Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

EpCAM-Binding DARPins for Targeted Photodynamic Therapy of Ovarian Cancer

View through CrossRef
Ovarian cancer is the most lethal gynecological malignancy due to late detection associated with dissemination throughout the abdominal cavity. Targeted photodynamic therapy (tPDT) aimed at epithelial cell adhesion molecule (EpCAM), overexpressed in over 90% of ovarian cancer metastatic lesions, is a promising novel therapeutic modality. Here, we tested the specificity and activity of conjugates of EpCAM-directed designed ankyrin repeat proteins (DARPins) with the photosensitizer IRDye 700DX in in vitro and in vivo ovarian cancer models. EpCAM-binding DARPins (Ec1: Kd = 68 pM; Ac2: Kd = 130 nM) and a control DARPin were site-specifically functionalized with fluorophores or IRDye 700DX. Conjugation of anti-EpCAM DARPins with fluorophores maintained EpCAM-specific binding in cell lines and patient-derived ovarian cancer explants. Penetration of DARPin Ec1 into tumor spheroids was slower than that of Ac2, indicative of a binding site barrier effect for Ec1. DARPin-IRDye 700DX conjugates killed EpCAM-expressing cells in a highly specific and illumination-dependent fashion in 2D and 3D cultures. Furthermore, they effectively homed to EpCAM-expressing subcutaneous OV90 xenografts in mice. In conclusion, the high activity and specificity observed in preclinical ovarian cancer models, combined with a high specificity in patient material, warrant a further investigation of EpCAM-targeted PDT for ovarian cancer.
Title: EpCAM-Binding DARPins for Targeted Photodynamic Therapy of Ovarian Cancer
Description:
Ovarian cancer is the most lethal gynecological malignancy due to late detection associated with dissemination throughout the abdominal cavity.
Targeted photodynamic therapy (tPDT) aimed at epithelial cell adhesion molecule (EpCAM), overexpressed in over 90% of ovarian cancer metastatic lesions, is a promising novel therapeutic modality.
Here, we tested the specificity and activity of conjugates of EpCAM-directed designed ankyrin repeat proteins (DARPins) with the photosensitizer IRDye 700DX in in vitro and in vivo ovarian cancer models.
EpCAM-binding DARPins (Ec1: Kd = 68 pM; Ac2: Kd = 130 nM) and a control DARPin were site-specifically functionalized with fluorophores or IRDye 700DX.
Conjugation of anti-EpCAM DARPins with fluorophores maintained EpCAM-specific binding in cell lines and patient-derived ovarian cancer explants.
Penetration of DARPin Ec1 into tumor spheroids was slower than that of Ac2, indicative of a binding site barrier effect for Ec1.
DARPin-IRDye 700DX conjugates killed EpCAM-expressing cells in a highly specific and illumination-dependent fashion in 2D and 3D cultures.
Furthermore, they effectively homed to EpCAM-expressing subcutaneous OV90 xenografts in mice.
In conclusion, the high activity and specificity observed in preclinical ovarian cancer models, combined with a high specificity in patient material, warrant a further investigation of EpCAM-targeted PDT for ovarian cancer.

Related Results

Phenotype-dependent effects of EpCAM expression on growth and invasion of human breast cancer cell lines
Phenotype-dependent effects of EpCAM expression on growth and invasion of human breast cancer cell lines
Abstract Background The epithelial cell adhesion molecule (EpCAM) has been shown to be overexpressed in breast cancer and stem cells and has emer...
Abstract 1532: The isolation of CTC from diagnostic leukapheresis
Abstract 1532: The isolation of CTC from diagnostic leukapheresis
Abstract Introduction At present, the CellSearch system is the only validated method for the detection of circulating tumor cells (CTC) that has been ...
Abstract IA31: Molecular epidemiology of ovarian cancer
Abstract IA31: Molecular epidemiology of ovarian cancer
Abstract Epithelial ovarian cancer (EOC) accounts for 5% of all cancer deaths and is the fifth leading cause of cancer death in women in the United States. While the...
Abstract B8: Molecular subtyping of epithelial ovarian cancer reveals connections to intrinsic breast cancer subtypes
Abstract B8: Molecular subtyping of epithelial ovarian cancer reveals connections to intrinsic breast cancer subtypes
Abstract Aim: Epithelial ovarian cancer is one of the most lethal female cancers. It is a heterogeneous group of neoplasms and the different histologic subtypes are ...
Abstract 2208: Clinicopathological and genetic study of ovarian cancer in Algerian women: First report
Abstract 2208: Clinicopathological and genetic study of ovarian cancer in Algerian women: First report
Abstract Background: Ovarian cancer represents the fourth most common cause of mortality among Algerian women. Of all gynecological malignancies, ovarian cancer caus...
Abstract B81: Changing fertility factors affecting breast cancer in the Bahamas
Abstract B81: Changing fertility factors affecting breast cancer in the Bahamas
Abstract Introduction: There are many factors that affect breast and ovarian cancer incidence. Genetics, obesity, parity, age at menarche, age at first pregnancy, an...
Abstract MIP-048: SHORT-FORM RON KINASE AS A NOVEL THERAPEUTIC TARGET IN OVARIAN CANCER
Abstract MIP-048: SHORT-FORM RON KINASE AS A NOVEL THERAPEUTIC TARGET IN OVARIAN CANCER
Abstract BACKGROUND: Although 70–80% of women respond to standard platinum-based chemotherapy, a majority of patients will develop recurrent platinum-resistant disea...

Back to Top