کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
7140783 | 1462029 | 2018 | 10 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Raman spectral imaging technique for API detection in pharmaceutical microtablets
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کلمات کلیدی
MCCSWIRLS-SVMMIRSEPSNVAPIPLSRSavitzky-GolayRMSEPRMSECVNIRSECRaman hyperspectral imagingPLSRBFRMSECThree-dimensionalCCDStandard normal variate - استاندارد عادیNondestructive measurement - اندازه گیری غیرمخربChemical imaging - تصویربرداری شیمیاییPharmaceutical manufacturing - تولید داروییProcess analytical technology - تکنولوژی تحلیلی فرایندPartial least squares - حداقل مربعات جزئی Standard error of prediction - خطای استاندارد پیش بینیStandard error of calibration - خطای استاندارد کالیبراسیونRoot Mean Square Error of Calibration - خطای میدان ریشه متوسط کالیبراسیونCharge-Coupled Device - دستگاه متصل شارژtwo-dimensional - دو بعدیPartial least squares regression - رگرسیون حداقل مربعات جزئیRoot mean square error of cross validation - ریشه میانگین خطای مربع اعتبارسنج متقابل استMicrocrystalline cellulose - سلولز های میکروکریستالیRadial basis function - عملکرد پایه شعاعیMid-infrared - مادون قرمزActive Pharmaceutical Ingredient - مواد اولیه دارویی فعالShort-wave infrared - موج کوتاه مادون قرمزNear-infrared - نزدیک مادون قرمزpat - پاتhigh performance liquid chromatography - کروماتوگرافی مایع با کارایی بالاHPLC - کروماتوگرافی مایعی کاراLeast-Squares Support Vector Machines - کمترین مربعات پشتیبانی از ماشین های بردار
موضوعات مرتبط
مهندسی و علوم پایه
شیمی
شیمی آنالیزی یا شیمی تجزیه
پیش نمایش صفحه اول مقاله
چکیده انگلیسی
In pharmaceutical manufacturing, quality monitoring of end products is essential to gain regulatory approval. In particular, monitoring the quantity of an active pharmaceutical ingredient (API) in the administered dosage is key to ensuring the content uniformity of the product. Thus, we herein aim to demonstrate the ability of the newly developed line-scan Raman hyperspectral imaging (RHSI) technique for the quantitative analysis of APIs in microtablet samples. Microtablets containing the API of interest and appropriate excipients of varying concentrations (i.e., 60-130% (w/w) API) were prepared by direct compression. The microtablet RHSI spectra were obtained over a wavelength range of 400-1800â¯cmâ1. High-performance liquid chromatography was also employed as a reference method for the API assay. Multivariate analysis methods, including partial least squares and least-squares support vector machines, were employed to predict the API concentrations using the spectral and reference values of the microtablets. The developed models exhibited excellent prediction abilities for the API concentration, with a coefficient of correlation (R2)â>0.95, which was associated with an error of <5% (w/w) API. Furthermore, visualization of the API concentrations and distributions in the microtablets was achieved through chemical imaging. These results confirmed that line-scan RHSI is a powerful tool for the characterization of pharmaceutical products. In addition, this approach is suitable for application in the pharmaceutical production line for the online inspection of bulk products and would be expected to easily replace conventional measurement techniques.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Sensors and Actuators B: Chemical - Volume 260, 1 May 2018, Pages 213-222
Journal: Sensors and Actuators B: Chemical - Volume 260, 1 May 2018, Pages 213-222
نویسندگان
Lalit Mohan Kandpal, Byoung-Kwan Cho, Jagdish Tewari, Nishanth Gopinathan,