Paclitaxel-Loaded Nanosponges Inhibit Growth and Angiogenesis in Melanoma Cell Models

Nausicaa Clemente1, Monica Argenziano2, Casimiro Luca Gigliotti1

  • 1Department of Health Sciences and Interdisciplinary Research Center of Autoimmune Diseases (IRCAD), UPO, Novara, Italy.

Insights

Paclitaxel-loaded nanosponges (PTX-PNS) significantly inhibit melanoma growth and angiogenesis more effectively than free paclitaxel (PTX). This novel nanoformulation reduces effective doses and enhances anti-tumor activity in vivo.

Area of Science:

  • Nanotechnology
  • Pharmacology
  • Oncology

Background:

  • Melanoma poses a significant health challenge, necessitating novel therapeutic strategies.
  • Paclitaxel (PTX) is a potent chemotherapeutic agent, but its efficacy can be limited by delivery and toxicity issues.
  • Developing advanced drug delivery systems like nanosponges can improve PTX's therapeutic index.

Purpose of the Study:

  • To evaluate the efficacy of PTX-loaded pyromellitic nanosponges (PTX-PNS) against melanoma.
  • To compare the anti-proliferative and anti-invasive effects of PTX-PNS with free PTX in vitro and in vivo.
  • To assess the impact of PTX-PNS on angiogenesis.

Main Methods:

  • Cell viability assessed via MTT assay in various melanoma cell lines and HUVECs.
  • Cell migration evaluated using scratch and Boyden chamber assays.
  • Angiogenesis inhibition studied through endothelial tube formation assays.
  • In vivo efficacy tested in a B16-BL6 melanoma mouse model.

Main Results:

  • PTX-PNS demonstrated superior inhibition of melanoma cell proliferation and migration compared to free PTX.
  • PTX-PNS were more effective in inhibiting endothelial tube formation, indicating reduced angiogenesis.
  • In vivo studies showed significantly reduced tumor weight, volume, and growth with PTX-PNS treatment.
  • Tumor analysis confirmed inhibited angiogenesis and proliferation in PTX-PNS treated groups.

Conclusions:

  • PTX-PNS represent a promising nanoformulation for melanoma treatment.
  • This nanoformulation enhances PTX efficacy by lowering effective doses and improving in vivo anti-tumor activity.
  • PTX-PNS effectively inhibit melanoma cell growth, invasion, and angiogenesis.

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