Ahamed, A.; Samaranayake, P.; Silva, V.d.; Kooh, M.R.R.; Wickramage, N.; Rajapaksha, I.G.; Thotagamuge, R.
Unveiling the pH-Responsive Mechanisms of the Carbon Dot–Proximicin-A Peptide Conjugate for Targeted Cancer Therapy Using Density Functional Theory. Molecules 2025, 30, 896.
https://doi.org/10.3390/molecules30040896
AMA Style
Ahamed A, Samaranayake P, Silva Vd, Kooh MRR, Wickramage N, Rajapaksha IG, Thotagamuge R.
Unveiling the pH-Responsive Mechanisms of the Carbon Dot–Proximicin-A Peptide Conjugate for Targeted Cancer Therapy Using Density Functional Theory. Molecules. 2025; 30(4):896.
https://doi.org/10.3390/molecules30040896
Chicago/Turabian Style
Ahamed, Azeez, Piumantha Samaranayake, Visal de Silva, Muhammad Raziq Rahimi Kooh, Nadeesha Wickramage, Indu G. Rajapaksha, and Roshan Thotagamuge.
2025. "Unveiling the pH-Responsive Mechanisms of the Carbon Dot–Proximicin-A Peptide Conjugate for Targeted Cancer Therapy Using Density Functional Theory" Molecules 30, no. 4: 896.
https://doi.org/10.3390/molecules30040896
APA Style
Ahamed, A., Samaranayake, P., Silva, V. d., Kooh, M. R. R., Wickramage, N., Rajapaksha, I. G., & Thotagamuge, R.
(2025). Unveiling the pH-Responsive Mechanisms of the Carbon Dot–Proximicin-A Peptide Conjugate for Targeted Cancer Therapy Using Density Functional Theory. Molecules, 30(4), 896.
https://doi.org/10.3390/molecules30040896