scholarly journals In vitro and ex vivo anticolorectal cancer effects of ethanolic Psidium guajava (Guava) leaf extract through inhibition of angiogenesis and colony formation

2018 ◽  
Vol 9 ◽  
Author(s):  
Bronwyn Lok ◽  
AMS Abdul Majid ◽  
Hussein M. Baharetha ◽  
Muhammad Asif
Author(s):  
Lounh Theo Phong ◽  
Nha Thoy Lum

The aim of this research was to evaluate the effects on the growth of Staphylococcus Aureus bacteria in vitro of antibacterial activity of guayava leaf extract (Psidium guajava L.) and guavava leaf extract impact on the growth of staphylococcus Aureus bacteria at different laboratory concentrations. In this experiment, S. Aureus bacteria are being treated to guava leaf extract to identify the lowest inhibitory power for well techniques, and the results have been recorded. The Guava leaf extract (Psidium Guajava L) against Staphylococcus aureus was found to have an inhibitory zone diameter of mm in the absence of tetracycline, and DMSO as a negative control. Findings were observed using the disk diffusion technique or paper disc with concentrations of 1 percent, 3 percent, 5 percent, and 7 percent. Saponins, saponins, alkaloids, and flavonoids found in guava leaves are responsible for their antibacterial effects. Saponins have the potential to disturb the integrity of bacterial cell membranes. This results in bacterial cell membrane destruction, releasing essential components from the cell


Blood ◽  
2015 ◽  
Vol 126 (23) ◽  
pp. 779-779
Author(s):  
Maegan L. Capitano ◽  
Nirit Mor-Vaknin ◽  
Maureen Legendre ◽  
Scott Cooper ◽  
David Markovitz ◽  
...  

Abstract DEK is a nuclear DNA-binding protein that has been implicated in the regulation of transcription, chromatin remodeling, and mRNA processing. Endogenous DEK regulates hematopoiesis, as BM from DEK-/- mice manifest increased hematopoietic progenitor cell (HPC) numbers and cycling status and decreased long-term and secondary hematopoietic stem cell (HSC) engrafting capability (Broxmeyer et al., 2012, Stem Cells Dev., 21: 1449; 2013, Stem Cells, 31: 1447). Moreover, recombinant mouse (rm) DEK inhibits HPC colony formation in vitro. We now show that rmDEK is myelosuppressive in vitro in an S-phase specific manner and reversibly decreases numbers (~2 fold) and cycling status of CFU-GM, BFU-E, and CFU-GEMM in vivo, with DEK-/- mice being more sensitive than control mice to this suppression. In contrast, in vivo administration of rmDEK to wild type and DEK-/- mice enhanced numbers of phenotypic LT-HSC. This suggests that DEK may enhance HSC numbers by blocking production of HPCs. We thus assessed effects of DEK on ex vivo expansion of human CD34+ cord blood (CB) and mouse Lin- BM cells stimulated with SCF, Flt3 ligand, and TPO. DEK significantly enhanced ex vivo expansion of rigorously-defined HSC by ~3 fold both on day 4 (~15 fold increase from day 0) and 7 (~29 fold increase from day 0) when compared to cells expanded without DEK. Expanding HSC with DEK also resulted in a decrease in the percentage of apoptotic HSC. Further studies were done to better define how DEK works on HSC and HPC. As extracellular DEK can bind to heparan sulfate proteoglycans (HSPG), become internalized, and then remodel chromatin in non-hematopoietic cells in vitro (Kappes et al., 2011, Genes Dev., 673; Saha et al., 2013, PNAS, 110: 6847), we assessed effects of DEK on the heterochromatin marker H3K9He3 in the nucleus of purified mouse lineage negative, Sca-1 positive, c-Kit positive (LSK) BM cells by imaging flow cytometry. DEK enhanced the presence of H3K9Me3 in the nucleus of DEK-/- LSK cells, indicating that rmDEK can be internalized by LSK cells and mediate heterochromatin formation. We also investigated whether inhibiting DEK's ability to bind to HSPG would block the inhibitory function of DEK in HPC. Blocking the synthesis of, the surface expression of, and the binding capability of HSPG blocked the inhibitory effect of DEK on colony formation. Blocking the ability of DEK to bind to HSPG also blocks the expansion of HSC in ex vivo expansion assays, suggesting that DEK mediates its function in both HSC and HPC by binding to HSPG but with opposing effects. To further evaluate the biological role of rmDEK, we utilized single-stranded anti-DEK aptamers that inactivate its function. These aptamers, but not their control, neutralized the inhibitory effect of rmDEK on HPC colony formation. Moreover, treating BM cells in vitro with truncated rmDEK created by incubating DEK with the enzyme DPP4 (DEK has targeted truncation sites for DPP4) eliminated the inhibitory effects of DEK, suggesting that DEK must be in its full- length form in order to perform its function. Upon finding that DEK has a Glu-Leu-Arg (ELR) motif, similar to that of CXC chemokines such as IL-8, and as DEK is a chemoattractant for mature white blood cells, we hypothesized that DEK may manifest at least some of its actions through CXCR2, the receptor known to bind and mediate the actions of IL-8 and MIP-2. In order to examine if this is indeed the case, we first confirmed expression of CXCR2 on the surface of HSC and HPC and then determined if neutralizing CXCR2 could block DEK's inhibitory function in HPC. BM treated in vitro with rmDEK, rhIL-8, or rmMIP-2 inhibited colony formation; pretreating BM with neutralizing CXCR2 antibodies blocked the inhibitory effect of these proteins. DEK inhibition of CFU-GM colony formation is dependent on Gai-protein-coupled receptor signaling as determined through the use of pertussis toxin, which is a mechanism unique to DEK, as we have previously reported that IL-8 and MIP-1a are insensitive to the inhibitory effects of pertussis toxin. Blocking the ability of DEK to bind to CXCR2 also inhibited the expansion of HSC in an ex vivo expansion assay. This suggests that DEK binds to CXCR2, HSPG or both to mediate its function on HPC and HSC, enhancing HSC but decreasing HPC numbers. Therefore, DEK may be a crucial regulatory determinant of HSC/HPC function and fate decision that is utilized to enhance ex vivo expansion of HSC. Disclosures No relevant conflicts of interest to declare.


