Hydrophobically modified chitosan nanoliposomes for intestinal drug delivery

Zariwala, M., Bendre, H., Markiv, A., Farnaud, S., Renshaw, D., Taylor, K.M.G. and Somavarapu, S. 2018. Hydrophobically modified chitosan nanoliposomes for intestinal drug delivery. International Journal of Nanomedicine. 13, pp. 5837-5848. https://doi.org/10.2147/IJN.S166901

TitleHydrophobically modified chitosan nanoliposomes for intestinal drug delivery
TypeJournal article
AuthorsZariwala, M.
Bendre, H.
Markiv, A.
Farnaud, S.
Renshaw, D.
Taylor, K.M.G.
Somavarapu, S.
JournalInternational Journal of Nanomedicine
Journal citation13 (5837), p. 5848
ISSN1740-4754
Year2018
PublisherDove Medical Press Ltd.
Digital Object Identifier (DOI)https://doi.org/10.2147/IJN.S166901
PubMed ID30310283
Web address (URL)https://www.dovepress.com/hydrophobically-modified-chitosan-nanoliposomes-for-intestinal-drug-de-peer-reviewed-article-IJN
Publication dates
Published27 Sep 2018
LicenseCC BY-NC 3.0

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Hepcidin transcription and peptide secretion are governed by different regulatory mechanisms
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Comparison Study of Oral Iron Preparations Using a Human Intestinal Model
Zariwala, M., Somavarapu, S., Farnaud, S. and Renshaw, D. 2013. Comparison Study of Oral Iron Preparations Using a Human Intestinal Model. Scientia Pharmaceutica. 81 (4), pp. 1123-1139. https://doi.org/10.3797/scipharm.1304-03

A novel approach to oral iron delivery using ferrous sulphate loadedsolid lipid nanoparticles
Zariwala, M., Elsaid, N., Jackson, T.L., Corral López, F., Farnaud, S., Somavarapu, S. and Renshaw, D. 2013. A novel approach to oral iron delivery using ferrous sulphate loadedsolid lipid nanoparticles. International Journal of Pharmaceutics. 456 (2), pp. 400-407. https://doi.org/10.1016/j.ijpharm.2013.08.070

Annexin-A1 protein and its relationship to cortisol
Fowkes, R.C., Moradi-Bidhendi, N., Branceleone, V., Zariwala, M., Brady, D., Jessop, D.S., Perretti, M. and Renshaw, D. 2013. Annexin-A1 protein and its relationship to cortisol. Psychoneuroendocrinology. 38 (5), pp. 722-727. https://doi.org/10.1016/j.psyneuen.2012.08.003

Attenuation of plasma annexin A1 in human obesity
Kosicka, A., Cunliffe, AD., MacKenzie, R., Zariwala, M., Perretti, M., Flower, R.J. and Renshaw, D. 2013. Attenuation of plasma annexin A1 in human obesity. FASEB Journal. 27 (1), pp. 1-11. https://doi.org/10.1096/fj.12-213728

Comparison study of iron preparations using a human intestinal model
Zariwala, M.G., Somavarapu, S., Farnaud, S. and Renshaw, D. 2013. Comparison study of iron preparations using a human intestinal model. Scientia Pharmaceutica. 81 (4), pp. 1123-1139. https://doi.org/10.3797/scipharm.1304-03

Hepcidin transcription and peptide secretion are governed by different regulatory mechanisms
Mehta, K., Patel, V., Busbridge Mark, Renshaw, D., Zariwala, M.G., Evans, R. and Farnaud, S. 2013. Hepcidin transcription and peptide secretion are governed by different regulatory mechanisms. American Journal of Hematology. 88, p. E55.

