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1.
Int J Pharm ; 661: 124357, 2024 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-38897490

RESUMEN

When tablets are manufactured on a rotary tablet press and the throughput is increased, it leads to changes in powder dynamics during die filling due to formulation characteristics and changing powder flow in the feed frame. This may result, a.o. in increased tablet weight variability, poorer content uniformity, capping and lamination. This research focuses on explaining the die filling performance depending on material properties and process settings, including throughput for small and large tablets. It was concluded that throughput had a negative impact on die filling variability, which is related to reduced residence time and lower fill fraction of the feed frame and dies. Furthermore, the die filling mechanism was inherently different for large tablets in comparison to small tablets. Higher die filling consistency was observed for dense, less porous, less compressible and better flowing powders. As a result of this work, a model was developed to predict the impact of formulation properties and process settings on die filling variability and its dependency on changes in throughput. This model will benefit formulation development at an early stage when active ingredient availability may be challenging as it will avoid the need to conduct experiments at high throughputs.

2.
Int J Pharm ; 645: 123423, 2023 Oct 15.
Artículo en Inglés | MEDLINE | ID: mdl-37722494

RESUMEN

The aim of this study is to increase process understanding of the granulation mechanism in twin-screw melt granulation by evaluating the influence of different screw configurations on granule formation and granule temperature via thermal imaging. The study used a Design of Experiments (DoE) to process a miscible and immiscible formulation (85% API/binder w/w) using a twin-screw extruder with varying screw configurations. The barrel temperature (°C), screw speed (rpm), throughput (kg/h), and kneading zone (direction and stagger angle) were varied. Granule and process properties were evaluated for samples collected at four different locations along the length of the granulation barrel to visualize the granule formation, and granule temperature was monitored by an infrared camera to measure heat transfer on the granules. The resulting temperature was linked to the granule properties and the granule formation along the length of the barrel. The most influencing factors on the granule temperature are the direction of the kneading zone and the set barrel temperature. It was observed that granule formation mainly occurred in the zones that apply more kneading on the granules. The highest temperature increase was observed when the smallest stagger angle in reverse configuration was used, and could be linked to better granule quality attributes.

3.
Int J Pharm ; 641: 123064, 2023 Jun 25.
Artículo en Inglés | MEDLINE | ID: mdl-37211236

RESUMEN

In scope of achieving real-time release of tablets, quality attributes need to be monitored and controlled through Process Analytical Technology tools such as near-infrared spectroscopy (NIRS). The authors evaluated the suitability of NIR-Spatially Resolved Spectroscopy (NIR-SRS) for continuous real-time monitoring and control of content uniformity, hardness and homogeneity of tablets with challenging dimensions. A novel user-friendly research and development inspection unit was used as standalone equipment for the analysis of small oblong tablets with deep-cut break lines. A total of 66 tablets varying in hardness and Active Pharmaceutical Ingredient (API) content were inspected, with each tablet being analysed five times and measurements repeated on three different days. Partial Least Squares (PLS) models were developed to assess content uniformity and hardness, of which the former showed higher accuracy. The authors attempted to visualize tablet homogeneity through NIR-SRS spectra by regressing all spectra obtained during a single measurement using a content uniformity PLS model. The NIR-SRS probe demonstrated its potential towards real-time release testing through its ability to quickly monitor content uniformity, hardness and visualize homogeneity, even for tablets with challenging dimensions.


Asunto(s)
Espectroscopía Infrarroja Corta , Tecnología Farmacéutica , Espectroscopía Infrarroja Corta/métodos , Tecnología Farmacéutica/métodos , Comprimidos/química , Análisis de los Mínimos Cuadrados , Dureza
4.
Int J Pharm ; 639: 122986, 2023 May 25.
Artículo en Inglés | MEDLINE | ID: mdl-37116599

