Area of research
Radiology, Nuclear Medicine and Imaging · Oncology
Research interest
Research focused on Extracellular matrix and Cancer research, with related work in Tumor microenvironment, Fibronectin, Immunotherapy. Notable publications include 'Nanobody-based CAR T cells that target the tumor microenvironment inhibit the growth of solid tumors in immunocompetent mice', 'Noninvasive imaging of tumor progression, metastasis, and fibrosis using a nanobody targeting the extracellular matrix', and 'Quantitative proteomics identify Tenascin-C as a promoter of lung cancer progression and contributor to a signature prognostic of patient survival'.
Proteomic Profiling of Extracellular Matrix Components from Patient Metastases Identifies Consistently Elevated Proteins for Developing Nanobodies That Target Primary Tumors and Metastases
Maximizing response to intratumoral immunotherapy in mice by tuning local retention
Intratumoral nanobody–IL-2 fusions that bind the tumor extracellular matrix suppress solid tumor growth in mice
Alternative Splicing of FN (Fibronectin) Regulates the Composition of the Arterial Wall Under Low Flow
Nanobody-based CAR T cells that target the tumor microenvironment inhibit the growth of solid tumors in immunocompetent mice
Noninvasive imaging of tumor progression, metastasis, and fibrosis using a nanobody targeting the extracellular matrix
Abstract 549: Alternative Splicing of Fibronectin Regulates Extracellular Matrix Composition of the Inflamed Arterial Wall
Quantitative proteomics identify Tenascin-C as a promoter of lung cancer progression and contributor to a signature prognostic of patient survival