• Title/Summary/Keyword: Anti-inflammatory mechanism

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Effects of Astragali Radix Herbal-acupuncture at $ST_{36}$ (Jok-samni) on Collagen-induced Arthritis in Mice (황기약침이 Collagen으로 유발된 생쥐의 Arthritis에 미치는 영향)

  • Choi, Bong-Gyun;Cho, Myung-Rae;Kim, Jae-Hong;Ryu, Chung-Ryeol
    • Journal of Acupuncture Research
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    • v.25 no.1
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    • pp.25-55
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    • 2008
  • Objectives : The aim of the present study was to observe the effect of Astragali Radix Herbal-Acupuncture Solution(AR-HAS) at $ST_{36}$(jok-samni, $Z\acute{u}s\bar{a}n$ Li) on collagen- II -induced arthritis(CIA) in mice. Methods : DBA/1J mice were immunized with bovine type II collagen(CII) on days 0 and 21 to induce arthritis. The mice were divided into 5 groups : normal group(no CIA), control group(CIA+no treatment), needle prick group(CIA+single prick with an injection needle), saline group(CIA+saline injection) and ARHA group(CIA+ R-HA treatment). The needle prick, saline injection, and AR-HA groups were injected on the right $ST_{36}$(jok-samni) of mice for 9 weeks, 3 times a week, beginning 4 weeks after the booster immunization. Results : 1. The incidence of arthritis, AI(arthritis index), and joint edema decreased in the AR-HA group. 2. Weight gain, hypertrophy of the spleen, adhesion of the tissues, and transformation of the joint were restrained in the AR-HA group. 3. The concentrations of $IL-1{\beta}$, IL-6, $TNF-{\alpha}$, $IFN-{\gamma}$ in CIA mouse serum and $IFN-{\gamma}$, IL-10 in the CIA mouse spleen cell culture decreased significantly at $ST_{36}$ in the AR-HA group. 4. Total cell counts increased significantly, and the ratio of $CD3e^+$ to $CD45R^+$, $CD4^+$ to $CD8^+$, and $CD4^+$ to $CD25^+$ cells decreased significantly at $ST_{36}$ in the CIA mouse spleen cell culture of the AR-HA group. 5. Total cell counts decreased significantly, and $CD4^+/CD25^+$ and $CD45R^+/CD69^+$ decreased significantly at $ST_{36}$ in the CIA mouse lymph nodes of the AR-HA group. 6. $CD3e^+/CD69^+$ and $CD11b^+/Gr-1^+$ cells decreased significantly at $ST_{36}$ in the CIA mouse joints of the AR-HA group. 7. The histological examination showed that cartilage destruction and synoviocyte proliferation decreased in the CIA mouse joints of the AR-HA group, and collagen fiber was expressed similar to that seen in the normal group. Conclusions : Our experiments show that at $ST_{36}$, an anti-inflammatory mechanism of AR-HA controls synovial cell proliferation and protects against cartilage destruction in rheumatoid arthritis.

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Effects of Hataedock with Douchi on 2,4-dinitrofluorobenzene-induced Atopic Dermatitis-like Skin Lesion in NC/Nga Mice (두시를 이용한 하태독법의 NC/Nga 생쥐에서 DNFB로 유발된 피부손상 완화 효과)

  • Song, Ji-hoon;Ahn, Sang-Hyun;Cheon, Jin-Hong;Park, Sun-young;Kim, Ho-Hyun;Kim, Ki-Bong
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.30 no.2
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    • pp.109-115
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    • 2016
  • Hataedock is a Korean medical treatment that administers herbal extracts orally to newborn infants. This method is used for alleviating harmful heat and excreting fetal wastes by meconium. The purpose of this study was to evaluate anti-inflammatory effect of Hataedock method with Douchi on 2,4-dinitrofluorobenzene (DNFB)-induced atopic dermatitis (AD). The 3-week-old NC/Nga mice were divided into 3 groups: the control group (Ctrl), the AD-induced group (AE), and the Hataedock-treated group (GT). Only the GT group was treated with Hataedock at the 3rd week. After 28 days from Hataedock treatment, we induced AD-like dermatitis to the AE and GT group by DNFB. The effects of Hataedock were evaluated by immunohistochemical method. In the epithelium, PKC-positive reaction of the GT group was decreased by 57%. In the dermal papillae, IL-4-positive reaction was decreased by 34%. In the dermis, the distribution of degranulated mast cells was decreased and substance P-positive reaction was decreased by 49%. In the skin tissue, edema was decreased and MMP-9-positive reaction was decreased by 71%. Tissue damage such as epithelial cell hyperplasia, infiltration of granulocyte and lymphocyte, and capillary distribution were also decreased. The Hataedock method with Douchi maintained skin barrier and inhibited skin-damaging factors via regulating Th2 differentiation. In conclusion, Hataedock has a potential for preventative treatment of AD. Further studies are necessary to investigate the immune-regulating mechanism and verify the safety and efficacy of the Hataedock method.