RESUMEN

In the pharmaceutical industry, innovative continuous manufacturing technologies such as twin-screw melt granulation (TSMG) are gaining more and more interest to process challenging formulations. To enable the implementation of TSMG, more elucidation of the process is required and this study provides a better understanding of the granule formation along the length of the barrel. By sampling at four different zones, the influence of screw configuration, process parameters and formulation is investigated for the granule properties next to the residence time distribution. It showed that conveying elements initiate the granulation by providing a limited heat transfer into the powder bed. In the kneading zones, the consolidation stage takes place, shear elongation combined with breakage and layering is occurring for the reversed configurations and densification with breakage and layering for the forward and neutral configurations. Due to the material build-up in the reversed configurations, these granules are larger, stronger, more elongated and less porous due to the higher degree of shear and densification. This configuration also shows a significantly longer residence time compared to the forward configuration. Hence, the higher level of shear and the longer period of time enables more melting of the binder resulting in successful granulation.


Asunto(s)
Industria Farmacéutica , Tecnología Farmacéutica , Tamaño de la Partícula , Tecnología Farmacéutica/métodos , Excipientes , Polvos , Composición de Medicamentos/métodos
5.
Arch Orthop Trauma Surg ; 143(7): 4565-4574, 2023 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-36808564

RESUMEN

INTRODUCTION: Over the past years, different fixation techniques focused on rotational stability in order to increase stability and stimulate union rates. Additionally, extracorporeal shockwave therapy (ESWT) has gained importance in the treatment of delayed and nonunions. Purpose of this study was to compare the radiological and clinical outcome of two headless compression screws (HCS) and plate fixation in scaphoid nonunions, in combination with intraoperative high energy ESWT. MATERIALS AND METHODS: Thirty-eight patients with scaphoid nonunions were treated by using a nonvascularized bone graft from the iliac crest and stabilization with either two HCS or a volar angular stable scaphoid plate. All patients received one ESWT session with 3000 impulses and energy flux per pulse of 0.41 mJ/mm2 intraoperatively. Clinical assessment included range of motion (ROM), pain according to the Visual Analog Scale (VAS), grip strength, disability of the Arm Shoulder and Hand Score, Patient-Rated Wrist Evaluation Score, Michigan Hand Outcomes Questionnaire and modified Green O'Brien (Mayo) Wrist Score. To confirm union, a CT scan of the wrist was performed. RESULTS: Thirty-two patients returned for clinical and radiological examination. Out of these, 29 (91%) showed bony union. All patients treated with two HCS compared to 16 out of 19 (84%) patients treated by plate showed bony union on the CT scans. The difference was not statistically significant. However, at a mean follow-up interval of 34 months, no significant differences could be found in ROM, pain, grip strength and patient-reported outcome measurements between the two HCS and plate group. Height-to-length ratio and capitolunate angle improved significantly in both groups compared to preoperative. CONCLUSIONS: Scaphoid nonunion stabilization by using two HCS or angular stable volar plate fixation and intraoperative ESWT results in comparable high union rates and good functional outcome. Due to the higher rate for a secondary intervention (plate removal), HCS might be preferable as first choice, whereas the scaphoid plate fixation should be reserved for recalcitrant (substantial bone loss, humpback deformity or failed prior surgical intervention) scaphoid nonunions.


Asunto(s)
Tratamiento con Ondas de Choque Extracorpóreas , Fracturas no Consolidadas , Hueso Escafoides , Humanos , Fracturas no Consolidadas/cirugía , Fracturas no Consolidadas/etiología , Fijación Interna de Fracturas/métodos , Estudios Retrospectivos , Hueso Escafoides/cirugía , Tornillos Óseos , Rango del Movimiento Articular , Resultado del Tratamiento
6.
Int J Pharm ; 630: 122322, 2023 Jan 05.
Artículo en Inglés | MEDLINE | ID: mdl-36448825

RESUMEN

Twin-screw melt granulation (TSMG) is a promising continuous manufacturing technology for the processing of high drug load formulations and to formulate heat- and moisture-sensitive active pharmaceutical ingredients (APIs). This study evaluates the influence of process parameters for TSMG, mainly focusing on the effect of the screw configuration combined with screw speed, throughput and barrel temperature, to elucidate the melt granulation mechanisms. For the kneading zone, the stagger angle was varied between 30°, 60° and 90°, and investigated for both the forward and the reversed direction. In addition to the process parameters, the influence of the formulation differing in their API-binder miscibility was evaluated. As responses, the granule (size, friability and porosity) and process properties such as torque were evaluated, indicating that the screw configuration is the most influential factor. Nucleation, consolidation and breakage are the granulation mechanisms for the forward and the neutral configuration, while consolidation and densification with shear elongation are identified for the reversed configuration. The formulations differ mainly in the forward and neutral configuration since the immiscible formulation shows a bimodal granule size distribution with a larger fraction of fines and weaker granules is obtained. For the reversed configuration, similar granulation mechanisms are seen for both formulations.


