LECTINS AS BIOACTIVE MOLECULES: EMERGING APPLICATIONS AND THERAPEUTIC INSIGHTS-A REVIEW

Authors

  • FAKEHA MOHAMMED REHAN SHAIKH Department of Chemistry, Faculty of Science, Wilson College (Autonomous), Mumbai-40007, Maharashtra, India
  • ASHISH SAMBHAJI UZGARE Department of Chemistry, Faculty of Science, Wilson College (Autonomous), Mumbai-40007, Maharashtra, India

DOI:

https://doi.org/10.22159/ijcr.2026v10i1.304

Keywords:

Lectin, Anticancer, Antimicrobial, Antiviral, Anti-inflammatory activity, Antioxidant

Abstract

Lectins are a broad group of carbohydrate-binding proteins that have attracted significant attention due to their therapeutic potential. This review focuses on four major types of lectins: plant, animal, fungal, and marine, and examines their unique properties and promising applications in medicine. Plant lectins are known for their ability to modulate immune responses and exhibit a range of biological activities, including anticancer, antiviral, and antibacterial effects. These properties make them strong candidates for the development of novel therapeutic agents. Animal lectins, found in both mammals and insects, play critical roles in innate immunity, and their potential in treating infections and inflammatory diseases has been a subject of extensive research. Marine lectins, derived from marine organisms, represent an underexplored yet promising source of bioactive compounds with unique binding specificities. Their potent biological activities suggest they may serve as effective tools for future drug development. Fungal lectins, which are less studied but no less important, also show potential in therapeutic applications, particularly in immune modulation and antimicrobial activity. This review highlights the current state of knowledge on the therapeutic potential of lectins across various biological sources and emphasizes the need for further research. Exploring the full range of lectin properties could lead to groundbreaking advancements in medicine, opening new avenues for treatments of infectious diseases, cancer, and other health conditions.

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References

1. Tsaneva M, Van Damme EJ. 130 y of plant lectin research. Glycoconj J. 2020;37(5):533-51. doi: 10.1007/s10719-020-09942-y, PMID 32860551.

2. Boyd WC, Shapleigh E. Specific precipitating activity of plant agglutinins (lectins). Science. 1954;119(3091):419. doi: 10.1126/science.119.3091.419, PMID 17842730.

3. Shaikh FM, Uzgare AS. A review of scalable and efficient techniques for the purification of lectins. Anal Bioanal Chem Res. 2025;12(3):259-68. doi: 10.22036/abcr.2025.494266.2249.

4. Lam SK, Ng TB. Lectins: production and practical applications. Appl Microbiol Biotechnol. 2011;89(1):45-55. doi: 10.1007/s00253-010-2892-9, PMID 20890754.

5. Sharon N, Lis H. History of lectins: from hemagglutinins to biological recognition molecules. Glycobiology. 2004;14(11):53R-62R. doi: 10.1093/glycob/cwh122, PMID 15229195.

6. Shaikh FM, Uzgare AS. Study of lectin-like protein from Terminalia catappa (TC) seeds for its physicochemical and antimicrobial properties. In: ECSOC 2024. Basel Switzerland: MDPI. 2024. p. 75. doi: 10.3390/ecsoc-28-20179.

7. Bhutia SK, Panda PK, Sinha N, Praharaj PP, Bhol CS, Panigrahi DP. KPlant lectins in cancer therapeutics: targeting apoptosis and autophagy-dependent cell death. Pharmacol Res. 2019 Jun;144:8–18. doi: 10.1016/j.phrs.2019.04.001.

8. Varrot A, Basheer SM, Imberty A. Fungal lectins: structure, function and potential applications. Curr Opin Struct Biol. 2013;23(5):678-85. doi: 10.1016/j.sbi.2013.07.007, PMID 23920351.

9. Dias R De O, Machado L Dos S, Migliolo L, Franco OL. Insights into animal and plant lectins with antimicrobial activities. Molecules. 2015;20(1):519-41. doi: 10.3390/molecules20010519, PMID 25569512.

10. Cheung RC, Wong JH, Pan W, Chan YS, Yin C, Dan X. Marine lectins and their medicinal applications. Appl Microbiol Biotechnol. 2015;99(9):3755-73. doi: 10.1007/s00253-015-6518-0, PMID 25794876.

