- Abstract
- 10.1016/j.jcyt.2024.03.027
SCALABLE HUMAN IPSC-TO-3D BIOPRINTING PIPELINE: SUCCESSFUL LARGE-SCALE PRODUCTION USING AUTOMATED BIOREACTOR SYSTEMS
- May 22, 2024
- Cytotherapy
- R Ladi + 21 more +21
Publications from 2021 to 2026
Showing 8 of 8 papers
SCALABLE HUMAN IPSC-TO-3D BIOPRINTING PIPELINE: SUCCESSFUL LARGE-SCALE PRODUCTION USING AUTOMATED BIOREACTOR SYSTEMS
Vaccine process technology-Adecade of progress.
In the past decade, new approaches to the discovery and development of vaccines have transformed the field. Advances during the COVID-19 pandemic allowed the production of billions of vaccine doses per year using novel platforms such as messenger RNA and viral vectors. Improvements in the analytical toolbox, equipment, and bioprocess technology have made it possible to achieve both unprecedented speed in vaccine development and scale of vaccine manufacturing. Macromolecular structure-function characterization technologies, combined with improved modeling and data analysis, enable quantitative evaluation of vaccine formulations at single-particle resolution and guided design of vaccine drug substances and drug products. These advances play a major role in precise assessment of critical quality attributes of vaccines delivered by newer platforms. Innovations in label-free and immunoassay technologies aid in the characterization of antigenic sites and the development of robust in vitro potency assays. These methods, along with molecular techniques such as next-generation sequencing, will accelerate characterization and release of vaccines delivered by all platforms. Process analytical technologies for real-time monitoring and optimization of process steps enable the implementation of quality-by-design principles and faster release of vaccine products. In the next decade, the field of vaccine discovery and development will continue to advance, bringing together new technologies, methods, and platforms to improve human health.
Read moreLarge-Scale Production of Wholly Cellular Bioinks via the Optimization of Human Induced Pluripotent Stem Cell Aggregate Culture in Automated Bioreactors.
Combining the sustainable culture of billions of human cells and the bioprinting of wholly cellular bioinks offers a pathway toward organ-scale tissue engineering. Traditional 2D culture methods are not inherently scalable due to cost, space, and handling constraints. Here, the suspension culture of human induced pluripotent stem cell-derived aggregates (hAs) is optimized using an automated 250 mL stirred tank bioreactor system. Cell yield, aggregate morphology, and pluripotency marker expression are maintained over three serial passages in two distinct cell lines. Furthermore, it is demonstrated that the same optimized parameters can be scaled to an automated 1 L stirred tank bioreactor system. This 4-day culture results in a 16.6- to 20.4-fold expansion of cells, generating approximately 4 billion cells per vessel, while maintaining >94% expression of pluripotency markers. The pluripotent aggregates can be subsequently differentiated into derivatives of the three germ layers, including cardiac aggregates, and vascular, cortical and intestinal organoids. Finally, the aggregates are compacted into a wholly cellular bioink for rheological characterization and 3D bioprinting. The printed hAs are subsequently differentiated into neuronal and vascular tissue. This work demonstrates an optimized suspension culture-to-3D bioprinting pipeline that enables a sustainable approach to billion cell-scale organ engineering.
Read moreAbstract 1856: Donor and antibody diversity in NK cell-mediated antibody dependent cellular cytotoxicity (ADCC) detected using an optimized multiplexed assay and advanced flow cytometry
Abstract Tumor-specific monoclonal antibodies (mAb) which induce NK cell-mediated antibody dependent cellular cytotoxicity (ADCC) have proven to be successful against several types of cancer. Evaluating the potency of a new, tumor-specific mAb requires testing with multiple sources of donor cells since the degree of NK cell-mediated ADCC is known to be variable between patients. Thus, in addition to evaluating whether a new tumor-specific mAb can effectively induce NK cell-mediated ADCC, it is also important to characterize the donor NK cells utilized in order to provide insight into potential treatment efficacy. In the current study, we investigated the application of a novel, high throughput assay in assessing the ADCC potency of different anti-hCD20 mAbs against a Burkitt's lymphoma cell line using effector cells obtained from multiple donors. This multiplexed assay incorporates a cells and beads format to enable the simultaneous measurement of target cell killing, along with enumeration and phenotyping of the NK cells, and quantification of up to 8 secreted effector proteins and cytokines. The assay requires a sample volume of just 10 µl and can be performed in a single well of a 96 or 384 well plate using the iQue® platform for advanced flow cytometry. Data analysis and visualization was done using the integrated iQue Forecyt® software package. The results showed a mAb concentration-dependent increase in tumor cell killing, along with corresponding increases in secretion of Granzyme B and CD178 (Fas Ligand), and production of IFNγ, TNF, and RANTES. The degree of NK cell-mediated ADCC and effector protein secretion levels were dependent on both the anti-hCD20 mAb and donor cells used, with higher levels of ADCC and effector protein secretion observed using a non-fucosylated anti-hCD20 mAb as compared to a conventional, fucosylated anti-hCD20 mAb. This method enabled the rapid assessment of the potency of different mAbs in ADCC mediated by NK cells, and also effectively distinguished potential differences in mAb efficacy between donors. Citation Format: Julie Lovchik, Mark Carter. Donor and antibody diversity in NK cell-mediated antibody dependent cellular cytotoxicity (ADCC) detected using an optimized multiplexed assay and advanced flow cytometry [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2021; 2021 Apr 10-15 and May 17-21. Philadelphia (PA): AACR; Cancer Res 2021;81(13_Suppl):Abstract nr 1856.
