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Cancer Immunotherapy Exam questions and answers

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Cancer Immunotherapy Exam questions and answers cancer immunotherapy history - 1890s - coley - mixing toxins and injecting into patient causing cancer regression but not all people responded to toxin, taken over by radiation therapy - 1909 - ehrlich - theory that cancer would increase without the immune system - 1950s - thomas & burnet - immunosurveillance and immunoediting -- immune system can eradicate cancer cells by detecting them - 2001 - other observations

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Cancer Immunotherapy Exam questions and
answers
cancer immunotherapy history

- 1890s - coley - mixing toxins and injecting into patient causing cancer regression but not all people
responded to toxin, taken over by radiation therapy

- 1909 - ehrlich - theory that cancer would increase without the immune system

- 1950s - thomas & burnet - immunosurveillance and immunoediting --> immune system can eradicate
cancer cells by detecting them

- 2001 - other observations

- immunosuppressed mice, HIV/AIDS patients, organ transplant patients have higher rate of cancer

- cancer patients with increased T cell at tumor site have better overall survival

(t/f) cancer immunotherapy was the first treatment for cancer

true

thomas & burnet - immunosurveillance and immunoediting

- 3 stages

1. elimination - tumor suppression

2. equilibrium - tumor dormancy and editing (cannot completely eradicate but not yet uncontrolled
growth)

3. escape - tumor growth promotion (mutation in APC overcomes immune system)

- PD-L1, PD-1 and CTLA-4 play an important role (sites/targets for immune therapy to boost immune
system)

immune system function and immune response

- identify and destroy foreign or abnormal cells in the body (ex. cancer cells)

- innate immunity present when you are born

- innate immunity primes to activate adaptive immunity after

- early immunotherapy efficacy was only 20-30% of patients (but can consider close to a cure - strong
response)

- new is 60-80% efficacy

immune surveillance

, - involves both innate and adaptive immune mechanisms

- tumor-associated antigens can be identified by the immune system and destroyed

- goal of immunotherapy for cancer: to "educate and liberate" underlying anticancer immune
responses

how cancer cells evade the immune system

1. decrease tumor immunogenicity - eliminate expression of antigens or continue to grow cancer clones
without antigens --> immune system cannot recognize cancer cells

2. inhibit dendritic cell maturation and antigen presentation - via production of cytokines

3. suppress T cell activation (change MHC)

4. inhibit T cell migration and infiltration

5. inhibit recognition by immune cells - cancer cell activates inhibitory protein and T cells not effective at
recognizing cancer cells

6. increase immune checkpoint molecules - we have immune checkpoint inhibitors (treatment that
addresses this)

7. increase in immunosuppressive cells

(t/f) dendritic cells are APCs

true; process antigens on cancer cells so they can teach T cells to recognize cancer cells as foreign and
eliminate them

cancer immunity cycle

- cancer cells can die through natural cell death - release of antigens

- antigens recognized by dendritic cells and present via MHCI or II to T cells

- trafficking of T cells to tumor and infiltrate/bind to cancer cell

- tumor cell dies

- causes more cancer cells to die and more release of antigens (cyclic)

goal of cancer immunotherapy

- harness, strengthen, and sustain the power of the immune system

- augment the patient’s own immune system to fight cancer

- activate the immune system

- inhibit immunosuppression

- avoid autoimmunity - sometimes targets on cancer cells are the same as targets on normal cells

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Subido en
16 de octubre de 2025
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2025/2026
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