Immunosuppressants and Chemotherapy Strategies

Study sheet excerpt

Course Outline

  1. Immunosuppressant Classes
  2. Chemotherapy Mechanisms
  3. Immune System Components
  4. Immunosuppressant Mechanisms
  5. Chemotherapy Types
  6. Side Effects and Toxicity
  7. Clinical Applications
  8. Future Therapeutic Directions

1. Immunosuppressant Classes

Key Concepts & Definitions

  • Immunosuppressants: Drugs that inhibit or reduce the activity of the immune system, used to prevent organ rejection and treat autoimmune diseases.
  • Corticosteroids: A class of immunosuppressants that suppress inflammation and immune responses by modulating gene expression; e.g., Prednisone.
  • Calcineurin Inhibitors: Agents that block T-cell activation by inhibiting calcineurin phosphatase, essential for IL-2 production; e.g., Cyclosporine, Tacrolimus.
  • Antimetabolites: Drugs that interfere with nucleotide synthesis, impairing lymphocyte proliferation; e.g., Azathioprine, Methotrexate.
  • mTOR Inhibitors: Agents that inhibit the mammalian target of rapamycin pathway, reducing T-cell proliferation and angiogenesis; e.g., Sirolimus.
  • Monoclonal Antibodies: Laboratory-produced antibodies targeting specific immune cell antigens, modulating immune responses; e.g., Rituximab, Basiliximab.

Essential Points

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Quiz preview

1. What are immunosuppressant classes?

2. Which of the following chemotherapy agents works primarily by adding alkyl groups to DNA, causing cross-linking and strand breaks?

3. What is the primary role of lymphocytes in the immune system?

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Flashcards preview

Immunosuppressant Classes

Drugs that inhibit immune activity for transplantation or autoimmune diseases.

Chemotherapy Mechanisms

Agents disrupt DNA, mitosis, or specific pathways in cancer cells.

Immune System Components

Includes innate and adaptive immunity with lymphocytes, antigens, cytokines.

Immunosuppressants — definition?

Drugs that inhibit immune activity.

Calcineurin inhibitors — role?

Block T-cell activation by inhibiting IL-2.

Antimetabolites — mechanism?

Interfere with nucleotide synthesis.

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