11. Nasi A, Picariello G, Ferranti P. Proteomic approaches to study structure, functions and toxicity of legume seeds lectins. Perspectives for the assessment of food quality and safety. J Proteomics. 2009;72:527-38. doi: 10.1016/j.jprot.2009.02.001, PMID: 19217948.

12. Shaikh Fakeha MR, Uzgare AS. Partial purification and characterization of a lectin-like protein from Terminalia catappa seeds. Res J Chem Environ. 2025;29(7):117-23. doi: 10.25303/297rjce1170123.

13. Shaikh FM, Uzgare AS. Lectins in nutrition: balancing nutritional benefits and antinutritional risks. Int Educ Res J. 2025 Jul;11(7):250-3. doi: 10.5281/zenodo.17112368.

14. Stillmark H. Uber ricin eingiftiges Ferment aus den Samen von Ricinus communis L. und einigeanderen Euphorbiaceen [MD thesis], University of Dorpat. Estonia: Dorpat; 1888.

15. Bah CS, Fang EF, Ng TB. Medicinal applications of plant lectins. In: Fang EF, Ng TB, editors. Antitumor potential and other emerging medicinal properties of natural compounds 2012. Dordrecht: Springer Netherlands; 2013. p. 55-74. doi: 10.1007/978-94-007-6214-5_5.

16. Silva NR, Araujo FN. Antibacterial activity of plant lectins: a review. Braz Arch Biol Technol. 2021;64:55-74. doi: 10.1590/1678-4324-2021200631.

17. Yau T, Dan X, Ng CC, Ng TB. Lectins with potential for anti-cancer therapy. Molecules. 2015;20(3):3791-810. doi: 10.3390/molecules20033791, PMID 25730388.

18. Soliman MM, El Shatoury EH, El Araby MM. Antibacterial and anticancer activities of three novel lectin-conjugated chitosan nanoparticles. Appl Microbiol Biotechnol. 2024;108(1):524. doi: 10.1007/s00253-024-13344-7, PMID 39601890.

19. Konozy E, Osman M, Dirar A. Plant lectins as potent anti-coronaviruses anti-inflammatory antinociceptive and antiulcer agents. Saudi J Biol Sci. 2022;29(6):103301. doi: 10.1016/j.sjbs.2022.103301, PMID 35475119.

20. Gong T, Wang X, Yang Y, Yan Y, Yu C, Zhou R. Plant lectins activate the NLRP3 inflammasome to promote inflammatory disorders. J Immunol. 2017;198(5):2082-92. doi: 10.4049/jimmunol.1600145, PMID 28087670.

21. El Araby MM, El Shatoury EH, Soliman MM, Shaaban HF. Characterization and antimicrobial activity of lectins purified from three egyptian leguminous seeds. AMB Express. 2020;10(1):90. doi: 10.1186/s13568-020-01024-4, PMID 32415415.

22. Agrawal SB, Gupta N, Bhagyawant SS, Gaikwad SM. Anticancer activity of lectins from Bauhinia purpurea and Wisteria floribunda on breast cancer MCF-7 cell lines. Protein Pept Lett. 2020;27(9):870-7. doi: 10.2174/0929866527666200408143614, PMID 32268858.

23. Podder MK, Hossain MM, Kabir SR, Asaduzzaman AK, Hasan I. Antimicrobial antioxidant and antiproliferative activities of a galactose-binding seed lectin from Manilkara zapota. Heliyon Heliyon. 2024;10(2):e24592. doi: 10.1016/j.heliyon.2024.e24592, PMID 38312555.

24. Devi S, Garg S, Kumar A, Kaushal N. Antioxidant activity of lectin isolated from leaves of Bryophyllum pinnatum. Plant Arch. 2021;21(1):981-4. doi: 10.51470/PLANTARCHIVES.2021.v21.no1.136.

25. Srinivas BK, Shivamadhu MC, Devegowda PS, Mathew G, Tamizhmani T, Prabhakaran SG. Screening and evaluation of lectin and anti-cancer activity from the phloem exudate/sap of the Indian dietary ethnomedicinal plants. Pharmacogn J. 2019;11(3):570-8. doi: 10.5530/pj.2019.11.91.

26. Estrada Martinez LE, Moreno Celis U, Cervantes Jimenez R, Ferriz Martinez RA, Blanco Labra A, Garcia Gasca T. Plant lectins as medical tools against digestive system cancers. Int J Mol Sci. 2017;18(7):1403. doi: 10.3390/ijms18071403, PMID 28671623.

