Pharmaceutical technological trends containing flavonoids: a patent review.

Ana Maria Santos Oliveira, Anamaria Mendon��a Santos, Jos�� Ad��o Carvalho Nascimento J��nior, Cl��udio Carvalho Santana J��nior, Jo��o Rafael Lisboa Rego Brito, Jussara Secundo Dos Santos, Saravanan Shanmugam, Paula Dos Passos Menezes, Luiza Abrah��o Frank, Mairim Russo Serafini
Author Information
  1. Ana Maria Santos Oliveira: Postgraduate Program in Pharmaceutical Sciences, Federal University of Sergipe, S��o Crist��v��o, Brazil. ORCID
  2. Anamaria Mendon��a Santos: Postgraduate Program in Health Sciences, Federal University of Sergipe, Aracaju, Brazil. ORCID
  3. Jos�� Ad��o Carvalho Nascimento J��nior: Postgraduate Program in Pharmaceutical Sciences, Federal University of Sergipe, S��o Crist��v��o, Brazil.
  4. Cl��udio Carvalho Santana J��nior: Postgraduate Program in Health Sciences, Federal University of Sergipe, Aracaju, Brazil.
  5. Jo��o Rafael Lisboa Rego Brito: Department of Pharmacy, Federal University of Sergipe, S��o Crist��v��o, Brazil.
  6. Jussara Secundo Dos Santos: Postgraduate Program in Pharmaceutical Sciences, Federal University of Sergipe, S��o Crist��v��o, Brazil.
  7. Saravanan Shanmugam: Postgraduate Program in Pharmaceutical Sciences, Federal University of Sergipe, S��o Crist��v��o, Brazil.
  8. Paula Dos Passos Menezes: SejaPhD, Brazil.
  9. Luiza Abrah��o Frank: Postgraduate Program in Pharmaceutical Sciences, Federal University of Rio Grande do Sul, Porto Alegre, Brazil.
  10. Mairim Russo Serafini: Postgraduate Program in Pharmaceutical Sciences, Federal University of Sergipe, S��o Crist��v��o, Brazil.

Abstract

Flavonoids such as silibinin, hesperetin, and phloretin exhibit well-documented biological activities, including anti-inflammatory, cytoprotective, anticarcinogenic, and antioxidant effects. However, their clinical application remains limited due to challenges such as poor aqueous solubility, low bioavailability, and restricted intestinal absorption, which can significantly reduce their pharmacological efficacy. This review analyzed patents related to innovative pharmaceutical technologies for flavonoids. The analysis used databases from the World Intellectual Property Organization and the European Patent Office. Following a comprehensive screening process, 38 patents were selected for detailed examination. These patents highlighted numerous studies on novel formulations, characterizations, and proprietary conditions. This review highlights technologies, such as nanocapsules, nanoemulsions, solid dispersions, phospholipid carriers, inclusion complexes, microemulsions, and other advanced systems, which enhance bioactive molecules' water solubility and stability. Consequently, these technologies improve permeability and absorption through the intended administration route, demonstrating the potential of flavonoids as promising candidates for various treatments, particularly when integrated into pharmaceutical technologies.

