Javascript must be enabled to continue!
Biosafety of Adenoviral Vectors
View through CrossRef
Adenoviral vectors can efficiently transduce a broad variety of different cell types and have been used extensively in preclinical and clinical studies. However, early generation of adenoviral vectors retained residual adenoviral genes that contribute to inflammatory immune responses and toxicity. In addition, these vectors often result in transient expression of the potentially therapeutic transgene. Some clinical trials based on early generation adenoviral vectors have been discontinued because of acute inflammatory responses and toxicity and even one patient has died as a direct consequence of adenoviral toxicity. The latest generation of highcapacity adenoviral vectors is devoid of viral genes, and is having a significantly improved safety profile and yielding more prolonged transgene expression compared to early generation vectors. Nevertheless, transgene expression gradually declines even when high-capacity adenoviral vectors are used, possibly due to the gradual loss of vector genomes. Despite their improved safety, high-capacity adenoviral vectors can still trigger transient toxic effects in animals and patients. Restricting the tropism of adenoviral vectors by immunologic or genetic retargeting may further improve their therapeutic window. The safety of adenoviral vectors has been improved further through the development of safer packaging systems that eliminate the homologous overlap between vector and helper sequences and therefore prevent formation of replication-competent adenoviruses (RCA). RCA could exacerbate inflammatory responses and act as a helper to rescue adenoviral vectors, potentially increasing the effective vector dose. Conditionally replicating adenoviruses (CRAds) have been developed for cancer gene therapy, which replicate selectively in some cancer cells. The use of CRAds in combination with chemotherapy yielded therapeutic effects in patients suffering from cancer but dose-limiting toxicity was apparent. Although there appears to be a very low theoretical risk of malignancy that is predominately associated with the occurrence of E1-positive recombinants, no malignancies have been reported that were associated with adenoviral vectors. Nevertheless, integrating adenoviral vectors carry a greater malignancy risk due to their ability to integrate randomly into the target genomes.
Bentham Science Publishers Ltd.
Title: Biosafety of Adenoviral Vectors
Description:
Adenoviral vectors can efficiently transduce a broad variety of different cell types and have been used extensively in preclinical and clinical studies.
However, early generation of adenoviral vectors retained residual adenoviral genes that contribute to inflammatory immune responses and toxicity.
In addition, these vectors often result in transient expression of the potentially therapeutic transgene.
Some clinical trials based on early generation adenoviral vectors have been discontinued because of acute inflammatory responses and toxicity and even one patient has died as a direct consequence of adenoviral toxicity.
The latest generation of highcapacity adenoviral vectors is devoid of viral genes, and is having a significantly improved safety profile and yielding more prolonged transgene expression compared to early generation vectors.
Nevertheless, transgene expression gradually declines even when high-capacity adenoviral vectors are used, possibly due to the gradual loss of vector genomes.
Despite their improved safety, high-capacity adenoviral vectors can still trigger transient toxic effects in animals and patients.
Restricting the tropism of adenoviral vectors by immunologic or genetic retargeting may further improve their therapeutic window.
The safety of adenoviral vectors has been improved further through the development of safer packaging systems that eliminate the homologous overlap between vector and helper sequences and therefore prevent formation of replication-competent adenoviruses (RCA).
RCA could exacerbate inflammatory responses and act as a helper to rescue adenoviral vectors, potentially increasing the effective vector dose.
Conditionally replicating adenoviruses (CRAds) have been developed for cancer gene therapy, which replicate selectively in some cancer cells.
The use of CRAds in combination with chemotherapy yielded therapeutic effects in patients suffering from cancer but dose-limiting toxicity was apparent.
Although there appears to be a very low theoretical risk of malignancy that is predominately associated with the occurrence of E1-positive recombinants, no malignancies have been reported that were associated with adenoviral vectors.
Nevertheless, integrating adenoviral vectors carry a greater malignancy risk due to their ability to integrate randomly into the target genomes.
Related Results
Role of Adenoviruses in Cancer Therapy
Role of Adenoviruses in Cancer Therapy
Cancer is one of the leading causes of death in the world, which is the second after heart diseases. Adenoviruses (Ads) have become the promise of new therapeutic strategy for canc...
Biosafety management strategy based on multiple linear regression model
Biosafety management strategy based on multiple linear regression model
Abstract
With the rise of artificial intelligence technology in the context of digital development of big data and information, the biosafety management method un...
REGULATING BIOSAFETY OF GENETICALLY MODIFIED CROPS IN INDONESIA: LIMITS AND CHALLENGES
REGULATING BIOSAFETY OF GENETICALLY MODIFIED CROPS IN INDONESIA: LIMITS AND CHALLENGES
The global use of genetically modified (GM) crops is rapidly expanding. While the advent of this agricultural biotechnology offers new promises to cater to the rising demand for In...
Biosafety and Biosecurity in Africa: Challenges and Future Perspectives
Biosafety and Biosecurity in Africa: Challenges and Future Perspectives
Africa is a home to growing number of biosafety organisations that work to enhance public health in their nations by bringing attention to the significance of biosafety and biosecu...
Plant Biosecurity and Biosafety
Plant Biosecurity and Biosafety
"The major objective of this book is to provide recent developments and updated comprehensive information on various aspects of 'Plant Biosecurity and Biosafety'. This book fulfils...
PRESERVATION OF MECHANICAL AND ENERGETIC FUNCTION AFTER ADENOVIRAL GENE TRANSFER IN NORMAL RAT HEARTS
PRESERVATION OF MECHANICAL AND ENERGETIC FUNCTION AFTER ADENOVIRAL GENE TRANSFER IN NORMAL RAT HEARTS
SUMMARY
The aim of the present study was to examine the acute and chronic effects of adenoviral gene transfer on cardiac function in terms of left ventricular (LV) mechanoenergeti...
Review on Adeno Virus; As a Vaccine Vehicle
Review on Adeno Virus; As a Vaccine Vehicle
Adenoviruses have moved to the forefront of vaccinology and are showing substantial promise as vehicles for antigen delivery for a number of vaccines currently being developed. Mos...
Targeted Modifications in Adeno-Associated Virus Serotype (AAV)- 8 Capsid Improves Its Hepatic Gene Transfer Efficiency in Vivo
Targeted Modifications in Adeno-Associated Virus Serotype (AAV)- 8 Capsid Improves Its Hepatic Gene Transfer Efficiency in Vivo
Abstract
Abstract 2045
Recombinant adeno-associated virus vectors based on serotype (AAV)-8 have shown significant promise for liver directed gene the...

