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Updated: Mar 8, 2026

Chemogenetic Regulation in Reprogrammed Stem Cell-derived Precursor Cells in Treating Neurodegenerative Diseases
Published on: May 2, 2025
Conformation as the Therapeutic Target for Neurodegenerative Diseases
Rajaraman Krishnan1, Franz Hefti, Haim Tsubery
1Proclara Biosciences, 222 Third Street, Cambridge, MA 02142, United States.
Abstract:
Therapeutic strategies that target pathways of protein misfolding and the toxicity of intermediates along these pathways are mainly at discovery and early development stages, with the exception of monoclonal antibodies that have mainly failed to produce convincing clinical benefits in late stage trials. The clinical failures represent potentially critical lessons for future neurodegenerative disease drug development. More effective drugs may be achieved by pursuing the following two strategies. First, conformational targeting of aggregates of misfolded proteins, rather than less specific binding that includes monomer subunits, which vastly outnumber the toxic targets. Second, since neurodegenerative diseases frequently include more than one potential protein pathology, generic targeting of aggregates by shape might also be a crucial feature of a drug candidate. Incorporating both of these critical features into a viable drug candidate along with high affinity binding has not been achieved with small molecule approaches or with antibody fragments. Monoclonal antibodies developed so far are not broadly acting through conformational recognition. Using GAIM (General Amyloid Interaction Motif) represents a novel approach that incorporates high affinity conformational recognition for multiple protein assemblies, as well as recognition of an array of assemblies along the misfolding pathway between oligomers and fibers. A GAIM-Ig fusion, NPT088, is nearing clinical testing.
Insights
Targeting misfolded protein aggregates, not monomers, is key for neurodegenerative disease drugs. A novel approach using General Amyloid Interaction Motif (GAIM) shows promise for broad-acting therapies.
Area of Science:
- Neuroscience
- Biochemistry
- Drug Discovery
Background:
- Therapies targeting protein misfolding in neurodegenerative diseases are mostly in early development.
- Monoclonal antibodies have largely failed in late-stage clinical trials, offering critical lessons.
Purpose of the Study:
- To propose improved strategies for developing effective neurodegenerative disease drugs.
- To introduce a novel approach for conformational targeting of misfolded protein aggregates.
Main Methods:
- Focusing on conformational targeting of protein aggregates over monomer subunits.
- Developing drug candidates that generically target aggregates by shape to address multiple pathologies.
- Utilizing the General Amyloid Interaction Motif (GAIM) for high-affinity conformational recognition.
Main Results:
- GAIM demonstrates high-affinity conformational recognition for diverse protein assemblies.
- GAIM recognizes various assemblies along the protein misfolding pathway, from oligomers to fibers.
- A GAIM-Ig fusion, NPT088, is advancing towards clinical testing.
Conclusions:
- Effective neurodegenerative disease drugs require conformational targeting of aggregates and broad applicability.
- The GAIM approach offers a novel strategy for developing multi-target therapeutics.
- NPT088 represents a promising candidate for clinical evaluation in neurodegenerative diseases.
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