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CCL5 paradoxically regulates glomerular injury by skewing macrophage polarization
Ika N. Kadariswantiningsih, Issei Okunaga, Kaho Yamasaki, Maulana A. Empitu, Hiroyuki Yamada, Shin-ichi Makino, Akitsu Hotta, Hideo Yagita, Masashi Aizawa, Ryo Koyama-Nasu, Motoko Y. Kimura, Narihito Tatsumoto, Katsuhiko Asanuma
Ika N. Kadariswantiningsih, Issei Okunaga, Kaho Yamasaki, Maulana A. Empitu, Hiroyuki Yamada, Shin-ichi Makino, Akitsu Hotta, Hideo Yagita, Masashi Aizawa, Ryo Koyama-Nasu, Motoko Y. Kimura, Narihito Tatsumoto, Katsuhiko Asanuma
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Research Article Inflammation Nephrology

CCL5 paradoxically regulates glomerular injury by skewing macrophage polarization

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Abstract

Glomerular inflammation and podocyte loss are the hallmarks of chronic kidney disease (CKD) progression. Understanding how podocytes and their microenvironment regulate inflammation is critical for developing effective therapies. In this study, we identified C-C chemokine ligand 5 (CCL5) as an inflammatory mediator elevated in injured podocytes, based on analyses of both human kidney biopsies and mouse models of CKD. We discovered that CCL5 exerts paradoxical effects in nephropathy; while it protects podocytes in vitro, it exacerbates glomerular injury in vivo. Recombinant CCL5 and podocyte-specific CCL5 overexpression promoted cell survival and reduced apoptosis in cultured podocytes. However, in adriamycin-induced nephropathy, CCL5 worsened glomerular injury, increasing proteinuria, glomerulosclerosis, and podocyte loss. Bone marrow (BM) transplantation experiments revealed that CCL5 in BM-derived cells — not kidney-resident cells — drove disease progression. CCL5 deficiency in BM-derived cells conferred protection by increasing reparative M2 macrophages, whereas endogenous CCL5 promoted M1 polarization, inhibited M2 differentiation, and triggered M2-to-M1 transition. These findings demonstrate that while CCL5 supports podocyte survival, its expression in BM-derived cells promotes inflammatory macrophage phenotypes and glomerular injury. The harmful immune effects of CCL5 in BM-derived cells outweigh its podocyte-protective role, highlighting the importance of cell-targeted strategies to mitigate kidney damage.

Authors

Ika N. Kadariswantiningsih, Issei Okunaga, Kaho Yamasaki, Maulana A. Empitu, Hiroyuki Yamada, Shin-ichi Makino, Akitsu Hotta, Hideo Yagita, Masashi Aizawa, Ryo Koyama-Nasu, Motoko Y. Kimura, Narihito Tatsumoto, Katsuhiko Asanuma

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Figure 3

The effect of CCL5 deficiency in ADR-treated cultured podocytes.

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The effect of CCL5 deficiency in ADR-treated cultured podocytes.
(A) San...
(A) Sanger sequence analysis of Ccl5-KO podocytes. Red box indicates target site of sgRNA. (B) Western blot analysis of control and Ccl5-KO cultured podocytes. (C) The concentration of CCL5 secreted by control and Ccl5-KO cultured podocytes under untreated conditions or stimulation with 50 μg/mL αNotch2. (D) Representative result of the flow cytometry–based apoptosis assay measuring the death cell marker 7-AAD and the apoptosis marker Annexin V in untreated control and Ccl5-KO cultured podocytes. (E and F) Percentage of viable and apoptotic cells in untreated control and Ccl5-KO cultured podocytes. (G) Experimental scheme of the apoptosis assay in control and Ccl5-KO cultured podocytes. Apoptosis assay was performed in the untreated control (n = 6), untreated Ccl5-KO (n = 6), ADR-treated control (n = 3), ADR-treated Ccl5-KO (n = 3), and in Ccl5-KO cultured podocytes treated with a combination of ADR and 25 nM CCL5 (n = 3) or a combination of ADR and 50 nM CCL5 (n = 4). (H) Representative result of the flow cytometry–based apoptosis assay measuring the death cell marker 7-AAD and the apoptosis marker Annexin V in ADR-treated control, ADR-treated Ccl5-KO cultured podocytes, and in Ccl5-KO cultured podocytes treated with a combination of ADR and CCL5. (I and J) Percentage of viable and apoptotic cells in ADR-treated control, ADR-treated Ccl5-KO cultured podocytes, and Ccl5-KO cultured podocytes treated with a combination of ADR and CCL5. All data are expressed as mean ± SEM. Unpaired 2-tailed t tests, 1-way ANOVA, and Tukey’s multiple comparison test for panels I and J were performed to calculate the P values. **P < 0.01; ***P < 0.001; ****P < 0.0001. NS, not significant.

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