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Depletion and Reconstitution of Macrophages in Mice
Published on: August 1, 2012
Modified Zhenwu Decoction suppresses chronic colitis via targeting macrophage CCR2/Fyn/p38 MAPK signaling axis
Heung Lam Mok1, Ka Wing Cheng2, Yiqi Xu1
1Centre for Chinese Herbal Medicine Drug Development, Hong Kong Baptist University, Hong Kong SAR, China.
Background:
Ulcerative colitis (UC) is associated with intestinal macrophage infiltration due to disruption of the mucosal barrier and bacterial invasion. Therefore, it is crucial to identify therapeutic agents capable of attenuating the macrophage-induced inflammatory response to preserve mucosal homeostasis and immune tolerance. The modified Zhenwu decoction (CDD-2103) is a novel herbal formulation developed based on the principles of Traditional Chinese medicine. To date, there are no clinically approved herbal formulations for UC with a well-known mechanism of action on macrophages.
Purpose:
The objective of this study was to systematically investigate the inhibitory effect of the active fraction of CDD-2103 in a mouse model of chronic colitis and delineate the mechanisms underlying its inhibitory action.
Methods:
CDD-2103 was extracted into four fractions using organic solvents with increasing polarity. A chronic 49-day dextran sulfate sodium (DSS)-induced colitis mice model, closely resembling human clinical conditions, was used to examine the effect of CDD-2103 on chronic colitis. To confirm the effect of CDD-2103 on macrophages in this chronic colitis model, adoptive macrophage transfer and CCL2 supplementation were conducted. The mechanisms of action of CDD-2103 were further elucidated utilizing bone marrow-derived macrophages (BMDMs). Transcriptome analysis was conducted to gain insights into the underlying mechanism of action of CDD-2103 in BMDMs.
Results:
Our in vitro and in vivo findings demonstrated that the ethanol-enriched fraction of CDD-2103 exhibited significant anti-inflammatory effects, leading to the suppression of colitis severity. This effect was associated with diminished accumulation of colonic macrophages in the lamina propria of CDD-2103-intervened colitis mice. Specifically, CDD-2103 inhibited CCR2/L2-mediated proinflammatory macrophage infiltration into the colon without affecting macrophage proliferation. Mechanistically, CDD-2103 inhibited Fyn expression-mediated p38 MAPK activation and subsequently suppressed CCR2 expression in BMDMs.
Conclusions:
Collectively, our study supports the potential use of CDD-2103 to limit macrophage infiltration, thereby reducing inflammation during UC treatment. CDD-2103 and the components in the ethanolic fraction are promising candidates for the development of novel drugs for UC management. Additionally, our study underscores Fyn-mediated CCR2 expression as a potential therapeutic target for the management of UC.
Insights
The modified Zhenwu decoction (CDD-2103) reduces ulcerative colitis (UC) severity by inhibiting inflammatory macrophage infiltration. This herbal formulation targets Fyn-mediated CCR2 expression, offering a novel therapeutic approach for UC management.
Area of Science:
- Immunology
- Gastroenterology
- Pharmacology
Background:
- Ulcerative colitis (UC) involves intestinal macrophage infiltration, necessitating therapies to control inflammation.
- Current UC treatments lack agents with well-defined mechanisms targeting macrophages.
- Modified Zhenwu decoction (CDD-2103) is a novel Traditional Chinese Medicine-derived herbal formulation.
Purpose of the Study:
- Investigate the inhibitory effects of CDD-2103's active fraction on chronic colitis.
- Elucidate the mechanisms by which CDD-2103 modulates macrophage activity in colitis.
Main Methods:
- Fractionation of CDD-2103 using organic solvents.
- Induction of chronic colitis in mice using dextran sulfate sodium (DSS).
- Assessment of CDD-2103 effects using adoptive macrophage transfer, CCL2 supplementation, bone marrow-derived macrophages (BMDMs), and transcriptome analysis.
Main Results:
- The ethanol-enriched fraction of CDD-2103 significantly suppressed colitis severity and reduced colonic macrophage accumulation.
- CDD-2103 inhibited CCR2/CCL2-mediated proinflammatory macrophage infiltration without impacting macrophage proliferation.
- Mechanistically, CDD-2103 suppressed Fyn expression-mediated p38 MAPK activation, leading to reduced CCR2 expression in BMDMs.
Conclusions:
- CDD-2103 shows potential for limiting macrophage infiltration and reducing inflammation in UC treatment.
- The ethanolic fraction of CDD-2103 and its components are promising candidates for novel UC therapeutics.
- Fyn-mediated CCR2 expression represents a potential therapeutic target for UC management.

