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Updated: Jun 9, 2025

Preparation of Exosomes for siRNA Delivery to Cancer Cells
Published on: December 5, 2018
Targeting BRIX1 via Engineered Exosomes Induces Nucleolar Stress to Suppress Cancer Progression
Yu Gan1,2, Qian Hao1,2, Tao Han3
1Fudan University Shanghai Cancer Center and Institutes of Biomedical Sciences, Fudan University, Shanghai, 200032, P. R. China.
Abstract:
Elevated ribosome biogenesis correlates with the rapid growth and progression of cancer. Targeted blockade of ribosome biogenesis induces nucleolar stress, which preferentially leads to the elimination of malignant cells. In this study, it is reported that the nucleolar protein BRIX1 is a critical regulator for the homeostasis between ribosome biogenesis and p53 activation. BRIX1 facilitated the processing of pre-rRNA by supporting the formation of the PeBoW complex. In addition, BRIX1 prevented p53 activation in response to nucleolar stress by impairing the interactions between MDM2 and the ribosomal proteins, RPL5, and RPL11, thereby triggering the resistance of cancer cells to chemotherapy. Conversely, depletion of BRIX1 induced nucleolar stress, which in turn activated p53 through RPL5 and RPL11, consequently inhibiting the growth of tumors. Moreover, engineered exosomes are developed, which are surface-decorated with iRGD, a tumor-homing peptide, and loaded with siRNAs specific to BRIX1, for the treatment of cancer. iRGD-Exo-siBRIX1 significantly suppressed the growth of colorectal cancer and enhanced the efficacy of 5-FU chemotherapy in vivo. Overall, the study uncovers that BRIX1 functions as an oncoprotein to promote rRNA synthesis and dampen p53 activity, and also implies that targeted inhibition of BRIX1 via engineered exosomes can be a potent approach for cancer therapy.
Insights
The nucleolar protein BRIX1 promotes cancer growth by enhancing ribosome biogenesis and suppressing p53 activation. Inhibiting BRIX1 with engineered exosomes halts tumor growth and improves chemotherapy efficacy.
Area of Science:
- Molecular Biology
- Cancer Research
- Biochemistry
Background:
- Ribosome biogenesis is elevated in cancer, correlating with tumor growth and progression.
- Targeting ribosome biogenesis can induce nucleolar stress, selectively eliminating cancer cells.
Purpose of the Study:
- To investigate the role of nucleolar protein BRIX1 in regulating ribosome biogenesis and p53 activation.
- To explore BRIX1 as a therapeutic target for cancer treatment.
Main Methods:
- Investigated BRIX1's role in pre-ribosomal RNA (pre-rRNA) processing and its interaction with the PeBoW complex.
- Assessed BRIX1's impact on p53 activation by modulating MDM2 and ribosomal protein interactions (RPL5, RPL11).
- Developed engineered exosomes (iRGD-Exo-siBRIX1) for targeted delivery of BRIX1-specific siRNAs.
Main Results:
- BRIX1 facilitates pre-rRNA processing and formation of the PeBoW complex.
- BRIX1 inhibits p53 activation by preventing MDM2-RPL5/RPL11 interactions, conferring chemoresistance.
- BRIX1 depletion triggers nucleolar stress and p53 activation, inhibiting tumor growth.
- iRGD-Exo-siBRIX1 suppressed colorectal cancer growth and enhanced 5-FU chemotherapy efficacy in vivo.
Conclusions:
- BRIX1 acts as an oncoprotein by promoting rRNA synthesis and suppressing p53 activity.
- Targeted inhibition of BRIX1 using engineered exosomes represents a promising strategy for cancer therapy.
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