共 65 条
- [1] Alam M.M., Kariya R., Kawaguchi A., Et al., Inhibition of autophagy by chloroquine induces apoptosis in primary effusion lymphoma in vitro and in vivo through induction of endoplasmic reticulum stress, Apoptosis, 21, pp. 1191-1201, (2016)
- [2] Altulea D., Maassen S., Baranov M.V., Et al., What makes (hydroxy) chloroquine ineffective against COVID-19: insights from cell biology, J. Mol. Cell Biol, 13, pp. 175-184, (2021)
- [3] Amaravadi R.K., Lippincott-schwartz J., Yin X., Et al., Principles and current strategies for targeting autophagy for cancer treatment, Clin. Cancer Res, 17, pp. 654-666, (2011)
- [4] Bond M.R., Ghosh S.K., Wang P., Et al., Conserved nutrient sensor O-GlcNAc transferase is integral to C. elegans pathogen-specific immunity, PLoS One, 9, (2014)
- [5] Chen D., Xie J., Fiskesund R., Et al., Chloroquine modulates antitumor immune response by resetting tumor-associated macrophages toward M1 phenotype, Nat. Commun, 9, (2018)
- [6] Costa E.A., Goncalves A.P., Batista J.A.D., Et al., New insights into the mechanism of action of the drug chloroquine: direct interaction with DNA and cytotoxicity, J. Phys. Chem. B, 126, pp. 3512-3521, (2022)
- [7] Das P., Aballay A., Singh J., Calcineurin inhibition enhances Caenorhabditis elegans lifespan by defecation defects-mediated calorie restriction and nuclear hormone signaling, eLife, 12, (2024)
- [8] Porta A.D., Bornstein K., Coye A., Et al., Acute chloroquine and hydroxychloroquine toxicity: a review for emergency clinicians, Am. J. Emerg. Med, 38, pp. 2209-2217, (2020)
- [9] Trani L.D., Savarino A., Campitelli L., Et al., Different pH requirements are associated with divergent inhibitory effects of chloroquine on human and avian influenza A viruses, Virol. J, 4, (2007)
- [10] Doyno C., Sobieraj D.M., Baker W.L., Toxicity of chloroquine and hydroxychloroquine following therapeutic use or overdose or overdose, Clin. Toxicol, 59, pp. 12-23, (2021)