376
References
Abdissa D, Geleta G, Bacha K, Abdissa N (2017) Phytochemical investigation of Aloe pulcherrima roots and evaluation for its antibacterial and antiplasmodial activities. PLoS One
12(3):e0173882. https://doi.org/10.1371/journal.pone.0173882
Adetunji CO, Afolayan SS, Olaleye OO, Umanah JT (2011) Antibacterial activity of Aloe vera
extracts of clinical isolates. Int J Microbiol 3(1):20–25
Adhikari M, Sah AK, Joshi DR (2018) In vitro antibacterial activity of organic extracts of Aloe
barbadensis against multi-drug resistant Pseudomonas aeruginosa isolated from wound specimens. TUJM 5(1):69–76
Ali MI, Shalaby NMM, Elgamal MHA, Mousa ASM (1999) Antifungal effects of different plant
extracts and their major components of selected Aloe species. Phytother Res 13:401–407
Ali K, Ahmed B, Khan MS, Musarrat J (2018) Differential surface contact killing of pristine and
low EPS Pseudomonas aeruginosa with Aloe vera capped hematite (α-Fe2O3) nanoparticles. J
Photochem Photobiol B Biol 188:146–158
Altaf M, Jaganyi D (2016) Characterization of triangular gold nanoparticles using aloe arborescens leaf extract: a green synthesis approach. Synth React Inorg Met-Org Nano-Met Chem
46(9):1332–1335
Amoo SO, Aremu AO, Van Staden J (2014) Unraveling the medicinal potential of South African
aloe species. J Ethnopharmacol 153:19–41. https://doi.org/10.1016/j.jep.2014.01.036
Anand S, Muthusamy V, Sujatha S, Sangeetha K, Raja RB, Sudhagar S, Devi NP, Lakshmi B
(2010) Aloe emodin glycosides stimulates glucose transport and glycogen storage through
PI3K dependent mechanism in l6 myotubes and inhibits adipocyte differentiation in 3T3L1
adipocytes. FEBS Lett 584:3170–3178. https://doi.org/10.1016/j.febslet.2010.06.004
Arosio B, Gagliano N, Fusaro LMP, Parmeggiani L, Tagliabue J, Galetti P, De Castri D, Moscheni C,
Annoni G (2000) Aloe-emodin quinone pretreatment reduces acute liver injury induced by carbon tetrachloride. Pharmacol Toxicol 87:229–233. https://doi.org/10.1034/j.1600-0773.2000.
d01-79.x
Arowosegbe S, Wintola OA, Afolayan AJ (2012) Phytochemical constituents and allelopathic
effect of Aloe ferox Mill. root extract on tomato. J Med Plant Res 6(11):2094–2099
Arunkumar S, Muthuselvam M (2009) Analysis of phytochemical constituents and antimicrobial
activities of Aloe vera L. against clinical pathogens. World J Agric Sci 5(5):572–576
Asamenew G, Bisrat D, Mazumder A, Asres K (2011) In vitro antimicrobial and antioxidant
activities of anthrone and chromone from the latex of aloe harlana Reynolds. Phytother Res
25:1756–1760. https://doi.org/10.1002/ptr.3482
Azghani AO, Williams I et al (1995) A beta-linked mannan inhibits adherence of Pseudomonas
aeruginosa to human lung epithelial cells. Glycobiology 5(1):39–44
Begum H, Shimmi SC, Rowshan MM, Khanom S (2016) Effect of Ethanolic extract of Aloe vera
gel on certain common clinical pathogens. Borneo J Med Sci 10(2):19–25
Beppu H, Shimpo K, Chihara T, Kaneko T, Tamai I, Yamaji S, Ozaki S, Kuzuya H, Sonoda S
(2006) Antidiabetic effects of dietary administration of Aloe arborescens Miller components
on multiple low-dose streptozotocin-induced diabetes in mice: investigation on hypoglycemic
action and systemic absorption dynamics of aloe components. J Ethnopharmacol 103(3):468–
477. https://doi.org/10.1016/j.jep.2005.10.034
Bhagwat TR, Joshi KA, Parihar VS, Asok A, Bellare J, Ghosh S (2018) Biogenic copper
nanoparticles from medicinal plants as novel antidiabetic nanomedicine. World J Pharm Res
7(4):183–196
Bisrat D, Dagne E, van Wyk B-E, Viljoen A (2000) Chromones and anthrones from Aloe marlothii
and Aloe rupestris. Phytochemistry 55(8):949–952
Bnouham M, Ziyyat A, Mekhfi H, Tahri A, Legssyer A (2006) Medicinal plants with potential antidiabetic activity-A review of ten years of herbal medicine research (1990–2000). Int J Diabetes