2007 ◽  
Vol 4 (2) ◽  
pp. 115
Author(s):  
Sri Nuryati ◽  
. Rahman ◽  
. Taukhid

<p>An effort to prevent aquatic fungi  <em>Aphanomyces</em> sp. infection on fish using natural material can be an economically way, easy to find the materials, easy to apply and safe for environment.  The antifungal potency and efficacy of scalded-leaf extract of <em>Terminalia cattapa</em>, <em>Piper betle</em>, <em>Psidium guajava</em> and <em>Andrographis peniculata</em> on prevention of <em>Aphanomyces</em> sp. growth in vitro in GYA medium.  Scalding was performed in the water at 50°C. Concentration of leaf extracts tested was 0, 10, 20, 40 and 80 g/L.  The results of study showed that <em>Terminalia cattapa</em> in a dosage of 40 g/L had the best prevention activity, followed by <em>Piper betle</em> in the same dosage.  <em>Psidium guajava</em> and <em>Andrographis peniculata</em> had no prevention activity on growth of <em>Aphanomyces</em> sp.</p> <p>Keywords: antifungal, <em>Terminalia cattapa</em>, <em>Piper betle</em>, <em>Psidium guajava</em>, <em>Andrographis peniculata</em> growth, <em>Aohanomyces</em> sp.</p> <p> </p> <p>ABSTRAK</p> <p>Upaya penanggulangan infeksi cendawan akuatik <em>Aphanomyces</em> sp. pada ikan menggunakan bahan alami dapat menjadi cara yang ekonomis ekonomis, bahan mudah didapat, mudah diterapkan dan aman bagi lingkungan. Potensi antifungi dan efektivitas ekstrak seduh daun ketapang (<em>Terminalia cattapa</em>), sirih<em> </em>(<em>Piper betle</em>), jambu biji (<em>Psidium guajava</em>) dan sambiloto (<em>Andrographis peniculata</em>) terhadap penghambatan pertumbuhan <em>Aphanomyces </em>sp. dilakukan secara <em>in vitro</em> dalam media biakan GYA. Penyeduhan dilakukan menggunakan pelarut air dengan suhu 50°C. Konsentrasi yang diuji adalah 0, 10, 20, 40 dan 80 gr/L untuk masing-masing bahan. Aktivitas penghambatan paling baik terhadap cendawan diperoleh dari ekstrak seduh daun ketapang 40 g/L dan diikuti oleh ekstrak seduh daun sirih dengan konsentrasi yang sama.  Jambu biji dan sambiloto tidak menunjukkan aktivitas penghambatan terhadap pertumbuhan <em>Aphanomyces</em> sp.</p> <p>Kata kunci: antifungi, ketapang, sirih, jambu biji, sambiloto dan A<em>phanomyces</em> sp.</p>