Keywords

References

  1. Molecules. 2018 May 11;23(5): [PMID: 29751694]
  2. Eur J Pharm Sci. 2023 Jun 1;185:106425 [PMID: 36934992]
  3. Curr Opin Drug Discov Devel. 2010 Jan;13(1):111-23 [PMID: 20047152]
  4. Recent Pat Drug Deliv Formul. 2020;14(1):63-74 [PMID: 31951172]
  5. AAPS PharmSciTech. 2024 Sep 7;25(7):212 [PMID: 39242428]
  6. Int J Pharm. 2010 Oct 31;399(1-2):129-39 [PMID: 20674732]
  7. Anticancer Agents Med Chem. 2012 Oct 1;12(8):836-51 [PMID: 22292763]
  8. J Ocul Pharmacol Ther. 2013 Mar;29(2):89 [PMID: 23485089]
  9. Antibiotics (Basel). 2024 Sep 05;13(9): [PMID: 39335017]
  10. Nat Prod Res. 2024 Apr 26;:1-20 [PMID: 38666545]
  11. Drug Metab Dispos. 2013 Sep;41(9):1679-85 [PMID: 23835761]
  12. PLoS One. 2013 Jun 28;8(6):e67504 [PMID: 23840726]
  13. Soft Matter. 2016 Mar 21;12(11):2826-41 [PMID: 26924445]
  14. EPMA J. 2021 Oct 06;12(4):559-587 [PMID: 34950252]
  15. Iran J Pharm Res. 2010 Fall;9(4):327-34 [PMID: 24381597]
  16. J Pharm Investig. 2018;48(1):43-60 [PMID: 30546919]
  17. Semin Cancer Biol. 2021 Aug;73:196-218 [PMID: 33130037]
  18. Mater Sci Eng C Mater Biol Appl. 2021 Feb;119:111624 [PMID: 33321666]
  19. Nat Commun. 2019 Oct 31;10(1):4971 [PMID: 31672964]
  20. Curr Pharm Des. 2019;25(21):2314-2322 [PMID: 31584366]
  21. J Nanobiotechnology. 2018 Sep 19;16(1):71 [PMID: 30231877]
  22. Biomed Pharmacother. 2021 Jun;138:111430 [PMID: 33662680]
  23. Int J Nanomedicine. 2018 Mar 28;13:1917-1926 [PMID: 29636609]
  24. Med Res Rev. 2003 Jul;23(4):519-34 [PMID: 12710022]
  25. Food Sci Nutr. 2020 May 28;8(7):3545-3558 [PMID: 32724617]
  26. Adv Healthc Mater. 2024 Nov;13(29):e2401312 [PMID: 39155417]
  27. Carbohydr Polym. 2022 Nov 1;295:119880 [PMID: 35988985]
  28. Indian J Pharm Sci. 2015 May-Jun;77(3):249-57 [PMID: 26180269]
  29. J Food Biochem. 2020 Sep;44(9):e13380 [PMID: 32667062]
  30. Altern Med Rev. 2011 Sep;16(3):239-49 [PMID: 21951025]
  31. Molecules. 2022 Dec 12;27(24): [PMID: 36557950]
  32. Pharmaceutics. 2021 Aug 23;13(8): [PMID: 34452276]
  33. Drug Deliv. 2022 Dec;29(1):3052-3070 [PMID: 36146939]
  34. Phytomedicine. 2020 Jun;71:153240 [PMID: 32450461]
  35. Pharmaceutics. 2021 Apr 28;13(5): [PMID: 33925040]
  36. Drug Deliv. 2007 Aug;14(6):381-7 [PMID: 17701527]
  37. Mater Sci Eng C Mater Biol Appl. 2021 Jan;120:111681 [PMID: 33545843]
  38. Eur J Pharm Biopharm. 2011 May;78(1):1-9 [PMID: 21266197]
  39. Adv Wound Care (New Rochelle). 2021 May;10(5):234-256 [PMID: 32320364]
  40. Pharmaceutics. 2021 Jul 20;13(7): [PMID: 34371790]
  41. Phytother Res. 2021 Sep;35(9):4660-4702 [PMID: 33847440]
  42. Food Chem Toxicol. 2019 Mar;125:494-502 [PMID: 30735748]
  43. Drug Deliv Transl Res. 2020 Dec;10(6):1552-1570 [PMID: 32676952]
  44. Arzneimittelforschung. 2003;53(6):420-7 [PMID: 12872613]
  45. AAPS PharmSciTech. 2017 Nov;18(8):3236-3246 [PMID: 28577126]
  46. Photochem Photobiol Sci. 2024 May;23(5):853-869 [PMID: 38613600]
  47. Curr Drug Metab. 2012 May 1;13(4):396-417 [PMID: 22443535]
  48. J Pharm Sci. 2012 Apr;101(4):1355-77 [PMID: 22213468]
  49. Curr Drug Deliv. 2018;15(10):1426-1438 [PMID: 30058490]
  50. Drug Deliv Transl Res. 2021 Apr;11(2):659-674 [PMID: 33433841]
  51. Int J Environ Res Public Health. 2021 Mar 04;18(5): [PMID: 33806343]
  52. Acta Pharm. 2008 Sep;58(3):257-74 [PMID: 19103563]
  53. Eur J Pharmacol. 2020 Apr 15;873:172992 [PMID: 32035144]
  54. Nutrients. 2022 Jun 26;14(13): [PMID: 35807828]
  55. Expert Rev Med Devices. 2024 Jan-Feb;21(1-2):91-107 [PMID: 38189146]
  56. Drug Discov Today. 2020 Dec;25(12):2080-2088 [PMID: 33017690]
  57. Molecules. 2020 Dec 01;25(23): [PMID: 33271886]
  58. Int J Pharm. 2010 Mar 30;388(1-2):257-62 [PMID: 20060453]
  59. Pharmaceutics. 2021 Jan 20;13(2): [PMID: 33498470]
  60. Mol Pharm. 2020 Oct 5;17(10):3709-3719 [PMID: 32841038]
  61. Eur J Pharm Sci. 2000 Oct;11 Suppl 2:S93-8 [PMID: 11033431]
  62. Life Sci. 2020 Sep 1;256:117977 [PMID: 32603822]
  63. Molecules. 2014 Oct 13;19(10):16447-57 [PMID: 25314605]
  64. Molecules. 2022 Jan 06;27(2): [PMID: 35056662]
  65. ACS Nano. 2009 Jan 27;3(1):16-20 [PMID: 19206243]
  66. Nutrients. 2020 Jul 22;12(8): [PMID: 32708036]
  67. Postgrad Med J. 2019 Nov;95(1129):601-611 [PMID: 31434683]
  68. Eur Biophys J. 2020 Sep;49(6):463-472 [PMID: 32705322]
  69. Nutrients. 2022 Sep 02;14(17): [PMID: 36079895]
  70. Molecules. 2019 Jun 07;24(11): [PMID: 31181687]
  71. Mater Sci Eng C Mater Biol Appl. 2016 Feb;59:1016-1024 [PMID: 26652460]
  72. AAPS PharmSciTech. 2023 Jun 22;24(6):138 [PMID: 37349650]
  73. Molecules. 2022 May 02;27(9): [PMID: 35566252]
  74. Int J Pharm. 2001 Apr 17;217(1-2):79-86 [PMID: 11292544]
  75. Int J Pharm. 2009 Apr 17;371(1-2):182-9 [PMID: 19162147]
  76. Curr Drug Deliv. 2017;14(8):1078-1096 [PMID: 27557673]
  77. Mini Rev Med Chem. 2019;19(13):1060-1067 [PMID: 30864525]
  78. Eur J Pharm Biopharm. 2004 Mar;57(2):307-12 [PMID: 15018989]
  79. Daru. 2022 Jun;30(1):165-189 [PMID: 35437630]
  80. Int J Nanomedicine. 2008;3(3):295-309 [PMID: 18990939]
  81. Adv Drug Deliv Rev. 2007 Jul 30;59(7):667-76 [PMID: 17618704]
  82. Colloids Surf B Biointerfaces. 2016 Dec 1;148:85-94 [PMID: 27591574]
  83. Int J Immunopathol Pharmacol. 2020 Jan-Dec;34:2058738420929442 [PMID: 32571120]
  84. Pharmazie. 2008 Jan;63(1):35-42 [PMID: 18271301]
  85. Int J Mol Sci. 2019 Oct 08;20(19): [PMID: 31597283]
  86. Eur J Pharmacol. 2020 Dec 15;889:173593 [PMID: 32971088]
  87. Asian J Pharm Sci. 2019 May;14(3):265-274 [PMID: 32104457]
  88. Molecules. 2019 Dec 27;25(1): [PMID: 31892180]