Asunto(s)
Excipientes , Tecnología Farmacéutica , Tamaño de la Partícula , Porosidad , Temperatura , Composición de Medicamentos , Comprimidos
7.
Int J Pharm ; 631: 122534, 2023 Jan 25.
Artículo en Inglés | MEDLINE | ID: mdl-36563797

RESUMEN

The importance of residence time distribution modeling is acknowledged as a tool for enabling material tracking and control within a continuous manufacturing line in order to safeguard both product quality and production efficiency. One of the first unit-operations into a continuous direct compression line (i.e. CDC-line) worthwhile doing extensive RTD-analysis upon are the LIW-feeders since they dose the ingredients in a controlled way following the label claim and hence can directly influence critical quality attributes like content uniformity. An NIR measurement method was developed determining the RTD of selected powders at specific feeder settings. Step-change experiments using sodium saccharin as a tracer were conducted. In order to gain and in depth understanding of the material flow, spatial samples throughout the hopper were taken at predefined timepoints during the step change experiments. This revealed the presence of a bypass trajectory along the edges of the agitator, while in the center of the agitator an inner mixing volume in which the tracer concentration lags behind seemed to be present. Finally, a model based on a plug flow and continuous stirred tank reactor was evaluated. The fitted model was not able to capture this complex flow behavior and shows the need for an extended compartmental model distinguishing between a bypass trajectory formed by the agitator and an inner mixing volume.


Asunto(s)
Química Farmacéutica , Tecnología Farmacéutica , Tecnología Farmacéutica/métodos , Química Farmacéutica/métodos , Polvos , Vehículos Farmacéuticos , Presión
8.
Int J Pharm X ; 4: 100110, 2022 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-35024605

RESUMEN

In this study, an empirical predictive model was developed based on the quantitative relationships between blend properties, critical quality attributes (CQA) and critical process parameters (CPP) related to blending and tableting. The blend uniformity and API concentration in the tablets were used to elucidate challenges related to the processability as well as the implementation of PAT tools. Thirty divergent ternary blends were evaluated on a continuous direct compression line (ConsiGma™ CDC-50). The trials showed a significant impact of the impeller configuration and impeller speed on the blending performance, whereas a limited impact of blend properties was observed. In contrast, blend properties played a significant role during compression, where changes in blend composition significantly altered the tablet quality. The observed correlations allowed to develop an empirical predictive model for the selection of process configurations based on the blend properties, reducing the number of trial runs needed to optimize a process and thus reducing development time and costs of new drug products. Furthermore, the trials elucidated several challenges related to blend properties that had a significant impact on PAT implementation and performance of the CDC-platform, highlighting the importance of further process development and optimization in order to solve the remaining challenges.

9.
Int J Pharm ; 614: 121454, 2022 Feb 25.
Artículo en Inglés | MEDLINE | ID: mdl-35026314

RESUMEN

This study determined the feasibility of long-term continuous powder feeding and its effect on the overall process performance. Additionally, quantitative relationships were established between material properties, process settings and screw feeding responses during gravimetric feeding. Twelve divergent raw materials were processed over longer periods using a GEA Compact Feeder integrated in a continuous direct compression line (ConsiGma™ CDC-50). The resulting gravimetric feeding responses were combined with the material properties and process settings into an overall PLS model. The model elucidated the impact of the material descriptors for density; powder flow; particle size; compressibility; permeability and wall friction angle on the feeding process. Furthermore, long-term processing of the materials exhibited challenges related to the processability and refill consistency where a significant impact of the compressibility and cohesive/adhesive properties of the materials was observed. Overall, this approach provided insights into the feasibility of long-term continuous feeding which is not possible through 'short-term' feeding trials. Additionally, throughout this study, the need for material-specific adjustments of the feeding and refill equipment was highlighted.