Germanium-Fortified Yeast Activates Macrophage, NK Cells and B Cells and Inhibits Tumor Progression in Mice. (게르마늄 강화효모의 마우스에서의 암세포 억제 및 대식세포, NK 세포, B 세포의 활성화에 관한 연구)

  • Baek, Dae-Heoun;Jung, Jin-Wook;Sohn, Tsang-Uk;Kang, Jong-Koo
    • Microbiology and Biotechnology Letters
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    • v.35 no.2
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    • pp.118-127
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    • 2007
  • Germanium-fortified yeast (GY) is a organic germanium-fortified yeast with potent immune modulating activities including anti-inflammatory effect. Through cell line studies, we observed that GY can modulate the diverse immune activity but little evidence was provided on the mechanism of GY in modulating immune activities in other higher animals. In this study, we investigated the effect of GY on modulation of immune function in mice. GY was administered in normal mice or tumor-bearing mice and then effect of GY on modulation of host immune system was analyzed by using ex vivo isolated macrophages, B cells, NK cells. Admistration of GY in mice induced macrophage activation thereby increased effector function of macrophage such as increased phagocytosis, chemotaxis, adherence, $O_2-release$, NO, $TNF-{\alpha}$ production. In addition, GY administration Increased B lymphocyte activation and plaque forming cells. Furthermore, GY administration increased NK-cell mediated cytotoxicity. Furthermore, GY administration suppressed progression of tumor in mice by increasing $TNF-{\alpha}$ production and effector function of NK cells. Our results showed that GY has a potent immunostimulatory function in vivo mice model. Proper modulation and administration of GY in human could be helpful to maintaining immunological homeostasis by modulating host immune system.

Fructose 1.6-diphosphate Prevents Cyclooxygenase-2 and Matrix Metalloproteinases Expression by Inhibition of UVB-induced Signaling Cascades in HaCaT Keratinocytes (인체각질형성세포에서 Fructose 1,6-diphosphate의 자외선에 의해 유도되는 Cyclooxygenase-2 and Matrix Metalloproteinases의 발현억제기전)

  • Soo Mi, Ahn;Ji Hyun, Kim;Byeong Gon, Lee;Soo Hwan, Lee;Ih Seoup, Chang
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.30 no.2
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    • pp.247-251
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    • 2004
  • UV radiation exerts various influences in the skin, including photoaging and inflammation (1). The MMPs (Matrix metalloproteinases), which are induced by UV irradiation, can degrade matrix proteins, and these results in a collagen deficiency in photodamaged skin that leads to skin wrinkling. It has been known that the production of PGE$_2$ stimulates MMPs expression, and inhibits procollagen (2). Thus, it is possible that the induction of MMPs and the inhibition of matrix protein synthesis by UV -induced PGE$_2$ may play some role in UV-induced collagen deficiency in photoaged skin. Fructose-1,6-diphosphate (FDP), a glycolytic metabolite, is reported to have cytoprotective effects against ischemia and postischemic reperfusion injury of brain and heart, presumably by augmenting anaerobic carbohydrate metabolism (3). And also, FDP significantly prevent skin aging by decreasing facial winkle compared with vehicle alone after 6 months of use. We studied the mechanism of anti-aging effect of FDP on UVB-irradiated HaCaT keratinocyte model. FDP has protective role in UVB injured keratinocyte by attenuating prostaglandin E$_2$ (PGE$_2$) production and COX-2 expression. And FDP also suppressed UVB-induced MMP-2 expression. Further, to delineate the inhibition of UVB-induced COX-2 and MMPs expression with cell signaling pathways, treatment of FDP to HaCaT keratinocytes resulted in marked inhibition of UVB-induced phosphorylation of ERK1/2, JNK. It also prevents UV induced NFB translocation, which are activated by cellular inflammatory signal. Our results indicate that FDP has protecting effects in UV-injured skin aging by decreasing UVB-induced COX-2 and MMPs expression, which are possibly through blocking UVB-induced signal cascades.

