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1.
Biotechnol Lett ; 43(9): 1723-1733, 2021 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-34009528

RESUMO

OBJECTIVES: With generation times of less than 10 min under optimal conditions, the halophilic Vibrio natriegens is the fastest growing non-pathogenic bacterium isolated so far. The availability of the full genome and genetic engineering tools and its ability to utilize a wide range of carbon sources make V. natriegens an attractive host for biotechnological production processes. However, high-cell-density cultivations, which are desired at industrial-scale have not been described so far. RESULTS: In this study we report fed-batch cultivations of V. natriegens in deep-well plates and lab-scale bioreactor cultivations at different temperatures in mineral salt medium (MSM). Upon switching from exponential glucose to constant glucose-feeding cell death was induced. Initial NaCl concentrations of 15-18 g L-1 and a temperature reduction from 37 to 30 °C had a positive effect on cell growth. The maximal growth rate in MSM with glucose was 1.36 h-1 with a specific oxygen uptake rate of 22 mmol gCDW-1 h-1. High biomass yields of up to 55 g L-1 after only 12 h were reached. CONCLUSIONS: The shown fed-batch strategies demonstrate the potential of V. natriegens as a strong producer in industrial biotechnology.


Assuntos
Técnicas de Cultura Celular por Lotes/métodos , Reatores Biológicos/microbiologia , Vibrio/crescimento & desenvolvimento , Meios de Cultura/química , Cloreto de Sódio/química , Temperatura
2.
Front Immunol ; 10: 2588, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31956322

RESUMO

Macrophages are essential players in the process of fracture healing, acting by remodeling of the extracellular matrix and enabling vascularization. Whilst activated macrophages of M1-like phenotype are present in the initial pro-inflammatory phase of hours to days of fracture healing, an anti-inflammatory M2-like macrophage phenotype is supposed to be crucial for the induction of downstream cascades of healing, especially the initiation of vascularization. In a mouse-osteotomy model, we provide a comprehensive characterization of vessel (CD31+, Emcn+) and macrophage phenotypes (F4/80, CD206, CD80, Mac-2) during the process of fracture healing. To this end, we phenotype the phases of vascular regeneration-the expansion phase (d1-d7 after injury) and the remodeling phase of the endothelial network, until tissue integrity is restored (d14-d21 after injury). Vessels which appear during the bone formation process resemble type H endothelium (CD31hiEmcnhi), and are closely connected to osteoprogenitors (Runx2+, Osx+) and F4/80+ macrophages. M1-like macrophages are present in the initial phase of vascularization until day 3 post osteotomy, but they are rare during later regeneration phases. M2-like macrophages localize mainly extramedullary, and CD206+ macrophages are found to express Mac-2+ during the expansion phase. VEGFA expression is initiated by CD80+ cells, including F4/80+ macrophages, until day 3, while subsequently osteoblasts and chondrocytes are main contributors to VEGFA production at the fracture site. Using Longitudinal Intravital Microendoscopy of the Bone (LIMB) we observe changes in the motility and organization of CX3CR1+ cells, which infiltrate the injury site after an osteotomy. A transient accumulation, resulting in spatial polarization of both, endothelial cells and macrophages, in regions distal to the fracture site, is evident. Immunofluorescence histology followed by histocytometric analysis reveals that F4/80+CX3CR1+ myeloid cells precede vascularization.


Assuntos
Calo Ósseo/irrigação sanguínea , Calo Ósseo/metabolismo , Comunicação Celular , Macrófagos/metabolismo , Neovascularização Fisiológica , Animais , Biomarcadores , Regeneração Óssea , Células Endoteliais/metabolismo , Endotélio , Macrófagos/imunologia , Camundongos , Modelos Animais , Osteoblastos , Osteogênese
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