Attenuation of plasma annexin A1 in human obesity
Kosicka, A., Cunliffe, A., Mackenzie, R.W.A., Gulrez Zariwala, M., Perretti, M., Flower, R.J. and Renshaw, D. 2013. Attenuation of plasma annexin A1 in human obesity. FASEB Journal. 27 (1), pp. 368-378. https://doi.org/10.1096/fj.12-213728

The transfer of iron between ceruloplasmin and transferrins
White, K.N., Conesa, C., Sánchez, L., Amini, M., Farnaud, S., Lorvoralaka, C. and Evans, R.W. 2012. The transfer of iron between ceruloplasmin and transferrins. Biochimica et Biophysica Acta: general subjects. 1820 (3), pp. 411-416. https://doi.org/10.1016/j.bbagen.2011.10.006

Increased transferrin-bound iron uptake in HepG2 cells is followed by an increase in expression of the iron hormone hepcidin pre-and post-translationally
Mehta, K., Patel, V., Busbridge Mark, Renshaw, D., Zariwala, M., Evans, R. and Farnaud, S. 2012. Increased transferrin-bound iron uptake in HepG2 cells is followed by an increase in expression of the iron hormone hepcidin pre-and post-translationally. European Iron Club Annual Meeting 2012. Rennes, France 29 - 31 Aug 2012

Comparison of iron absorption from iron supplement preparations using an in vitro Caco-2 model
Zariwala, M., Farnaud, S. and Renshaw, D. 2012. Comparison of iron absorption from iron supplement preparations using an in vitro Caco-2 model. European Iron Club Annual Meeting 2012. Rennes, France 29 - 31 Aug 2012

DPPIV and macronutrients regulate the expression of PYY3–36 in human gut epithelial cells
Kosicka, A., Renshaw, D. and Zariwala, M. 2012. DPPIV and macronutrients regulate the expression of PYY3–36 in human gut epithelial cells. Society for Endocrinology BES 2012. Harrogate, UK Mar - Apr 2012 BioScientifica Ltd.. https://doi.org/10.1530/endoabs.31.P197

Ac 2-26, an annexin A1-derived peptide, reduces inflammation in human SGBS adipocytes after hypoxia treatment
Kosicka-Knox, A., Cunliffe, A., Mackenzie, R., Zariwala, M. and Renshaw, D. 2012. Ac 2-26, an annexin A1-derived peptide, reduces inflammation in human SGBS adipocytes after hypoxia treatment. 15th International & 14th European Congress of Endocrinology. Florence, Italy 05 - 09 May 2012 BioScientifica Ltd..

Annexin A1, an anti-inflammatory regulator, is expressed in human adipocytes
Kosicka-Knox, A., Cunliffe, A., Mackenzie, R., Zariwala, M. and Renshaw, D. 2012. Annexin A1, an anti-inflammatory regulator, is expressed in human adipocytes. Society for Endocrinology BES 2012. Harrogate, UK Mar - Apr 2012

Adipocyte pyruvate dehydrogenase kinase 4 expression is associated with augmented PPARγ upregulation in early-life programming of later obesity
Holness, M.J., Zariwala, M., Walker, C.G. and Sugden, M.C. 2012. Adipocyte pyruvate dehydrogenase kinase 4 expression is associated with augmented PPARγ upregulation in early-life programming of later obesity. FEBS Open Bio. 2, pp. 32-36. https://doi.org/10.1016/j.fob.2012.02.003

The central role of myostatin in skeletal muscle and whole body homeostasis
Elliott, B., Renshaw, D., Getting, S.J. and MacKenzie, R. 2012. The central role of myostatin in skeletal muscle and whole body homeostasis. Acta Physiologica. 205 (3), pp. 324-40. https://doi.org/10.1111/j.1748-1716.2012.02423.x

The central role of myostatin in skeletal muscle and whole body homeostasis
Elliott, B.T., Renshaw, D., Getting, S.J. and Mackenzie, R.W.A. 2012. The central role of myostatin in skeletal muscle and whole body homeostasis. Acta Physiologica. 205 (3), pp. 324-340. https://doi.org/10.1111/j.1748-1716.2012.02423.x

Targeting the melanocortin receptor system for anti-stroke therapy
Holloway, P.M., Smith, H.K., Renshaw, D., Flower, R.J., Getting, S.J. and Gavins, F.N.E. 2011. Targeting the melanocortin receptor system for anti-stroke therapy. Trends in Pharmacological Sciences. 32 (2), pp. 90-98. https://doi.org/10.1016/j.tips.2010.11.010