Bioequivalence of Acer Capsule to Airtal Tablet (Aceclofenac 100 mg) (에어탈 정(아세클로페낙 100 mg)에 대한 에이서 캅셀의 생물학적 동등성)

  • Cho, Hea Young;Kim, Soo Jin;Oh, In Joon;Moon, Jai Dong;Lee, Yong Bok
    • Korean Journal of Clinical Pharmacy
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    • v.12 no.1
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    • pp.22-28
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    • 2002
  • Aceclofenac, 2-[(2',6'-dichlorphenyl)amino]phenylacetoxiacetic acid, is a new nonsteroidal anti-inflammatory drug that belongs to the family of phenylacetic acids. It shows good tolerance and potent analgesic/antiinflammatory properties, and acts on cartilaginous chondriocytes, stimulating their repair mechanism. The purpose of the present study was to evaluate the bioequivalence of two aceclofenac products, $Airtal^{TM}$ tablet (Daewoong Pharmaceutical Co.) and $Acer^{TM}$ capsule (Kyungdong Pharmaceutical Co.), according to the guideliner of Korea Food and Drug Administration (KFDA). The aceclofenac release from the two aceclofenac products in vitro was tested using KP VII Apparatus II method at pH 7.8 dissolution media. Sixteen normal male volunteers, $23.13\pm2.03$ years in age and $66.33\pm7.08$ kg in body weight, were divided into two groups and a randomized $2\times2$ cross-over study was employed. After one tablet or capsule containing 100 mg of aceclofenac was orally administered, blood was taken at predetermined time intervals and the concentrations of aceclofenac in serum were determined using HPLC with UV detector. The dissolution profiles of the two aceclofenac products were very similar at pH 7.8 dissolution media. The pharmacokinetic parameters such as $AUC_t,\;C_{max}\;and\;T_max$ were calculated and ANOVA test was utilized for the statistical analysis of the parameters. The results showed that the differences in $AUC_t,\;C_{max}\;and\;T_{max}$ between two products were $6.50\%,\;-1.06\%\;and\;11.96\%$ respectively, when calculated against the $Airtal^{TM}$ tablet. The powers $(1-\beta)\;for\;AUC_t,\;C_{max}\;were\;89.82\%\;and\;82.84\%$, respectively. Minimum detectable differences $(\Delta)\;at\;\alpha=0.05\;and\;1-\beta=0.8$ were less than $20\%\;(e.g.,\;17.51\%\;and\;19.30\%\;for\;AUC_t,\;C_{max}$, ). The $90\%$ confidence intervals were within $\pm20\%\;(e.g.,\;-3.73\%\sim16.73\%\;and\;-12.34\%\sim10.22\%\;for\;AUC_t,\;C_{max},\;respectively)$. Two parameters met the criteria of KFDA for bioequivalence, indicating that $Acer^{TM}$ capsule is bioequivalent to $Airtal^{TM}$ tablet.

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Effects of Water Extracts from Chaenomeles sinensis, Polygonum cuspidatum and Boswellia carterii on LPS-Induced MMP-9 Activation in Raw 264.7 Cell (목과(木瓜), 호장근(虎杖根) 및 유향(乳香) 추출물이 Raw 264.7 cell에서 LPS로 유도된 MMP-9 의 활성에 미치는 영향)

  • Lee Tae-Jin;Kim Yeoun-Hee;Shu Seong-Il;Shin Sang-Woo;Kim Sang-Chan;Kwon Young-Kyu;Park Jong-Wook;Kwon Taeg-Kyu
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.1
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    • pp.37-42
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    • 2006
  • Matrix metalloproteinase-9 (MMP-9) is considered to be an important component in the progression of inflammation. Monocytes/macrophages are prominent at inflammation sites, and activation of these cells by stimulants such as lipopolysaccharide (LPS) leads to the production of significant amounts of MMP-9. Here, we show that LPS-induced MMP-9 production and activation was inhibited by the water extract from the fruit of Chaenomeles sinensis (CS), the root of Polygonum cuspidatum (PC), but increased by the extract from Boswellia carterii (BC). To investigate the mechanism by which those extracts inhibits MMP-9 activation, we examined the level of MMP-9 mRNA expression. We observed a significant change in the MMP-9 expression between LPS alone and LPS plus Chaenomeles sinensis and Polygonum cuspidatum extracts-treated cells. In addition, LPS significantly up-regulated MMP-9 promoter activity in Raw 264.7 cells, which was attenuated by the CS and PS extracts. However, water extracts from Boswellia carterii increased MMP-9 expression and MMP-9 promoter activity which were induced by LPS treatment in Raw 264.7 cells. These data suggest that water extracts from Chaenomeles sinensis and Polygonum cuspidatum can modulate anti-inflammatory immune response, which may be in part associated with the regulation of MMP-9 production and/or activation through the regulation of MMP-9 expression in mouse macrophage cells.

