Timothy J. Koh

Has grant

University of Chicago
Country flag
United States

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

Recent Grants

Grant: Close

Macrophage Phenotypes and Tissue Repair

Open Date: 2020-05-01

Close Date: 2025-02-28

Grant: Close

Low-Intensity Vibration as a Treatment for Traumatic Muscle Injury

Open Date: 2014-08-01

Close Date: 2018-07-31

Grant: Close

Macrophage Phenotype and Impaired Wound Healing

Open Date: 2011-09-30

Close Date: 2020-01-31

Grant: Close

Enhancement of skeletal muscle repair by the urokinase-type plasminogen activator system

Open Date: 2003-10-01

Close Date: 2004-09-01

Grant: Close

CALPAIN ACTIVITY REGULATION IN MODIFIED MUSCLE LOADING

Open Date: 1998-01-29

Close Date: 1998-12-31

Articles (14)

Diet-Induced Obesity Increases Monocyte/Macrophage Proliferation during Skin Wound Healing in Mice

Obesity is associated with low-grade chronic inflammation and impaired glucose metabolism, both of which are detrimental to wound healing. C-C motif chemokine receptor 2 (CCR2) plays an important role in cell recruitment during healing, and our recent studies revealed the significance of CCR2-CCL2 signaling in promoting the proliferation of pro-inflammatory monocytes/macrophages in wounds. Therefore, we sought to determine whether diet-induced obesity increases monocyte/macrophage proliferation and their accumulation in skin wounds. We first confirmed that wound closure was delayed in obese CCR2RFP/+ mice fed with a high-fat diet (HFD) compared to mice fed with a normal diet (ND). Using in vivo imaging and flow cytometry analysis, we found that HFD mice had significantly increased accumulation of CCR2+ monocytes/macrophages, particularly pro-inflammatory CCR2+Ly6C+ cells in wounds compared to their ND counterparts. Importantly, HFD mice exhibited an increased proliferation of wound CCR2+Ly6C+ compared to ND mice. Together, our data suggest that obesity leads to an increased proliferation and accumulation of pro-inflammatory CCR2+Ly6C+ monocytes/macrophages in skin wounds, which may contribute to delayed healing.

Year:

2024

Collaborators (4)

Jingbo Pang

Visiting Research Assistant Professor

University of Chicago

UNITED STATES

Sage J. Kim

University of Chicago

UNITED STATES

Yi-Ting Tzen

University of Texas Southwestern Medical Center

UNITED STATES

Luisa Ann DiPietro

Professor

University of Chicago

UNITED STATES
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI