Publications by authors named "Lua L"

Current medical countermeasures (MCMs) for nerve agent poisoning have limited efficacy, and can cause serious adverse effects, prompting the requirement for new broad-spectrum therapeutics. Human plasma-derived butyrylcholinseterase (huBChE) is a promising novel bioscavenger MCM which has shown potential in animal studies, however, is economically prohibitive to manufacture at scale. This study addresses current challenges for the economical production of a bioactive and long-acting recombinant huBChE (rBChE) in mammalian cells by being the first to directly compare novel rBChE design strategies.

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The manufacturing scale implementation of membrane chromatography to purify monoclonal antibodies has gradually increased with the shift in industry focus toward flexible manufacturing and disposable technologies. Membrane chromatography are used to remove process-related impurities such as host cell proteins (HCPs) and DNA, leachates, and endotoxins, with improved productivity and process flexibility. However, application of membrane chromatography to separate product-related variants such as charge variants has not gained major traction due to low-binding capacity.

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Organophosphorus nerve agents represent a serious chemical threat due to their ease of production and scale of impact. The recent use of the nerve agent Novichok has re-emphasised the need for broad-spectrum medical countermeasures (MCMs) to these agents. However, current MCMs are limited.

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Escherichia coli remains a traditional and widely used host organism for recombinant protein production. Its well-studied genome, availability of vectors and strains, cheap and relatively straight-forward cultivation methods paired with reported high protein yields are reasons why E. coli is often the first-choice host expression system for recombinant protein production.

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There is an unmet need for safe and effective severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) vaccines that are stable and can be cost-effectively produced at large scale. Here, a biopolymer particle (BP) vaccine technology that can be quickly adapted to new and emerging variants of SARS-CoV-2 is used. Coronavirus antigen-coated BPs are described as vaccines against SARS-CoV-2.

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Cyclic disulfide-rich peptides have attracted significant interest in drug development and biotechnology. Here, we describe a protocol for producing cyclic peptide precursors in Pichia pastoris that undergo in vitro enzymatic maturation into cyclic peptides using recombinant asparaginyl endopeptidases (AEPs). Peptide precursors are expressed with a C-terminal His tag and secreted into the media, enabling facile purification by immobilized metal affinity chromatography.

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The need to intensify downstream processing of monoclonal antibodies to complement the advances in upstream productivity has led to increased attention toward implementing membrane technologies. With the industry moving toward continuous operations and single use processes, membrane technologies show promise in fulfilling the industry needs due to their operational flexibility and ease of implementation. Recently, the applicability of membrane-based unit operations in integrating the downstream process has been explored.

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The baculovirus-insect cell expression system is a popular choice for recombinant protein production. Post-translational modifications, production of protein complexes, and reported high protein yields are some of the favorable features of this eukaryotic expression system. The intricacies of the baculovirus-insect cell expression system may deter beginners from implementing it for routine protein production.

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An effective vaccine against the parasite is likely to require the induction of robust antibody and T cell responses. Chimeric virus-like particles are an effective vaccine platform for induction of antibody responses, but their capacity to induce robust cellular responses and cell-mediated protection against pathogen challenge has not been established. To evaluate this, we produced chimeric constructs using the murine polyomavirus structural protein with surface-exposed CD8 or CD4 T cell or B cell repeat epitopes derived from the circumsporozoite protein, and assessed immunogenicity and protective capacity in a murine model.

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Vaccination is the most effective method of disease prevention and control. Many viruses and bacteria that once caused catastrophic pandemics (e.g.

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Ruptured cornual abscess or pyometra can resemble other more common causes of acute abdomen, including appendicitis, diverticulitis, tubo-ovarian abscess, and perforated viscus. Despite its rarity, the diagnosis of ruptured pyometra should always be considered in females presenting with acute abdominal pain, particularly in the setting of a retained intrauterine device.

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Study Objective: To determine the feasibility of oophorectomy at the time of vaginal hysterectomy in patients with pelvic organ prolapse and to define prognostic factors and perioperative morbidity associated with the procedure.

Design: A retrospective cohort study (Canadian Task Force classification II-2).

Setting: An academic medical center.

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Rapid advances in intensifying upstream processes for biologics production have left downstream processing as a bottleneck in the manufacturing scheme. Biomanufacturers are pursuing continuous downstream process development to increase efficiency and flexibility, reduce footprint and cost of goods, and improve product consistency and quality. Even after successful laboratory trials, the implementation of a continuous process at manufacturing scale is not easy to achieve.

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Objectives The Edinburgh Postnatal Depression Scale (EPDS) identifies women with depressive symptoms in pregnancy. Our primary objective was to determine the prevalence of EPDS screen-positive women delivering on our no prenatal care (laborist) service and to compare these patients to private patients delivering with prenatal care. Methods Retrospective cohort analysis of EPDS scores during January 1, 2015 to June 18, 2015 was conducted.

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Development of antifouling films which selectively capture or target proteins of interest is essential for controlling interactions at the "bio/nano" interface. However, in order to synthesize biofunctional films from synthetic polymers that incorporate chemical "motifs" for surface immobilization, antifouling, and oriented biomolecule attachment, multiple reaction steps need to be carried out at the solid/liquid interface. EKx is a zwitterionic peptide that has previously been shown to have excellent antifouling properties.

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Baculovirus-insect cell expression system has become one of the most widely used eukaryotic expression systems for heterologous protein production in many laboratories. The availability of robust insect cell lines, serum-free media, a range of vectors and commercially-packaged kits have supported the demand for maximizing the exploitation of the baculovirus-insect cell expression system. Naturally, this resulted in varied strategies adopted by different laboratories to optimize protein production.

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Cattle tick infestations remain an important burden for farmers in tropical area like in New Caledonia. With the development of acaricide resistance, tick vaccines should be an attractive alternative to control ticks but their efficacy needs to be improved. In this study three adjuvants were studied in an experimental tick vaccine with a Bm86 protein to assess their performance in terms of antibody productions and adverse reactions following vaccinations.

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Thoracic endometriosis syndrome (TES) is a rare disorder presenting with catamenial pneumothorax, hemothorax, hemoptysis or pulmonary nodules. Bilateral involvement is uncommon, and only a very few cases have been reported in the literature. We report a case of bilateral catamenial hemothorax in a patient with recurrent thoracic endometriosis.

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Aims: Overactive bladder (OAB) is highly prevalent particularly among obese patients and significantly impacts quality of life. Anticholinergics are the first-line treatment. The effect of obesity on medication compliance has not been studied.

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Introduction And Hypothesis: The annual cost of prolapse surgeries is expected to grow at twice the rate of population growth. Understanding the economic impact of apical prolapse procedures, including sacrospinous fixation (SSF), abdominal sacrocolpopexy (ASC), and laparoscopic sacrocolpopexy (LSC), is crucial. We aimed to compare overall cost of SSF versus ASC and LSC, as well as health resource utilization, up to 90-day follow-up.

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Improved understanding of antigenic components and their interaction with the immune system, as supported by computational tools, permits a sophisticated approach to modern vaccine design. Vaccine platforms provide an effective tool by which strategically designed peptide and protein antigens are modularized to enhance their immunogenicity. These modular vaccine platforms can overcome issues faced by traditional vaccine manufacturing and have the potential to generate safe vaccines, rapidly and at a low cost.

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