162 research outputs found

    The Role of Transforming Growth Factorβ (TGF-β)-activated Kinase 1 (TAK1) in Retinal Development

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    poster abstractPurpose: The formation of the retina is dependent on multiple transcription factors being expressed in the correct time and place. Transforming growth factor-β-activated kinase1 (TAK1), a serine threonine kinase, has been increasingly associated with regulation of proliferation, differentiation and apoptosis of many cell types both within and outside of the central nervous system. However, little is known about its role in development of the retina. Previous results from our lab have indicated that TAK1 is expressed throughout the developing retina; however activated TAK1 is found predominantly in the dividing progenitors of the early developing chick retina. Retinas injected with TAK1 inhibitor appeared to have an increase in progenitor population and a decrease in differentiating retinal ganglion cells. The present study evaluated the potential role of TAK1 in inducing apoptosis in the developing chick retina. Methods: Embryonic day 3(E3) chick retina were injected with vehicle and 1.0 M or 2.0 M concentration (5Z)-7-Oxozeaenol, an irreversible inhibitor of TAK1. 24 hours post inhibition the tissue was harvested. Immunohistochemistry (IHC) was performed to analyze the levels of cleaved caspase 3 expression, a protein activated during apoptosis. Nuclei stained with DAPI were used to quantify the number of cells expressing the caspase3. Lipopolysaccharide (LPS) treated adult, postnatal 30 (P30), mouse retina was used as a positive control for our IHC. Results: No difference in the level of cleaved (activated) caspase 3 immunolabel was found in vehicle-, 1.0 and 2.0 M inhibitor-injected retinas. Conclusion: Lack of cleaved caspase 3 immunolabel in TAK1-inhibited retinas indicates that TAK1 may not be playing any role in inducing cell death through apoptosis in the developing chick retina used in our study. These preliminary results suggest further research should be done to better understand its role in retinal development. Mentors: Teri Belecky-Adams and Sarika Tiwari, Center for Regenerative Biology and Medicine, IUPUI, Department of Biology, IUPU

    Cardiac STAT3 Deficiency Impairs Contractility and Metabolic Homeostasis in Hypertension

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    Signal transducer and activator of transcription 3 (STAT3) protects the heart from acute ischemic stress. However, the importance of STAT3 to the heart in chronic stress, such as hypertension, is not known. To study this, we used cardiomyocyte-targeted STAT3 knockout (KO) mice and ANG II infusion by osmotic minipumps. After 4 weeks, ANG II induced similar cardiac hypertrophy in wild type (WT) and cardiac Cre-expressing control (CTRL) mice with no impairment of cardiac function. In contrast, STAT3 KO mice exhibited reduced contractile function but similar hypertrophy to CTRL mice. Ejection fraction and fractional shortening decreased by 22.5% and 27.3%, respectively. Since STAT3 has direct protective effects on mitochondrial function, we examined rates of glucose and oleate oxidation by isolated perfused hearts using a Langendorff system. Hearts of ANG II-treated STAT3 KO and CTRL mice had similar rates of oleate oxidation as saline-infused WT mice. Rates of glucose oxidation were similar between hearts of WT plus saline and CTRL plus ANG II mice; however, glucose oxidation was increased by 66% in hearts of ANG II-treated STAT3 KO mice. The ratio of maximal ATP yield from glucose to fatty acid oxidation was 21.1 ± 3.1 in hearts of ANG II-treated STAT3 KO mice vs. 12.6 ± 2.2 in hearts of ANG II-treated CTRL mice. Lactate production was also elevated in hearts of ANG II-treated STAT3 KO mice by 162% compared to ANG II-treated CTRL mice. Our findings indicate that (1) STAT3 is important for maintaining contractile function and metabolic homeostasis in the hypertensive heart, and (2) STAT3 deficiency promotes a switch toward glucose utilization

