Patents by Inventor Leon W M M Terstappen

Leon W M M Terstappen has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20090286264
    Abstract: A method for removing excess unbound ferrofluid and imaging immunomagnetically enriched circulating tumor cells is provided. A vessels having a preformed grooves in the viewing surface is optimally designed for cell alignment and imaging. After separating the unbound particles by centrifugation, an externally-applied force is applied to transport magnetically responsive particle-CTC complex toward the transparent collection wall. The grooved inner surface of the viewing face of the chamber provide uniform distribution of the particles for easy imaging. The invention is also useful in conducting quantitative analysis and sample preparation in conjunction with automated cell enumeration techniques as in quantitative analysis of CTC in disease.
    Type: Application
    Filed: May 18, 2009
    Publication date: November 19, 2009
    Inventors: Tyco M. Scholtens, Frederik Schreuder, Jan Greve, Arhjan G.J. Tibbe, Leon W.M.M. Terstappen
  • Publication number: 20090258365
    Abstract: The present invention describes methods and probe composition for an automated FISH assay of a blood sample containing circulating tumor cells expressing the IGF-1R gene. The assay provides genetic analysis of suspect circulating tumor cells that have been identified after immunomagnetic selection and fluorescent labeling. Using unique, repeat-free probes to the IGF-1R locus and a chromosome 15 reference probe, cell lines expressing an aberrant number of IGF-1R and Chr 15 signals were detected, including one cell line with a low level of IGF-1R amplification. The ability to directly examine the genetic profile of IGF-1R on circulating tumor cells may provide an automated means for assessing disease and patient response to therapy.
    Type: Application
    Filed: March 23, 2009
    Publication date: October 15, 2009
    Inventors: Leon W.M.M. Terstappen, Brad Foulk
  • Publication number: 20090191535
    Abstract: A method for assessing cancer in test subjects is described based upon enumeration of circulating endothelial cells and/or disseminated tumor cells in a test subject. This method is used to quantify disseminated tumor cells. Correlations with circulating tumor cells provides prognostic information with high accuracy in assessing the risk of recurrence in patients with primary breast cancer.
    Type: Application
    Filed: December 22, 2007
    Publication date: July 30, 2009
    Inventors: Mark Carle Connelly, Gerald V. Doyle, Galla Chandra Rao, Leon W.M.M. Terstappen
  • Publication number: 20090136946
    Abstract: The CellTracksĀ® System provides a system to enumerate circulating melanoma cells in blood. The system immunomagnetically concentrates epithelial cells, fluorescently labels the cells and identifies and quantifies circulating melanoma cells. The absolute number of circulating melanoma cells detected in the peripheral blood tumor load is, in part, a factor in prediction of survival, time to progression, and response to therapy. Diagnosis and monitoring of melanoma has been limited by the inability to monitor circulating melanoma cells. The present invention provides a method to enumerate circulating melanoma cells in blood samples. Accordingly, this technology provides a means and device for monitoring disease progression in patients with melanoma.
    Type: Application
    Filed: October 20, 2008
    Publication date: May 28, 2009
    Inventors: Mark Carle CONNELLY, Galla Chandra Rao, Leon W.M.M. Terstappen
  • Publication number: 20090061456
    Abstract: A cancer test having prognostic utility in predicting time to disease progression, overall survival, and response to therapy in patients with MBC based upon the presence and number of CTC's. The Cell SpotterĀ® System is used to enumerate CTC's in blood. The system immunomagnetically concentrates epithelial cells, fluorescently labels the cells and identifies and quantifies CTC's. The absolute number of CTC's detected in the peripheral blood tumor load is, in part, a factor in prediction of survival, time to progression, and response to therapy. The mean time to survival of patients depended upon a threshold number of 5 CTC's per 7.5 ml of blood. Detection of CTC's in metastatic cancer represents a novel prognostic factor in patients with metastatic cancers, suggests a biological role for the presence of tumor cells in the blood, and indicates that the detection of CTC's could be considered an appropriate surrogate marker for prospective therapeutic clinical trials.
