Nanoparticle-Based Follistatin Messenger RNA Therapy for Reprogramming Metastatic Ovarian Cancer and Ameliorating Cancer-Associated Cachexia.
Tetiana KorzunAbraham S MosesJeonghwan KimSiddharth PatelCanan SchumannPeter R LevasseurParham DibaBrennan OlsonKatia Graziella de Oliveira RebolaMason NorgardYoungrong ParkAnaniya A DemessieYulia EygerisVladislav GrigorievSubisha SundaramTanja PejovicJonathan R BrodyOlena R TaratulaXinxia ZhuGaurav SahayDaniel L MarksOlena R TaratulaPublished in: Small (Weinheim an der Bergstrasse, Germany) (2022)
This study presents the first messenger RNA (mRNA) therapy for metastatic ovarian cancer and cachexia-induced muscle wasting based on lipid nanoparticles that deliver follistatin (FST) mRNA predominantly to cancer clusters following intraperitoneal administration. The secreted FST protein, endogenously synthesized from delivered mRNA, efficiently reduces elevated activin A levels associated with aggressive ovarian cancer and associated cachexia. By altering the cancer cell phenotype, mRNA treatment prevents malignant ascites, delays cancer progression, induces the formation of solid tumors, and preserves muscle mass in cancer-bearing mice by inhibiting negative regulators of muscle mass. Finally, mRNA therapy provides synergistic effects in combination with cisplatin, increasing the survival of mice and counteracting muscle atrophy induced by chemotherapy and cancer-associated cachexia. The treated mice develop few nonadherent tumors that are easily resected from the peritoneum. Clinically, this nanomedicine-based mRNA therapy can facilitate complete cytoreduction, target resistance, improve resilience during aggressive chemotherapy, and improve survival in advanced ovarian cancer.
Keyphrases
- papillary thyroid
- binding protein
- squamous cell
- squamous cell carcinoma
- small cell lung cancer
- high fat diet induced
- skeletal muscle
- lymph node metastasis
- locally advanced
- lymph node
- childhood cancer
- type diabetes
- bone marrow
- radiation therapy
- adipose tissue
- young adults
- cancer therapy
- mesenchymal stem cells
- drug induced
- rectal cancer
- prognostic factors
- nucleic acid
- diabetic rats
- protein protein
- oxide nanoparticles