Metab 14:1–25
C. Egbuna et al.
References
Abdissa D, Geleta G, Bacha K, Abdissa N (2017) Phytochemical investigation of Aloe pulcherrima roots and evaluation for its antibacterial and antiplasmodial activities. PLoS One
12(3):e0173882. https://doi.org/10.1371/journal.pone.0173882
Adetunji CO, Afolayan SS, Olaleye OO, Umanah JT (2011) Antibacterial activity of Aloe vera
extracts of clinical isolates. Int J Microbiol 3(1):20–25
Adhikari M, Sah AK, Joshi DR (2018) In vitro antibacterial activity of organic extracts of Aloe
barbadensis against multi-drug resistant Pseudomonas aeruginosa isolated from wound specimens. TUJM 5(1):69–76
Ali MI, Shalaby NMM, Elgamal MHA, Mousa ASM (1999) Antifungal effects of different plant
extracts and their major components of selected Aloe species. Phytother Res 13:401–407
Ali K, Ahmed B, Khan MS, Musarrat J (2018) Differential surface contact killing of pristine and
low EPS Pseudomonas aeruginosa with Aloe vera capped hematite (α-Fe2O3) nanoparticles. J
Photochem Photobiol B Biol 188:146–158
Altaf M, Jaganyi D (2016) Characterization of triangular gold nanoparticles using aloe arborescens leaf extract: a green synthesis approach. Synth React Inorg Met-Org Nano-Met Chem
46(9):1332–1335
Amoo SO, Aremu AO, Van Staden J (2014) Unraveling the medicinal potential of South African
aloe species. J Ethnopharmacol 153:19–41. https://doi.org/10.1016/j.jep.2014.01.036
Anand S, Muthusamy V, Sujatha S, Sangeetha K, Raja RB, Sudhagar S, Devi NP, Lakshmi B
(2010) Aloe emodin glycosides stimulates glucose transport and glycogen storage through
PI3K dependent mechanism in l6 myotubes and inhibits adipocyte differentiation in 3T3L1
adipocytes. FEBS Lett 584:3170–3178. https://doi.org/10.1016/j.febslet.2010.06.004
Arosio B, Gagliano N, Fusaro LMP, Parmeggiani L, Tagliabue J, Galetti P, De Castri D, Moscheni C,
Annoni G (2000) Aloe-emodin quinone pretreatment reduces acute liver injury induced by carbon tetrachloride. Pharmacol Toxicol 87:229–233. https://doi.org/10.1034/j.1600-0773.2000.
d01-79.x
Arowosegbe S, Wintola OA, Afolayan AJ (2012) Phytochemical constituents and allelopathic
effect of Aloe ferox Mill. root extract on tomato. J Med Plant Res 6(11):2094–2099
Arunkumar S, Muthuselvam M (2009) Analysis of phytochemical constituents and antimicrobial
activities of Aloe vera L. against clinical pathogens. World J Agric Sci 5(5):572–576
Asamenew G, Bisrat D, Mazumder A, Asres K (2011) In vitro antimicrobial and antioxidant
activities of anthrone and chromone from the latex of aloe harlana Reynolds. Phytother Res
25:1756–1760. https://doi.org/10.1002/ptr.3482
Azghani AO, Williams I et al (1995) A beta-linked mannan inhibits adherence of Pseudomonas
aeruginosa to human lung epithelial cells. Glycobiology 5(1):39–44
Begum H, Shimmi SC, Rowshan MM, Khanom S (2016) Effect of Ethanolic extract of Aloe vera
gel on certain common clinical pathogens. Borneo J Med Sci 10(2):19–25
Beppu H, Shimpo K, Chihara T, Kaneko T, Tamai I, Yamaji S, Ozaki S, Kuzuya H, Sonoda S
(2006) Antidiabetic effects of dietary administration of Aloe arborescens Miller components
on multiple low-dose streptozotocin-induced diabetes in mice: investigation on hypoglycemic
action and systemic absorption dynamics of aloe components. J Ethnopharmacol 103(3):468–
477. https://doi.org/10.1016/j.jep.2005.10.034
Bhagwat TR, Joshi KA, Parihar VS, Asok A, Bellare J, Ghosh S (2018) Biogenic copper
nanoparticles from medicinal plants as novel antidiabetic nanomedicine. World J Pharm Res
7(4):183–196
Bisrat D, Dagne E, van Wyk B-E, Viljoen A (2000) Chromones and anthrones from Aloe marlothii
and Aloe rupestris. Phytochemistry 55(8):949–952
Bnouham M, Ziyyat A, Mekhfi H, Tahri A, Legssyer A (2006) Medicinal plants with potential antidiabetic activity-A review of ten years of herbal medicine research (1990–2000). Int J Diabetes
Metab 14:1–25
C. Egbuna et al.
