Data Demonstrating ENPP1 Inhibition as a Therapeutic Approach for Later-onset Hypophosphatasia Presented at the American Society for Bone and Mineral Research 2024 Annual Meeting
“From my team’s earlier work published in 2002 and 2005, we knew that ENPP1 could be a targetable molecule to modulate TNAP’s all-important substrate PPi. I am delighted that we have now been able to demonstrate the efficacy of this principle in our mouse model of later-onset HPP,” said José Luis Millán, Ph.D., Professor, Human Genetics Program at Sanford Children’s
HPP is a rare, genetic, metabolic disorder characterized by poor bone mineralization. The disease has a broad spectrum of symptoms and severity ranging from the life-threatening perinatal- and infantile-onset form to the less severe juvenile-onset form that can manifest with frequent bone fractures, significant joint and bone pain, and joint swelling. HPP is caused by loss-of-function mutations in the gene that encodes tissue-nonspecific alkaline phosphatase (TNAP), whose deficiency results in the accumulation of extracellular inorganic pyrophosphate (PPi), an inhibitor of bone mineralization.
“The data presented at ASBMR supports ENPP1 inhibition as a therapeutic approach for patients with hypophosphatasia,” said
This nonclinical study was designed to assess whether ENPP1 could be a druggable target to treat the non-lethal forms of HPP using an early lead ENPP1 inhibitor and the Alpl-/Prx1 mouse, which is a model of later-onset HPP.
Results indicate that oral dosing of an early lead ENPP1 inhibitor, REV101, to adult HPP mice lowered PPi by 30%, leading to improvements in mineralization of long and vertebrate bones. Furthermore, data showed that ENPP1 inhibition was safe and well-tolerated, and, for the first time, showed that ENPP1 is a druggable target for later-onset HPP.
Details of yesterday’s poster presentation:
Title: ENPP1 Inhibition as a Therapeutic Approach for Later-onset Hypophosphatasia
Date/Time:
Presenter: Dr. José Luis Millán
Poster Number: Sun-LB 552
The poster will be available in the Publications & Presentations section of Rallybio’s website following the conclusion of the conference.
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