27. Sridhara A, Mallur DJ, V RS. Antiproliferative effect of Entada rheedii crude lectin extract on human colorectal cancer cells. Jordan J Biol Sci. 2024;17(3):541-8. doi: 10.54319/jjbs/170317.

28. Gonzalez De Mejia EG, Prisecaru VI. Lectins as bioactive plant proteins: a potential in cancer treatment. Crit Rev Food Sci Nutr. 2005;45(6):425–45. doi: 10.1080/10408390591034445.

29. Bashir H. Investigation of antibacterial and hepatoprotective activity of lectin protein from Lepidium sativum seeds. Arab J Med Aromat Plants. 2024;9(3):41. doi: 10.48347/IMIST.PRSM/ajmap-v9i3.49261.

30. Enoma S, Adewole TS, Agunbiade TO, Kuku A. Antimicrobial activities and phylogenetic study of Erythrina senegalensis DC (Fabaceae) seed lectin. Biotechnologia. 2023;104(1):21-32. doi: 10.5114/bta.2023.125083, PMID 37064277.

31. Sawant SS, Randive VR, Kulkarni SR. Lectins from seeds of Abrus precatorius: evaluation of antidiabetic and antihyperlipidemic potential in diabetic rats. Biomed Pharmacother. 2017;7(2):71–80. doi: 10.5958/2231-5691.2017.00013.2.

32. Radhakrishnan A, Chellapandian H, Ramasamy P, Jeyachandran S. Back 2 basics: animal lectins: an insight into a highly versatile recognition protein. J Proteins Proteom. 2022;14(1):43-59. doi: 10.1007/s42485-022-00102-4, PMID 36597476.

33. Santos AF, Da Silva MD, Napoleao TH, Paiva PM, Correia MT, Coelho LC. Lectins: function, structure, biological properties and potential applications. CEB-centre of biological Engineering University of minho; 2015.

34. Liu Y, Liu J, Pang X, Liu T, Ning Z, Cheng G. The roles of direct recognition by animal lectins in antiviral immunity and viral pathogenesis. Molecules. 2015;20(2):2272-95. doi: 10.3390/molecules20022272, PMID 25642837.

35. Loh SH, Park JY, Cho EH, Nah SY, Kang YS. Animal lectins: potential receptors for ginseng polysaccharides. J Ginseng Res. 2015;41(1):1-9. doi: 10.1016/j.jgr.2015.12.006, PMID 28123316.

36. Liu Z, Zhang Q, Peng H, Zhang WZ. Animal lectins: potential antitumor therapeutic targets in apoptosis. Appl Biochem Biotechnol. 2012;168(3):629-37. doi: 10.1007/s12010-012-9805-6, PMID 22826026.

37. Bianchi A. Editorial. Immunol Lett. 1999;69(1):1. doi: 10.1016/S0165-2478(99)00091-7.

38. Cao X, Huo Z, Lu M, Mao D, Zhao Q, Xu C. Purification of lectin from larvae of the fly Musca domestica and in vitro anti-tumor activity in MCF-7 cells. J Insect Sci. 2010;10:164. doi: 10.1673/031.010.14124, PMID 21067415.

39. Nie J, Cao X, Zhou M, Zhang X, Zhang R, Niu L. Musca domestica pupae lectin induces apoptosis in HepG2 cells through a NF-κB/p65-mediated caspase pathway. Bull Degrad Control Soc. 2012;18(15):1557.

40. Sreeramulu B, Arumugam G, Paulchamy R, Karuppiah H, Sundaram J. β-Galactoside binding lectin from caddisfly larvae Stenopsyche kodaikanalensis with selective modes of antibacterial activity: purification and characterization. Int J Biol Macromol. 2018;115:1033-45. doi: 10.1016/j.ijbiomac.2018.04.158, PMID 29727651.

41. Lecointre C, Simon V, Kerneur C, Allemand F, Fournet A, Montarras I. Dimerization of the pragmin pseudo-kinase regulates protein tyrosine phosphorylation. Structure. 2018;26(4):545-54.e4. doi: 10.1016/j.str.2018.01.017, PMID 29503074.

42. Varrot A, Basheer SM, Imberty A. Fungal lectins: structure, function and potential applications. Curr Opin Struct Biol. 2013;23(5):678-85. doi: 10.1016/j.sbi.2013.07.007, PMID 23920351.

