Peptide-based strategies for overcoming taxol-resistance in cancer therapy – a narrative review
摘要
Taxol (Tx) is widely used in cancer therapy due to its ability to disrupt microtubule dynamics, inhibiting cell division and tumor proliferation. However, multidrug resistance (MDR) mechanisms, including enhanced drug efflux, altered metabolism, mutations in tubulin, and inhibition of apoptosis, challenge its efficacy. Peptide-based therapies have emerged as promising and significant solutions to overcome Tx resistance. These peptides offer high specificity, lower toxicity, and acceptable cell membrane penetration, enhancing precision medicine capabilities. Recent advancements focus on peptides that modulate drug efflux, stabilize microtubules, and promote apoptosis in cancer cells. The ATP synthase (ATP)-binding cassette transporters (ABC) transporter ABCB1, tubulin subunits, and anti-apoptotic proteins such as Bcl-2 show potential in restoring Tx effectiveness against MDR. Combining peptides with nanoparticle delivery systems improves tumor penetration and reduces side effects. Despite challenges like protease degradation and immunogenicity, peptide treatment addresses limitations. Peptide cancer therapies could revolutionize anticancer treatment by providing targeted, less toxic alternatives, especially for MDR. phenotype.