Therapeutic applications of Cordyceps and its
extracts are hypothesized to be centered primarily
on the key effects of increased oxygen utilization,
5,27 increased ATP production,5 and the stabilization
of blood sugar metabolism.5 The presence
of adeno sine, cordycepin, and cordycepic acid
[d-mannitol]14; polysaccharides; vitamins; and
trace elements may be, at least partially, the cause
for such effects. Due to the historically high cost
of the fungus and the only recently developed
methods for artifi cial cultivation, preclinical and
clinical trials of Cordyceps and its extracts are still
relatively new endeavors. Earlier trials, although
few in number, have set the precedent from which
modern trials are building, expanding, and cementing
our understanding of Cordyceps.
Therapeutic applications of Cordyceps and its
extracts are hypothesized to be centered primarily
on the key effects of increased oxygen utilization,
5,27 increased ATP production,5 and the stabilization
of blood sugar metabolism.5 The presence
of adeno sine, cordycepin, and cordycepic acid
[d-mannitol]14; polysaccharides; vitamins; and
trace elements may be, at least partially, the cause
for such effects. Due to the historically high cost
of the fungus and the only recently developed
methods for artifi cial cultivation, preclinical and
clinical trials of Cordyceps and its extracts are still
relatively new endeavors. Earlier trials, although
few in number, have set the precedent from which
modern trials are building, expanding, and cementing
our understanding of Cordyceps.
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