280 research outputs found

    The Deepwater Horizon Accident

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    The overall objective of this report is to document and analyze the series of events leading up to the explosion of the Deepwater Horizon and the responses to the explosion with regard to the safety measures and protocols followed during the accident. The history of BP is discussed with regard to accidents caused by failure to comply with established safety procedures, including the Texas City Refinery Explosion in 2005, the Alaskan Oil Spill in 2006, and then the eventual Deepwater Horizon explosion in 2010. An analysis of these events show that negligence and malpractice conducted on BP’s part led to the aforementioned disasters. This foreshadows the events of the Macondo well in which negligence (on both BP’s and the United States Government’s part) and financial stress induced the failure of mechanical barriers to seeping hydrocarbons into the drill pipe. Though the Deepwater Horizon rig belonged to Transocean and the cement job was performed by Halliburton, the lease operator for the Macondo well was BP and thusly is assigned an overwhelming majority of the blame for the catastrophic explosion. At least 8 layers of safety were breached, demonstrating a severe lack of responsibility on behalf of BP and the personnel aboard the Deepwater Horizon. Following the explosion, the United States Government and the public had an ever-increasing tension-filled relationship with BP as the well gushed oil at an average of 70,000 barrels of oil per day for 87 days. Despite BP desiring to be transparent with the public and the government, BP was ultimately fined billions of dollars in damages and lost wages. Even though the spill has been capped and cleanup efforts have made considerable progress, the reputation of BP will never be what it used to be, especially after the two previous disasters before the explosion of Deepwater Horizon. Its status as one of the leading oil producers in the world is forever tarnished after this accident. A similar accident occurring in Bhopal, India in 1984 is also analyzed. Though the accident in Bhopal involves the toxic and fatal release methyl isocyanate (MIC) vapors instead of flammable hydrocarbons, analogues between the Bhopal incident and the Deepwater Horizon incident are readily observed. Both incidents involve the responsible company not following proper safety measures due to financial stress and negligence. While BP is being held fully accountable by the United States Government, the former company Union Carbide did not suffer nearly the same amount of punishment for thousands of victims the Bhopal incident claimed. Nevertheless, both incidents reveal the consequences of malpractice and negligence on behalf of the operating company. To ensure that the engineering profession is not tainted by theses travesties, stricter and more thorough practices of safety measures and procedures must be followed in future engineering endeavors

    Breast Cancer Cell Invasion into a Three Dimensional Tumor-Stroma Microenvironment

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    In this study, to model 3D chemotactic tumor-stroma invasion in vitro, we developed an innovative microfluidic chip allowing side-by-side positioning of 3D hydrogel-based matrices. We were able to (1) create a dual matrix architecture that extended in a continuous manner, thus allowing invasion from one 3D matrix to another, and (2) establish distinct regions of tumor and stroma cell/ECM compositions, with a clearly demarcated tumor invasion front, thus allowing us to quantitatively analyze progression of cancer cells into the stroma at a tissue or single-cell level. We showed significantly enhanced cancer cell invasion in response to a transient gradient of epidermal growth factor (EGF). 3D tracking at the single-cell level displayed increased migration speed and persistence. Subsequently, we analyzed changes in expression of EGF receptors, cell aspect ratio, and protrusive activity. These findings show the unique ability of our model to quantitatively analyze 3D chemotactic invasion, both globally by tracking the progression of the invasion front, and at the single-cell level by examining changes in cellular behavior and morphology using high-resolution imaging. Taken together, we have shown a novel model recapitulating 3D tumor-stroma interactions for studies of real-time cell invasion and morphological changes within a single platform.National Science Foundation (U.S.) (1510700

    Analysis of the essential oils of Salvia Libanotica and Origanum Syriacum

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    ABSTRACT Essential oils (EO's) of Salvia libanotica and Origanum syriacum grown in Lebanon were extracted by two different techniques; hydrodistillation and cold solvents extraction using different solvents systems according to their polarity. The essential oil was analyzed using GC/MS. The results identified 35 constituents in each of Salvia Libanotica and Origanum syriacum extracts

    The activity status of cofilin is directly related to invasion, intravasation, and metastasis of mammary tumors

