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Rexin-G, a targeted genetic medicine for cancer
Erlinda M Gordon1, Frederick L Hall
1Epeius Biotechnologies Corporation, 475 Huntington Drive, San Marino, CA 91108, USA. egordon@epeiusbiotech.com
Importance Of The Field:
Rexin-G, a tumor-targeted retrovector bearing a cytocidal cyclin G1 construct, is the first targeted gene therapy vector to gain fast track designation and orphan drug priorities for multiple cancer indications in the US.
Areas Covered In This Review:
This review describes the major milestones in the clinical development of Rexin-G: from the molecular cloning and characterization of the human cyclin G1 proto-oncogene in 1994, to the design of the first knockout constructs and genetic engineering of the targeted delivery system from 1995 to 1997, through the initial proofs-of-concept, molecular pharmacology and toxicology studies of Rexin-G in preclinical cancer models from 1997 to 2001, to the pioneering clinical studies in humans from 2002 to 2004, which--together with the advancements in bioprocess development of high-potency clinical grade vectors circa 2005 - 2006--led to the accelerated approval of Rexin-G for all solid tumors by the Philippine FDA in 2007 and the rapid progression of clinical studies from 2007 to 2009 to the cusp of pivotal Phase III trials in the US.
What The Reader Will Gain:
In recording the development of Rexin-G as a novel form of targeted biological therapy, this review also highlights important aspects of vector design engineering which served to overcome the physiological barriers to gene delivery as it addresses the key regulatory issues involved in the development of a targeted gene therapy product.
Take Home Message:
Progressive clinical development of Rexin-G demonstrates the potential safety and efficacy of targeted genetic medicine, while validating the design engineering of the molecular biotechnology platform.
Insights
Rexin-G, a targeted gene therapy, shows promise in treating various cancers. Its development highlights advancements in vector design and overcoming delivery barriers for effective genetic medicine.
Area of Science:
- Oncology
- Gene Therapy
- Molecular Biotechnology
Background:
- Rexin-G is a novel tumor-targeted retrovector carrying a cytocidal cyclin G1 construct.
- It is the first targeted gene therapy vector to receive fast track designation and orphan drug status for multiple cancer indications in the US.
Purpose of the Study:
- To review the clinical development milestones of Rexin-G.
- To highlight vector design engineering and regulatory aspects of targeted gene therapy development.
Main Methods:
- Review of molecular cloning, genetic engineering, preclinical studies, and clinical trials of Rexin-G.
- Examination of bioprocess development for clinical-grade vectors.
- Analysis of regulatory pathways for targeted gene therapy approval.
Main Results:
- Detailed timeline of Rexin-G development from 1994 to 2009.
- Demonstration of overcoming physiological barriers to gene delivery through vector design.
- Successful accelerated approval in the Philippines and progression towards US pivotal trials.
Conclusions:
- Clinical development of Rexin-G validates the safety and efficacy of targeted genetic medicine.
- The molecular biotechnology platform and vector design engineering are validated.
- Rexin-G represents a significant advancement in targeted biological therapy for cancer.
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