1 - 12 |
Modeling of Plant in Vitro Cultures: Overview and Estimation of Biotechnological Processes Maschke RW, Geipel K, Bley T |
13 - 20 |
Packaging Guest Proteins into the Encapsulin Nanocompartment from Rhodococcus erythropolis N771 Tamura A, Fukutani Y, Takami T, Fujii M, Nakaguchi Y, Murakami Y, Noguchi K, Yohda M, Odaka M |
21 - 31 |
Modeling Enzymatic Hydrolysis of Lignocellulosic Substrates Using Confocal Fluorescence Microscopy I: Filter Paper Cellulose Luterbacher JS, Moran-Mirabal JM, Burkholder EW, Walker LP |
32 - 42 |
Modeling Enzymatic Hydrolysis of Lignocellulosic Substrates using Fluorescent Confocal Microscopy II: Pretreated Biomass Luterbacher JS, Moran-Mirabal JM, Burkholder EW, Walker LP |
43 - 52 |
Nitrite Accumulation From Simultaneous Free-Ammonia and Free-Nitrous-Acid Inhibition and Oxygen Limitation in a Continuous-Flow Biofilm Reactor Park S, Chung J, Rittmann BE, Bae W |
53 - 64 |
Modeling the Nutrient Removal Process in Aerobic Granular Sludge System by Coupling the Reactor- and Granule-Scale Models Kagawa Y, Tahata J, Kishida N, Matsumoto S, Picioreanu C, van Loosdrecht MCM, Tsuneda S |
65 - 73 |
Effect of Anion Structures on Cholinium Ionic Liquids Pretreatment of Rice Straw and the Subsequent Enzymatic Hydrolysis Hou XD, Xu J, Li N, Zong MH |
74 - 83 |
Charge-Tunable Polymers as Reversible and Recyclable Flocculants for the Dewatering of Microalgae Morrissey KL, He CL, Wong MH, Zhao XY, Chapman RZ, Bender SL, Prevatt WD, Stoykovich MP |
84 - 97 |
Application of Bioreactor Design Principles and Multivariate Analysis for Development of Cell Culture Scale Down Models Tescione L, Lambropoulos J, Paranandi MR, Makagiansar H, Ryll T |
98 - 103 |
Effect of Temperature Change on Anammox Activity Lotti T, Kleerebezem R, van Loosdrecht MCM |
104 - 110 |
A Unique Noninvasive Approach to Monitoring Dissolved O-2 and CO2 in Cell Culture Chatterjee M, Ge XD, Uplekar S, Kostov Y, Croucher L, Pilli M, Rao G |
111 - 119 |
A Kinetic-Based Approach to Understanding Heterologous Mevalonate Pathway Function in E. Coli Weaver LJ, Sousa MML, Wang G, Baidoo E, Petzold CJ, Keasling JD |
120 - 128 |
A Synthetic O-2-Tolerant Butanol Pathway Exploiting Native Fatty Acid Biosynthesis in Escherichia coli Pasztor A, Kallio P, Malatinszky D, Akhtar MK, Jones PR |
129 - 140 |
Comparison of Genome-Wide Selection Strategies to Identify Furfural Tolerance Genes in Escherichia Coli Glebes TY, Sandoval NR, Gillis JH, Gill RT |
141 - 155 |
Use of a Small Molecule Cell Cycle Inhibitor to Control Cell Growth and Improve Specific Productivity and Product Quality of Recombinant Proteins in CHO Cell Cultures Du ZM, Treiber D, McCarter JD, Fomina-Yadlin D, Saleem RA, McCoy RE, Zhang YL, Tharmalingam T, Leith M, Follstad BD, Dell B, Grisim B, Zupke C, Heath C, Morris AE, Reddy P |
156 - 167 |
Fumaric Acid Production by Torulopsis glabrata: Engineering the Urea Cycle and the Purine Nucleotide Cycle Chen XL, Wu J, Song W, Zhang LM, Wang HJ, Liu LM |
168 - 180 |
Biosynthesis of Rare Ketoses Through Constructing a Recombination Pathway in an Engineered Corynebacterium glutamicum Yang JG, Zhu YM, Li JT, Men Y, Sun YX, Ma YH |
181 - 188 |
Engineering the Oxygen Sensing Regulation Results in an Enhanced Recombinant Human Hemoglobin Production by Saccharomyces cerevisiae Martinez JL, Liu LF, Petranovic D, Nielsen J |
189 - 196 |
Assembly and Multiple Gene Expression of Thermophilic Enzymes in Escherichia Coli for In Vitro Metabolic Engineering Ninh PH, Honda K, Sakai T, Okano K, Ohtake H |
197 - 208 |
Development of a Soft-Sensor Based on Multi-Wavelength Fluorescence Spectroscopy and a Dynamic Metabolic Model for Monitoring Mammalian Cell Cultures Ohadi K, Legge RL, Budman HM |
209 - 219 |
A Medium-Throughput Analysis of Signaling Pathways Involved in Early Stages of Stem Cell Reprogramming Fritz AL, Mao SR, West MG, Schaffer DV |
220 - 227 |
Intravital Microscopy of Localized Stem Cell Delivery Using Microbubbles and Acoustic Radiation Force Kokhuis TJA, Skachkov I, Naaijkens BA, Juffermans LJM, Kamp O, Kooiman K, van der Steen AFW, Versluis M, de Jong N |