Glycoscience, the interdisciplinary study of the structure, function, and biology of carbohydrates (or glycans) and their roles throughout biology, has made significant strides in the past decade, putting in the spotlight the key role of glycan-motifs on cancer glycocalyx (essentially a "sugar coat" surrounding tumor cells) in tumor-related events. It clearly emerged that targeting specific cancer associated glycan-motifs is key for overcoming cancer heterogeneity, opening new avenues for effective anti-tumoral therapeutics.
In this context, the MSCA-funded GlyCanDrug project is addressing this challenge, seeking to design precision therapeutics targeting specific cancer associated glycan-motifs, creating new opportunities for drug discovery. GlyCanDrug consortium is training 10 PhD students on innovative chemical strategies to suppress the role of cancer associated glycan-motifs in tumor progression. In particular, the PhD projects are focused on the development of small molecule inhibitors of target cancer-associated glycosyltransferases (GTs) and antibodies, produced with animal-free technologies, able to specifically recognize these glycan-motifs. The precise glycan-motif editing of cancer glycocalyx using selective inhibitors of cancer-associated glycosyltransferases (GTs) will pave the way for the development of novel precision therapeutics.
By the design and synthesis of GTs inhibitors, the development of high-throughput methodologies and specific cell-based assays for their screening, and the design and production of cancer-specific antibodies, the GlyCanDrug consortium is paving the ground to foster the creation of next generation cancer therapeutics.