Diverse Mechanisms of Relaxin's Action in the Regulation of Smooth Muscles and Extracellular Matrix of Vasculature and Fibrosis (혈관과 섬유증의 평활근 및 세포외기질 조절에 대한 릴랙신의 다양한 작용기전)

  • Min, Gyesik
    • Journal of Life Science
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    • v.32 no.2
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    • pp.175-188
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    • 2022
  • Relaxin has been demonstrated to have regulatory functions on both the smooth muscle and extracellular matrix (ECM) of blood vessels and fibrotic organs. The diverse mechanisms by which relaxin acts on small resistance arteries and fibrotic organs, including the bladder, are reviewed here. Relaxin induces vasodilation by inhibiting the contractility of vascular smooth muscles and by increasing the passive compliance of vessel walls through the reduction of ECM components, such as collagen. The primary cellular mechanism whereby relaxin induces arterial vasodilation is mediated by the endothelium-dependent production of nitric oxide (NO) through the activation of RXFP1/PI3K, Akt phosphorylation, and eNOS. In addition, relaxin triggers different alternative pathways to enhance the vasodilation of renal and mesenteric arteries. In small renal arteries, relaxin stimulates the activation of the endothelial MMPs and EtB receptors and the production of VEGF and PlGF to inhibit myogenic contractility and collagen deposition, thereby bringing about vasodilation. Conversely, in small mesenteric arteries, relaxin augments bradykinin (BK)-evoked relaxation in a time-dependent manner. Whereas the rapid enhancement of the BK-mediated relaxation is dependent on IKCa channels and subsequent EDH induction, the sustained relaxation due to BK depends on COX activation and PGI2. The anti-fibrotic effects of relaxin are mediated by inhibiting the invasion of inflammatory immune cells, the endothelial-to-mesenchymal transition (EndMT), and the differentiation and activation of myofibroblasts. Relaxin also activates the NOS/NO/cGMP/PKG-1 pathways in myofibroblasts to suppress the TGF-β1-induced activation of ERK1/2 and Smad2/3 signaling and deposition of ECM collagen.

A Study on the Antibacterial Activity of Combined Administration of Jakyakgamcho-tang and Antibiotics Against MRSA (MRSA에 대한 작약감초탕과 항생제 병용투여의 항균활성에 관한 연구)

  • Dam Hee Kang;Ok Hwa Kang;Hee-Sung Chae;Dong Yeul Kwon
    • Korean Journal of Pharmacognosy
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    • v.54 no.2
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    • pp.72-79
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    • 2023
  • MRSA is Staphylococcus aureus resistant to β-lactam antibiotics, and is a worldwide infectious disease. Even with the discovery of new antibiotics, resistance develops rapidly, so new alternatives are needed. Jakyakgamcho-tang (JGT) is a combination of Jakyak and Gamcho, and has been mainly used as an antispasmodic and analgesic in oriental medicine. This study was conducted to find out whether there is an effect on MRSA in relation to the anti-inflammatory effect of JGT and the antibacterial effect of Jakyak and Gamcho found in previous studies. In this study, in order to investigate the antibacterial activity of JGT and the combined effect of existing antibiotics, after extracting JGT with 70% EtoH, the disc diffusion method, minimum inhibitory concentration (MIC), drug combination effect (FICI), and time-kill analysis (Time-kill assay), metabolic inhibition, Western blot and qRT-PCR analysis were used to confirm the antibacterial activity mechanism of MRSA of JGT. As a result of the experiment, all of MRSA showed antibacterial activity in JGT's disc diffusion method, and the MIC was 250-1000 ㎍/mL. When existing antibiotics and JGT were combined with drugs, most had synergy or partial synergy. In addition, it was confirmed that the degree of bacterial growth was suppressed over time when simultaneous administration for 24 hours. JGT showed a synergistic effect when administered together with the ATPase-inhibitor DCCD, suggesting that it affected the inhibition of ATPase. As a result of observing the expression of PBP2a, and hla protein in the JGT-treated group and the untreated control group through wstern blot, it was confirmed that the protein expression of the JGT-treated group was significantly suppressed, and the expression levels of mecA, mecR1 and hla genes were also suppressed during JGT treatment. was observed by qRT-PCR. Combining the results of the experiment, it can be seen that JGT has antibacterial activity in MRSA, and when combined with existing antibiotics, the effect was increased compared to treatment with the drug alone. This suggests that JGT can be an alternative to treatment for antibiotic resistance of MRSA.

