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Polymer conjugate of a microtubule destabilizer inhibits lung metastatic melanoma
Ruinan Yang1, Goutam Mondal1, Rachel A Ness2
1Department of Pharmaceutical Sciences, University of Nebraska Medical Center, Omaha, NE 68198, United States.
Abstract:
Melanoma is the most aggressive type of skin cancer. It is highly metastatic, migrating through lymph nodes to distant sites of the body, especially to lungs, liver and brain. Systemic chemotherapy remains the mainstay of treatment; however, the development of multidrug resistance (MDR) restricts the efficacy of current chemotherapeutic drugs. We synthesized a series of microtubule destabilizers, substituted methoxybenzoyl-ary-thiazole (SMART) compounds, which inhibited tubulin polymerization and effectively circumvented MDR. Due to poor water solubility of SMART compounds, co-solvent delivery is required for their systemic administration, which is usually associated with hepatotoxicity, nephrotoxicity and hemolysis. To solve this problem and also to increase circulation time, we synthesized a new SMART analogue, SMART-OH, and its polymer-drug conjugate, methoxy-poly (ethylene glycol)-block-poly (2-methyl-2-carboxyl-propylene carbonate-graft-SMART-graft-dodecanol) (abbreviated as P-SMART), with 14.3±2.8% drug payload of SMART-OH. Similar to its parent drug, P-SMART showed significant anticancer activity against melanoma cells in cytotoxicity, colony formation, and cell invasion studies. In addition, P-SMART treatment led to cell cycle arrest at G2/M phase and cell accumulation in sub-G1 phase. We established a model of metastatic melanoma to the lung in C57/BL6 albino mice to determine in vivo efficacy of P-SMART and SMART-OH at the dose of 20mg/kg. P-SMART treatment resulted in significant inhibition of tumor growth and prolonged mouse median survival. In conclusion, P-SMART, a novel polymer-microtubule destabilizer conjugate, has the potential to treat metastatic melanoma.
Insights
A new polymer-drug conjugate, P-SMART, effectively treats metastatic melanoma by inhibiting tumor growth and improving survival. This novel approach overcomes limitations of traditional chemotherapy and drug solubility issues.
Area of Science:
- Oncology
- Pharmacology
- Materials Science
Background:
- Melanoma is an aggressive skin cancer with high metastatic potential.
- Multidrug resistance (MDR) limits the efficacy of current chemotherapy.
- Poor water solubility of microtubule destabilizers (SMART compounds) necessitates co-solvent delivery, causing toxicity.
Purpose of the Study:
- To develop a polymer-drug conjugate (P-SMART) of a novel microtubule destabilizer (SMART analogue, SMART-OH) to improve solubility and circulation time.
- To evaluate the in vitro and in vivo efficacy of P-SMART against metastatic melanoma.
Main Methods:
- Synthesis of P-SMART, a polymer-drug conjugate with a 14.3±2.8% drug payload.
- In vitro studies assessing cytotoxicity, colony formation, and cell invasion of melanoma cells.
- In vivo studies using a metastatic melanoma mouse model to evaluate tumor growth inhibition and survival.
Main Results:
- P-SMART demonstrated significant anticancer activity in vitro, inducing G2/M cell cycle arrest and sub-G1 accumulation.
- In vivo, P-SMART significantly inhibited tumor growth and prolonged median survival in mice with metastatic melanoma.
- P-SMART effectively delivered the SMART-OH drug, overcoming solubility issues and associated toxicities.
Conclusions:
- P-SMART is a promising polymer-microtubule destabilizer conjugate for treating metastatic melanoma.
- This novel conjugate offers a potential solution for overcoming MDR and improving therapeutic outcomes in melanoma treatment.
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