Collagenase Nanoparticles Enhance the Penetration of Drugs into Pancreatic Tumors

Assaf Zinger(Technion – Israel Institute of Technology), Lilach Koren(Technion – Israel Institute of Technology), Omer Adir(Technion – Israel Institute of Technology), Maria Poley(Technion – Israel Institute of Technology), Mohammed Alyan(Technion – Israel Institute of Technology), Zvi Yaari(Technion – Israel Institute of Technology), Nadav Noor(Tel Aviv University), Nitzan Krinsky(Technion – Israel Institute of Technology), Assaf Simon(Technion – Israel Institute of Technology), Hadas Gibori(Tel Aviv University), Majd Krayem(Technion – Israel Institute of Technology), Yelena Mumblat(Technion – Israel Institute of Technology), Shira Kasten(Technion – Israel Institute of Technology), Sivan Ofir(Technion – Israel Institute of Technology), Eran Fridman(Technion – Israel Institute of Technology), Neta Milman(Technion – Israel Institute of Technology), Michael M. Lübtow(University of Würzburg), Lior Liba(Technion – Israel Institute of Technology), Jeny Shklover(Technion – Israel Institute of Technology), Janna Shainsky‐Roitman(Technion – Israel Institute of Technology), Yoav Binenbaum(Technion – Israel Institute of Technology), Dov Hershkovitz(Tel Aviv University), Ziv Gil(Technion – Israel Institute of Technology), Tal Dvir(Tel Aviv University), Robert Luxenhofer(University of Würzburg), Ronit Satchi‐Fainaro(Tel Aviv University), Avi Schroeder(Technion – Israel Institute of Technology)
ACS Nano
September 10, 2019
Cited by 313Open Access
Full Text

Abstract

Overexpressed extracellular matrix (ECM) in pancreatic ductal adenocarcinoma (PDAC) limits drug penetration into the tumor and is associated with poor prognosis. Here, we demonstrate that a pretreatment based on a proteolytic-enzyme nanoparticle system disassembles the dense PDAC collagen stroma and increases drug penetration into the pancreatic tumor. More specifically, the collagozome, a 100 nm liposome encapsulating collagenase, was rationally designed to protect the collagenase from premature deactivation and prolonged its release rate at the target site. Collagen is the main component of the PDAC stroma, reaching 12.8 ± 2.3% vol in diseased mice pancreases, compared to 1.4 ± 0.4% in healthy mice. Upon intravenous injection of the collagozome, ∼1% of the injected dose reached the pancreas over 8 h, reducing the level of fibrotic tissue to 5.6 ± 0.8%. The collagozome pretreatment allowed increased drug penetration into the pancreas and improved PDAC treatment. PDAC tumors, pretreated with the collagozome followed by paclitaxel micelles, were 87% smaller than tumors pretreated with empty liposomes followed by paclitaxel micelles. Interestingly, degrading the ECM did not increase the number of circulating tumor cells or metastasis. This strategy holds promise for degrading the extracellular stroma in other diseases as well, such as liver fibrosis, enhancing tissue permeability before drug administration.


Related Papers

No related papers found

Powered by citation graph analysis