Tissuevision Inc — Department of Health and Human Services SBIR Phase I: NIBIB

Tissuevision Inc — SBIR Phase I award from Department of Health and Human Services.

Amount
$268,255
Agency
Department of Health and Human Services · National Institutes of Health
Program / Phase
SBIR · Phase I
Topic
NIBIB
Solicitation
PA14-071
NAICS
Place of performance
MA
Period
2015-09-21 → 2016-08-31

Description

DESCRIPTION provided by applicant Recent successes for gene therapy have targeted more readily accessible tissues such as the liver for hemophilia Wu et al the eye for Leberandapos s Congenital Amaurosis Weber et al and hematopoetic stem cells for SCID and adrenoleukodystrophy Gong et al Approaches targeting multi organ systems or complex and inaccessible systems such as the central nervous system CNS have been quite challenging using the past repertoire of gene transfer vectors However recent advancements in vector design technology are producing an increasing number of novel vectors that are capable of specifically efficiently and broadly targeting complex systems such as the CNS The utility of such vectors is clear since diseases of the CNS are the largest economic burden in the US These disorders extract an enormous financial and personal toll in the United States In it is estimated that Alzheimerandapos s disease AD alone will cost $ billion making it the most expensive condition in the nation Akushevich Kravchenko Ukraintseva Arbeev andamp Yashin Previously the multifaceted nature of this disease along with inadequate vector technology prompted a focus on small molecule treatments Fortunately molecular biological techniques such as directed evolution have provided an opportunity to develop gene therapy vectors that have the ability to target specific cell populations within the CNS Efforts are underway by multiple groups to develop an expanding toolkit of novel gene transfer vectors creating a need for robust high throughput and standardized methodologies with which to screen and compare these emerging vectors This proposal will develop this essential service by producing an optical imaging method that is automated scalable and quantitative We leverage the use of our commercial product the TissueCyte to allow for a contract research organization CRO service that efficiently evaluates the bio distribution of a potential new gene therapy vector Here we propose to develop an end to end service in which the company is provided a high tighter virus which we inject measure and report back the results based on known stereotaxic axis In addition we will develop the requisite hardware to collect the biological material and queue the samples for analysis by PCR based strategies The proposed service will require limited observation and intervention thus producing highly reproducible and quantitative results The automated processes also mean that we can quickly scale the service by the addition of more hardware which allows the workflow to become self sustaining We have put together a world class team of experts from TissueVision and the University of North Carolina at Chapel Hill Dr Gray from UNC is a world leading expert in the development of novel AAV vectors for CNS directed gene therapy He has recently published several papers Gray et al Gray Matagne et al b Gray Nagabhushan Kalburgi McCown andamp Jude Samulski Kantor Bailey Wimberly Kalburgi andamp Gray Powell Rivera Soto andamp Gray focused on the development of novel vector designs for CNS gene transfer Dr Gray works in close collaboration with companies such as Asklepios Biopharmaceuticals and with the UNC Vector Core facility See Letters of Support These groups are very interested in the service described in this proposal Dr Schwartz is a leader in neurobiology data analysis and optical imaging Dr Schwartz has strong experience with the pharmaceutical industry which will be leveraged to ensure the service is amenable to a wide area of biotechnology companies Schwartz Piston andamp DeFelice Gray Foti et al a In conjunction with the clear positive track record from TissueVision the association of these teams provides an ideal cohort to develop this essential service Finally while our emphasis is on gene therapy the instrument and service we will build will impact a range of biomedical areas including cancer cardiac biology and pharmaceutical development thus furthering its commercial appeal PUBLIC HEALTH RELEVANCE We propose to develop a service providing quantitative measures of gene transfer vector transduction efficiency Gene therapy has seen recent resurgence in the development of specialized vectors for research or therapeutic purposes Controlled spatial distribution and expression from gene transfer vectors is essential information regarding the utility of a viable therapeutic for gene therapy Here we outline an automated methodology to provide quantitative cellular content for transgene expression from various viral vectors The successful completion of this proposal will provide a valuable resource to all investigators developing gene transfer vectors as well as other related fields