    Type: Application
    Filed: August 30, 2007
    Publication date: March 5, 2009
    Inventors: William J. Allard, Gerald V. Doyle, Daniel F. Hayes, Michael Craig Miller, Leon W.M.M Terstappen
  • Publication number: 20090061477
    Abstract: A system for enumeration of cells in fluids by image cytometry is described for assessment of target populations such as leukocyte subsets in different bodily fluids or bacterial contamination in environmental samples, food products and bodily fluids. Briefly, fluorescently labeled target cells are linked to magnetic particles or beads. In one embodiment, a small, permanent magnet is inserted directly into the chamber containing the labeled cells. The magnets are coated with PDMS silicone rubber to provide a smooth and even surface which allows imaging on a single focal plane. The magnet is removed from the sample and illuminated with fluorescent light emitted by the target cells captured by a CCD camera. In another embodiment, a floater having a permanent magnet allows the target cells to line up along a single imaging plane within the sample solution.
    Type: Application
    Filed: February 15, 2008
    Publication date: March 5, 2009
    Inventors: Arjan G.J. Tibbe, Leon W.M.M. Terstappen
  • Publication number: 20090061476
    Abstract: A system for enumeration of cells in fluids by image cytometry is described for assessment of target populations such as leukocyte subsets in different bodily fluids or bacterial contamination in environmental samples, food products and bodily fluids. Briefly, all cells in a biological sample are fluorescently labeled, but only the target cells are also magnetically labeled. A small, permanent magnet is inserted directly into the chamber containing the labeled sample. The magnets are coated with PDMS silicone rubber to provide a smooth and even surface which allows imaging on a single focal plane. The cells are illuminated and the images of the fluorescent light emitted by the target cells are captured by a CCD camera. Image analysis performed with a novel algorithm provides a count of the cells on the surface that can be related to the target cell concentration of the original sample.
    Type: Application
    Filed: August 30, 2007
    Publication date: March 5, 2009
    Inventors: Arian G.J. Tibbe, Leon W.M.M. Terstappen
  • Publication number: 20080113350
    Abstract: Amplification and overexpression of theHER-2 oncogene in breast cancer is felt to be stable over the course of disease and concordant between the primary tumor and metastases. Therefore, patients with HER-2 negative primary tumors will rarely receive anti-HER-2 antibody therapy. A very sensitive blood test is used to capture circulating tumor cells (CTC's) and evaluate their HER-2 gene status by FISH evaluation. The HER-2 status of the primary tumor and corresponding CTC's is used to assess the ratio of CTC's as a reliable surrogate marker. HER-2 expression of 10 CTC's is sufficient to make a definitive diagnosis of the HER-2 gene status for the whole population of CTC's in patients with recurrent breast cancer.
    Type: Application
    Filed: November 9, 2006
    Publication date: May 15, 2008
    Inventor: Leon W.M.M. Terstappen
  • Patent number: 7332288
    Abstract: A highly sensitive assay is disclosed which combines immunomagnetic enrichment with multiparameter flow cytometric and immunocytochemical analysis to detect, enumerate and characterize carcinoma cells in the blood. The assay can detect one epithelial cell or less in 1 ml of blood and has a greater sensitivity than conventional PCR or immunohistochemistry by 1-2 orders of magnitude. In addition, the assay facilitates the biological characterization and staging of carcinoma cells.
    Type: Grant
    Filed: October 11, 2002
    Date of Patent: February 19, 2008
    Assignee: Immunivest Corporation
    Inventors: Leon W. M. M. Terstappen, Galla Chandra Rao, Jonathan W. Uhr, Emilian V. Racila, Paul A. Liberti
  • Patent number: 7282180
    Abstract: Devices and methods for automated collection and image analysis are disclosed that enable identification or classification of microscopic objects aligned or deposited on surfaces. Such objects, e.g. detectably labeled rare target cells, are magnetically or non-magnetically immobilized and subjected to automated laser scanning to generate sequential digitized x-y sub-images or partial images of target and non-target objects that are combined to form reconstructed full images, thereby allowing detection, enumeration, differentiation and characterization of imaged objects on the basis of size, morphology and immunophenotype.
