A cancer vaccine averts viral cancer infection, treats existing cancer conditions, hinders cancer advancement (high-risk groups) & instigates antitumor immune responses (cancer patients).
• Cancer vaccines can be Prophylactic which prevents infection or acute disease and therapeutic which treats an infection development before or after a malignancy
• The ideal vaccine should prevent & treat infections effectively and reduce transmission chances in uninfected people.
Cancer vaccines induced tumor-immune cycle:
1. Cause dendritic cells (DCs) to uptake & process tumor antigens
2. Cross-presentation to MHC II or MHC I
3. Immune cells recruitment & activation with antigen-loaded lymph node migrated DCs
4. Generation of memory B cells & plasma cells is promoted by follicular DCs
5. ADCC-associated activated B tumors promote tumor apoptosis
6. Proliferation of activated T cell
7. Effector T cells & memory T cells differentiation
8. Travelling of effector T cell to TME
9. Cell apoptosis induction & tumor cell killing
10. TAAs & danger-signalling molecules released from dead immunogenic tumor cells
11. Subsequent cycle’s depth & breadth response repetition & Expansion Characteristics of appropriate cancer vaccine antigens comprise their immunogenicity and explicit expression in all cancer cells excluding normal cells.
• TAAs -tumor-shared antigens are easily adaptable to different patients, show central immune tolerance, recognize active T cells, are available with limited clinical trials and increase the risk of vaccine-induced autoimmunity toxicity by getting expressed in non-malignant tissues.
• TSAs-neoantigens - are produced by tumor cell mutation, get unaffected by central immune tolerance and trigger valid-specific T-cell response with limited off-target damage. To date optimal supportive studies are absent.
• Whole tumour-associated antigens (epitopes of CD4+ helper T cells & CTLs)
• Affects the immune system by importing tumor-associated antigens into DCs and Causes antigen proteins through normal physiological activities but have potential mutation insertion risk. They Deliver genetic information encoding tumor antigen to host cells and express tumor antigens induce immune-killing affecting against cancer cells Vaccine therapy barriers
• Immunosuppressive cells induced tumor extrinsic resistance
• Start interfering with activation & proliferation of T cells
• Inhibit DC function & promote tumour resistance
Obstacles can be overcome by prescribing patients, resistance-based combination therapy. Simultaneously inculcating TME immunosuppression, better immunotherapy delivery platforms, appropriate antigen selection, synergistic radiotherapy, chemotherapeutic agents, and immunomodulatory molecules.
Futuristic personalized cancer vaccines need the development of substantial immunological mechanisms & sequencing technology, actual tumour-specific T-cell response with limited central immune tolerance & a single vaccine targeting multiple neoantigens to decrease immune evasion & elimination of tumours effectively. Efforts should be crucially made towards finding novel neoantigens, evolving combination therapy & boosting vaccine platforms.
Read more such content on @ Hidoc Dr | Medical Learning App for Doctors
1.
Combination Treatment May Improve Multiple Myeloma Outcomes
2.
Doctors Remain Trusted Sources for Cancer Info in Post-Pandemic Era
3.
Hospitalized Kate Middleton; Sen. Paul Demands That Fauci Go To Prison; COVID Returns to Class.
4.
Immunotherapy Combo Active in Advanced PD-L1-Negative HNSCC
5.
Significant Survival Boost With Novel ADCs in Relapsed Small-Cell Lung Cancer
1.
Deep Learning Fluorescence Imaging for Oral Cancer Surgery: In Silico Depth Quantification
2.
Preventing Childhood Platelet Functional Imbalance: A Comprehensive Clinical Review
3.
Quality of Life Using Precision Functional Recovery After Organ-Preserving Interventions
4.
The Science Behind Thrombolytic Drugs and Their Benefits
5.
Demystifying Hematoma Rectus Sheath: Knowing the Symptoms and Causes
1.
International Cancer Conference
2.
Asian Symposium on Advancement in Hematology and Oncology (ASAHO)
3.
International Cancer Conference
1.
Newer Immunotherapies for Myeloma- A Comprehensive Overview
2.
Understanding the Role of Screening in Cancer Prevention
3.
Pazopanib: A Game-Changer in Managing Advanced Renal Cell Carcinoma - Part V
4.
Treatment Sequencing Strategies in ALK + NSCLC Patients with CNS Diseases - Part II
5.
Current Scenario of Cancer- Q&A Session to Close the Gap Part II
© Copyright 2026 Hidoc Dr. Inc.
Terms & Conditions - LLP | Inc. | Privacy Policy - LLP | Inc. | Account Deactivation