Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0684249 (lung carcinoma)
23,830 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The integrins are a family of transmembrane glycoproteins that serve as cell-cell and cell-substratum adhesion molecules and help regulate cellular morphology, differentiation, and proliferation. The integrin repertoire of a cell may therefore influence its behavior under resting conditions or following malignant transformation. For this reason, the distribution of integrins in normal lung tissues was determined using monoclonal antibodies against integrins of the beta 1 (VLA) and beta 3 (cytoadhesin) subfamilies and compared with the distribution in a limited number of lung carcinomas. The integrin subunits that bind to collagen and laminin (alpha 1, alpha 2, alpha 3, and alpha 6) and the alpha subunit, which can pair with beta 1, beta 3, or beta 5 and promote fibronectin, fibrinogen, or vitronectin binding, were the predominant integrins expressed on the major cell types of the lung, i.e., bronchial epithelium, vascular endothelium, and smooth muscle. Strong expression of the alpha 5 beta 1 fibronectin receptor and the beta 3 subunit was restricted to the endothelium of large vessels. Integrin expression by the lung carcinoma cells was somewhat heterogeneous; however, the tumors tended to express fewer integrins than did the normal bronchial epithelium.
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PMID:Distribution of integrin cell adhesion receptors in normal and malignant lung tissue. 154 Mar 82

The capability of the integrin VLA-3 to function as a receptor for collagen (Coll), laminin (Lm), and fibronectin (Fn) was addressed using both whole cell adhesion assays and ligand affinity columns. Analysis of VLA-3-mediated cell adhesion was facilitated by the use of a small cell lung carcinoma line (NCI-H69), which expresses VLA-3 but few other integrins. While VLA-3 interaction with Fn was often low or undetectable in cells having both VLA-3 and VLA-5, NCI-H69 cells readily attached to Fn in a VLA-3-dependent manner. Both Arg-Gly-Asp (RGD) peptide inhibition studies, and Fn fragment affinity columns suggested that VLA-3, like VLA-5, may bind to the RGD site in human Fn. However, unlike Fn, both Coll and Lm supported VLA-3-mediated adhesion that was not inhibited by RGD peptide, and was totally unaffected by the presence of VLA-5. In addition, VLA-3-mediated binding to Fn was low in the presence of Ca++, but was increased 6.6-fold with Mg++, and 30-fold in the presence of Mn++. In contrast, binding to Coll was increased only 1.2-fold with Mg++, and 1.7-fold in Mn++, as compared to the level seen with Ca++. Together, these experiments indicate that VLA-3 can bind Coll, Lm, and Fn, and also show that (a) VLA-3 can recognize both RGD-dependent and RGD-independent ligands, and (b) different VLA-3 ligands have distinctly dissimilar divalent cation sensitivities.
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PMID:Receptor functions for the integrin VLA-3: fibronectin, collagen, and laminin binding are differentially influenced by Arg-Gly-Asp peptide and by divalent cations. 198 4

Inhaled corticosteroids in the treatment of asthma have been shown to produce marked reductions in the number of inflammatory cells (mainly mast cells and eosinophils) and their products at bronchial level (such as cytokines). Recently, it has been demonstrated that epithelial cells express ICAM-1/CD54 in allergic patients both during natural allergen exposure and after allergen challenge. We have previously demonstrated that deflazacort (a systemic steroid) reduces the expression of ICAM-1 on conjunctival epithelial cells. The present study aimed to evaluate the effects exerted by budesonide on adhesion molecule expression by a human epithelial cell line (lung carcinoma: DM) and on soluble ICAM-1. Budesonide was added at concentrations corresponding to 10(-8), 10(-7), and 10(-6) mol/l in cultured epithelial cells, either in the absence of any stimulus or in the presence of interferon-gamma (IFN-gamma) at 500 U/ml. After 24 h of incubation, cytofluorometric analysis was performed for ICAM-1 and CD29/VLA beta 1. The 24-h supernatants of the same cultures were collected and then evaluated for soluble ICAM-1 (sICAM-1). The results showed that budesonide inhibits ICAM-1 and CD29 basal expression on the cells studied (P < 0.05): budesonide was effective in a dose-dependent manner. In addition, budesonide reduced surface ICAM-1 upregulation induced by IFN-gamma at 500 U/ml (P < 0.05). Finally, cell cultures with budesonide showed decreased levels of soluble ICAM-1 in basal condition, but not after IFN-gamma stimulation.
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PMID:Inhibition of adhesion molecules by budesonide on a human epithelial cell line (lung carcinoma). 929 79

A factor that stimulates migration of lung carcinoma cells on biological substrata was purified from the human lung adenocarcinoma cell line WART. A partially purified autocrine motility factor-like substance, termed haptotaxin, was added to the lower compartment of Boyden chambers and the filters were coated on the upper, lower or both sides with different concentrations of the extracellular matrix (ECM) components fibronectin, laminin or collagen type IV. These adhesive proteins coated on the lower surface of the filter promoted the migration (haptotaxis) of lung carcinoma cells. This effect was greatly enhanced by the addition of haptotaxin. In contrast, ECM components (including gelatin) coated on the upper surface or on both filter surfaces did not stimulate tumor cell migration. However, the addition of haptotaxin also timulated cell migration under these conditions. Haptotaxin did not stimulate migration on filters coated with bovine serum albumin or on uncoated filters. Haptotaxin could not be absorbed by fibronectin, laminin, collagen type IV or gelatin, and soluble ECM components did not affect the locomotor effect of haptotaxin. Substrata coated with fibronectin, laminin and collagen type IV induced adhesion and spreading of lung carcinoma cells in a dose dependent fashion. Haptotaxin potentiated adhesion and spreading of tumor cells on these substrata but did not in itself mediate adhesion and spreading of the cells. Anti-VLA 2 antibodies inhibited migration to haptotaxin on gelatin and laminin coated filters but did not affect haptotaxin-induced migration on fibronectin or collagen type IV substrata. Anti-VLA-5 monoclonal antibodies inhibited haptotaxin-induced migration on fibronectin coated filters but not such migration on filters coated with other ECM molecules showing that tumor cells must interact specifically with ECM components in order to migrate to haptotaxin.
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PMID:A tumor derived motility factor that stimulates cell migration on extracellular matrix. 967 77