MeSH Term

Flavonoids
Humans
Patents as Topic
Technology, Pharmaceutical
Solubility
Animals
Emulsions
Antioxidants

Chemicals

Flavonoids
Emulsions
Antioxidants

Word Cloud

Created with Highcharts 10.0.0technologiespatentsreviewpharmaceuticalflavonoidssilibininphloretinsolubilityabsorptionFlavonoidshesperetinexhibitwell-documentedbiologicalactivitiesincludinganti-inflammatorycytoprotectiveanticarcinogenicantioxidanteffectsHoweverclinicalapplicationremainslimitedduechallengespooraqueouslowbioavailabilityrestrictedintestinalcansignificantlyreducepharmacologicalefficacyanalyzedrelatedinnovativeanalysisuseddatabasesWorldIntellectualPropertyOrganizationEuropeanPatentOfficeFollowingcomprehensivescreeningprocess38selecteddetailedexaminationhighlightednumerousstudiesnovelformulationscharacterizationsproprietaryconditionshighlightsnanocapsulesnanoemulsionssoliddispersionsphospholipidcarriersinclusioncomplexesmicroemulsionsadvancedsystemsenhancebioactivemolecules'waterstabilityConsequentlyimprovepermeabilityintendedadministrationroutedemonstratingpotentialpromisingcandidatesvarioustreatmentsparticularlyintegratedPharmaceuticaltechnologicaltrendscontainingflavonoids:patentHesperetin

Similar Articles

Cited By

No available data.