43. A Urga S, Nanut MP, Kos J, Sabotic J. Fungal lectin MpL enables entry of protein drugs into cancer cells and their subcellular targeting. Oncotarget. 2017;8(16):26896-910. doi: 10.18632/oncotarget.15849, PMID 28460472.

44. Sabotic J, Puerta A, Gonzalez Bakker A, Karnicar K, Erzar E, Tumpej T. M fungal lectins show differential antiproliferative activity against cancer cell lines. Int J Biol Macromol. 2025;294:139220. doi: 10.1016/j.ijbiomac.2024.139220, PMID 39732261.

45. Ghufran MS, Ghosh K, Kanade SR. A fucose-specific lectin from Aspergillus flavus induced interleukin-8 expression is mediated by mitogen-activated protein kinase p38. Med Mycol. 2017;55(3):323-33. doi: 10.1093/mmy/myw066, PMID 27664169.

46. Audfray A, Beldjoudi M, Breiman A, Hurbin A, Boos I, Unverzagt C. A recombinant fungal lectin for labeling truncated glycans on human cancer cells. PLOS One. 2015;10(6):e0128190. doi: 10.1371/journal.pone.0128190, PMID 26042789.

47. Nagre NN, Chachadi VB, Eligar SM, Shubhada C, Pujari R, Shastry P. Purification and characterization of a mitogenic lectin from Cephalosporium, a pathogenic fungus causing mycotic keratitis. Biochem Res Int. 2010;2010:854656. doi: 10.1155/2010/854656, PMID 21188078.

48. Leal AF, Lopes NE, Clark AT, De Pontes Filho NT, Beltrao EI, Neves RP. Carbohydrate profiling of fungal cell wall surface glycoconjugates of Aspergillus species in brain and lung tissues using lectin histochemistry. Med Mycol. 2012;50(7):756-9. doi: 10.3109/13693786.2011.631946, PMID 22103341.

49. Jagadeesh N, Belur S, Hegde P, Kamalanathan AS, Swamy BM, Inamdar SR. An L-fucose-specific lectin from Aspergillus niger isolated from mycotic keratitis patient and its interaction with human pancreatic adenocarcinoma PANC-1 cells. Int J Biol Macromol. 2019;134:487-97. doi: 10.1016/j.ijbiomac.2019.04.192, PMID 31051203.

50. Ismaya WT, Tjandrawinata RR, Rachmawati H. Lectins from the edible mushroom agaricus bisporus and their therapeutic potentials. Molecules. 2020;25(10):2368. doi: 10.3390/molecules25102368, PMID 32443732.

51. Liu J, Li H, Luo X, Ma L, Li C, Qu S. A lectin gene is involved in the defense of Pleurotus ostreatus against the mite predator Tyrophagus putrescentiae. Front Microbiol. 2023;14:1191500. doi: 10.3389/fmicb.2023.1191500, PMID 37180275.

52. Moradi A, El Shetehy M, Gamir J, Austerlitz T, Dahlin P, Wieczorek K. Expression of a fungal lectin in Arabidopsis enhances plant growth and resistance toward microbial pathogens and a plant-parasitic nematode. Front Plant Sci. 2021;12:657451. doi: 10.3389/fpls.2021.657451, PMID 33897746.

53. Al Obaydi SN. Extraction and purification of lectins from mushroom and study its agglutination activity. J Wasit Sci Med. 2023;16(1):1-6. doi: 10.31185/jwsm.341.

54. He M, Su D, Liu Q, Gao W, Kang Y. Mushroom lectin overcomes hepatitis B virus tolerance via TLR6 signaling. Sci Rep. 2017;7(1):5814. doi: 10.1038/s41598-017-06261-5, PMID 28724955.

55. Seliman TM, Ulbegi GA, Ozsoy N, Kavlo HA, Sagırlı PA. Anti-inflammatory activity of a novel lectin isolated from Pleurotus eryngii var. ferulae mushroom. Istanb J Pharm. 2024;54(2):195-204. doi: 10.26650/IstanbulJPharm.2024.1322171.

56. Buriak I, Kumeiko V. Marine lectins and lectin-like proteins as promising molecules targeting aberrant glycosylation signatures in human brain tumors. Mar Drugs. 2024;22(12):527. doi: 10.3390/md22120527, PMID 39728102.

