2020
DOI: 10.3390/cancers12040962
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Towards Physiologically and Tightly Regulated Vectored Antibody Therapies

Abstract: Cancers represent highly significant health issues and the options for their treatment are often not efficient to cure the disease. Immunotherapy strategies have been developed to modulate the patient’s immune system in order to eradicate cancerous cells. For instance, passive immunization consists in the administration at high doses of exogenously produced monoclonal antibodies directed either against tumor antigen or against immune checkpoint inhibitors. Its main advantage is that it provides immediate immun… Show more

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Cited by 11 publications
(7 citation statements)
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References 108 publications
(128 reference statements)
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“…In mammals, passive immunization represents a prophylactic strategy when vaccination is not possible, such as in immunosuppressed or very young individuals. Also, in the case of certain cancers or emerging human diseases, when vaccines or treatments have not yet been developed ( 44 , 45 ). In fish, passive transfer of spAbs by injection has been successful against some infectious diseases, including parasites ( 4 , 5 , 7 ).…”
Section: Discussionmentioning
confidence: 99%
“…In mammals, passive immunization represents a prophylactic strategy when vaccination is not possible, such as in immunosuppressed or very young individuals. Also, in the case of certain cancers or emerging human diseases, when vaccines or treatments have not yet been developed ( 44 , 45 ). In fish, passive transfer of spAbs by injection has been successful against some infectious diseases, including parasites ( 4 , 5 , 7 ).…”
Section: Discussionmentioning
confidence: 99%
“…Similar concerns may arise in the application of other nano-carriers or adjuvants used in the vaccine core antigen potentiation. Closely relevant animal models may be devised to carry out the pre-clinical evaluation of such nano-vaccines [ 45 ]. Biologically mediated nanomaterials have been proven as effective carriers of chemotherapeutic and chemoprophylactic agents.…”
Section: Challenges and Future Prospects In Nano-vaccinesmentioning
confidence: 99%
“…Another relevant characteristic is the manufacturing reproducibility of the nanosystems to comply with the regulatory requirements. Therefore, the improvement of the animal study models used to evaluate the biogenicity of the materials used to constitute nanosystems needs improvement [159]. The costs associated with the production of nanocomposites will continue to be a focus of development.…”
Section: Projectionsmentioning
confidence: 99%