SYLVATICA BIOTECH INC — Department of Health and Human Services SBIR Phase I: NICHD

SYLVATICA BIOTECH INC — SBIR Phase I award from Department of Health and Human Services.

Amount
$285,084
Agency
Department of Health and Human Services · National Institutes of Health
Program / Phase
SBIR · Phase I
Topic
NICHD
Solicitation
PA16-302
NAICS
Place of performance
NY
Period
2017-09-21 → 2019-03-31

Description

This program aims to develop a novel method for cryopreserving human testicular tissue and whole testes which can also be applied to ovarian tissue and gonadal preservation and ultimately any cells tissues and whole organs This multi pronged approach builds on recent advances in machine perfusion nature inspired cytoprotection strategies and non toxic cryoprotectant solutions combining them with our novel method for constant volume pressure assisted cooling Our method promises to achieve vitrification of living tissues without the aid of toxic concentrations of cryoprotectants in a system at thermodynamic equilibrium and potentially at temperatures as high as C capable of dry ice shipment It ameliorates or entirely circumvents many of the limitations of conventional cryopreservation methods for large tissues including damaging ice crystallization deleterious changes in solute concentrations and volumetric changes This approach has the potential to enable indefinite banking of testicular tissues whole testes and other living materials while dramatically limiting tissue injury currently associated with ex vivo storage The technical objective of this Phase proposal is to develop an optimized cocktail and protocol for preservation and indefinite banking of testicular tissue We will develop our method across three specific aims Building upon preliminary studies that demonstrate the feasibility of isochoric preservation in Aim we will begin with extended feasibility studies focused on investigating the combined effects of temperature pressure and CPA on testicular cell viability following equilibrium ice free isochoric preservation Specifically we will use semi high throughput screening to measure the viability of human Sertoli cells Leydig cells and endothelial cells with targeted pressures of up to MPa pressure at which red blood cells show improved cryopreservation In parallel studies in Aim we will use well established methods developed by our broader group to define new thermodynamic profiles for novel nature inspired cryoprotectant solutions in an isochoric constant volume system this will allow us to select solutions that allow for pressure assisted vitrification of living materials at low to intermediate pressures and much higher storage temperatures than traditionally needed for ice free cryopreservation In Aim we select the most effective cryoprotectant solutions established in Aim to evaluate our high sub zero vitrification in human testicular tissue strips and compare outcome with conventional state of the art isobaric preservation Tissue will be evaluated by measuring tissue viability as well as histology immunohistochemistry and xenotransplantation into infertile nude mice We will additionally test the augmentation of these methods with subnormothermic machine perfusion enabling further reduction of ischemic tissue injury Success of these novel approaches individually or in combination will likely enable breakthroughs in oncofertility and biopreservation research and clinical practice Chemotherapy and radiation treatments for cancer or other conditions can cause permanent infertility For kids there are no options to preserve future fertility while these patients have their entire reproductive life in front of them Cancer survivors report that fertility has an important impact on their quality of life after cure Ovarian and testicular tissue cryopreservation have recently been introduced as an experimental fertility preservation option for kids with cancer It is incumbent on the medical and research communities to responsibly develop robust technologies for gonadal tissue preservation and downstream fertility applications It is no exaggeration that preservation breakthroughs can potentially change the lives of millions of cancer patients over time We have developed a novel approach to dramatically increase the effectiveness of testicular tissue banking and help protect the fertility of male cancer and trauma survivors