The long-term goal of the Center of Biomedical Research Excellence (COBRE) for Skeletal Health and Repair is to develop a multi-disciplinary translational research center focusing on discovering mechanisms of cartilage joint diseases and developing prevention and treatment strategies. Since the start of the COBRE eight years ago, seven full project investigators have received R01 or R01-equivalent federal grants and ?graduated? from the COBRE training program, and published more than 240 peer-reviewed articles including landmark discoveries in Nature, Molecular Cell, and PNAS. All twenty target junior investigators have received exramural funding as Principal Investigator, and new state-of-the-art laboratories and core facilities have been built in bioengineering, imaging, molecular biology and nanomedicine. The main objective of the Phase III COBRE is to strengthen and transition the COBRE research infrastructure into a competitive, independent, and self- sustaining academic center of excellence-Brown Center of Musculoskeletal and Motion Sciences (BCMMS) in five years. To achieve this main objective, four specific aims are proposed as follows.
Aim 1, Administrative Core provides strong leadership in translational research, evaluates the performance of technical Core Resources and Facilities, guides mentoring efforts in the Pilot Projects Program, and implements the COBRE transitioning plan;
Aim 2, Bioengineering Core enhances an interactive research environment and provides the unique resources of biomechanical testing at the cell, tissue, and organ levels;
Aim 3, Imaging, Molecular Biology, and Nanomedicine Core enhances translational research from bench to bedside, provides critical expertise and equipment in small animal live imaging analysis, and facilitates development of novel nanomaterial delivery vehicles for diagnostics and therapeutics;
and Aim 4, Pilot Projects Program mentors a new generation of researchers in multiple disciplines of musculoskeletal research including clinicians, biologists, and engineers, facilitates research collaborations, and sustains the strong research environment developed in the first two phases of COBRE. Our vision is, by sustaining and transitioning the established high- caliber research infrastructure, we will enable clinicians working side-by-side with basic research scientists, junior investigators with senior investigators, and biologists with bioengineers for a long term into the future.

Public Health Relevance

The COBRE for Skeletal Health and Repair provides state-of-the-art core services in Imaging, Molecular Biology, and Nanomedicine, and Bioengineering to biomedical investigators pursuing development of prevention and treatment of musculoskeletal diseases. The program also supports junior faculty with mentoring activities and pilot project support.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Center Core Grants (P30)
Project #
5P30GM122732-03
Application #
9778858
Study Section
Special Emphasis Panel (ZGM1)
Program Officer
Krasnova, Irina N
Project Start
2017-09-01
Project End
2022-08-31
Budget Start
2019-09-01
Budget End
2020-08-31
Support Year
3
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Rhode Island Hospital
Department
Type
DUNS #
075710996
City
Providence
State
RI
Country
United States
Zip Code
02903
Wang, Ailin; Conicella, Alexander E; Schmidt, Hermann Broder et al. (2018) A single N-terminal phosphomimic disrupts TDP-43 polymerization, phase separation, and RNA splicing. EMBO J 37:
Wang, Xiao-Jian; Chang, Feng; Su, Yun-Xing et al. (2018) Ilizarov technique combined with limited adjunctive surgical procedures for correction of relapsed talipes equinovarus in children. J Int Med Res 46:802-810
Jayasuriya, Chathuraka T; Hu, Nan; Li, Jing et al. (2018) Molecular characterization of mesenchymal stem cells in human osteoarthritis cartilage reveals contribution to the OA phenotype. Sci Rep 8:7044
Guan, Ying-Jie; Li, Jing; Yang, Xu et al. (2018) Evidence that miR-146a attenuates aging- and trauma-induced osteoarthritis by inhibiting Notch1, IL-6, and IL-1 mediated catabolism. Aging Cell 17:e12752
Ryan, Veronica H; Dignon, Gregory L; Zerze, Gül H et al. (2018) Mechanistic View of hnRNPA2 Low-Complexity Domain Structure, Interactions, and Phase Separation Altered by Mutation and Arginine Methylation. Mol Cell 69:465-479.e7
González-Cruz, Rafael D; Sadick, Jessica S; Fonseca, Vera C et al. (2018) Nuclear Lamin Protein C Is Linked to Lineage-Specific, Whole-Cell Mechanical Properties. Cell Mol Bioeng 11:131-142
Kane, Patrick M; Vopat, Bryan G; Mansuripur, P Kaveh et al. (2018) Relative Contributions of the Midcarpal and Radiocarpal Joints to Dart-Thrower's Motion at the Wrist. J Hand Surg Am 43:234-240
Xia, Yang; Darling, Eric M; Herzog, Walter (2018) Functional properties of chondrocytes and articular cartilage using optical imaging to scanning probe microscopy. J Orthop Res 36:620-631
Wang, Shilei; Bao, Yan; Guan, Yinjie et al. (2018) Strain distribution of repaired articular cartilage defects by tissue engineering under compression loading. J Orthop Surg Res 13:19
Azagury, Aharon; Fonseca, Vera C; Cho, Daniel Y et al. (2018) Single Step Double-walled Nanoencapsulation (SSDN). J Control Release 280:11-19

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