    Type: Grant
    Filed: July 2, 2003
    Date of Patent: October 16, 2007
    Assignee: Immunivest Corporation
    Inventors: Arjan Tibbe, Jan Greve, Leon W. M. M. Terstappen, Jan Greve, legal representative, Bart De Grooth, deceased
  • Patent number: 7056657
    Abstract: Separation apparatus and method for separating magnetic and/or magnetically-labeled particles from a test medium. Test medium within a reaction chamber is caused to flow past a collecting surface, and a high-gradient magnetic field is applied to the surface to capture magnetically responsive particles in the test medium. The particles are deflected toward the collection surface by baffles, a spinner, or a sprayer, or are funneled past the surface by a plunger operable to be displaced into close proximity to the surface to provide a narrow flow path for the particle-laden test medium. The particles normally suspended in the medium are separated out of suspension by adhesion to the collection surface. The particles may be resuspended by removal of the surface from the high-gradient field, or removal of the high-gradient field from the surface. The collection surface is a thin-walled non-magnetic material having a plurality of magnetic pole faces positioned therearound.
    Type: Grant
    Filed: February 6, 2002
    Date of Patent: June 6, 2006
    Assignee: ImmuniVest Corporation
    Inventors: Leon W.M.M. Terstappen, Gerald V. Doyle, Paul A. Liberti, Gerald J. Dolan
  • Patent number: 6890426
    Abstract: Apparatuses and methods for separating, immobilizing, and quantifying biological substances from within a fluid medium. Biological substances are observed by employing a vessel (6) having a chamber therein, the vessel comprising a transparent collection wall (5). A high internal gradient magnetic capture structure may be on the transparent collection wall (5), magnets (3) create an externally-applied force for transporting magnetically responsive material toward the transparent collection wall (5). The magnetic capture structure comprises a plurality of ferromagnetic members and has a uniform or non-uniform spacing between adjacent members. There may be electrical conductor means supported on the transparent collection wall (5) for enabling electrical manipulation of the biological substances. The chamber has one compartment or a plurality of compartments with differing heights. The chamber may include a porous wall.
    Type: Grant
    Filed: December 10, 2003
    Date of Patent: May 10, 2005
    Assignee: Immunivest Corporation
    Inventors: Leon W. M. M. Terstappen, Gerald Dolan
  • Patent number: 6858384
    Abstract: Peripheral blood leucocytes incubated with a semi-synthetic phage antibody library and fluorochrome-labeled CD3 and CD20 antibodies were used to isolate human single chain Fv antibodies specific for subsets of blood leucocytes by flow cytometry. Isolated phage antibodies showed exclusive binding to the subpopulation used for selection or displayed additional binding to a restricted population of other cells in the mixture. At least two phage antibodies appeared to display hithereto unknown staining patterns of B lineage cells. This approach provides a subtractive procedure to rapidly obtain human antibodies against known and novel surface antigens in their native configuration, expressed on phenotypically defined subpopulations of cells. Importantly, this approach does not depend on immunization procedures or the necessity to repeatedly construct phage antibody libraries.
    Type: Grant
    Filed: May 24, 2001
    Date of Patent: February 22, 2005
    Assignee: Crucell Holland B.V.
    Inventors: Leon W M M Terstappen, Ton Logtenberg
  • Patent number: 6790366
    Abstract: Apparatuses and methods for separating, immobilizing, and quantifying biological substances from within a fluid medium. Biological substances are observed by employing a vessel (6) having a chamber therein, the vessel comprising a transparent collection wall (5). A high internal gradient magnetic capture structure may be on the transparent collection wall (5), magnets (3) create an externally-applied force for transporting magnetically responsive material toward the transparent collection wall (5). The magnetic capture structure comprises a plurality of ferromagnetic members and has a uniform or non-uniform spacing between adjacent members. There may be electrical conductor means supported on the transparent collection wall (5) for enabling electrical manipulation of the biological substances. The chamber has one compartment or a plurality of compartments with differing heights. The chamber may include a porous wall.
    Type: Grant
    Filed: June 24, 2003
    Date of Patent: September 14, 2004
    Assignee: Immunivest Corporation
    Inventors: Leon W. M. M. Terstappen, Gerald Dolan
  • Publication number: 20040118757
    Abstract: Apparatuses and methods for separating, immobilizing, and quantifying biological substances from within a fluid medium. Biological substances are observed by employing a vessel (6) having a chamber therein, the vessel comprising a transparent collection wall (5). A high internal gradient magnetic capture structure may be on the transparent collection wall (5), magnets (3) create an externally-applied force for transporting magnetically responsive material toward the transparent collection wall (5). The magnetic capture structure comprises a plurality of ferromagnetic members and has a uniform or non-uniform spacing between adjacent members. There may be electrical conductor means supported on the transparent collection wall (5) for enabling electrical manipulation of the biological substances. The chamber has one compartment or a plurality of compartments with differing heights. The chamber may include a porous wall.
