AI Article Synopsis

  • - Conventional chemotherapy struggles with targeting and retention, potentially leading to immune suppression, making it less effective for cancer treatment.
  • - Researchers developed Pep1, a polypeptide that changes shape in response to an enzyme (MMP-2), which helps improve how drugs are delivered and retained in tumor cells.
  • - By using a drug delivery system (DI/Pep1) that carries doxorubicin and indomethacin, the study showed increased immune response and reduced breast cancer growth, aiming to improve cancer treatment effectiveness.

Article Abstract

Conventional chemotherapeutic agents are limited by their lack of targeting and penetration and their short retention time, and chemotherapy might induce an immune suppressive environment. Peptide self-assembly can result in a specific morphology, and the resulting morphological changes are stimuli responsive to the external environment, which is important for drug permeation and retention of encapsulated chemotherapeutic agents. In this study, a polypeptide (Pep1) containing the peptide sequences PLGLAG and RGD that is responsive to matrix metalloproteinase 2 (MMP-2) was successfully developed. Pep1 underwent a morphological transformation from a spherical structure to aggregates with a high aspect ratio in response to MMP-2 induction. This drug delivery system (DI/Pep1) can transport doxorubicin (DOX) and indomethacin (IND) simultaneously to target tumor cells for subsequent drug release while extending drug retention within tumor cells, which increases immunogenic cell death and facilitates the immunotherapeutic effect of CD4 T cells. Ultimately, DI/Pep1 attenuated tumor-associated inflammation, enhanced the body's immune response, and inhibited breast cancer growth by combining the actions of DOX and IND. Our research offers an approach to hopefully enhance the effectiveness of cancer treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11558207PMC
http://dx.doi.org/10.1002/btm2.10702DOI Listing

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