Read moreDevelopment of a Single-Step Antibody–Drug Conjugate Purification Process with Membrane Chromatography
Membrane chromatography is routinely used to remove host cell proteins, viral particles, and aggregates during antibody downstream processing. The application of membrane chromatography to the field of antibody-drug conjugates (ADCs) has been applied in a limited capacity and in only specialized scenarios. Here, we utilized the characteristics of the membrane adsorbers, Sartobind® S and Phenyl, for aggregate and payload clearance while polishing the ADC in a single chromatographic run. The Sartobind® S membrane was used in the removal of excess payload, while the Sartobind® Phenyl was used to polish the ADC by clearance of unwanted drug-to-antibody ratio (DAR) species and aggregates. The Sartobind® S membrane reproducibly achieved log-fold clearance of free payload with a 10 membrane-volume wash. Application of the Sartobind® Phenyl decreased aggregates and higher DAR species while increasing DAR homogeneity. The Sartobind® S and Phenyl membranes were placed in tandem to simplify the process in a single chromatographic run. With the optimized binding, washing, and elution conditions, the tandem membrane approach was performed in a shorter timescale with minimum solvent consumption and high yield. The application of the tandem membrane chromatography system presents a novel and efficient purification scheme that can be realized during ADC manufacturing.
Read moreIntratympanically Delivered Steroids Impact Thousands More Inner Ear Genes Than Systemic Delivery.
Glucocorticoids are given for sensorineural hearing loss, but little is known of their molecular impact on the inner ear. Furthermore, in spite of claims of improved hearing recovery with intratympanic delivery of steroids, no studies have actually documented the inner ear molecular functions that are enhanced with this delivery method. To assess steroid-driven processes in the inner ear, gene chip analyses were conducted on mice treated systemically with the glucocorticoids prednisolone or dexamethasone or the mineralocorticoid aldosterone. Other mice were given the same steroids intratympanically. Inner ears were harvested at 6 hours and processed on the Affymetrix 430 2.0 Gene Chip for expression of its 34 000 genes. Results were statistically analyzed for up or down expression of each gene against control (untreated) mice. Analyses showed approximately 17 500 genes are normally expressed in the inner ear and steroids alter expression of 55% to 82% of these. Dexamethasone changed expression of 9424 (53.9%) inner ear genes following systemic injection but 14 899 ear genes (85%) if given intratympanically. A similar pattern was seen with prednisolone, as 7560 genes were impacted by oral delivery and 11 164 genes (63.8%) when given intratympanically. The mineralocorticoid aldosterone changed expression of only 268 inner ear genes if given orally, but this increased to 10 124 genes (57.9%) if injected intratympanically. Furthermore, the glucocorticoids given actually impacted more inner ear genes via the mineralocorticoid receptor than the glucocorticoid receptor. Thousands of inner ear genes were affected by steroids, and this number increased significantly if steroids were delivered intratympanically. Also, the impact of glucocorticoids on inner ear mineralocorticoid functions is more substantial than previously known. Thus, the application of therapeutic steroids for hearing loss needs to be reassessed in light of their more comprehensive impact on inner ear genes. Furthermore, simply ascribing the efficacy of steroids to immunosuppression no longer appears to be warranted.
Read moreComparative Extractables Study of Autoclavable Polyethersulfone Filter Cartridges for Sterile Filtration.
