TY - JOUR
T1 - First-in-humans trial of an RNA interference therapeutic targeting VEGF and KSP in cancer patients with liver involvement
AU - Tabernero, Josep
AU - Shapiro, Geoffrey I.
AU - LoRusso, Patricia M.
AU - Cervantes, Andres
AU - Schwartz, Gary K.
AU - Weiss, Glen J.
AU - Paz-Ares, Luis
AU - Cho, Daniel C.
AU - Infante, Jeffrey R.
AU - Alsina, Maria
AU - Gounder, Mrinal M.
AU - Falzone, Rick
AU - Harrop, Jamie
AU - White, Amy C.Seila
AU - Toudjarska, Iva
AU - Bumcrot, David
AU - Meyers, Rachel E.
AU - Hinkle, Gregory
AU - Svrzikapa, Nenad
AU - Hutabarat, Renta M.
AU - Clausen, Valerie A.
AU - Cehelsky, Jeffrey
AU - Nochur, Saraswathy V.
AU - Gamba-Vitalo, Christina
AU - Vaishnaw, Akshay K.
AU - Sah, Dinah W.Y.
AU - Gollob, Jared A.
AU - Burris, Howard A.
PY - 2013/4
Y1 - 2013/4
N2 - RNA interference (RNAi) is a potent and specific mechanism for regulating gene expression. Harnessing RNAi to silence genes involved in disease holds promise for the development of a new class of therapeutics. Delivery is key to realizing the potential of RNAi, and lipid nanoparticles (LNP) have proved effective in delivery of siRNAs to the liver and to tumors in animals. To examine the activity and safety of LNP-formulated siRNAs in humans, we initiated a trial of ALN-VSP, an LNP formulation of siRNAs targeting VEGF and kinesin spindle protein (KSP), in patients with cancer. Here, we show detection of drug in tumor biopsies, siRNA-mediated mRNA cleavage in the liver, pharmacodynamics suggestive of target downregulation, and antitumor activity, including complete regression of liver metastases in endometrial cancer. In addition, we show that biweekly intravenous administration of ALN-VSP was safe and well tolerated. These data provide proof-of-concept for RNAi therapeutics in humans and form the basis for further development in cancer. Significance: The findings in this report show safety, pharmacokinetics, RNAi mechanism of action, and clinical activity with a novel first-in-class LNP-formulated RNAi therapeutic in patients with cancer. The ability to harness RNAi to facilitate specific multitargeting, as well as increase the number of druggable targets, has important implications for future drug development in oncology.
AB - RNA interference (RNAi) is a potent and specific mechanism for regulating gene expression. Harnessing RNAi to silence genes involved in disease holds promise for the development of a new class of therapeutics. Delivery is key to realizing the potential of RNAi, and lipid nanoparticles (LNP) have proved effective in delivery of siRNAs to the liver and to tumors in animals. To examine the activity and safety of LNP-formulated siRNAs in humans, we initiated a trial of ALN-VSP, an LNP formulation of siRNAs targeting VEGF and kinesin spindle protein (KSP), in patients with cancer. Here, we show detection of drug in tumor biopsies, siRNA-mediated mRNA cleavage in the liver, pharmacodynamics suggestive of target downregulation, and antitumor activity, including complete regression of liver metastases in endometrial cancer. In addition, we show that biweekly intravenous administration of ALN-VSP was safe and well tolerated. These data provide proof-of-concept for RNAi therapeutics in humans and form the basis for further development in cancer. Significance: The findings in this report show safety, pharmacokinetics, RNAi mechanism of action, and clinical activity with a novel first-in-class LNP-formulated RNAi therapeutic in patients with cancer. The ability to harness RNAi to facilitate specific multitargeting, as well as increase the number of druggable targets, has important implications for future drug development in oncology.
UR - https://www.scopus.com/pages/publications/84877120847
U2 - 10.1158/2159-8290.CD-12-0429
DO - 10.1158/2159-8290.CD-12-0429
M3 - Article
C2 - 23358650
AN - SCOPUS:84877120847
SN - 2159-8274
VL - 3
SP - 406
EP - 417
JO - Cancer Discovery
JF - Cancer Discovery
IS - 4
ER -