Tinjauan Kritis Kemampuan Fourier Transform Infrared Spectroscopy (FTIR) dalam Analisis dan Karakterisasi Senyawa Obat
Abstract
Penelitian ini bertujuan untuk melakukan tinjauan kritis terhadap kemampuan Fourier Transform Infrared Spectroscopy (FTIR) dalam analisis dan karakterisasi senyawa obat. FTIR telah menjadi teknik spektroskopi yang sangat penting dalam penelitian farmasi dan industri obat, memberikan wawasan mendalam tentang struktur molekuler, identifikasi senyawa, dan pengukuran kualitas obat. Tinjauan literatur ini mencakup identifikasi senyawa obat melalui sidik jari spektrum, karakterisasi struktur molekuler, pengukuran kualitas dan kemurnian obat, serta batasan dan tantangan yang perlu diatasi. Kami juga mengeksplorasi pengembangan terkini dalam metodologi FTIR dan integrasinya dengan teknik analisis lainnya. Hasilnya menunjukkan bahwa FTIR telah berhasil diterapkan dalam berbagai konteks farmasi, dari penelitian pengembangan obat hingga pengontrolan kualitas produksi. Dengan memahami kelebihan, batasan, dan terobosan terkini, tinjauan ini memberikan pandangan yang komprehensif tentang peran kritis FTIR dalam analisis senyawa obat.
References
Al-Mashhadani, E. S. M., & Al-Mashhadani, M. K. H. (2023). Utilization of Chlorella vulgaris after the Extraction Process in Wastewater Treatment as a Biosorption Material for Ciprofloxacin Removal. Journal of Ecological Engineering, 24(4), 1–15.
Altharawi, A., Rahman, K. M., & Chan, K. L. A. (2019). Towards identifying the mode of action of drugs using live-cell FTIR spectroscopy. The Analyst, 144(8), 2725–2735. https://doi.org/10.1039/C8AN02218F
Barra, A., Lazăr, O., Pantazi, A., Hortigüela, M. J., Otero-Irurueta, G., Enăchescu, M., & Ferreira, P. (2021). Joining caffeic acid and hydrothermal treatment to produce environmentally benign highly reduced graphene oxide. . Nanomaterials, 11(3), 1–15.
Berthomieu, C., & Hienerwadel, R. (2009). Fourier transform infrared (FTIR) spectroscopy. Photosynthesis Research, 101(2–3), 157–170. https://doi.org/10.1007/s11120-009-9439-x
Clarke, C. B., John, J., Paul, P., Sakunthala, M., Udhaya, C. I., Paul, J. J. P., & Udhaya, C. I. (2017). Green synthesis of Manganese nanoparticles using the aqueous extract of Ctenolepis garcini (Burm. f.). International Journal of Botany Studies, 2(5), 71–75.
De Luca, M., Ioele, G., Grande, F., Occhiuzzi, M. A., Chieffallo, M., Garofalo, A., & Ragno, G. (2023). Multivariate Curve Resolution Methodology Applied to the ATR-FTIR Data for Adulteration Assessment of Virgin Coconut Oil. Molecules, 28(12), 4661. https://doi.org/10.3390/molecules28124661
Deng, G., Nagy, C., & Yu, P. (2023). Combined molecular spectroscopic techniques (SR-FTIR, XRF, ATR-FTIR) to study physiochemical and nutrient profiles of Avena sativa grain and nutrition and structure interactive association properties. Critical Reviews in Food Science and Nutrition, 63(25), 7225–7237. https://doi.org/10.1080/10408398.2022.2045470
Diarsa, M., & Gupte, A. (2021). Preparation, characterization and its potential applications in Isoniazid drug delivery of porous microcrystalline cellulose from banana pseudostem fibers. 3 Biotech, 11(7).
Fauziah, R., Risna, Djide, N., & Subehan. (2022). Karakterisasi Senyawa Dan Uji Aktivitas Antibakteri Dari Isolat Actinomycetes Rhizosfer Tanaman Teh (Camellia sinensis L.). Majalah Farmasi Dan Farmakologi, 26(2), 74–78.
Gad, H., Ahmady, S., Shoer, M., & Azizi. (2013). Application of Chemometrics in Authentication of Herbal Medicines : a review. Phytocem Anal, 24(1), 1–24.
Gao, Y., Aspnes, D. E., & Franzen, S. (2022). Classical Model of Surface Enhanced Infrared Absorption (SEIRA) Spectroscopy. The Journal of Physical Chemistry A, 126(2), 341–351. https://doi.org/10.1021/acs.jpca.1c08463
Guntarti, A., & Prativi, S. R. (2017). Aplikasi metode fourier transform infrared (FTIR) dikombinasikan dengan kemometrika untuk analisis daging tikus rumah (Rattus diardi) dalam bakso daging sapi. Pharmaciana, 7(2), 133–140.
Haaren, C. V., Bock, M. D., & Kazarian, S. G. (2023). Advances in ATR-FTIR Spectroscopic Imaging for the Analysis of Tablet Dissolution and Drug Release. Molecules, 28, 4705.
Hong, T., Yin, J., Nie, S., & Xie, M. (2021). Applications of infrared spectroscopy in polysaccharide structural analysis: Progress, challenge and perspective Author links open overlay panel. Food Chemistry, 10(12).
Kandori, H., & Mizutani, Y. (2022). FTIR and Raman Spectroscopy of Rhodopsins (pp. 207–228). https://doi.org/10.1007/978-1-0716-2329-9_10
Kumar, S., & Krishnan, K. (2012). Cytotoxicity and antioxidant activity of 5-(2, 4- dimethyl benzyl) pyrrolidin-2-one extracted from marine Streptomyces VITSVK5 spp. . Saudi J Biol Sci, 19, 81–86.