Sterile filters are ubiquitous in biopharmaceutical manufacturing processes. Because such filters are in direct contact with the process fluid, profiling of the extractables is of utmost importance. The work presented here reveals the extractables profile from filter cartridges for sterilizing-grade filtration, which were obtained from six different vendors. All filters contain a 0.2 μm polyethersulfone membrane for sterile filtration combined with a polyethersulfone pre-filter with retention rates spanning from 0.4 to 0.6 μm. These filter cartridges are designed for use in stainless steel housings which allow for in-line steam sterilization. A combination of different analytical techniques such as (headspace) gas chromatography-mass spectrometry, ultra-performance liquid chromatography-high-resolution mass spectrometry (electrospray ionization), inductively coupled plasma mass spectrometry, total organic carbon, non-volatile residue, conductivity, and pH value were applied to develop a comprehensive extractables profile on a qualitative and semi-quantitative basis. Pure ethanol and purified water were used as extraction media. The extractables profile consisted of various polyolefin-related extractables, additives such as antioxidants and degradation products thereof, hydrocarbons, and processing aids in addition to membrane-related extractables.LAY ABSTRACT: Filter cartridges or other filter products for sterile filtration are currently most commonly made of polymeric materials such as polypropylene, and a filter membrane material such as polyethersulfone. These materials will usually release chemical substances upon extraction in the laboratory (extractables), or upon application in biopharmaceutical processing (leachables). Potential extractables and leachables are additives used to tailor the physicochemical properties and to protect the polymeric materials, or degradants of these substances, or they arise from substances used during the manufacturing of the filter cartridges. Multiple analytical techniques were applied here to investigate the concentration and chemical nature of extractables obtained upon application of two distinct extraction solvents. Typical extractables found were antioxidants or releasing agents in addition to compounds originating from the polyethersulfone membrane.
Read more「モノヨード醋酸」ノ種々ナル筋肉強直ニ及ボス影響
Verfasser stellte einige Experimente über die Wirkung der Monojodessigsäure auf die verschiedenartigen Muskelstarren der Glatten- und Skelettmuskeln (Dorsalmuske des Blutegels, Magenringmuskulatur, Rektum, Sartorius und Gastrocnemius des Frosches) an, mittelst der isotonischen Registrierungsmethode.Die Resultate lassen sich folgendermassen zusammenfassen:1) Bei der Monojodessigsäurevergiftung nimmt die Kontrakturhöhe der rhythmisch oder tetanisch gereizten Glattenmuskeln allmählich bedeutend ab. Um bei den glatten Muskeln eine eigentliche Monojodessigsaurestarre herbeigefuhrt werden zu konnen, muss die Konzentration der Monojodessigsäure viel stärker als die Konzentration für Skelettmuskeln (minderstens 1/100 mok) zu sein.2) Sogleich nach Vergiftung von glatten Muskeln (Dorsalmuskel des Blutegels, Magenringmuskel und Rektum von Rana nigromaculata) mit Monojodessigsäure auch kommen die spontane Verkürzung zustande, die in weaiger Minuten aber sich verlängert und erschlafft, wahrend bei den Skelettmuskeln viel langer überdauern, 3) Muskeln (Dorsalmuskel des Blutegels, Magenringmuskel, Sartorius und Gastrocnemius des Frosches), deren Milchsäurebildung durch die Monojodessigsäurevergiftung aufgehoben ist, könneu au bestimmter Temperatur in eine Wärmekontraktur versetzt werden. Die Wärmekontraktur der vergifteten ist unter gleichen Bedingungen derjenigen der normalen Muskeln vergleichend stärker ausgepragt, und sogar tritt schon an niedriger Temperatur auf, obgleich übt diese für die normalen keinen nenneuswerten Einfluss aus. Die tiefeste wirksame Temperatur bei vergifteten Muskeln war 30°C.4) Mit Monojodessigsäure vergiftete Muskeln (Dorsalmuskel des Blutgels, Magenringmuskel, Rektum, Sartorius und Gastrocnemius des Frosches) konnen in Wasserstarre versetzt werden, und diese Wasserstarre der vergifteten Muskeln treten unter gleichen Bedingungen gegenuber diejenigen der normalen bedeutend schneller undstärker auf.5) Beiderseitige Sartorien eiues Frosches, der eine mit Monojodessigsäure vergiftete eben so wie andere unbehandelte, konnen in Ringerscher Losung oder in Paraffinum liquidum Totenstarre hervorrufen.Diese Starre ist aber in Paraffiuum liquidum deutlich ausgeprägter als in Ringerscher Lösung. Daraus folgt es, dass irgendeine unbekannte wasserlösliche Kontraktursubstanz (hauptsächlich, Milchsäure) bei dem Eintaucheu in Riugersche Lösung von Muskeln aus in die Umgebungsflüssigkeit herausdiffundieren.
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