scholarly journals TTI-621 (SIRPαFc): A CD47-Blocking Innate Immune Checkpoint Inhibitor with Broad Antitumor Activity and Minimal Erythrocyte Binding

2016 ◽  
Vol 23 (4) ◽  
pp. 1068-1079 ◽  
Author(s):  
Penka S. Petrova ◽  
Natasja Nielsen Viller ◽  
Mark Wong ◽  
Xinli Pang ◽  
Gloria H.Y. Lin ◽  
...  
2020 ◽  
Author(s):  
Matthew E. Griffin ◽  
Juliel Espinosa ◽  
Jessica L. Becker ◽  
Jyoti K. Jha ◽  
Gary R. Fanger ◽  
...  

AbstractThe antitumor efficacy of cancer immunotherapy has been correlated with specific species within the gut microbiota. However, molecular mechanisms by which these microbes affect host response to immunotherapy remain elusive. Here we show that specific members of the bacterial genus Enterococcus can promote anti-PD-L1 immunotherapy in mouse tumor models. The active enterococci express and secrete orthologs of the NlpC/p60 peptidoglycan hydrolase SagA that generate immune-active muropeptides. Expression of SagA in non-protective E. faecalis was sufficient to promote antitumor activity of clinically approved checkpoint targets, and its activity required the peptidoglycan sensor Nod2. Notably, SagA-engineered probiotics or synthetic muropeptides also promoted checkpoint inhibitor antitumor activity. Our data suggest that microbiota species with unique peptidoglycan remodeling activity may enhance immunotherapy and could be leveraged for next-generation adjuvants.One Sentence SummaryA conserved family of secreted NlpC/p60 peptidoglycan hydrolases from Enterococcus promote antitumor activity of immune checkpoint inhibitors.


2018 ◽  
Author(s):  
Julia Bershadsky Izrailit ◽  
Natasja Nielsen Viller ◽  
Xinli Pang ◽  
Penka S. Petrova ◽  
Robert A. Uger ◽  
...  

2017 ◽  
Vol 35 (15_suppl) ◽  
pp. TPS3101-TPS3101 ◽  
Author(s):  
John A. Thompson ◽  
Oleg Akilov ◽  
Christiane Querfeld ◽  
Matthew H. Taylor ◽  
Lisa Johnson ◽  
...  

TPS3101 Background: CD47 is an immune checkpoint that binds to signal regulatory protein alpha (SIRPα) and delivers a "do not eat" signal to suppress macrophage phagocytosis. Tumor cells frequently overexpress CD47 and exploit this pathway to evade macrophage-mediated destruction. CD47 blockade promotes both innate (macrophage phagocytosis) and adaptive immunity (T cell responses). TTI-621 (SIRPαFc) is an immune checkpoint inhibitor designed to bind human CD47 and block the “do not eat” signal. The IgG1 region of TTI-621 engages Fcγ receptors on macrophages, converting the inhibitory signal to one that activates, thereby enhancing phagocytosis, and antitumor activity. A Phase 1 study is ongoing to evaluate the safety/tolerability and preliminary efficacy of IV administered TTI-621 in subjects with relapsed/refractory hematologic malignancies. It is hypothesized that employing direct intratumoral injections will result in very high local target engagement, promoting the development of innate and adaptive immune responses. Methods: A Phase 1 multicenter, open-label study was initiated to characterize the safety and tolerability of delivering TTI-621 directly into cancer lesions to achieve high local CD47 engagement to increase phagocytosis of tumor cells (NCT02890368). Subjects are being enrolled in sequential cohorts that gradually increase in dose and dosing frequency to characterize the feasibility of intratumoral TTI-621 injections and their safety, PK, pharmacodynamics, and preliminary antitumor activity. Eligible subjects are adults with relapsed or refractory percutaneously-accessible solid tumors or mycosis fungoides (MF), which have progressed on standard anticancer therapy or for which no other approved therapy exists. TTI-621 is delivered by intratumoral injection at protocol-defined doses and dosing regimens starting at 1 mg/injection. Serial biopsies are being collected to characterize local anti-tumor responses and assess the impact of TTI-621 on the tumor microenvironment. Clinical trial information: NCT02890368.


2020 ◽  
Vol 158 (6) ◽  
pp. S-156
Author(s):  
Yousef R. Badran ◽  
Angela Shih ◽  
Donna Leet ◽  
Alexandra Coromilas ◽  
Jonathan Chen ◽  
...  

2019 ◽  
Vol 25 ◽  
pp. 256
Author(s):  
Mohammad Ansari ◽  
Ula Tarabichi ◽  
Hadoun Jabri ◽  
Qiang Nai ◽  
Anis Rehman ◽  
...  

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