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Pharma Tech Outlook | Tuesday, November 23, 2021
Nanotechnology, along with chemotherapy and radiation, is being considered as a way to deliver immunotherapy to cancer patients.
Fremont, CA:Surgery, radiation, and chemotherapy are the only cancer treatments available right now. All three procedures carry the danger of causing damage to healthy tissues or resulting in inadequate cancer elimination. Nanotechnology has the potential to direct and selectively target chemotherapies to malignant cells and neoplasms, guide tumor surgical excision, and improve the therapeutic efficacy of radiation-based and other current treatment methods. All of these can lead to a lower risk for the patient and a higher chance of survival. Nanotechnology cancer therapy research extends beyond medication delivery to the development of novel medicines based only on nanomaterial qualities.
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Nano-enabled Immunotherapy
Immunotherapy, which encompasses a variety of methods such as checkpoint inhibition and cellular treatments, is a promising new front in cancer treatment. Although some patients' outcomes have been exceptional, only a small percentage of patients being treated for a subset of tumors have long-term responses to these treatments. Expanding the benefits of immunotherapy necessitates a better knowledge of the interactions between the tumor and the immune system of the host. To interrogate tumor and immune cells and elucidate molecular signs and functional immunological responses to therapy, new tools for molecular and functional study of single cells are being deployed.
Nanotechnology is also being researched as a means of delivering immunotherapy. Nanoparticles can be used to deliver immunostimulatory or immunomodulatory compounds in combination with chemo- or radiation, or as adjuvants to other immunotherapies. Through co-delivery of antigen and adjuvant, the inclusion of numerous antigens to stimulate multiple dendritic cell targets, and continuous release of antigens for prolonged immune stimulation, stand-alone nanoparticle vaccines are also being developed to raise sufficient T cell responses to eradicate tumors. To change the immunological environment of tumors and increase response, molecular blockers of immune-suppressive factors can be co-encapsulated in nanoparticle vaccinations.
Immune depots put in, or near tumors for in situ vaccination and artificial antigen presenting cells are two more applications of nanotechnology in immunotherapy. As scientific understanding of cancer immunotherapy improves, these and other techniques will advance and be perfected.
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