SBIR-STTR Award

Targeting Liposomal Daunorubicin to Myeloid Leukemia
Award last edited on: 6/18/08

Sponsored Program
SBIR
Awarding Agency
NIH : NCI
Total Award Amount
$288,610
Award Phase
2
Solicitation Topic Code
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Principal Investigator
Xing Q Pan

Company Information

Sibyl Pharmaceutical Inc

2300 Green Island
Toledo, OH 43228
   N/A
   N/A
   N/A
Location: Single
Congr. District: 03
County: Franklin

Phase I

Contract Number: 1R43CA102847-01
Start Date: 00/00/00    Completed: 00/00/00
Phase I year
2003
Phase I Amount
$142,172
Targeted drug delivery has the potential to improve the efficacy of a therapeutic agent while reducing its side effects. Folate receptor type-beta (FR-beta) is a cell surface marker selectively expressed by approximately 70% of acute myeloid leukemias (AMLs). Increased FR-beta expression can be specifically induced by all-trans retinoic acid (ATRA) in primary AML cells and in FR-b (+) KG-1 cells, without inducing cellular differentiation or growth inhibition. Folic acid is a high affinity ligand for FR-beta (Kd < 1 nM). Importantly, FR-beta expressed by normal hematopoietic cells cannot bind folate in contrast to that in primary AML cells, KG- 1 cells, and FR-beta-transfected CHO cells, all of which mediate selective uptake and cytotoxicity of folate-coated liposomal doxorubicin (f-L-DOX). FR-beta-targeted uptake and cytotoxicity of f-L-DOX were further enhanced by inducing FR-beta upregulation using ATRA. F-L-DOX also exhibited greater therapeutic efficacy than non-targeted liposomal DOX (L-DOX) in FR (+) murine L1210JF and human KG-1 AML ascitic tumor models. Moreover, ATRA treatment further increased survival in response to treatment with f-L-DOX in the KG-1 cell engrafted SCID mice. FR-targeted liposomal DOX delivery has also been shown to bypass P-glycoprotein-mediated drug efflux in FR (+) tumor cells exhibiting resistance to free DOX. The objective of this Phase I project is to extend and further establish the value of this type of selective targeting using a related but potentially superior anthracycline drug, daunorubicin (DNR) and the superior NOD/SCID engraftment model. F-L-DNR combined with ATRA, will be evaluated as a therapy for AML using an animal model that more closely mimics human leukemia. The Specific Aims are: 1) to extend a human AML murine NOD/SCID engraftment model to different AML subtypes; 2) to evaluate the effect of ATRA on FR-beta expression by AML cells in the NOD/SCID model; 3) to evaluate the therapeutic efficacy of f-L-DNR, alone or combined with ATRA, in the NOD/SCID model. The data will be used to develop a plan for clinical studies of f-L-DNR/ATRA therapy in a Phase II project.

Thesaurus Terms:
acute myelogenous leukemia, combination chemotherapy, daunorubicin, drug delivery system, drug design /synthesis /production, folate, human therapy evaluation, neoplasm /cancer chemotherapy, retinoate disease /disorder model, liposome, model design /development, neoplasm /cancer pharmacology, pharmacokinetics, receptor expression, vitamin receptor NOD mouse, SCID mouse, flow cytometry, heterologous transplantation, human tissue

Phase II

Contract Number: 5R43CA102847-02
Start Date: 00/00/00    Completed: 00/00/00
Phase II year
2004
Phase II Amount
$146,438
Targeted drug delivery has the potential to improve the efficacy of a therapeutic agent while reducing its side effects. Folate receptor type-beta (FR-beta) is a cell surface marker selectively expressed by approximately 70% of acute myeloid leukemias (AMLs). Increased FR-beta expression can be specifically induced by all-trans retinoic acid (ATRA) in primary AML cells and in FR-b (+) KG-1 cells, without inducing cellular differentiation or growth inhibition. Folic acid is a high affinity ligand for FR-beta (Kd

Public Health Relevance:
This Public Health Relevance is not available.

Thesaurus Terms:
Acute Myelogenous Leukemia, Combination Chemotherapy, Daunorubicin, Drug Delivery System, Drug Design /Synthesis /Production, Folate, Human Therapy Evaluation, Neoplasm /Cancer Chemotherapy, Retinoate Disease /Disorder Model, Liposome, Model Design /Development, Neoplasm /Cancer Pharmacology, Pharmacokinetics, Receptor Expression, Vitamin Receptor Nod Mouse, Scid Mouse, Flow Cytometry, Heterologous Transplantation, Human Tissue