L-RNA aptamer-based CXCL12 inhibition combined with radiotherapy and bevacizumab in newly-diagnosed glioblastoma: expansion of the phase I/II GLORIA trial

F Frank A. Giordano J Julian P. Layer R Roberta Turiello L Lea L. Friker O Oriol Mirallas B Barbara E. F. Pregler A Anna-Laura Potthoff T Thomas Zeyen J Johannes Weller E Elena Sperk K Katharina Sahm C Christoph Oster S Sied Kebir P Peter Hambsch N Niklas Schäfer S Sebastian Kadzik M Mirjam Renovanz T Torsten Pietsch S Sotirios Bisdas J Juan Manuel Sepúlveda-Sánchez D Diego Gómez-Puerto M Maria Vieito M Michael Platten E Eleni Gkika (Department of Radiation Oncology University Hospital Bonn Bonn Germany) O Oliver M. Grauer G Ghazaleh Tabatabai M Matthias Schneider M Martin Glas C Clemens Seidel U Ulrich Herrlinger M Michael Hölzel

Abstract

Abstract Rapid vascular recovery is a key feature preceding glioblastoma (GBM) recurrence after radiotherapy (RT). We performed spatial expression analyses, providing a rationale for dual inhibition of two non-redundant, spatially distinct acting factors, CXCL12 and VEGF. Subsequently, we expanded a multicentric phase 1/2 trial (NCT04121455), which initially combined RT and the CXCL12-neutralizing L-RNA-aptamer olaptesed pegol (NOX-A12) in patients with incompletely resected, newly-diagnosed GBM lacking MGMT promoter methylation. The primary endpoint was safety, secondary endpoints included maximum tolerable dose, recommended phase 2 dose, NOX-A12 plasma levels, topography of recurrence, tumor vascularization, neurologic assessment in neuro-oncology (NANO), quality of life, median progression-free survival (PFS), 6-months PFS and overall survival (OS). For the expansion arm, six patients were included that additionally received the VEGF-targeting antibody bevacizumab (BEV) to RT and NOX-A12. Combinatory treatment was well-tolerated and safe with no treatment-related deaths, resulting in abrogated tumor perfusion (rCBV, FTB high ) and delayed tumor regrowth as per mRANO. Median progression-free (PFS) and overall survival (OS) after RT + BEV + NOX-A12 were 9.1 and 19.9 months, respectively, significantly outperforming RT + NOX-A12 ( p  = 0.009; p  = 0.021) in a post-hoc comparative analysis, with two patients exceeding 2-year OS. These findings establish proof-of-principle for dual inhibition of CXCL12 and VEGF in patients with newly-diagnosed GBM following RT.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 08, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (31)

F

Frank A. Giordano

J

Julian P. Layer

R

Roberta Turiello

L

Lea L. Friker

O

Oriol Mirallas

B

Barbara E. F. Pregler

A

Anna-Laura Potthoff

T

Thomas Zeyen

J

Johannes Weller

E

Elena Sperk

K

Katharina Sahm

C

Christoph Oster

S

Sied Kebir

P

Peter Hambsch

N

Niklas Schäfer

S

Sebastian Kadzik

M

Mirjam Renovanz

T

Torsten Pietsch

S

Sotirios Bisdas

J

Juan Manuel Sepúlveda-Sánchez

D

Diego Gómez-Puerto

M

Maria Vieito

M

Michael Platten

E

Eleni Gkika

Department of Radiation Oncology University Hospital Bonn Bonn Germany

O

Oliver M. Grauer

G

Ghazaleh Tabatabai

M

Matthias Schneider

M

Martin Glas

C

Clemens Seidel

U

Ulrich Herrlinger

M

Michael Hölzel