    STAT3 and Endothelial Cell—Cardiomyocyte Dialog in Cardiac Remodeling

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    This article presents an overview of the central role of STAT3 in the crosstalk between endothelial cells and cardiac myocytes in the heart. Endothelial cell STAT3 has a key role in inflammation that underlies cardiovascular disease and impacts on cardiac structure and function. STAT3 in endothelial cells contributes to adverse cardiomyocyte genetic reprograming, for instance, during peripartum cardiomyopathy. Conversely, cardiomyocyte STAT3 is important for maintaining endothelial cell function and capillary integrity with aging and hypertension. In addition, STAT3 serves as a sentinel for stress in the heart. Recent evidence has revealed that the redox nature of STAT3 is regulated, and STAT3 is responsive to oxidative stress (ischemia-reperfusion) so as to induce protective genes. At the level of the mitochondrion, STAT3 is important in regulating reactive oxygen species (ROS) formation, metabolism, and mitochondrial integrity. STAT3 may also control calcium release from the ER so as to limit its subsequent uptake by mitochondria and the induction of cell death. Under normal conditions, some STAT3 localizes to intercalated discs of cardiomyocytes and serves to transmit pro-fibrotic gene induction signals in the nucleus with increased blood pressure. Further research is needed to understand how the sentinel role of STAT3 in both endothelial cells and cardiomyocytes is integrated in order to coordinate the response of the heart to both physiological and pathological demands

    Kinerja Yang Dihasilkan Dari Efek Pluntiran Pada Turbin Hidrokinetik Savonius Tornado Tanpa End Plate

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    Savonius Tornado Hydrokinetic Turbine has an optimal capture area, but is less able to transmit the thrust of water kinetic energy into electrical energy. The purpose of this study is to analyze the Savonius Tornado Hydrokinetic Turbine twisted without an end plate. The experimental method was carried out on the flume channel to compare the performance between the Conventional Savonius Hydrokinetic Turbine and the Savonius Tornado Turbine without an end plate by twisting the turbine blades 1/2D, 1/3D, 4/4D, where D is the width of the turbine end plate. This test will obtain the Coefficient of power (Cp), RPM, torque (τ) and TSR as parameters to see the turbine performance. This experimental study used a flow velocity (v) between 0.322 m/s - 0.507 m/s. The results of the study indicate that the Conventional Savonius Turbine produces a torque value of 0.040 Nm - 0.095 Nm, the 1/2D Savonius Tornado turbine without a twisted end plate produces a torque value of 0.051 Nm - 0.194 Nm, the 3/4D Savonius Tornado turbine without a twisted end plate produces a torque value of 0.049 Nm - 0.155 Nm, and the 4/4D Savonius Tornado turbine without a twisted end plate produces a torque value of 0.044 Nm - 0.168 Nm. The Savonius Tornado Hydrokinetic Turbine is twisted without end plates, resulting in increased turbine performanc

    Bruton's Tyrosine Kinase Inhibition Attenuates the Cardiac Dysfunction Caused by Cecal Ligation and Puncture in Mice

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    Sepsis is one of the most prevalent diseases in the world. The development of cardiac dysfunction in sepsis results in an increase of mortality. It is known that Bruton's tyrosine kinase (BTK) plays a role in toll-like receptor signaling and NLRP3 inflammasome activation, two key components in the pathophysiology of sepsis and sepsis-associated cardiac dysfunction. In this study we investigated whether pharmacological inhibition of BTK (ibrutinib 30 mg/kg and acalabrutinib 3 mg/kg) attenuates sepsis associated cardiac dysfunction in mice. 10-week old male C57BL/6 mice underwent CLP or sham surgery. One hour after surgery mice received either vehicle (5% DMSO + 30% cyclodextrin i.v.), ibrutinib (30 mg/kg i.v.), or acalabrutinib (3 mg/kg i.v.). Mice also received antibiotics and an analgesic at 6 and 18 h. After 24 h, cardiac function was assessed by echocardiography in vivo. Cardiac tissue underwent western blot analysis to determine the activation of BTK, NLRP3 inflammasome and NF-\u3baB pathway. Serum analysis of 33 cytokines was conducted by a multiplex assay. When compared to sham-operated animals, mice subjected to CLP demonstrated a significant reduction in ejection fraction (EF), fractional shortening (FS), and fractional area change (FAC). The cardiac tissue from CLP mice showed significant increases of BTK, NF-\u3baB, and NLRP3 inflammasome activation. CLP animals resulted in a significant increase of serum cytokines and chemokines (TNF-\u3b1, IL-6, IFN-\u3b3, KC, eotaxin-1, eotaxin-2, IL-10, IL-4, CXCL10, and CXCL11). Delayed administration of ibrutinib and acalabrutinib attenuated the decline of EF, FS, and FAC caused by CLP and also reduced the activation of BTK, NF-\u3baB, and NLRP3 inflammasome. Both ibrutinib and acalabrutinib significantly suppressed the release of cytokines and chemokines. Our study revealed that delayed intravenous administration of ibrutinib or acalabrutinib attenuated the cardiac dysfunction associated with sepsis by inhibiting BTK, reducing NF-\u3baB activation and the activation of the inflammasome. Cytokines associated with sepsis were significantly reduced by both BTK inhibitors. Acalabrutinib is found to be more potent than ibrutinib and could potentially prove to be a novel therapeutic in sepsis. Thus, the FDA-approved BTK inhibitors ibrutinib and acalabrutinib may be repurposed for the use in sepsis

    The CXCL10/CXCR3 Axis and Cardiac Inflammation: Implications for Immunotherapy to Treat Infectious and Noninfectious Diseases of the Heart.