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    Understanding the mechanisms controlling cancer cell invasion and metastasis constitutes a fundamental step in setting new strategies for diagnosis, prognosis, and therapy of metastatic cancers. LIM kinase1 (LIMK1) is a member of a novel class of serine–threonine protein kinases. Cofilin, a LIMK1 substrate, is essential for the regulation of actin polymerization and depolymerization during cell migration. Previous studies have made opposite conclusions as to the role of LIMK1 in tumor cell motility and metastasis, claiming either an increase or decrease in cell motility and metastasis as a result of LIMK1 over expression (Zebda, N., O. Bernard, M. Bailly, S. Welti, D.S. Lawrence, and J.S. Condeelis. 2000. J. Cell Biol. 151:1119–1128; Davila, M., A.R. Frost, W.E. Grizzle, and R. Chakrabarti. 2003. J. Biol. Chem. 278:36868–36875; Yoshioka, K., V. Foletta, O. Bernard, and K. Itoh. 2003. Proc. Natl. Acad. Sci. USA. 100:7247–7252; Nishita, M., C. Tomizawa, M. Yamamoto, Y. Horita, K. Ohashi, and K. Mizuno. 2005. J. Cell Biol. 171:349–359). We resolve this paradox by showing that the effects of LIMK1 expression on migration, intravasation, and metastasis of cancer cells can be most simply explained by its regulation of the output of the cofilin pathway. LIMK1-mediated decreases or increases in the activity of the cofilin pathway are shown to cause proportional decreases or increases in motility, intravasation, and metastasis of tumor cells

    Cofilin determines the migration behavior and turning frequency of metastatic cancer cells

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    We have investigated the effects of inhibiting the expression of cofilin to understand its role in protrusion dynamics in metastatic tumor cells, in particular. We show that the suppression of cofilin expression in MTLn3 cells (an apolar randomly moving amoeboid metastatic tumor cell) caused them to extend protrusions from only one pole, elongate, and move rectilinearly. This remarkable transformation was correlated with slower extension of fewer, more stable lamellipodia leading to a reduced turning frequency. Hence, the loss of cofilin caused an amoeboid tumor cell to assume a mesenchymal-type mode of movement. These phenotypes were correlated with the loss of uniform chemotactic sensitivity of the cell surface to EGF stimulation, demonstrating that to chemotax efficiently, a cell must be able to respond to chemotactic stimulation at any region on its surface. The changes in cell shape, directional migration, and turning frequency were related to the re-localization of Arp2/3 complex to one pole of the cell upon suppression of cofilin expression

    The Chemotactic Defect in Wiskott-Aldrich Syndrome Macrophages Is Due to the Reduced Persistence of Directional Protrusions

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    Wiskott-Aldrich syndrome protein (WASp) is an actin nucleation promoting factor that is required for macrophages to directionally migrate towards various chemoattractants. The chemotaxis defect of WASp-deficient cells and its activation by Cdc42 in vivo suggest that WASp plays a role in directional sensing, however, its precise role in macrophage chemotaxis is still unclear. Using shRNA-mediated downregulation of WASp in the murine monocyte/macrophage cell line RAW/LR5 (shWASp), we found that WASp was responsible for the initial wave of actin polymerization in response to global stimulation with CSF-1, which in Dictyostelium discoideum amoebae and carcinoma cells has been correlated with the ability to migrate towards chemoattractants. Real-time monitoring of shWASp cells, as well as WASp−/− bone marrow-derived macrophages (BMMs), in response to a CSF-1 gradient revealed that the protrusions from WASp-deficient cells were directional, showing intact directional sensing. However, the protrusions from WASp-deficient cells demonstrated reduced persistence compared to their respective control shRNA and wild-type cells. Further examination showed that tyrosine phosphorylation of WASp was required for both the first wave of actin polymerization following global CSF-1 stimulation and proper directional responses towards CSF-1. Importantly, the PI3K, Rac1 and WAVE2 proteins were incorporated normally in CSF-1 – elicited protrusions in the absence of WASp, suggesting that membrane protrusion driven by the WAVE2 complex signaling is intact. Collectively, these results suggest that WASp and its phosphorylation play critical roles in coordinating the actin cytoskeleton rearrangements necessary for the persistence of protrusions required for directional migration of macrophages towards CSF-1
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