Biopharmaceutical substantiation of the composition and analysis of the soft dosage form with chloropyramine hydrochloride

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Abstract

Introduction. An urgent task of our time is the search for new dosage forms for already known and widely used active substances. An example is suprastin, which is used to treat allergic diseases that cause inflammatory processes: dermatoses, angioedema, urticaria, allergic rhinitis, initial manifestations of bronchial asthma and is usually prescribed orally in the form of tablets or solutions. However, these routes of administration have a number of disadvantages, which are easily mitigated in soft dosage forms. Ease of administration, good bioavailability, the possibility of systemic action of drugs and the speed of its development, active absorption of substances that undergo breakdown in the gastrointestinal tract. Considering the advantages of the ointment as a dosage form, and the data on the pharmacological effectiveness of suprastin, it seems appropriate to develop a soft dosage form with pronounced anti-inflammatory and antihistamine activity and methods for qualitative and quantitative determination of the active substance.

Purpose. Conduct biopharmaceutical research on the selection of a base for a soft dosage form with chloropyramine hydrochloride. To determine the optimal conditions for the spectrophotometric determination of chloropyramine hydrochloride, which is part of the dosage form.

Material and methods. The object of the study was ointment compositions, which included chloropyramine hydrochloride 0.1 g. When choosing the optimal conditions for confirming the authenticity of chloropyramine hydrochloride in the ointment, a model mixture was prepared with the exact content of all components. The CO spectra of chloropyramine hydrochloride and its extract from the ointment in water, solutions of sodium hydroxide and hydrochloric acid were recorded using an SF-56 spectrophotometer in the wavelength range from 220 to 350 nm.

Results. 5 ointment compositions with suprastin are proposed. Based on biopharmaceutical studies, the degree of release of the active substance was studied. To confirm the authenticity of the soft dosage form, the absorption spectra of chloropyramine hydrochloride in three solvents were used – purified water, 0.1 M sodium hydroxide solution and 0.1 M hydrochloric acid solution. The absorption spectrum in a 0.1 M solution of hydrochloric acid has more pronounced maxima and stable optical density.

Conclusion. The greatest release of the active complex occurs from the hydrophilic base, which can serve as a basis for its use in the production of soft dosage forms with suprastin.

Methods have been developed to confirm the authenticity of chloropyramine hydrochloride in soft dosage form. The possibility of using spectrophotometry to identify the studied medicinal substance in the ointment has been demonstrated.

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About the authors

Anna Anatolyevna Chakhirova

Pyatigorsk Medical and Pharmaceutical Institute – branch of theVolgograd State Medical University of the Ministry of Health of Russia

Author for correspondence.
Email: annachaxirova@gmai.com
ORCID iD: 0000-0002-5265-9478

Candidate of Pharmaceutical Sciences, Associate Professor of the Department of Pharmaceutical Technology with a course in Medical Biotechnology

Russian Federation, Kalinina Ave., 11, Pyatigorsk, 357532

Elena Vladimirovna Kovtun

Pyatigorsk Medical and Pharmaceutical Institute – branch of theVolgograd State Medical University of the Ministry of Health of Russia

Email: elena.f.73@mail.ru
ORCID iD: 0000-0003-3437-760X

Candidate of Pharmaceutical Sciences, Associate Professor of the Department of Pharmaceutical Technology with a course in Medical Biotechnology

Russian Federation, Kalinina Ave., 11, Pyatigorsk, 357532

Victoria Anatolyevna Chakhirova

Pyatigorsk Medical and Pharmaceutical Institute – branch of theVolgograd State Medical University of the Ministry of Health of Russia

Email: vchakhirova@mail.ru
ORCID iD: 0000-0001-9039-4717

Teacher of the Department of Pharmaceutical Technology with a Course in Medical Biotechnology

Russian Federation, Kalinina Ave., 11, Pyatigorsk, 357532

Natalya Vasilyevna Blagorazumnaya

Pyatigorsk Medical and Pharmaceutical Institute – branch of theVolgograd State Medical University of the Ministry of Health of Russia

Email: nataliyva@rambber.ru
ORCID iD: 0009-0000-5205-4869

Candidate of Pharmaceutical Sciences, Associate Professor of the Department of Pharmaceutical Chemistry

Russian Federation, Kalinina Ave., 11, Pyatigorsk, 357532

Dmitry Olegovich Bokov

Sechenov First Moscow State Medical University; Federal State Budgetary Scientific Institution “Federal Research Center of Nutrition and Biotechnology”

Email: bokov_d_o@staff.sechenov.ru
ORCID iD: 0000-0003-2968-2466

Candidate of Pharmaceutical Sciences, Associate Professor, Associate Professor of the Department of Pharmaceutical Natural Sciences of the Nelyubin Institute of Pharmacy; Researcher, Laboratory of Food Chemistry

Russian Federation, st. Trubetskaya, 8, building 2, Moscow, 119991; Ustinsky proezd, 2/14, Moscow, 109240

Alexey Aleksandrovich Prokopov

Moscow State Medical and Dental University named after A.I. Evdokimov

Email: pral@mail.ru
ORCID iD: 0000-0003-0099-3690

Doctor of Chemical Sciences, Associate Professor, Head of the Department of General and Bioorganic Chemistry

Russian Federation, st. Delegatskaya, 20, building 1, Moscow, 127473

Irina Alexandrovna Samylina

Sechenov First Moscow State Medical University

Email: samylina_i_a@staff.sechenov.ru
ORCID iD: 0000-0002-4895-0203

Doctor of Pharmaceutical Sciences, Corresponding Member of the RAS, Professor, Professor of the Pharmaceutical Natural Sciences Department 

Russian Federation, st. Trubetskaya, 8, building 2, Moscow, 119991

References

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Supplementary files

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2. Fig. 1. Absorption spectra of a 0.001% solution of chloropyramine hydrochloride: 1 – 0.1 m sodium hydroxide solution; 2 – 0.1 m hydrochloric acid solution; 3 – purified water

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3. Fig. 2. Absorption spectrum of a 0.001% solution of chloropyramine hydrochloride in 0.1 M hydrochloric acid

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4. Fig. 3. Dependence of the degree of release of chloropyramine hydrochloride from various bases on dialysis time (dialysis medium – water, n=6, P=95%)

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