Asunto(s)
Tecnología Farmacéutica , Tamaño de la Partícula , Polvos , Presión
10.
Int J Pharm ; 614: 121449, 2022 Feb 25.
Artículo en Inglés | MEDLINE | ID: mdl-34999149

RESUMEN

Current study investigated the effect of different binder types on the granule drying process and the granule breakage behavior in a semi-continuous fluid bed dryer integrated in the C25 ConsiGma-system. The studied binders (i.e. hydroxypropyl pea starch, hydroxypropyl methylcellulose E15, polyvinylpyrrolidone K12, and starch octenyl succinate CO 01) required different liquid amounts to produce similar granule quality. These different liquid requirements were translated into different drying conditions for each binder to result in sufficiently dry granules at the end of a drying cycle. By comparing the size distribution of the granules before entering and after exiting the fluid bed dryer, granule breakage could be evaluated. No effect of the binder type on the granule breakage during drying was observed. However, differences in granule breakage were observed for the binders when processed with the horizontal set-up of the C25 system, as granule breakage during pneumatic transport depended on the binder type. Only one binder (hydroxypropyl pea starch) allowed to avoid granule breakage during the entire process. Furthermore, this research showed that the drying process was mainly steered by the liquid requirements for granulation, and that these liquid requirements depended on the binder used.


Asunto(s)
Tecnología Farmacéutica , Composición de Medicamentos , Tamaño de la Partícula , Comprimidos , Temperatura
11.
Int J Pharm ; 605: 120785, 2021 Aug 10.
Artículo en Inglés | MEDLINE | ID: mdl-34111548

RESUMEN

In recent years, the interest in continuous manufacturing techniques, such as twin-screw wet granulation, has increased. However, the understanding of the influence of the combination of raw material properties and process settings upon the granule quality attributes is still limited. In this study, a T-shaped partial least squares (TPLS) model was developed to link raw material properties, the ratios in which these raw materials were combined and the applied process parameters for the twin-screw wet granulation process with the granule quality attributes. In addition, the predictive ability of the TPLS model was used to find a suitable combination of formulation composition and twin-screw granulation process settings for a new API leading to desired granule quality attributes. Overall, this study helped to better understand the link between raw material properties, formulation composition and process settings on granule quality attributes. Moreover, as TPLS can provide a reasonable starting point for formulation and process development for new APIs, it can reduce the experimental development efforts and consequently the consumption of expensive (and often limited available) new API.


Asunto(s)
Tecnología Farmacéutica , Composición de Medicamentos , Análisis de los Mínimos Cuadrados , Tamaño de la Partícula , Comprimidos
12.
Int J Pharm ; 602: 120642, 2021 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-33933640

RESUMEN

The potential of torque as in-process control (IPC) to monitor granule size in twin-screw wet granulation (TSG) was investigated. An experimental set-up allowing the collection of granules at four different locations (i.e., in the wetting zone, after the first and second kneading zone and at the end of the granulator) of the granulator screws was used to determine the change in granule size, granule temperature and the contribution of each compartment to the overall torque for varying screw speed, mass feed rate and liquid-to-solid ratio. The only observed correlation was between the granule size and torque increase after the first kneading zone because the torque increase was an indication of the degree in granule growth which was consistently observed with all applied granulation process parameters. No correlation was observed in the other locations as changes of torque were accompanied to either granule breakage and/or growth. Moreover, torque increase was correlated to higher granule temperature, suggesting that energy put into the granulator was partly used to heat up the material being processed and explains additionally the lack of correlation between granule size and torque. Therefore, this study showed that torque could not be used as IPC to monitor granule size during TSG.