2020 ◽  
Vol 2 (1) ◽  
pp. 62-69
Author(s):  
Riyanto

Fish is kinds of food that easy to spoil. High protein content in fish makes the food is a good medium for microorganisms. People commonly buy fish for consumption, however, not all fish are consumed at the same time. Fishes were stored in freezer for several days or preserved with additional chemical preservation. The use of organic preservatives have no harm. This paper discussed guava (Psidium guajava L) leave as natural fish preservation. The objectives were to analyze the potency of the leaves as a natural preservation for mackerel fish (Rastrelliger sp.). Fime parameters used to determine the fish quality as follows : gills, eye, texture, odour and mucilage. The treatments were leaf methanolic extract with doses 0, 20, 40, 60 and 80%. Data were taken on from 1 to 5 days after storage. The results showed that (i) Fish quality was decline and start to depraved at 2 day storage, especially at control treatment (0% extract). Treatment at doses 60 and 80%, the fish quality were still relatively good over 3 days storage. Even though the fish samples have been starting spoilage, those fishes were still available to be consumed. At the same time, with the other treatment, the fish samples have been spoiled and no more available to be consumed. However, at 5th day of storage, all samples at all treatments were spoiled. Overall results, it can be concluded that extract of guava leaves can be has as fish preservativedosage


2020 ◽  
Author(s):  
Amber Blaauboer ◽  
Stephanie Booy ◽  
Peter M. van Koetsveld ◽  
Bas Karels ◽  
Fadime Dogan ◽  
...  

Abstract Background: Adjuvant gemcitabine for pancreatic cancer has limited efficacy in the clinical setting. Impaired drug metabolism is associated with treatment resistance. We aimed to evaluate the chemosensitising effect of interferon-beta (IFN-β).Methods: BxPC-3, CFPAC-1, and Panc-1 cells were pre-treated with IFN-β followed by gemcitabine monotherapy. The effect on cell growth, colony formation, and cell cycle was determined. RT-qPCR was used to measure gene expression. BxPC-3 cells were used in a heterotopic subcutaneous mouse model. Results: IFN-β increased sensitivity to gemcitabine (4-, 7.7-, and 1.7-fold EC50 decrease in BxPC-3, CFPAC-1, and Panc-1, respectively; all P<0.001). Findings were confirmed when assessing colony formation. The percentage of cells in the S-phase was significantly increased after IFN-β treatment only in BxPC-3 and CFPAC-1 by 12% and 7%, respectively (p<0.001 and p<0.05, respectively). Thereby, IFN-β upregulated expression of the drug transporters SLC28A1 in BxPC-3 (252%) and SLC28A3 in BxPC-3 (127%) and CFPAC-1 (223%) (all p<0.001). In vivo, combination therapy reduced tumor volume with 45% (P=0.01). Both ex vivo and in vivo data demonstrate a significant reduction in the number of proliferating cells, whereas apoptosis was increased. Conclusions: For the first time, we validated the chemosensitising effects of IFN-β when combined with gemcitabine in vitro, ex vivo, and in vivo. This was driven by cell cycle modulation and associated with an upregulation of genes involving intracellular uptake of gemcitabine. The use of IFN-β in combination with gemcitabine seems promising in patients with pancreatic cancer and needs to be further explored.


2020 ◽  
Vol 10 (7) ◽  
pp. 293
Author(s):  
AMSAbdul Majid ◽  
Bronwyn Lok ◽  
Doblin Sandai ◽  
HusseinM Baharetha ◽  
VMansoureh Nazari ◽  
...  

BMC Cancer ◽  
2020 ◽  
Vol 20 (1) ◽  
Author(s):  
Amber Blaauboer ◽  
Stephanie Booy ◽  
Peter M. van Koetsveld ◽  
Bas Karels ◽  
Fadime Dogan ◽  
...  

