New N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors

Case ID:
C13661

#C13661

Inventor(s): John Toscano, Saghar Nourian


Unmet Need

An estimated 17.9 million people died from cardiovascular diseases in 2019, representing 32% of all global deaths (see WHO). Nitroglycerin has been used as a vasodilator to treat heart conditions for over 130 years. It wasn't until 2003 that scientists realized the beneficial effect was due to it being converted by the body to nitric oxide (NO). Nitroxyl (HNO) chemistry, which was largely ignored over the course of the 20th century, has experienced a resurgence since HNO and NO are redox-related. Treatment with HNO could provide a route as a drug treatment for cardiovascular disease. Due to its inherent reactivity, however, HNO cannot be used directly, and therefore must be generated within the body through the use of prodrugs. Therefore, there is a strong need to develop HNO prodrug compounds where the time scale for release within the body can be controlled by the chemistry.


Technology Overview

Researchers at Johns Hopkins have developed novel N-substituted hydroxamic acid derivatives with carbon-based leaving groups that have been synthesized. These compounds donate nitroso carbonyl intermediates under physiologically relevant conditions and upon further hydrolysis release HNO without enzymatic activation. Under relevant conditions in vitro, the half-lives were found to range from 13 min to 5 days. HNO has a short half-life in the body, so being able to control its release rate is desirable as a potential drug treatment.


Stage of Development

Compounds synthesized and characterized.


Publication

Saghar Nourian, et al. Development of N-Substituted Hydroxamic Acids with Pyrazolone Leaving Groups as Nitrosocarbonyl Precursors. J. Org. Chem. 2016, 81, 9138-9146

Patent Information:
Title App Type Country Serial No. Patent No. File Date Issued Date Expire Date Patent Status
New N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors PCT: Patent Cooperation Treaty PCT PCT/US2016/039453   6/25/2016     Expired
New N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors PCT: Patent Cooperation Treaty European Patent Office 16738303.3 3313831 6/25/2016 3/10/2021 6/25/2036 Granted
New N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors PCT: Patent Cooperation Treaty Japan 2017-567124 6820015 6/25/2016 1/6/2021 6/25/2036 Granted
New N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors PCT: Patent Cooperation Treaty United Kingdom 16738303.3 3313831 6/25/2016 3/10/2021 6/25/2036 Granted
N-substituted Hydroxamic Acids with Carbon-based Leaving Groups as Efficient HNO Donors and Uses Thereof PCT: Patent Cooperation Treaty United States 15/738,932 10,583,141 12/21/2017 3/10/2020 6/26/2036 Granted
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For Information, Contact:
Mohit Ganguly
mgangul1@jh.edu
410-614-0300
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