Asunto(s)
Calor , Tecnología Farmacéutica , Composición de Medicamentos , Tamaño de la Partícula , Temperatura , Torque , Humectabilidad
13.
Int J Pharm ; 602: 120603, 2021 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-33862133

RESUMEN

In this study, a quantitative relationship between material properties, process settings and screw feeding responses of a high-throughput feeder was established via multivariate models (PLS). Thirteen divergent powders were selected and characterized for 44 material property descriptors. During volumetric feeder trials, the maximum feed capacity (FCCmax), the relative standard deviation on the maximum feed capacity (RSDFCmax), the short term variability (STRSD) and feed capacity decay (FCdecay) were determined. The gravimetric feeder trials generated values for the mass flow rate variability (RSDLC), short term variability (STRSD) and refill responses (Vrefill and RSDrefill). The developed PLS models elucidated that the material properties and process settings were clearly correlated to the feeding behavior. The extended volumetric feeder trials pointed out that there was a significant influence of the chosen screw type and screw speed on the feeding process. Furthermore, the process could be optimized by reducing the feeding variability through the application of optimized mass flow filters, high frequency vibrations, independent agitator control and optimized top-up systems. Overall, the models could allow the prediction of the feeding performance for a wide range of materials based on the characterization of a subset of material properties greatly reducing the number of required feeding experiments.


Asunto(s)
Tornillos Óseos , Tecnología Farmacéutica , Conducta Alimentaria , Análisis Multivariante , Polvos
14.
Eur J Pharm Biopharm ; 157: 97-107, 2020 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-33053425

RESUMEN

An innovative continuous spin-freeze-drying technology for unit doses was recently developed. For this technology, a mechanistic primary drying model was developed allowing the calculation of the optimal dynamic drying trajectory for spin-frozen formulations. In this work, a model-based and experimentally verified comparison was made between conventional batch freeze-drying and spin-freeze-drying by analyzing the outputs (i.e., primary drying endpoint, optimal shelf temperature/power heater and product temperature profile) of both primary drying models. Input parameters such as dried product layer resistance (Rp) and heat input parameters (Kv,Ptot) were experimentally determined for both freeze-drying methods and compared. In addition, optimal dynamic process parameters were calculated for 3 model formulations by using both mechanistic models. Finally, model predictions were validated by measuring the product temperature and primary drying endpoint. It was observed that, when considering the same layer thickness, Rp was generally lower for continuous spin-frozen formulations compared to vials frozen in a conventional batch freeze-dryer. This observation contributes to the short primary drying times of spin-frozen formulations. In addition, as spin-freezing drastically increases the surface area of the product and lowers the dried layer thickness, drying times can be reduced even further while an excellent cake structure and appearance can still be obtained. The primary drying model for spin-frozen formulations proved to be equally accurate for the prediction of the primary drying endpoint and product temperature compared to the batch freeze-drying model.


Asunto(s)
Liofilización , Modelos Teóricos , Tecnología Farmacéutica/métodos , Composición de Medicamentos , Temperatura , Factores de Tiempo , Presión de Vapor
15.
Int J Pharm ; 586: 119591, 2020 Aug 30.
Artículo en Inglés | MEDLINE | ID: mdl-32640268

RESUMEN

The main objective of this work was to explore the potential of coupling hot-melt extrusion (HME) to Fused Filament Fabrication (FFF), also known as Extrusion-Based Additive Manufacturing (EBAM) or 3D Printing, in order to manufacture 3D printed tablets with different release behavior from plasticizer-free filament matrices. The suitability of different thermoplastic polymers towards FFF was investigated, and a link between the mechanical properties of filaments produced by HME and the feeding performance into the FFF printer was established. Model drugs with different aqueous solubility (metoprolol tartrate and theophylline anhydrous) were processed with hydrophilic and hydrophobic polymers, and the influence of the formulation, drug concentration and applied process settings on the release kinetics was investigated. Filaments with up to 40% drug load were successfully extruded with a smooth surface and a diameter of 1.75 ± 0.05 mm. However, filaments with high brittleness and low toughness were broken by the feeding gears. In contrast, none of the filaments were squeezed aside by the gears, which indicated that they were sufficiently stiff as indicated by the high Young's moduli of all formulations. For all formulations, the release from the tablets with 50% infill degree was faster as compared to the tablets with 100% infill degree. Theophylline (20% w/w) release from Kollicoat® IR matrix was completed within 40 min from 50% infill tablets. In contrast, 80% metoprolol tartrate was released from the hydrophobic Capa® 6506 polymer within 24hrs from 50% infill 3D tablets containing 40% w/w MPT.


