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1.
Mol Pharm ; 18(9): 3464-3474, 2021 09 06.
Article in English | MEDLINE | ID: mdl-34448393

ABSTRACT

Optimal cytoreduction for ovarian cancer is often challenging because of aggressive tumor biology and advanced stage. It is a critical issue since the extent of residual disease after surgery is the key predictor of ovarian cancer patient survival. For a limited number of cancers, fluorescence-guided surgery has emerged as an effective aid for tumor delineation and effective cytoreduction. The intravenously administered fluorescent agent, most commonly indocyanine green (ICG), accumulates preferentially in tumors, which are visualized under a fluorescent light source to aid surgery. Insufficient tumor specificity has limited the broad application of these agents in surgical oncology including for ovarian cancer. In this study, we developed a novel tumor-selective fluorescent agent by chemically linking ICG to mouse monoclonal antibody 10D7 that specifically recognizes an ovarian cancer-enriched cell surface receptor, CUB-domain-containing protein 1 (CDCP1). 10D7ICG has high affinity for purified recombinant CDCP1 and CDCP1 that is located on the surface of ovarian cancer cells in vitro and in vivo. Our results show that intravenously administered 10D7ICG accumulates preferentially in ovarian cancer, permitting visualization of xenograft tumors in mice. The data suggest CDCP1 as a rational target for tumor-specific fluorescence-guided surgery for ovarian cancer.


Subject(s)
Antibodies, Monoclonal/administration & dosage , Cell Adhesion Molecules/antagonists & inhibitors , Fluorescent Dyes/administration & dosage , Optical Imaging/methods , Ovarian Neoplasms/diagnosis , Animals , Antibodies, Monoclonal/chemistry , Antigens, Neoplasm , Cell Line, Tumor , Female , Fluorescent Dyes/chemistry , Humans , Indocyanine Green/administration & dosage , Indocyanine Green/chemistry , Injections, Intravenous , Mice , Ovarian Neoplasms/pathology , Xenograft Model Antitumor Assays
2.
Sci Rep ; 5: 13986, 2015 Sep 11.
Article in English | MEDLINE | ID: mdl-26358513

ABSTRACT

BMP-SMAD signalling plays a crucial role in numerous biological processes including embryonic development and iron homeostasis. Dysregulation of the iron-regulatory hormone hepcidin is associated with many clinical iron-related disorders. We hypothesised that molecules which mediate BMP-SMAD signalling play important roles in the regulation of iron homeostasis and variants in these proteins may be potential genetic modifiers of iron-related diseases. We examined the role of endofin, a SMAD anchor, and show that knockdown of endofin in liver cells inhibits basal and BMP-induced hepcidin expression along with other BMP-regulated genes, ID1 and SMAD7. We show for the first time, the in situ interaction of endofin with SMAD proteins and significantly reduced SMAD phosphorylation with endofin knockdown, suggesting that endofin modulates hepcidin through BMP-SMAD signalling. Characterisation of naturally occurring SNPs show that mutations in the conserved FYVE domain result in mislocalisation of endofin, potentially affecting downstream signalling and modulating hepcidin expression. In conclusion, we have identified a hitherto unrecognised link, endofin, between the BMP-SMAD signalling pathway, and the regulation of hepcidin expression and iron homeostasis. This study further defines the molecular network involved in iron regulation and provides potential targets for the treatment of iron-related disorders.


Subject(s)
Bone Morphogenetic Proteins/metabolism , Hepcidins/metabolism , Intracellular Signaling Peptides and Proteins/metabolism , Iron/metabolism , Serine Endopeptidases/metabolism , Smad Proteins/metabolism , Bone Morphogenetic Protein 6/metabolism , Cell Line , Gene Expression Regulation , Gene Knockdown Techniques , Gene Silencing , Hepcidins/genetics , Humans , Intracellular Signaling Peptides and Proteins/genetics , Models, Biological , Mutation , Phosphorylation , Polymorphism, Genetic , Protein Binding , Protein Transport , Serine Endopeptidases/genetics , Smad1 Protein/metabolism
3.
Hepatology ; 62(2): 429-39, 2015 Aug.
Article in English | MEDLINE | ID: mdl-25605615

ABSTRACT

UNLABELLED: To identify polymorphisms associated with variability of iron overload severity in HFE-associated hemochromatosis, we performed exome sequencing of DNA from 35 male HFE C282Y homozygotes with either markedly increased iron stores (n = 22; cases) or with normal or mildly increased iron stores (n = 13; controls). The 35 participants, residents of the United States, Canada, and Australia, reported no or light alcohol consumption. Sequencing data included 82,068 single-nucleotide variants, and 10,337 genes were tested for a difference between cases and controls. A variant in the GNPAT gene showed the most significant association with severe iron overload (P = 3 × 10(-6) ; P = 0.033 by the likelihood ratio test after correction for multiple comparisons). Sixteen of twenty-two participants with severe iron overload had glyceronephosphate O-acyltransferase (GNPAT) polymorphism p.D519G (rs11558492; 15 heterozygotes, one homozygote). No control participant had this polymorphism. To examine functional consequences of GNPAT deficiency, we performed small interfering RNA-based knockdown of GNPAT in the human liver-derived cell line, HepG2/C3A. This knockdown resulted in a >17-fold decrease in expression of the messenger RNA encoding the iron-regulatory hormone, hepcidin. CONCLUSION: GNPAT p.D519G is associated with a high-iron phenotype in HFE C282Y homozygotes and may participate in hepcidin regulation.


Subject(s)
Acyltransferases/genetics , Genetic Variation , Hemochromatosis/genetics , Histocompatibility Antigens Class I/genetics , Iron Overload/genetics , Membrane Proteins/genetics , Alleles , Analysis of Variance , Blotting, Western , Case-Control Studies , Exome/genetics , Exome/physiology , Ferritins/blood , Hemochromatosis/physiopathology , Hemochromatosis Protein , Hep G2 Cells , Homozygote , Humans , Iron Overload/physiopathology , Liver Cirrhosis/genetics , Liver Cirrhosis/physiopathology , Male , Phenotype , Point Mutation , RNA, Small Interfering/genetics , Real-Time Polymerase Chain Reaction/methods , Sequence Analysis, Protein , Severity of Illness Index
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