Details
Stereochemistry | ACHIRAL |
Molecular Formula | C15H25N2 |
Molecular Weight | 233.3724 |
Optical Activity | NONE |
Defined Stereocenters | 0 / 0 |
E/Z Centers | 0 |
Charge | 1 |
SHOW SMILES / InChI
SMILES
CC[N+]1(CC)CCCN(CC1)C2=CC=CC=C2
InChI
InChIKey=DAPFMGRCDFSUSN-UHFFFAOYSA-N
InChI=1S/C15H25N2/c1-3-17(4-2)13-8-11-16(12-14-17)15-9-6-5-7-10-15/h5-7,9-10H,3-4,8,11-14H2,1-2H3/q+1
Molecular Formula | C15H25N2 |
Molecular Weight | 233.3724 |
Charge | 1 |
Count |
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Stereochemistry | RACEMIC |
Additional Stereochemistry | No |
Defined Stereocenters | 0 / 0 |
E/Z Centers | 0 |
Optical Activity | NONE |
1,1-DIETHYL-4-PHENYLHOMOPIPERAZINIUM (ASM-024), a small synthetic molecule in clinical stage development, has shown activity at the level of nicotinic receptors and possibly at the muscarinic level and presents anti-inflammatory and bronchodilator properties. Aerosolized ASM-024 reduces airway resistance in mice and promotes in-vitro relaxation of tracheal and bronchial preparations from animal and human tissues. ASM-024 increased in vitro relaxation response to maximally effective concentration of short-acting beta-2 agonists in dog and human bronchi. ASM-024 is able to activate the α7 nAChR channel opening in the presence of the positive allosteric modulator (PNU-120596), indicating that ASM-024 behaves as a ‘silent agonist’ that places the receptor in a desensitized state. Compounds with similar properties have been shown to induce signal transduction pathways independently of ion channel activation. ASM-024 has demonstrated an antagonist effect on ACH-evoked activation at the M1, M2 and M3 muscarinic receptors expressed in Xenopus oocytes. A comprehensive nonclinical safety program was conducted with ASM-024 including pharmacokinetic and metabolism studies, safety pharmacology studies, toxicology and genotoxicity studies. In all, seven clinical studies were completed to evaluate the safety, tolerability and clinical activity of ASM-024. Three Phase I and four Phase II clinical trials were conducted on healthy subjects and patients with mild allergic asthma, stable moderate asthma and subjects with COPD. Altogether, ASM-024 has been safely administered to more than 200 subjects via the oral and inhalation delivery, i.e. nebulized solution and dry powder inhalation. However, the outcome of two phase II pilot studies in patients failed to demonstrate sufficient efficacy of ASM-024 in asthma and COPD. Thus, further work on ASM-024 on pulmonary diseases was stopped. In light of the findings that ASM‐024 blocks both nicotinic and muscarinic receptor activation, it is believed that ASM-024 will be a potent inhibitor of cell growth. These properties may have the potential to reduce the development or progression of tumors expressing these receptors.
Based on a greater knowledge of the unique pharmacological mechanisms of action of ASM-024 developed at Asmacure, Odan is exploring the potential therapeutic role of ASM-024 in the treatment of selected oncology diseases. These studies include the in vitro anti-proliferative properties against a panel of various cancer cell lines and the in vivo anti-tumor activity in selected mouse models. Overall, the most significant inhibitory effect on in vitro cell proliferation was observed on the following cell lines: human lung adenocarcinoma, breast cancer, brain neuroblastoma, prostate adenocarcinoma and malignant melanoma. Preliminary data from a mouse model of lung carcinoma (Lewis Lung Cancer) using a slow infusion delivery method that ASM-024 treatment reduces the size and number of tumor nodules in the lung. In addition the potential therapeutic synergism between ASM-024 with commonly used chemotherapeutic agents will be investigated. Cisplatin and the taxanes (e.g. paclitaxel or Taxol) are commonly used chemotherapeutic agents, but their use is limited by their toxicity rates and innate or acquired resistance to these drugs. The concomitant effect of ASM-024 and cisplatin or Taxol on the proliferation of tumor cells will be assessed in vitro and potentially in in vivo mouse models. In the long term, Odan will consider to pursue the development of ASM-024 in a solution formulation administered intravenously (IV) in conjunction with the commonly-used cancer chemotherapeutic agents, for the growth inhibition and possibly regression of tumors in cancer patients.
Originator
Approval Year
Sample Use Guides
In Vivo Use Guide
Sources: https://www.ncbi.nlm.nih.gov/pubmed/26252534
ASM-024 (50 mg or 200 mg) or placebo were administered once daily by nebulization over three periods of nine consecutive days separated by a three-week washout.
Route of Administration:
Respiratory
In Vitro Use Guide
Sources: https://www.ncbi.nlm.nih.gov/pubmed/25660404
Stimulation of basophils with anti-IgE increased CD203c expression and histamine release, which was inhibited by ASM-024 (10(-5) to 10(-)(3) M, p < 0.05).
Substance Class |
Chemical
Created
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admin
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Edited
Sat Dec 16 11:18:47 GMT 2023
by
admin
on
Sat Dec 16 11:18:47 GMT 2023
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Record UNII |
7N7MB1SWWJ
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Record Status |
Validated (UNII)
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ACTIVE MOIETY |
Originator: Asmacure; Developer: Odan Laboratories; Class: Antiasthmatic, Small molecule; Mechanism of Action: Muscarinic receptor modulator, Nicotinic receptor agonist; Orphan Drug Status: No; On Fast track: No; New Molecular Entity: Yes; Highest Development Phases: Phase II for Allergic asthma, Asthma, Chronic obstructive pulmonary disease; Most Recent Events: 19 Aug 2015 Odan Laboratories acquires Asmacure Ltee, 10 Aug 2015 Phase-II development is ongoing for ASM 024 as a dry powder for inhalation for Asthma and chronic obstructive pulmonary disease, 08 Feb 2015 Asmacure terminates a phase I/II trial in Asthma in Canada (Inhalation, powder) (NCT01793298)
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ACTIVE MOIETY |
ASM-024, a homopiperazinium compound, derived from the structural modification of diphenylmethylpiperazinium (DMPP), has been developed to offer an alternative mechanism of action that could provide symptomatic control through combined anti-inflammatory and bronchodilator properties in a single entity. A dose-dependent inhibition of cellular inflammation in bronchoalveolar lavage fluid was observed in ovalbumin-sensitized mice, subsequently treated for 3 days by nose-only exposure with aerosolized ASM-024 at doses up to 3.8 mg/kg (ED50=0.03 mg/kg). The methacholine ED250 values indicated that airway hyperresponsivenness (AHR) to methacholine decreased following ASM-024 administration by inhalation at a dose of 1.5 mg/kg, with a value of 0.145+/-0.032 mg/kg for ASM 024-treated group as compared to 0.088+/-0.023 mg/kg for untreated mice.
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ACTIVE MOIETY |
Official Title: A Randomized, Double-blind, Placebo-controlled Study to Evaluate the Safety, Tolerability and Pharmacokinetics of Single and Multiple Ascending Doses of ASM-024 Administered by Dry Powder Inhalation to Healthy Subjects and Subjects With Stable Moderate Asthma
Purpose: The purpose of this study is to evaluate the safety and tolerability of the dry powder formulation of ASM-024 following single and multiple administration by inhalation of ascending doses in healthy subjects and subjects with stable moderate asthma.
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