Asunto(s)
Polímeros , Tecnología Farmacéutica , Liberación de Fármacos , Humanos , Impresión Tridimensional , Solubilidad , Comprimidos
16.
Int J Pharm ; 585: 119466, 2020 Jul 30.
Artículo en Inglés | MEDLINE | ID: mdl-32464227

RESUMEN

The effect of a wide variety of binders on the quality of granules produced via continuous twin screw wet granulation was studied. Anhydrous dicalcium phosphate was used as poorly soluble filler and was granulated applying dry or wet addition of binders. Furthermore, dry and wet binder characteristics were determined and linked to the binder effectiveness. PVA 4-88 and starch octenyl succinate exhibited the lowest granule friability at low liquid-to-solid ratios, i.e. the highest binder effectiveness, which was attributed to fast binder activation based on the fast wetting kinetics of the binder, to efficient wetting of DCP particles, and to good spreading in the powder bed. The performance of wettability measurements in an early formulation development stage is therefore considered highly important. Additionally, an increased stickiness of the binder surface caused by high binder viscosity and slow dissolution kinetics also positively influenced the binder effectiveness. In conclusion, this study revealed which binder attributes have a critical impact on the granulation process of dicalcium phosphate. Additionally, dry binder addition proved successful for creation of high quality granules.


Asunto(s)
Química Farmacéutica/métodos , Excipientes/química , Comprimidos/química , Tecnología Farmacéutica/métodos , Fosfatos de Calcio/química , Composición de Medicamentos , Tamaño de la Partícula , Alcohol Polivinílico/química , Povidona/química , Polvos/química , Análisis de Componente Principal , Solubilidad , Temperatura , Resistencia a la Tracción , Humectabilidad
17.
Int J Pharm ; 584: 119451, 2020 Jun 30.
Artículo en Inglés | MEDLINE | ID: mdl-32454132

RESUMEN

Wetting is the initial stage of wet granulation processes during which the first contact between the powder and the liquid occurs. Wetting is a critical step to allow granule growth and consolidation, but also to ensure uniform active pharmaceutical ingredient (API) distribution over all granule size fractions. A physical understanding of the wetting stage is therefore crucial to design a robust granulation process. In twin-screw granulation, wetting is physically separated from granule consolidation, growth, breakage and attrition. The present study used this particularity to investigate the wetting step in such a way that the fundamental mechanisms governing the wetting can be linked and understood. A modified granulator barrel was used allowing the collection of granules immediately after the wetting. A low drug-loaded pharmaceutical formulation containing a poorly soluble and poorly wettable API was used for this investigation. Granules obtained after the wetting zone were analysed for granule size distribution, API distribution over the different size fractions and granule temperature. It was found that "wetting efficiency" (i.e., fraction of powder being nucleated during the wetting stage) could be predicted using an energy balance based on in-line measurement of the granule temperature. Wetting efficiency could moreover be linked to final granule quality attributes (i.e., granule size distribution) at the outlet of the granulator. It was further demonstrated that granule growth and consolidation could only be achieved when complete wetting was achieved in the wetting zone of the granulator. This study suggested a methodology based on in-line temperature measurements to quickly determine wetting efficiency. The described methodology could therefore be used as a tool to gain more fundamental understanding of the wetting stage during twin-screw granulation as well as to define suitable formulation and process ranges for further granulation process development.