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    Accumulating evidence reveals involvement of T lymphocytes and adaptive immunity in the chronic inflammation associated with infectious and noninfectious diseases of the heart, including coronary artery disease, Kawasaki disease, myocarditis, dilated cardiomyopathies, Chagas, hypertensive left ventricular (LV) hypertrophy, and nonischemic heart failure. Chemokine CXCL10 is elevated in cardiovascular diseases, along with increased cardiac infiltration of proinflammatory Th1 and cytotoxic T cells. CXCL10 is a chemoattractant for these T cells and polarizing factor for the proinflammatory phenotype. Thus, targeting the CXCL10 receptor CXCR3 is a promising therapeutic approach to treating cardiac inflammation. Due to biased signaling CXCR3 also couples to anti-inflammatory signaling and immunosuppressive regulatory T cell formation when activated by CXCL11. Numbers and functionality of regulatory T cells are reduced in patients with cardiac inflammation, supporting the utility of biased agonists or biologicals to simultaneously block the pro-inflammatory and activate the anti-inflammatory actions of CXCR3. Other immunotherapy strategies to boost regulatory T cell actions include intravenous immunoglobulin (IVIG) therapy, adoptive transfer, immunoadsorption, and low-dose interleukin-2/interleukin-2 antibody complexes. Pharmacological approaches include sphingosine 1-phosphate receptor 1 agonists and vitamin D supplementation. A combined strategy of switching CXCR3 signaling from pro- to anti-inflammatory and improving Treg functionality is predicted to synergistically lessen adverse cardiac remodeling

    Studi Kuat Tarik dan Biodegradasi Bioplastik Pati Jagung dengan Sorbitol dan Selulosa Serabut Kelapa

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    Menurut data Kementrian Lingkungan Hidup dan Kehutanan tahun 2022, Indonesia merupakan penghasil sampah plastik terbesar kedua di dunia dengan volume mencapai 70 juta ton. Sampah plastik konvensional, yang sulit terurai menyebabkan pencemaran lingkungan, sehingga dibutuhkan alternatif ramah lingkungan seperti plastik biodegradable berbahan dasar pati dan selulosa. Tujuan penelitian ini adalah untuk mengetahui pengaruh suhu, perbedaan rasio selulosa dan pati terhadap waktu biodegradasi, dan kuat tarik plastik biodegradable. Penelitian ini dibagi menjadi 3 tahap. Tahap pertama, pretreatment serabut kelapa untuk menghasilkan ukuran 50 mesh. Tahap kedua, mengekstraksi selulosa dari serabut kelapa dengan NaOH 98% dan 100 mL aquades dan tahap akhir yaitu pembuatan bioplastik. Hasil proses ektraksi dipanaskan sambil diaduk menggunakan magnetic strirer hotplate dan ditambahkan sorbitol, lalu dicetak membentuk film. Analisis yang dilakukan adalah uji kuat tarik menggunakan alat tensile system, serta uji biodegradasi yang bertujuan untuk mengetahui lama bioplastik terurai. Hasil kuat tarik terbaik didapatkan pada variabel pati 10 g, sorbitol 2,7 g dan pada suhu 65°C sebesar 48,550 N/mm2. Hasil uji kuat tarik tersebut sudah memenuhi standar SNI 7818:2014 tentang standar kuat tarik pada plastik biodegradable yaitu minimal 13,7 (N/mm2). Hasil biodegradasi terbaik didapatkan pada variabel pati 10 g, sorbitol 2,7 g dan suhu 75°C sebesar 92%. Pada hasil tersebut sesuai standard SNI 7818:2014 tentang standar biodegradasi plastik biodegradable yaitu tergradasi>60% selama 1 minggu (7 hari)

    Improving membrane based multiplex immunoassays for semi-quantitative detection of multiple cytokines in a single sample

