Peters GJ, van der Wilt CL, van Moorsel CJ, Kroep JR, Bergman AM, Ackland SP (2000). "Basis for effective combination cancer chemotherapy with antimetabolites". Pharmacology & Therapeutics. 87 (2–3): 227–253. doi:10.1016/S0163-7258(00)00086-3. PMID11008002.
Matera C, Gomila AM, Camarero N, Libergoli M, Soler C, Gorostiza P (November 2018). "Photoswitchable Antimetabolite for Targeted Photoactivated Chemotherapy". Journal of the American Chemical Society. 140 (46): 15764–15773. doi:10.1021/jacs.8b08249. hdl:2445/126377. PMID30346152. S2CID53043366.
Mashita T, Kowada T, Takahashi H, Matsui T, Mizukami S (June 2019). "Light-Wavelength-Based Quantitative Control of Dihydrofolate Reductase Activity by Using a Photochromic Isostere of an Inhibitor". ChemBioChem. 20 (11): 1382–1386. doi:10.1002/cbic.201800816. PMID30656808. S2CID58567138.
Leumann CJ (April 2002). "DNA analogues: from supramolecular principles to biological properties". Bioorganic & Medicinal Chemistry. 10 (4): 841–854. doi:10.1016/S0968-0896(01)00348-0. PMID11836090.
handle.net
hdl.handle.net
Matera C, Gomila AM, Camarero N, Libergoli M, Soler C, Gorostiza P (November 2018). "Photoswitchable Antimetabolite for Targeted Photoactivated Chemotherapy". Journal of the American Chemical Society. 140 (46): 15764–15773. doi:10.1021/jacs.8b08249. hdl:2445/126377. PMID30346152. S2CID53043366.
nih.gov
pubmed.ncbi.nlm.nih.gov
Peters GJ, van der Wilt CL, van Moorsel CJ, Kroep JR, Bergman AM, Ackland SP (2000). "Basis for effective combination cancer chemotherapy with antimetabolites". Pharmacology & Therapeutics. 87 (2–3): 227–253. doi:10.1016/S0163-7258(00)00086-3. PMID11008002.
Matera C, Gomila AM, Camarero N, Libergoli M, Soler C, Gorostiza P (November 2018). "Photoswitchable Antimetabolite for Targeted Photoactivated Chemotherapy". Journal of the American Chemical Society. 140 (46): 15764–15773. doi:10.1021/jacs.8b08249. hdl:2445/126377. PMID30346152. S2CID53043366.
Mashita T, Kowada T, Takahashi H, Matsui T, Mizukami S (June 2019). "Light-Wavelength-Based Quantitative Control of Dihydrofolate Reductase Activity by Using a Photochromic Isostere of an Inhibitor". ChemBioChem. 20 (11): 1382–1386. doi:10.1002/cbic.201800816. PMID30656808. S2CID58567138.
Matera C, Gomila AM, Camarero N, Libergoli M, Soler C, Gorostiza P (November 2018). "Photoswitchable Antimetabolite for Targeted Photoactivated Chemotherapy". Journal of the American Chemical Society. 140 (46): 15764–15773. doi:10.1021/jacs.8b08249. hdl:2445/126377. PMID30346152. S2CID53043366.
Mashita T, Kowada T, Takahashi H, Matsui T, Mizukami S (June 2019). "Light-Wavelength-Based Quantitative Control of Dihydrofolate Reductase Activity by Using a Photochromic Isostere of an Inhibitor". ChemBioChem. 20 (11): 1382–1386. doi:10.1002/cbic.201800816. PMID30656808. S2CID58567138.