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Eosinophil mediators & their toxicity on Breast Cancer cells - Michelle Law - Bog

Eosinophil mediators & their toxicity on Breast Cancer cellsaf Michelle Law
Bag om Eosinophil mediators & their toxicity on Breast Cancer cells

Eosinophils are known for their role as anti-helminthic agents & as inflammatory effectors in allergic hypersensitivity &bronchial asthma. Their granules contain extremely cytotoxic proteins which are responsible for damage to the normal epithelia, & contribute to allergic responses & the onset of asthma. Preliminary observations had shown tumor cell growth was inhibited by a crude eosinophil protein extract & partially inhibited by IL-4 & TNF-¿; also produced by eosinophils. Characterization of the protein isolated from the granules confirmed its identity as that of the eosinophil major basic protein as demonstrated by silver stain & western blot. The growth of both cancer cell lines was significantly inhibited by the protein isolate alone & in combination with select inflammatory & non-inflammatory cytokines. Additional results showed that the combination of protein isolate and selected cytokines differentially down-regulated the expression of oncogenes in the cell lines. The results demonstrate the functional potency of this eosinophil granular mediator in inhibiting in vitro tumor cell growth & suggest an effector role for this cell in the host response against breast cancer.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783659936524
  • Indbinding:
  • Paperback
  • Sideantal:
  • 108
  • Udgivet:
  • 25. august 2016
  • Størrelse:
  • 150x7x220 mm.
  • Vægt:
  • 179 g.
  • 2-3 uger.
  • 3. december 2024
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Beskrivelse af Eosinophil mediators & their toxicity on Breast Cancer cells

Eosinophils are known for their role as anti-helminthic agents & as inflammatory effectors in allergic hypersensitivity &bronchial asthma. Their granules contain extremely cytotoxic proteins which are responsible for damage to the normal epithelia, & contribute to allergic responses & the onset of asthma. Preliminary observations had shown tumor cell growth was inhibited by a crude eosinophil protein extract & partially inhibited by IL-4 & TNF-¿; also produced by eosinophils. Characterization of the protein isolated from the granules confirmed its identity as that of the eosinophil major basic protein as demonstrated by silver stain & western blot. The growth of both cancer cell lines was significantly inhibited by the protein isolate alone & in combination with select inflammatory & non-inflammatory cytokines. Additional results showed that the combination of protein isolate and selected cytokines differentially down-regulated the expression of oncogenes in the cell lines. The results demonstrate the functional potency of this eosinophil granular mediator in inhibiting in vitro tumor cell growth & suggest an effector role for this cell in the host response against breast cancer.

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