Asunto(s)
Tecnología Farmacéutica , Humectabilidad , Celulosa/química , Excipientes/química , Lactosa/química , Preparaciones Farmacéuticas/química , Temperatura
18.
Int J Pharm ; 584: 119447, 2020 Jun 30.
Artículo en Inglés | MEDLINE | ID: mdl-32454133

RESUMEN

This article describes how to obtain reliable data during rheological analysis of active pharmaceutical ingredient/fatty acid suspensions. These materials are specifically used for prilling, an innovative pharmaceutical technique for the production of a multiparticulate dosage form. Nevertheless, presented guidelines are applicable for a wide range of pharmaceutical suspensions. Reliable rheological results can only be obtained when being aware of artefacts, such as a non-continuous medium, sedimentation, apparent wall slip and protrusion flow. To comply with the continuum hypothesis at high phase volumes (≥25% w/w), the required gap-to-particle-size ratio may be larger than the generally accepted 10:1 ratio. Reproducible flow curves that are not disturbed by sedimentation during sample analysis can be obtained faster by varying the shear rate stepwise from high to low values. While apparent wall slip (at low shear rates) can be prevented via serrated instead of smooth plates, protrusion flow (at high shear rates) during measurements with serrated plates results in non-reliable data. Therefore, in general, high viscous suspensions with yield stress can be analysed with serrated plates, while low viscous suspensions without yield stress should be analysed with geometries having smooth surfaces. By following these guidelines, accurate rheological properties of pharmaceutical suspensions can be obtained.


Asunto(s)
Ácidos Grasos/química , Preparaciones Farmacéuticas/química , Reología/métodos , Suspensiones , Viscosidad
19.
Int J Pharm ; 583: 119374, 2020 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-32339631

RESUMEN

In current study, it was investigated if the moisture-mediated polymorphic transition from δ- to ß-mannitol during twin screw granulation (TSG) also took place in high drug loaded formulations and if the specific granule morphology associated with the polymorphic transition could enable tableting of granules comprising 75% paracetamol, a poorly compactable drug. Experiments were performed on an integrated continuous manufacturing line, including a twin screw granulator, fluid bed dryer, mill and tablet press. The polymorphic transition of δ- to ß-mannitol was observed during twin screw granulation and granules exhibited the needle-shaped morphology, typical of this transition. TSG at low liquid-to-solid (L/S) ratios and use of polyvinylpyrrolidone or hydroxypropylmethylcellulose as binders inhibited the polymorphic transition, whereas screw speed, drying time, drying temperature and airflow did not affect the solid state of mannitol in the granules. Without binder and despite the high paracetamol drug load in the formulation, limited breakage and attrition was observed during drying and milling. In contrast to granules manufactured from a formulation containing paracetamol/ß-mannitol which could not be tableted due to extensive capping, granules prepared from a paracetamol/δ-mannitol formulation showed good tabletability. In conclusion, δ-mannitol is a promising TSG excipient, especially for high drug-loaded formulations with poor tabletability.


Asunto(s)
Acetaminofén/química , Excipientes/química , Manitol/química , Tecnología Farmacéutica , Composición de Medicamentos , Estabilidad de Medicamentos , Tamaño de la Partícula , Propiedades de Superficie , Comprimidos , Temperatura , Factores de Tiempo , Agua/química
20.
Arch Orthop Trauma Surg ; 140(5): 651-663, 2020 May.
Artículo en Inglés | MEDLINE | ID: mdl-32193679

RESUMEN

Although the literature generally agrees that displaced distal radius fractures require surgery, no single consensus exists concerning the length of immobilization and type of post-operative physiotherapeutic rehabilitation program. Palmar locking plate fixation represents a very stable fixation of the distal radius, and was assessed biomechanically in various studies. Surprisingly, most authors report additional immobilization after plate fixation. One reason might be due to the pain caused during active wrist mobilization in the early post-operative stages or secondly to protect the osteosynthesis in the early healing stages preventing secondary loss of reduction. This article addresses the biomechanical principles, current available evidence for early mobilization/immobilization and impact of physiotherapy after operatively treated distal radius fractures.


Asunto(s)
Fijación Interna de Fracturas/rehabilitación , Inmovilización/métodos , Modalidades de Fisioterapia , Fracturas del Radio/rehabilitación , Placas Óseas , Fijación Interna de Fracturas/métodos , Humanos , Fracturas del Radio/cirugía , Resultado del Tratamiento , Articulación de la Muñeca/fisiopatología
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