    Type: Application
    Filed: December 10, 2003
    Publication date: June 24, 2004
    Inventors: Leon W.M.M. Terstappen, Gerald Dolan
  • Publication number: 20040004043
    Abstract: Apparatuses and methods for separating, immobilizing, and quantifying biological substances from within a fluid medium. Biological substances are observed by employing a vessel (6) having a chamber therein, the vessel comprising a transparent collection wall (5). A high internal gradient magnetic capture structure may be on the transparent collection wall (5), magnets (3) create an externally-applied force for transporting magnetically responsive material toward the transparent collection wall (5). The magnetic capture structure comprises a plurality of ferromagnetic members and has a uniform or non-uniform spacing between adjacent members. There may be electrical conductor means supported on the transparent collection wall (5) for enabling electrical manipulation of the biological substances. The chamber has one compartment or a plurality of compartments with differing heights. The chamber may include a porous wall.
    Type: Application
    Filed: June 24, 2003
    Publication date: January 8, 2004
    Inventors: Leon W.M.M. Terstappen, Gerald Dolan
  • Patent number: 6660159
    Abstract: Apparatuses and methods for separating, immobilizing, and quantifying biological substances from within a fluid medium. Biological substances are observed by employing a vessel having a chamber therein, the vessel comprising a transparent collection wall. A high internal gradient magnetic capture structure may be on the transparent collection wall, magnets create an externally-applied force for transporting magnetically responsive material toward the transparent collection wall. The magnetic capture structure comprises a plurality of ferromagnetic members and has a uniform or non-nonuniform spacing between adjacent members. There may be electrical conductor means supported on the transparent collection wall for enabling electrical manipulation of the biological substances. The chamber has one compartment or a plurality of compartments with differing heights. The chamber may include a porous wall.
    Type: Grant
    Filed: May 24, 2001
    Date of Patent: December 9, 2003
    Assignee: Immunivest Corporation
    Inventors: Leon W. M. M. Terstappen, Gerald Dolan
  • Patent number: 6645731
    Abstract: A highly sensitive assay is disclosed which combines immunomagnetic enrichment with multiparameter flow cytometric and immunocytochemical analysis to detect, enumerate and characterize carcinoma cells in the blood. The assay can detect one epithelial cell or less in 1 ml of blood and has a greater sensitivity than conventional PCR or immunohistochemistry by 1-2 orders of magnitude. In addition, the assay facilitates the biological characterization and staging of carcinoma cells.
    Type: Grant
    Filed: July 13, 2001
    Date of Patent: November 11, 2003
    Assignee: Immunivest Corporation
    Inventors: Leon W. M. M. Terstappen, Galla Chandra Rao, Jonathan W. Uhr, Emilian V. Racila, Paul A. Liberti
  • Publication number: 20030203507
    Abstract: Compositions and methods are disclosed which enhance the microscopic observation and analysis of biological entities such as cells, bacteria and viruses by eliminating interfering magnetic clusters created by naturally occurring aggregators of colloidal magnetic particles. Additionally means for significantly enhancing the magnetic isolation of low antigen density target cells from biological samples are disclosed.
    Type: Application
    Filed: May 30, 2003
    Publication date: October 30, 2003
    Inventors: Paul A. Liberti, Galla Chandra Rao, Leon W.M.M Terstappen
  • Patent number: 6623982
    Abstract: Compositions and methods are disclosed which enhance the microscopic observation and analysis of biological entities such as cells, bacteria and viruses by eliminating interfering magnetic clusters created by naturally occurring aggregators of colloidal magnetic particles. Additionally means for significantly enhancing the magnetic isolation of low antigen density target cells from biological samples are disclosed.
    Type: Grant
    Filed: July 12, 1999
    Date of Patent: September 23, 2003
    Assignee: Immunivest Corporation
    Inventors: Paul A. Liberti, Galla Candra Rao, Leon W. M. M. Terstappen