CHLOROQUINE THE THERAPEUTIC DRUG IN PROPHYLAXIS OF COVID-19
Chloroquine acts on host target respiratory cells by:
Chloroquine increases the endosomal pH required for the
virus- host target cell fusion. Increase in the pH disrupts the normal viral
function.
In SARS-coronavirus, which is a sister to COVID-19,
chloroquine was found to interfere with the glycosylation of cellular receptors
of the virus. This interference eventually resulted in no association between
the host target cell and the virus.
Chloroquine acts as an ionophoric agent for Zinc ions and
thus increases the in flux of zinc ions into the cytoplasm of host target cells
regardless whether the host target cells are infected or not.
All the above-mentionedgas mechanism is on the host cells
and COVID-19 can not mutate and cause resistance to these 3 mechanisms. First 2
mechanisms inhibit the virus-target host cell union. Chloroquine results in
disablement of ACE2 (Angiotensin converting enzyme 2) terminal glycosylation
which leads to the morphological change; ACE-2 is a surface receptor found on
target host cell. This results in the disruption in the association between the
COVID-19 and target host cell as COVID-19 requires ACE-2 receptor to attach to
a cell.
Because the action is on the target host cell, Chloroquine
won’t develop resistance therapeutically. If a person uses Chloroquine as a
prophylactic agent (500mg once in a week for adults and 8.3 mg per kg once in a
week for children) against COVID-19 then, it will act pre-infection and post-infection.
If a person does not get exposed to the COVID-19 infection after taking
Chloroquine (say for 3 weeks) and then some viruses enters and try to infect
target host cells, Chloroquine mechanism “a” and mechanism “b” will prevent the
union of virus-target host cell. If some of the viruses enters the target host
cell, there Zinc ions are waiting to adhere to the RNA dependent RNA polymerase
enzyme of the virus and stops COVID-19 polymerization intracellularly. If
COVID-19 mutates inside the cell several times, even then the Zinc ions will
actively inhibit the viral multiplication inside the host respiratory cells,
irrespective of the viral strain. Even if COVID-19 virus manages to escape from
Zinc ions trap and releases from the host target cell cytoplasm into the
interstitial matrix, intercellular space, and tried to re-infect some of the
healthy target host cells, Chloroquine will prevent the re-union of viral
genome with target host cells via mechanism ‘a’ and mechanism ‘b’ and the
infection will halt in the preliminary stages itself and complications like
COVID-19 pneumonia will not develop. Chloroquine molecules will not lose its
effectivity in an individual pre and post infection.
Zinc is present in ample amount in the human body. In normal
conditions, the Zinc is not present in free state in the cell. The increased
level of Zinc ions is not toxic to the cells and cells excrete the extra Zinc
ions into the extracellular space. Zinc is commonly present in red meat,
legumes, nuts, milk, cheese, eggs, whole grains etc. Garlic increases the
absorption and bioavailability of Zinc inside the body. So, some persons who
aren’t taking Zinc rich foods in ample amount should eat zinc supplements or
garlic daily.
Safety of Chloroquine is well tested as it is given for Malaria prophylaxis Autoimmune diseases like rheumatoid arthritis Lupus erythematosus .Now a days it is indicated into the SARS infection as it is
a broad antiviral agent.Through it ionophoric action for its zinc intracellular
influx, chloroquine is also used as anti-cancerous drug.
The long-term use of chloroquine (4 years together) may
cause its accumulation in the eye. There are some concerns of its use in
glucose-6-phosphate dehydrogenase enzyme deficient children but the recommended
prophylactic and therapeutic doses, Chloroquine is safe to be used in these
children. Some persons may complain of acidity and nausea, but it can be
resolved if Chloroquine is taken post meal.
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