Immunodeficiency and cancer: prospects for correction

John W Hadden1

  • 1Immuno-Rx, Inc., 140 West 57th Street, Suite 9C, New York, NY 10019, USA.

Insights

Cellular immunodeficiency is linked to cancer. A natural cytokine mixture (IRX-2) and thymosin alpha1 reversed thymic involution in mice and increased T cells in cancer patients, offering new immunotherapy strategies.

Area of Science:

  • Immunology
  • Oncology
  • Immunotherapy

Background:

  • Cellular immunodeficiency is a known factor in human cancers like head and neck, lung, esophagus, and breast.
  • The mechanisms underlying tumor-associated immune deficiency are not well understood.
  • Advances in recombinant cytokines and monoclonal antibodies offer new avenues for direct tumoricidal effects.

Purpose of the Study:

  • To explore strategies for effective immunorestoration to enhance cellular immune responses against tumor antigens.
  • To investigate methods for alleviating tumor-associated immune suppression through contrasuppressive therapy.
  • To determine if thymic involution can be reversed in adults and promote T-cell responses.

Main Methods:

  • Administration of a natural Type 1-cytokine mixture (IRX-2) to aged, hydrocortisone-stressed mice.
  • Testing recombinant IL-1 and IL-2, oral zinc, zinc-thymulin, and thymosin alpha(1) in mice.
  • Combination immunotherapy trials in lymphocytopenic squamous cell head and neck cancer patients using IRX-2 and IRX-2 plus thymosin alpha(1) (IRX-3).

Main Results:

  • IRX-2 hastened thymic involution reversal and promoted T-cell responses in mice; recombinant IL-1/IL-2 were inactive.
  • Oral zinc, zinc-thymulin, and thymosin alpha(1) showed positive effects.
  • Combination of IRX-2 and thymosin alpha(1) significantly increased peripheral T lymphocytes in mice.
  • Cancer patients receiving IRX-2 or IRX-3 showed marked increases in naive T cells (CD45RA+).

Conclusions:

  • Reversal of thymic involution and T-cell generation in adults is achievable.
  • Combination immunotherapy with IRX-2 and thymosin alpha(1) shows promise for treating cancer-associated immune deficiency.
  • Addressing tumor-induced immune deficiency is critical for advancing cancer immunotherapy.

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