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NMS-P937, an orally available, specific small-molecule polo-like kinase 1 inhibitor with antitumor activity in solid
Barbara Valsasina1, Italo Beria, Cristina Alli
1Nerviano Medical Sciences Srl, Nerviano, Milan, Italy. barbara.valsasina@nervianoms.com
Abstract:
Polo-like kinase 1 (PLK1) is a serine/threonine protein kinase considered to be the master player of cell-cycle regulation during mitosis. It is indeed involved in centrosome maturation, bipolar spindle formation, chromosome separation, and cytokinesis. PLK1 is overexpressed in a variety of human tumors and its overexpression often correlates with poor prognosis. Although five different PLKs are described in humans, depletion or inhibition of kinase activity of PLK1 is sufficient to induce cell-cycle arrest and apoptosis in cancer cell lines and in xenograft tumor models. NMS-P937 is a novel, orally available PLK1-specific inhibitor. The compound shows high potency in proliferation assays having low nanomolar activity on a large number of cell lines, both from solid and hematologic tumors. NMS-P937 potently causes a mitotic cell-cycle arrest followed by apoptosis in cancer cell lines and inhibits xenograft tumor growth with clear PLK1-related mechanism of action at well-tolerated doses in mice after oral administration. In addition, NMS-P937 shows potential for combination in clinical settings with approved cytotoxic drugs, causing tumor regression in HT29 human colon adenocarcinoma xenografts upon combination with irinotecan and prolonged survival of animals in a disseminated model of acute myelogenous leukemia in combination with cytarabine. NMS-P937, with its favorable pharmacologic parameters, good oral bioavailability in rodent and nonrodent species, and proven antitumor activity in different preclinical models using a variety of dosing regimens, potentially provides a high degree of flexibility in dosing schedules and warrants investigation in clinical settings.
Insights
NMS-P937, a Polo-like kinase 1 (PLK1) inhibitor, effectively halts cancer cell proliferation and induces apoptosis. This novel compound demonstrates significant antitumor activity in preclinical models, warranting further clinical investigation.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Polo-like kinase 1 (PLK1) is a key regulator of mitosis, crucial for cell-cycle progression.
- PLK1 overexpression is common in various human cancers and linked to poor patient prognosis.
- Targeting PLK1 offers a promising strategy for cancer therapy.
Purpose of the Study:
- To evaluate the preclinical efficacy of NMS-P937, a novel, orally available PLK1-specific inhibitor.
- To assess the compound's effects on cancer cell proliferation, cell-cycle progression, and tumor growth.
- To explore the potential of NMS-P937 in combination therapies.
Main Methods:
- In vitro proliferation assays using diverse cancer cell lines.
- In vivo xenograft tumor models (solid and disseminated).
- Pharmacokinetic and tolerability studies in animal models.
Main Results:
- NMS-P937 exhibited potent, low nanomolar activity against a broad spectrum of cancer cells.
- The inhibitor induced mitotic cell-cycle arrest and apoptosis in cancer cell lines.
- NMS-P937 demonstrated significant xenograft tumor growth inhibition and prolonged survival in leukemia models, with good tolerability.
Conclusions:
- NMS-P937 is a potent and orally bioavailable PLK1 inhibitor with significant preclinical antitumor activity.
- NMS-P937 shows promise as a monotherapy and in combination regimens with cytotoxic agents.
- Favorable pharmacologic properties support further clinical development of NMS-P937 for cancer treatment.
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