cytokines. Role of
proteinases. J Immunol 2001; 166:6847-6854.
152. Ohlsson K, Under C, Lundberg E, Axelsson L. Release of cytokines and
proteases from human peripheral blood mononuclear and polymorphonuclear
cells following phagocytosis and LPS stimulation. Scand J Clin Lab Invest
1996; 56:461-470.
153. Russell REK, Thorley A, Culpitt SV, Dodd S, Donnelly LE, Dermattos C, et
al. Alveolar macrophage-mediated elastolysis; roles of matrix metalloprotei-
nases, cysteine and serine proteases. Am J Physiol Lung Cell Mol Physiol
2002; 283:L867-L873.
154. Weitz JL, Huang AJ, Landman SL, Nicholson SC, Silverstein SC. Elastase-
mediated fibrinogenolysis by chemoattractant stimulated neutrophils occurs
in the presence of physiologic concentrations of antiproteinases. J Exp Med
1987; 166:1836-1850.
155. Liou TG, Campbell EJ. Quantum proteolysis resulting from release of single
granules by human neutrophils; a novel, nonoxidative mechanism of extracel-
lular proteolytic activity. J Immunol 1996; 157:2624-2631.
156. Campbell EJ, Campbell MA, Boukedes SS, Owen CA. Quantum proteolysis
by neutrophils; implications for pulmonary emphysema in a 1 -antitrypsin defi-
ciency. J Clin Invest 1999; 104:337-344.
157. Rice WG, Weiss SJ. Regulation of proteolysis at the neutrophil-substrate
interface by secretory leukoprotease inhibitor. Science 1990; 249:178-181.
158. Takeyama K, Agusti C, Ueki IF, Lausier J, Cardell LO, Nadel JA. Neutro-
phil-dependent goblet cell degranulation; role of membrane bound elastase
and adhesion molecules. Am J Physiol 1998; 19:L294-L302.
159. Hubbard RC, Fells G, Gadek J, Pacholok S, Humes J, Crystal RG. Neutro-
phil accumulation in the lung in a 1 -antitrypsin deficiency; spontaneous
release of leukotriene B4 by alveolar macrophages. J Clin Invest 1991; 88:
891-897.
160. Lanone S, Zheng T, Zhu Z, Liu W, Lee CG, Ma B, et al. Overlapping and
enzyme specific contributions of matrix metalloproteinases-9 and -12 in
IL-13 induced inflammation and remodelling. J Clin Invest 2002; 110(463):474.
161. Zheng T, Zhu Z, Wang Z, Homer RJ, Ma B, Riese RJJ, et al. Inducible target-
ing of IL-13 to the adult lung causes matrix metalloproteinase and cathepsin
dependent emphysema. J Clin Invest 2000; 106:1445-1446.
162. Shim JJ, Dabbagh K, Ueki IF, Dao-Pick T, Takeyama K, Tarn DCW, et al.
IL-13 induces mucin production by stimulating epidermal growth factor
receptors and by activating neutrophils. Am J Physiol Lung Cell Mol Physiol
2001; 280:L134-L140.
163. Smallman LA, Hill SL, Stockley RA. Reduction of ciliary beat frequency in
vitro by sputum from patients with bronchiectasis; a serine proteinase effect.
Thorax 1984; 39:663-667.
Search WWH ::




Custom Search