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Published on: September 14, 2018
MXene-Polydopamine-antiCEACAM1 Antibody Complex as a Strategy for Targeted Ablation of Melanoma
Anastasia Konieva1,2, Volodymyr Deineka2,3, Kateryna Diedkova2,3
1Department of Anatomy, University Hospital Essen, Hufelandstraße 55, 45147 Essen, Germany.
Abstract:
Photothermal therapy (PTT) is a method for eradicating tumor tissues through the use of photothermal materials and photosensitizing agents that absorb light energy from laser sources and convert it into heat, which selectively targets and destroys cancer cells while sparing healthy tissue. MXenes have been intensively investigated as photosensitizing agents for PTT. However, achieving the selectivity of MXenes to the tumor cells remains a challenge. Specific antibodies (Ab) against tumor antigens can achieve homing of the photosensitizing agents toward tumor cells, but their immobilization on MXene received little attention. Here, we offer a strategy for the selective ablation of melanoma cells using MXene-polydopamine-antiCEACAM1 Ab complexes. We coated Ti3C2Tx MXene with polydopamine (PDA), a natural compound that attaches Ab to the MXene surface, followed by conjugation with an anti-CEACAM1 Ab. Our experiments confirm the biocompatibility of the Ti3C2Tx-PDA and Ti3C2Tx-PDA-antiCEACAM1 Ab complexes across various cell types. We also established a protocol for the selective ablation of CEACAM1-positive melanoma cells using near-infrared irradiation. The obtained complexes exhibit high selectivity and efficiency in targeting and eliminating CEACAM1-positive melanoma cells while sparing CEACAM1-negative cells. These results demonstrate the potential of MXene-PDA-Ab complexes for cancer therapy. They underline the critical role of targeted therapies in oncology, offering a promising avenue for the precise and safe treatment of melanoma and possibly other cancers characterized by specific biomarkers. Future research will aim to refine these complexes for clinical use, paving the way for new strategies for cancer treatment.
Insights
Researchers developed targeted photothermal therapy using MXene-polydopamine-antibody complexes. This method selectively destroys melanoma cells by targeting the CEACAM1 biomarker, offering a precise cancer treatment strategy.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Photothermal therapy (PTT) uses light-absorbing materials to generate heat for cancer treatment.
- MXenes are promising PTT agents, but lack tumor cell selectivity.
- Targeting tumor antigens with antibodies can enhance PTT specificity.
Purpose of the Study:
- To develop a targeted PTT strategy for melanoma using MXene-based complexes.
- To investigate the efficacy of MXene-polydopamine-anti-CEACAM1 antibody complexes for selective cancer cell ablation.
Main Methods:
- Coating Ti3C2T_x MXene with polydopamine (PDA) for antibody immobilization.
- Conjugating anti-CEACAM1 antibodies to the MXene-PDA surface.
- Evaluating the biocompatibility and selective photothermal ablation of CEACAM1-positive melanoma cells.
Main Results:
- Ti3C2T_x-PDA-anti-CEACAM1 antibody complexes demonstrated good biocompatibility.
- Near-infrared irradiation effectively ablated CEACAM1-positive melanoma cells.
- The complexes showed high selectivity, sparing CEACAM1-negative cells.
Conclusions:
- MXene-PDA-antibody complexes offer a promising targeted approach for melanoma PTT.
- This strategy highlights the potential of biomarker-targeted therapies in oncology.
- Further refinement could lead to novel clinical applications for cancer treatment.

