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1.
J Am Chem Soc ; 144(16): 7283-7294, 2022 04 27.
Artículo en Inglés | MEDLINE | ID: mdl-35420800

RESUMEN

Multidrug resistance to chemotherapeutic drugs is one of the major causes for the failure of cancer treatment. Therefore, there is an urgent need to develop anticancer agents that can combat multidrug-resistant cancers effectively and mitigate drug resistance. Here, we report a rational design of anticancer heterochiral ß-peptide polymers as synthetic mimics of host defense peptides to combat multidrug-resistant cancers. The optimal polymer shows potent and broad-spectrum anticancer activities against multidrug-resistant cancer cells and is insusceptible to anticancer drug resistance owing to its membrane-damaging mechanism. The in vivo study indicates that the optimal polymer efficiently inhibits the growth and distant transfer of solid tumors and the metastasis and seeding of circulating tumor cells. Moreover, the polymer shows excellent biocompatibility during anticancer treatment on animals. In addition, the ß-peptide polymers address those prominent shortcomings of anticancer peptides and have superior stability against proteolysis, easy synthesis in large scale, and low cost. Collectively, the structural diversity and superior anticancer performance of ß-peptide polymers imply an effective strategy in designing and finding anticancer agents to combat multidrug-resistant cancers effectively while mitigating drug resistance.


Asunto(s)
Antineoplásicos , Neoplasias , Animales , Péptidos Catiónicos Antimicrobianos , Antineoplásicos/química , Antineoplásicos/farmacología , Antineoplásicos/uso terapéutico , Resistencia a Múltiples Medicamentos , Resistencia a Antineoplásicos , Neoplasias/tratamiento farmacológico , Polímeros/química , Polímeros/farmacología
2.
J Med Chem ; 65(10): 7296-7311, 2022 05 26.
Artículo en Inglés | MEDLINE | ID: mdl-35535860

RESUMEN

The high mortality rate of invasive fungal infections and quick emergence of drug-resistant fungal pathogens urgently call for potent antifungal agents. Inspired by the cell penetrating peptide (CPP) octaarginine (R8), we elongated to 28 residues poly(d,l-homoarginine) to obtain potent toxicity against both fungi and mammalian cells. Further incorporation of glutamic acid residues shields positive charge density and introduces partial zwitterions in the obtained optimal peptide polymer that displays potent antifungal activity against drug-resistant fungi superior to antifungal drugs, excellent stability upon heating and UV exposure, negligible in vitro and in vivo toxicity, and strong therapeutic effects in treating invasive fungal infections. Moreover, the peptide polymer is insusceptible to antifungal resistance owing to the unique CPP-related antifungal mechanism of fungal membrane penetration followed by disruption of organelles within fungal cells. All these merits imply the effectiveness of our strategy to develop promising antifungal agents.


Asunto(s)
Péptidos de Penetración Celular , Infecciones Fúngicas Invasoras , Animales , Antifúngicos/química , Antifúngicos/farmacología , Antifúngicos/uso terapéutico , Péptidos de Penetración Celular/farmacología , Farmacorresistencia Fúngica , Hongos , Infecciones Fúngicas Invasoras/tratamiento farmacológico , Mamíferos , Polímeros/farmacología
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