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    Background: Inflammatory mediators can serve as biomarkers for the monitoring of the disease progression or prognosis in many conditions. In the present study we introduce an adaptation of a membrane-based technique in which the level of up to 40 cytokines and chemokines can be determined in both human and rodent blood in a semi-quantitative way. The planar assay was modified using the LI-COR (R) detection system (fluorescence based) rather than chemiluminescence and semi-quantitative outcomes were achieved by normalizing the outcomes using the automated exposure settings of the Odyssey readout device. The results were compared to the gold standard assay, namely ELISA. Results: The improved planar assay allowed the detection of a considerably higher number of analytes (n = 30 and n = 5 for fluorescent and chemiluminescent detection, respectively). The improved planar method showed high sensitivity up to 17 pg/ml and a linear correlation of the normalized fluorescence intensity with the results from the ELISA (r = 0.91). Conclusions: The results show that the membrane-based technique is a semi-quantitative assay that correlates satisfactorily to the gold standard when enhanced by the use of fluorescence and subsequent semi-quantitative analysis. This promising technique can be used to investigate inflammatory profiles in multiple conditions, particularly in studies with constraints in sample sizes and/or budget

    PEMANFAATAN TEKNOLOGI MEMBRAN REVERSE OSMOSIS (RO) UNTUK PENGOLAHAN AIR BERSIH DI KAMPUNG NELAYAN, DESA KEDUNGPANDAN, KECAMATAN JABON, KABUPATEN SIDOARJO

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    Abstract. The Fishermen's Village in Tlocor Hamlet, Kedungpandan Village, Jabon District, is one of the coastal areas in Sidoarjo Regency, which has several islands. This has become an opportunity for most local residents to become fishermen and a tourist spot. Behind its natural beauty, the people of Dusun Tlocor still lack clean water, and the majority of their mothers are only housewives. They have to buy water for drinking and cooking because it is difficult to find clean water, even though it is close to the islands. The purpose of this Capacity Strengthening Program (PPK) activity is to find out the impact of implementing reverse osmosis membrane (MRO) technology on the costs incurred to buy clean water and increase the creativity of the surrounding community towards processed food as a special food for Tlocor Marine Tourism. The target of this activity is to help people get clean water more easily and reduce expenses for purchasing clean water. The implementation will be carried out from June to August 2022. The initial stage is a location survey by visiting the fishermen's chief's house to socialize the work program to be implemented. The next stage is procuring tools and installing WTP and MRO tools, then providing assistance to members of the fisherman group on how to use and maintain WTP and MRO tools. The result of this activity is an increase in the quality of clean water that can be utilized by the community. Communities can easily obtain clean water for drinking, sanitation, and cooking purposes.Abstrak. Kampung Nelayan di Dusun Tlocor, Desa Kedungpandan, Kecamatan Jabon merupakan salah satu daerah pesisir di Kabupaten Sidoarjo yang memiliki beberapa pulau hal itu menjadi peluang sebagian besar warga sekitar untuk menjadi nelayan dan sebagai tempat wisata. Dibalik keindahan alamnya, masyarakat Dusun Tlocor masih kekurangan air (bersih) mayoritas ibu-ibunya hanya sebagai IRT. Air untuk minum dan masak meraka harus membeli, karna sulit mencari air bersih walaupun dekat dengan pulau-pulau. Tujuan dari kegiataan Program Penguatan Kapasitas (PPK) ini adalah mengetahui dampak yang ditimbulkan setelah dilakukannya penerapan teknologi Membran Reverse Osmosis (MRO) tehadap biaya yang dikeluarkan untuk membeli air bersih serta meningkatkan kreativitas masyarakat sekitar terhadap olahan pangan sebagai makanan khas Wisata Bahari Tlocor. Target kegiatan ini adalah masyarakat dapat memperoleh air bersih dengan lebih mudah dan mengurangi biaya pengeluaran untuk pembelian air bersih. Pelaksanaan dilakukan pada bulan Juni sampai Agustus 2022, tahapan awal yaitu survei lokasi dengan mengunjungi rumah ketua nelayan untuk melakukan sosialisasi program kerja yang akan dilaksanakan, tahapan berikutnya pengadaan alat dan pemasangan Alat WTP & MRO, kemudian dilakukan pendampingan kepada anggota kelompok nelayan tentang cara penggunaan dan pemeliharaan alat WTP dan MRO. Hasil dari kegiatan ini adalah meningkatnya kualitas air bersih yang dapat dimanfaatkan oleh masyarakat. Masyarakat dapat memperoleh air bersih dengan mudah untuk keperluan air minum, air sanitasi, dan memasak.
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