Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin

Introduction. Buccal drug delivery has a number of advantages over oral administration: ease of application, good blood supply to the buccal mucosa, drug can enter the systemic circulation directly, avoiding the "first pass effect through the liver", and are not exposed to the acidic envir...

Ամբողջական նկարագրություն

Մատենագիտական մանրամասներ
Հիմնական հեղինակներ: A. S. Viktorova, E. S. Elizarova, R. S. Romanova, V. R. Timergalieva, V. V. Khutoryanskiy, R. I. Moustafine
Ձևաչափ: Հոդված
Լեզու:Russian
Հրապարակվել է: LLC Center of Pharmaceutical Analytics (LLC «CPHA») 2021-02-01
Շարք:Разработка и регистрация лекарственных средств
Խորագրեր:
Առցանց հասանելիություն:https://www.pharmjournal.ru/jour/article/view/860
_version_ 1826569748508311552
author A. S. Viktorova
E. S. Elizarova
R. S. Romanova
V. R. Timergalieva
V. V. Khutoryanskiy
R. I. Moustafine
author_facet A. S. Viktorova
E. S. Elizarova
R. S. Romanova
V. R. Timergalieva
V. V. Khutoryanskiy
R. I. Moustafine
author_sort A. S. Viktorova
collection DOAJ
description Introduction. Buccal drug delivery has a number of advantages over oral administration: ease of application, good blood supply to the buccal mucosa, drug can enter the systemic circulation directly, avoiding the "first pass effect through the liver", and are not exposed to the acidic environment of the gastric juice and the destructive action of digestive enzymes. The use of interpolymer complexes (IPCs) makes it possible not only to ensure adhesion to the mucosal membranes of the oral cavity, but also to achieve a prolonged release of drugs.Aim. Development of carriers based on interpolymer complexes using Carbopol® 971 NF (C971) and poly(2-ethyl-2-oxazoline) (POZ) of different molecular weights for buccal delivery of metformin (MF).Materials and methods. The study of IPC adhesion was carried out using a TA.XTplus texture analyzer (Stable Micro Systems, UK); mucin compacts with a diameter of 13 mm were used as a substrate; these were prepared by compressing porcine gastric mucin powder using a manual hydraulic press for IR spectroscopy (PerkinElmer, USA) at a pressure of 2.45 MPa. The study of the swelling capacity was carried out by placing polymer matrices in an artificial saliva medium, with constant thermostating at a temperature of 37.0 ± 0.5 °C for 5 hours. The study of the release of MF from the matrices based on IPC was carried out using a DFZ II apparatus (Erweka, Germany) according to the Flow Through Cell method (USP IV) with cells for tablets (22.6 mm) and adaptors for ointments, creams and gels in a medium simulating saliva. The concentration of MF in the samples from the dissolution tests was determined with UV-spectrophotometry (Lambda, PerkinElmer, USA) at 232.8 nm.Results and discussion. In a comparative study of the mucoadhesive properties of polymer samples, IPC compacts showed a mucoadhesion capacity comparable to that of poly(2-ethyl-2-oxazoline); at the same time, compacts from physical mixtures (PM) and C971 are inferior in terms of the separation force to IPC samples, however, POZes dissolve in an artificial saliva medium, that is, they are not suitable as dosage forms for buccal delivery. For 5 hours of the experiment to assess the swelling capacity, the IPC matrices did not change significantly, which can ensure their comfortable use as carriers for buccal delivery. When evaluating the release of metformin from polymer matrices (with weight ratio MF/IPC 1: 0.5), the most complete release (more than 90 %) is observed from both IPC matrices compared to matrices of PM and individual polymers.Conclusion. Polycomplex matrix systems based on C971-POZ (50 kDa) and C971-POZ (500 kDa) are suitable for buccal delivery of metformin.
first_indexed 2024-04-10T01:39:07Z
format Article
id doaj.art-623d9746b97c4a3aa0cabc92047c65e1
institution Directory Open Access Journal
issn 2305-2066
2658-5049
language Russian
last_indexed 2025-03-14T11:44:16Z
publishDate 2021-02-01
publisher LLC Center of Pharmaceutical Analytics (LLC «CPHA»)
record_format Article
series Разработка и регистрация лекарственных средств