57. Catanzaro E, Calcabrini C, Bishayee A, Fimognari C. Antitumor potential of marine and freshwater lectins. Mar Drugs. 2019;18(1):11. doi: 10.3390/md18010011, PMID 31877692.

58. De Arruda MC, Da Silva MR, Cavalcanti VL, Brandao RM, Viana Marques DA, De Lima LR. Antitumor lectins from algae: a systematic review. Algal Res. 2023;70:102962. doi: 10.1016/j.algal.2022.102962.

59. Hung LD, Ly BM, Hao VT, Trung DT, Trang VT, Trinh PT. Purification, characterization and biological effect of lectin from the marine sponge Stylissa flexibilis (Levi, 1961). Comp Biochem Physiol B Biochem Mol Biol. 2018;216:32-8. doi: 10.1016/j.cbpb.2017.11.008, PMID 29175481.

60. Singh RS, Walia AK. Lectins from red algae and their biomedical potential. J Appl Phycol. 2018;30(3):1833-58. doi: 10.1007/s10811-017-1338-5, PMID 32214665.

61. Fernandez Romero JA, Paglini MG, Priano C, Koroch A, Rodriguez Y, Sailer J. Algal and cyanobacterial lectins and their antimicrobial properties. Mar Drugs. 2021;19(12):687. doi: 10.3390/md19120687, PMID 34940686.

62. Carneiro RF, Tabosa PA, Candido JG, Menezes VP, Rocha Junior PA, Andrade AL. Toward enhanced antibiotic efficacy: exploring the synergistic potential of marine-derived lectins against human pathogenic bacteria. An Acad Bras Cienc. 2024;96(4):e20240072. doi: 10.1590/0001-3765202420240072.

63. Abreu TM, Corpe FP, Teles FB, Rivanor RL, Sousa CN, Medeiros IS. Lectin isolated from the red marine alga Solieria filiformis (Kützing) P.W. Gabrielson: secondary structure and antidepressant-like effect in mice submitted to the lipopolysaccharide-induced inflammatory model of depression. Algal Res. 2022;65:102715. doi: 10.1016/j.algal.2022.102715.

64. Lima ME, Carneiro ME, Nascimento AE, Grangeiro TB, Holanda ML, Amorim RC. Purification of a lectin from the marine red alga Gracilaria cornea and its effects on the cattle tick Boophilus microplus (Acari: Ixodidae). J Agric Food Chem. 2005;53(16):6414–9. doi: 10.1021/jf0509660.

65. Ahmmed MK, Bhowmik S, Giteru SG, Zilani MN, Adadi P, Islam SS. An update of lectins from marine organisms: characterization, extraction methodology and potential biofunctional applications. Mar Drugs. 2022;20(7):430. doi: 10.3390/md20070430, PMID 35877723.

66. Rogers DJ, Hori K. Marine algal lectins: new developments. Hydrobiologia. 1993;260-261(1):589-93. doi: 10.1007/BF00049075.

67. Almeida AS, Mendonca DN, Carneiro RF, Pinheiro U, Nascimento EF, Andrade AL. Purification biochemical characterization of a lectin from marine sponge Ircinia strobilina and its effect on the inhibition of bacterial biofilms. An Acad Bras Cienc. 2023;95(Suppl 2):e20220619. doi: 10.1590/0001-3765202320220619, PMID 38088730.

68. Roopashri AN, Savitha J. Screening of freshwater microalgae species for occurrence of lectins and their carbohydrate-binding specificity. J Appl Biol Sci. 2022;16(1):24-34. doi: 10.71336/jabs.874.

69. Gondim AC, Roberta Da Silva S, Mathys L, Noppen S, Liekens S, Holanda Sampaio A. Potent antiviral activity of carbohydrate-specific algal and leguminous lectins from the Brazilian biodiversity. MedChemComm. 2019;10(3):390-8. doi: 10.1039/C8MD00508G, PMID 30996857.

Published

01-01-2026

How to Cite

REHAN SHAIKH, FAKEHA MOHAMMED, and ASHISH SAMBHAJI UZGARE. “LECTINS AS BIOACTIVE MOLECULES: EMERGING APPLICATIONS AND THERAPEUTIC INSIGHTS-A REVIEW”. International Journal of Chemistry Research, vol. 10, no. 1, Jan. 2026, pp. 12-18, doi:10.22159/ijcr.2026v10i1.304.

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