A delivery system targeting bone formation surfaces to facilitate RNAi-based anabolic therapy

G Zhang, B Guo, H Wu, T Tang, BT Zhang, L Zheng… - Nature medicine, 2012 - nature.com
G Zhang, B Guo, H Wu, T Tang, BT Zhang, L Zheng, Y He, Z Yang, X Pan, H Chow, K To…
Nature medicine, 2012nature.com
Metabolic skeletal disorders associated with impaired bone formation are a major clinical
challenge. One approach to treat these defects is to silence bone-formation–inhibitory genes
by small interference RNAs (siRNAs) in osteogenic-lineage cells that occupy the niche
surrounding the bone-formation surfaces. We developed a targeting system involving
dioleoyl trimethylammonium propane (DOTAP)-based cationic liposomes attached to six
repetitive sequences of aspartate, serine, serine ((AspSerSer) 6) for delivering siRNAs …
Abstract
Metabolic skeletal disorders associated with impaired bone formation are a major clinical challenge. One approach to treat these defects is to silence bone-formation–inhibitory genes by small interference RNAs (siRNAs) in osteogenic-lineage cells that occupy the niche surrounding the bone-formation surfaces. We developed a targeting system involving dioleoyl trimethylammonium propane (DOTAP)-based cationic liposomes attached to six repetitive sequences of aspartate, serine, serine ((AspSerSer)6) for delivering siRNAs specifically to bone-formation surfaces. Using this system, we encapsulated an osteogenic siRNA that targets casein kinase-2 interacting protein-1 (encoded by Plekho1, also known as Plekho1). In vivo systemic delivery of Plekho1 siRNA in rats using our system resulted in the selective enrichment of the siRNAs in osteogenic cells and the subsequent depletion of Plekho1. A bioimaging analysis further showed that this approach markedly promoted bone formation, enhanced the bone micro-architecture and increased the bone mass in both healthy and osteoporotic rats. These results indicate (AspSerSer)6-liposome as a promising targeted delivery system for RNA interference–based bone anabolic therapy.
nature.com