Enhanced Antioxidative Potential by Silymarin Treatment through the Inductionof Nrf2/MAPK Mediated HO-1 Signaling Pathway in RAW 264.7 Cells (RAW 264.7 세포에서 Nrf2/MAPK 의 활성을 통한 HO-1 과발현에 의한 silymarin의 항산화 효과)

  • Hyun-Seo Yoon;Hyun An;Chung Mu Park
    • Journal of Life Science
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    • v.33 no.10
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    • pp.776-782
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    • 2023
  • Silymarin, which is derived from dried Silybum marianum (milk thistle) seeds and fruits, possesses various beneficial properties, such as hepatoprotective, antioxidative, anti-inflammatory, and anticancer activity. This research aimed to explore the antioxidative activity of silymarin against oxidative stress and understand its molecular mechanism in RAW 264.7 cells. The study employed cell viability and reactive oxygen species (ROS) formation assays and western blot analysis. The results demonstrated that silymarin effectively reduced intracellular ROS levels induced by lipopolysaccharide (LPS) in a dose-dependent manner without causing any cytotoxic effects. Moreover, silymarin treatment significantly upregulated the expression of heme oxygenase (HO)-1, a phase II enzyme known for its potent antioxidative activity. Additionally, silymarin treatment significantly induced the expression of nuclear factor-erythroid 2 p45-related factor (Nrf) 2, a transcription factor responsible for regulating antioxidative enzymes, which was consistent with the upregulated HO-1 expression. To investigate the involvement of key signaling pathways in maintaining cellular redox homeostasis against oxidative stress, the phosphorylation status of mitogen-activated protein kinase (MAPK) and phosphoinositide 3-kinase (PI3K) was estimated by western blot analysis. The results showed that silymarin potently induced HO-1 expression, which was mediated by the phosphorylation of p38 MAPK. To further validate the antioxidative potential of silymarin-induced HO-1 expression, tert-butyl hydroperoxide (t-BHP)-induced oxidative damage was employed and attenuated by silymarin treatment, as identified by a selective inhibitor for each signaling molecule. In conclusion, silymarin robustly enhanced antioxidative activity by inducing HO-1 via the Nrf2/p38 MAPK signaling pathway in RAW 264.7 cells.

C-reactive protein accelerates DRP1-mediated mitochondrial fission by modulating ERK1/2-YAP signaling in cardiomyocytes

  • Suyeon Jin;Chan Joo Lee;Gibbeum Lim;Sungha Park;Sang-Hak Lee;Ji Hyung Chung;Jaewon Oh;Seok-Min Kang
    • BMB Reports
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    • v.56 no.12
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    • pp.663-668
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    • 2023
  • C-reactive protein (CRP) is an inflammatory marker and risk factor for atherosclerosis and cardiovascular diseases. However, the mechanism through which CRP induces myocardial damage remains unclear. This study aimed to determine how CRP damages cardiomyocytes via the change of mitochondrial dynamics and whether survivin, an anti-apoptotic protein, exerts a cardioprotective effect in this process. We treated H9c2 cardiomyocytes with CRP and found increased intracellular ROS production and shortened mitochondrial length. CRP treatment phosphorylated ERK1/2 and promoted increased expression, phosphorylation, and translocation of DRP1, a mitochondrial fission-related protein, from the cytoplasm to the mitochondria. The expression of mitophagy proteins PINK1 and PARK2 was also increased by CRP. YAP, a transcriptional regulator of PINK1 and PARK2, was also increased by CRP. Knockdown of YAP prevented CRP-induced increases in DRP1, PINK1, and PARK2. Furthermore, CRP-induced changes in the expression of DRP1 and increases in YAP, PINK1, and PARK2 were inhibited by ERK1/2 inhibition, suggesting that ERK1/2 signaling is involved in CRP-induced mitochondrial fission. We treated H9c2 cardiomyocytes with a recombinant TAT-survivin protein before CRP treatment, which reduced CRP-induced ROS accumulation and reduced mitochondrial fission. CRP-induced activation of ERK1/2 and increases in the expression and activity of YAP and its downstream mitochondrial proteins were inhibited by TAT-survivin. This study shows that mitochondrial fission occurs during CRP-induced cardiomyocyte damage and that the ERK1/2-YAP axis is involved in this process, and identifies that survivin alters these mechanisms to prevent CRP-induced mitochondrial damage.