Abstract Background Adjuvant gemcitabine for pancreatic cancer has limited efficacy in the clinical setting. Impaired drug metabolism is associated with treatment resistance. We aimed to evaluate the chemosensitising effect of interferon-beta (IFN-β). Methods BxPC-3, CFPAC-1, and Panc-1 cells were pre-treated with IFN-β followed by gemcitabine monotherapy. The effect on cell growth, colony formation, and cell cycle was determined. RT-qPCR was used to measure gene expression. BxPC-3 cells were used in a heterotopic subcutaneous mouse model. Results IFN-β increased sensitivity to gemcitabine (4-, 7.7-, and 1.7-fold EC50 decrease in BxPC-3, CFPAC-1, and Panc-1, respectively; all P < 0.001). Findings were confirmed when assessing colony formation. The percentage of cells in the S-phase was significantly increased after IFN-β treatment only in BxPC-3 and CFPAC-1 by 12 and 7%, respectively (p < 0.001 and p < 0.05, respectively). Thereby, IFN-β upregulated expression of the drug transporters SLC28A1 in BxPC-3 (252%) and SLC28A3 in BxPC-3 (127%) and CFPAC-1 (223%) (all p < 0.001). In vivo, combination therapy reduced tumor volume with 45% (P = 0.01). Both ex vivo and in vivo data demonstrate a significant reduction in the number of proliferating cells, whereas apoptosis was increased. Conclusions For the first time, we validated the chemosensitising effects of IFN-β when combined with gemcitabine in vitro, ex vivo, and in vivo. This was driven by cell cycle modulation and associated with an upregulation of genes involving intracellular uptake of gemcitabine. The use of IFN-β in combination with gemcitabine seems promising in patients with pancreatic cancer and needs to be further explored.


Author(s):  
I Wayan Sudira ◽  
I Made Merdana ◽  
Suci Nur Qurani

Guava plants (Psidium guajava L) are fruit plants originating from South America and can thrive in the territory of Indonesia. Now the biggest center for guava cultivation is spread in DKI Jakarta, West Java, Central Java, East Java, Yogyakarta, Bali, West Nusa Tenggara, Sumatra and Kalimantan. In addition to taking the fruit, guava leaves are also used as a traditional medicine for the treatment of diarrhea in human and animals. This study aims to identify active compounds in guava leaves. That is a secondary  metabolites with pharmacological effects as anti diarrhea such as flavonoid, alkaloid, tannins and essential oils. The leaves sample used in this study were taken from farmers in the West Denpasar area, Bali. Extraction of guava leaf leaves using 96% ethanol, and phytochemical analysis was carried out to detect the presence of active compounds. The data obtained is presented and analyzed descriptively qualitatively. The results showed that the ethanol extract of guava leaves contained active compound inclaude steroid/triterpenoid, phenolics, alkaloids, flavonoids, saponins and tannins. It can be concluded that guava leaf extract contains are potential antidiarrheal


2021 ◽  
Vol 6 (2) ◽  
pp. 48-59
Author(s):  
Rissa Amelia ◽  
Esti Harpeni ◽  
Hilma Putri Fidyandini

This study aims to analyze the effect of the various concentration of guava leaf extract (Psidium guajava Linnaeus) on the prevention of Motile Aeromonas Septicemia disease in common carp (Cyprinus carpio Linnaeus). In a total of 150 common carp, length 9-11 cm with a density of 10 carps/aquarium. This study used a completely randomized design through 5 treatments, each treatment has 3 replications, namely (K+) consists of without guava Psidium guajava leaf extracts and without bacteria-infection Aeromonas hydrophila, (K-) consists of without guava Psidium guajava leaf extracts with bacteria-infection Aeromonas hydrophila, (A) the application of 125 ppm guava Psidium guajava leaf extracts, (B) the application of 250 ppm guava leaf extracts, (C) the application of 500 ppm guava Psidium guajava leaf extracts for 23 days. The parameters observed total of leukocytes, differensial leukocytes, hematocrit levels, erythrocyte, hemoglobin, phagocytic activity (AF), phagocytic index (IF), relative percent survival (RPS), survival rate (SR) and water quality. Data were analyzed with Anova 95% confidence interval and continued with Duncan test. The parameter also showed a significant result (P<0,05) with the application of guava Psidium guajava leaf extracts to the total leukocytes, differensial leukocytes, erythrocyte, hemoglobin, phagocytic activity, phagocytic index and relative percent survival. The results of this research indicate the concentration of 250 ppm guava Psidium guajava leaf extracts is the optimum application to increase common carp non-spesific immune responses.


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