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Chloroquine and hydroxychloroquine are anti-malarial medications also used against some auto-immune diseases. [64] Chloroquine, along with hydroxychloroquine, was an early experimental treatment for COVID-19. [65] Neither drug has been useful to prevent or treat SARS-CoV-2 infection.
As a result, the entire antibody, linker and cytotoxic (anti-cancer) agent enter the targeted cancer cell where the antibody is degraded into an amino acid. The resulting complex – amino acid, linker and cytotoxic agent – is considered to be the active drug. In contrast, cleavable linkers are detached by enzymes in the cancer cell. The ...
Non-small cell lung cancer, oesophageal cancer, uterine cervical cancer, head and neck cancer and urothelial cancer: Nephrotoxicity, myelosuppression and nausea and vomiting (30-90%). Oxaliplatin: IV: Reacts with DNA, inducing apoptosis, non-cell cycle specific. Colorectal cancer, oesophageal cancer and gastric cancer
This is a list of chemotherapeutic agents, also known as cytotoxic agents or cytostatic drugs, that are known to be of use in chemotherapy for cancer.This list is organized by type of agent, although the subsections are not necessarily definitive and are subject to revision.
Generally, antibiotics (like azithromycin [150]) are not effective against viruses, only some bacteria. [152] Azithromycin is sometimes given to patients hospitalized with COVID-19, but only to treat bacterial co-infection. Overuse of azithromycin causes antibiotic resistance, and rare side effects include heart arrhythmias and hearing loss ...
Using chloroquine or hydroxychloroquine with remdesivir may reduce the antiviral activity of remdesivir. [ 12 ] [ 10 ] [ 44 ] Coadministration of remdesivir and chloroquine phosphate or hydroxychloroquine sulfate is not recommended based on in vitro data demonstrating an antagonistic effect of chloroquine on the intracellular metabolic ...
Medical research for cancer begins much like research for any disease. In organized studies of new treatments for cancer, the pre-clinical development of drugs, devices, and techniques begins in laboratories, either with isolated cells or in small animals, most commonly rats or mice. In other cases, the proposed treatment for cancer is already ...
Examples include amodiaquine, chloroquine, and hydroxychloroquine. [3] Other uses for the derivatives are: anti-asthmatic, antibacterial, anti-fungal, anti-malarial, antiviral and anti-inflammatory agents. [1] A patent application for 4-aminoquinoline compounds was filed in 2002 and published in 2005. [4]