Lee, H., Kunz, A., Shim, W. J., & Walther, B. A. (2019). Microplastic contamination of table salts from Taiwan, including a global review. Sci. Rep., 9, 10145.
Lin, S. Y. (2021). Current And Potential Applications Of Simultaneous DSC-FTIR Microspectroscopy For Pharmaceutical Analysis. Journal of Food and Drug Analysis, 29(2), 182–202.
Liu, C., Hu, M., Ma, D., Lei, J., & Xu, J. (2018). Photodynamic inactivation of antibiotic-resistant bacteria and biofilms by hematoporphyrin monomethyl ether. Lasers Med. Sci., 31, 297–304.
Merriman, S., Chandra, D., Borowczak, M., Dhinojwala, A., & Benko, D. (2022). Simultaneous determination of additive concentration in rubber using ATR-FTIR spectroscopy. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 281, 121614. https://doi.org/10.1016/j.saa.2022.121614
Nurfitriyana, Fithri, N., Fitria, & Yanuarti, R. (2022). Analisis Interaksi Kimia Fouruer Transform Infrared (FTIR) Tablet Gastroentif Ekstrak Daun Petai (parkua speciosa Hassk) Dengan Polimer HPMC-K4M Dan Kito san. ISTA Online Technologi Journal, 3(2), 27–33.
Pilling, M. J., Bassan, P., & Gardner, P. (2015). Comparison of transmission and transflectance mode FTIR imaging of biological tissue. The Analyst, 140(7), 2383–2392. https://doi.org/10.1039/C4AN01975J
Rafi, M., Anggundari, W., & Irawadil, T. (2016). Potensi Spektroskopi FT-IR-ATR Dan Kemometrik Untuk Membedakan Rambut Babi, Kambing dan Sapi. Indonesian Journal of Chemical Science, 5(3), 230–234.
Rojas-Flores, S., Nazario-Naveda, R., Benites, S. M., Gallozzo-Cardenas, M., Delfín-Narciso, D., & Díaz, F. (2022). Use of Pineapple Waste as Fuel in Microbial Fuel Cell for the Generation of Bioelectricity. Molecules, 27(21), 7389. https://doi.org/10.3390/molecules27217389
Rollando, Ongkowijoyo, G. N., Yoedistira, C. D., & Monica, E. (2023). Analisis Metil Paraben Dan Propil Paraben Pada Sediaan Kosmetik Menggunakan Spektrofotometer Derivatif Dan Kemometrik Multivariat. Jurnal Ilmu Farmasi Dan Farmasi Klinik (JIFFK), 20(1), 10–19.
Santos, D., Correia, M., Mateus, M., Saraiva, J., Vicente, A., & Moldao. (2019). Fourier Transform Infrared (FT-IR) Spectroscopy as a Possible Rapid Tool to Evaluate Abiotic Stress Effects on Pineapple By-Product. Applied Sciences, 1(1), 2–11.
Sari, N., Fajri, M., & Anjas. (2018). Analisis Fitokimia Dan Gugus Fungsi Dari Ekstrak Etanol Pisang Goroho Merah (Musa Acuminate (L)). IJOBB, 2(1), 30–34.
Setiabudi, A., ardian, R., & Muzakir, A. (2012). Karakterisasi Material; Prinsip dan Aplikasinya dalam Penelitian Kimia. UPI Press.
Silviyah, S., Widodo, C., & Masruroh. (2014). Penggunaan Metode FT-IR Untuk Mengidentifikasi Gugus Fungsi Pada Proses Pembaluran Penderita Mioma. Physics Student Journal, 1(1), 1–28.
Sosulin, I. S., & Feldman, V. I. (2022). Spectroscopy and radiation-induced chemistry of an atmospherically relevant CH2F2…H2O complex: Evidence for the formation of CF2…H2O complex as revealed by FTIR matrix isolation and ab initio study. Chemosphere, 291, 132967. https://doi.org/10.1016/j.chemosphere.2021.132967
Syarif, H. A., Saputra, D., & Fahmi, K. (2022). Analisis Penerapan Penggunaan Paving Block Geopolimer Abu Sawit Dengan Tambahan Ordinary Portland Cement (OPC) dan Portland Composite Cement (PCC) di Lahan Gambut yang Berbasis Eco-Green. Artikel Ilmiah Aplikasi Teknologi, 14(2), 144–151.
Wang, Y. Y., Li, J. Q., Liu, H. G., & Wang, Y. Z. (2019). Attenuated Total Reflection-Fourier Transform Infrared Spectroscopy (ATR-FTIR) Combined with Chemometrics Methods for the Classification of Lingzhi Species. Molecules, 24.
Yang, X., Wei, X., Yu, K., Wan, C., Wang, Y., Huang, S., Sun, Q., & Huang, J. (2022). Identification of myocardial fibrosis by ATR-FTIR spectroscopy combined with chemometrics. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 264, 120238. https://doi.org/10.1016/j.saa.2021.120238
Zabelin, A. A., Shkuropatova, V. A., Shkuropatov, A. Ya., & Shuvalov, V. A. (2015). Temperature dependence of light-induced absorbance changes associated with chlorophyll photooxidation in manganese-depleted core complexes of photosystem II. Biochemistry (Moscow), 80(10), 1279–1287. https://doi.org/10.1134/S0006297915100089
Zhang, Q., Zhang, J., Shen, J., Silva, A., Dennis, D. A., & Barrow, C. J. (2006). A Simple 96-Well Microplate Method for Estimation of Total Polyphenol Content in Seaweeds. Journal of Applied Phycology, 18(3–5), 445–450. https://doi.org/10.1007/s10811-006-9048-4


