Mucus and tumor penetrating paclitaxel micelles for potent local therapy of cervical cancer.
The therapeutic efficacy for cervical cancer treatment is limited by insufficient drug accumulation and penetration due to physiological barriers such as mucin-rich environments after systemic administration. Thus, developing a local drug delivery system is essential to overcome these hindrances. Active transcytosis of cancer nanomedicines holds great promise for enhancing tumor extravasation, infiltration, and antitumor activity. Herein, polyzwitterionic OPDEA-PCL was developed to encapsulate paclitaxel (PTX) into micelles, serving as an intravaginal therapy for orthotopic cervical cancer. The OPDEA-PCL/PTX micelles efficiently penetrated mucus and exhibited strong resistance to mucin fouling, thereby facilitating rapid transcytosis into tumors. Furthermore, OPDEA-PCL/PTX micelles colocalized with the mitochondria of tumor cells, reversing PTX resistance. In the orthotopic cervical tumor model, the inhibition rate of OPDEA-PCL/PTX micelles was 90.0%, more than 2-fold higher than that of free PTX. In the subcutaneous cervical cancer model which is resistant to PTX. Intravenous administration of OPDEA-PCL/PTX micelles significantly overcame PTX resistance, achieving a tumor inhibition rate of 95.2%, and extending the median survival time by more than 2-fold compared to free PTX and PEG-PCL/PTX treated groups. In summary, this approach holds great promise as a potent localized nanomedicine for cervical cancer treatment with minimal side effects.