spelling doaj.art-623d9746b97c4a3aa0cabc92047c65e12025-03-02T09:53:24ZrusLLC Center of Pharmaceutical Analytics (LLC «CPHA»)Разработка и регистрация лекарственных средств2305-20662658-50492021-02-01101485510.33380/2305-2066-2021-10-1-48-55796Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of MetforminA. S. Viktorova0E. S. Elizarova1R. S. Romanova2V. R. Timergalieva3V. V. Khutoryanskiy4R. I. Moustafine5Institute of Pharmacy, Kazan State Medical UniversityInstitute of Pharmacy, Kazan State Medical UniversityInstitute of Pharmacy, Kazan State Medical UniversityInstitute of Pharmacy, Kazan State Medical UniversityInstitute of Pharmacy, Kazan State Medical University; Reading School of Pharmacy, University of ReadingInstitute of Pharmacy, Kazan State Medical UniversityIntroduction. Buccal drug delivery has a number of advantages over oral administration: ease of application, good blood supply to the buccal mucosa, drug can enter the systemic circulation directly, avoiding the "first pass effect through the liver", and are not exposed to the acidic environment of the gastric juice and the destructive action of digestive enzymes. The use of interpolymer complexes (IPCs) makes it possible not only to ensure adhesion to the mucosal membranes of the oral cavity, but also to achieve a prolonged release of drugs.Aim. Development of carriers based on interpolymer complexes using Carbopol® 971 NF (C971) and poly(2-ethyl-2-oxazoline) (POZ) of different molecular weights for buccal delivery of metformin (MF).Materials and methods. The study of IPC adhesion was carried out using a TA.XTplus texture analyzer (Stable Micro Systems, UK); mucin compacts with a diameter of 13 mm were used as a substrate; these were prepared by compressing porcine gastric mucin powder using a manual hydraulic press for IR spectroscopy (PerkinElmer, USA) at a pressure of 2.45 MPa. The study of the swelling capacity was carried out by placing polymer matrices in an artificial saliva medium, with constant thermostating at a temperature of 37.0 ± 0.5 °C for 5 hours. The study of the release of MF from the matrices based on IPC was carried out using a DFZ II apparatus (Erweka, Germany) according to the Flow Through Cell method (USP IV) with cells for tablets (22.6 mm) and adaptors for ointments, creams and gels in a medium simulating saliva. The concentration of MF in the samples from the dissolution tests was determined with UV-spectrophotometry (Lambda, PerkinElmer, USA) at 232.8 nm.Results and discussion. In a comparative study of the mucoadhesive properties of polymer samples, IPC compacts showed a mucoadhesion capacity comparable to that of poly(2-ethyl-2-oxazoline); at the same time, compacts from physical mixtures (PM) and C971 are inferior in terms of the separation force to IPC samples, however, POZes dissolve in an artificial saliva medium, that is, they are not suitable as dosage forms for buccal delivery. For 5 hours of the experiment to assess the swelling capacity, the IPC matrices did not change significantly, which can ensure their comfortable use as carriers for buccal delivery. When evaluating the release of metformin from polymer matrices (with weight ratio MF/IPC 1: 0.5), the most complete release (more than 90 %) is observed from both IPC matrices compared to matrices of PM and individual polymers.Conclusion. Polycomplex matrix systems based on C971-POZ (50 kDa) and C971-POZ (500 kDa) are suitable for buccal delivery of metformin.https://www.pharmjournal.ru/jour/article/view/860interpolymer complexesmetforminbuccal deliverypolyoxazolineadhesion
spellingShingle A. S. Viktorova
E. S. Elizarova
R. S. Romanova
V. R. Timergalieva
V. V. Khutoryanskiy
R. I. Moustafine
Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
Разработка и регистрация лекарственных средств
interpolymer complexes
metformin
buccal delivery
polyoxazoline
adhesion
title Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
title_full Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
title_fullStr Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
title_full_unstemmed Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
title_short Interpolymer Complexes Based on Carbopol<sup>®</sup> and Poly(2-ethyl-2-oxazoline) as Carriers for Buccal Delivery of Metformin
title_sort interpolymer complexes based on carbopol sup r sup and poly 2 ethyl 2 oxazoline as carriers for buccal delivery of metformin
topic interpolymer complexes
metformin
buccal delivery
polyoxazoline
adhesion
url https://www.pharmjournal.ru/jour/article/view/860
work_keys_str_mv AT asviktorova interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin
AT eselizarova interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin
AT rsromanova interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin
AT vrtimergalieva interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin
AT vvkhutoryanskiy interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin
AT rimoustafine interpolymercomplexesbasedoncarbopolsupsupandpoly2ethyl2oxazolineascarriersforbuccaldeliveryofmetformin