Transferrin receptor 2 is crucial for iron sensing in human hepatocytes
Rapisarda, C., Puppi, J., Hughes, R.D., Dhawan, A., Farnaud, S., Evans, R.W. and Sharp, P.A. 2010. Transferrin receptor 2 is crucial for iron sensing in human hepatocytes. American Journal of Physiology: Gastrointestinal and liver physiology. 299 (3), pp. G778-G783. https://doi.org/10.​1152/​ajpgi.​00157.​2010

Saliva: physiology and diagnostic potential in health and disease
Farnaud, S., Kosti, O., Getting, S.J. and Renshaw, D. 2010. Saliva: physiology and diagnostic potential in health and disease. ScientificWorldJournal. 10, pp. 434-456. https://doi.org/10.1100/tsw.2010.38

Changes in adipocyte circadian clock function via SRT1 and AMPK in programmed obesity
Caton, P.W., Zariwala, M., Holness, M.J. and Sugden, M.C. 2010. Changes in adipocyte circadian clock function via SRT1 and AMPK in programmed obesity. Diabetic Medicine. 27 (S1), pp. 1-36. https://doi.org/10.1111/j.1464-5491.2009.02935.x

Downstream gene activation of the receptor ALX by the agonist Annexin A1
Renshaw, D., Montero-Melendez, T., Dalli, J., Kamal, A., Brancaleone, V., D'Acquisto, F., Cirino, G. and Perretti, M. 2010. Downstream gene activation of the receptor ALX by the agonist Annexin A1. PLoS ONE. 5 (9) e12771. https://doi.org/10.1371/journal.pone.0012771

Opinion: Microdosing: safer clinical trials
Langley, G. and Farnaud, S. 2010. Opinion: Microdosing: safer clinical trials. Bioanalysis. 2 (3), pp. 393-395.

The Dr Hadwen Trust for humane research: 39 years of replacement science
Farnaud, S. 2009. The Dr Hadwen Trust for humane research: 39 years of replacement science. Alternatives to Laboratory Animals. 37 (S2), pp. 39-43.

The evolution of the three Rs
Farnaud, S. 2009. The evolution of the three Rs. Alternatives to Laboratory Animals. 37 (3), pp. 249-254.

Characterisation of cystathionine gamma-lyase/hydrogen sulphide pathway in ischaemia/reperfusion injury of the mouse kidney: an in vivo study
Tripatara, P., Patel, N.S.A., Brancaleone, V., Renshaw, D., Rocha, J., Sepodes, B., Mota-Filipe, H., Perretti, M. and Thiemermann, C. 2009. Characterisation of cystathionine gamma-lyase/hydrogen sulphide pathway in ischaemia/reperfusion injury of the mouse kidney: an in vivo study. European Journal of Pharmacology. 606 (1-3), pp. 205-209. https://doi.org/10.1016/j.ejphar.2009.01.041

PPARalpha deficiency impacts the regulation ofadipocyte leptin synthesis and secretion
Holness, M.J., Zariwala, M., Walker, C.G. and Sugden, M.C. 2009. PPARalpha deficiency impacts the regulation ofadipocyte leptin synthesis and secretion. Diabetic Medicine. 26 (S1), pp. 37-38. https://doi.org/10.1111/j.1464-5491.2009.02662.x

The molecular regulation of adipose-tissue gene expression by an early life intervention
Sugden, M.C., Zariwala, M., Nooristani, S. and Holness, M.J. 2009. The molecular regulation of adipose-tissue gene expression by an early life intervention. Diabetic Medicine. 26 (S1), pp. 37-38. https://doi.org/10.1111/j.1464-5491.2009.02662.x

PPARs and the orchestration of metabolic fuel selection
Sugden, M.C., Zariwala, M.G. and Holness, M.J. 2009. PPARs and the orchestration of metabolic fuel selection. Pharmacological Research. 60 (3), p. 141–150. https://doi.org/10.1016/j.phrs.2009.03.014

Melanocortin peptide therapy for the treatment of arthritic pathologies
Getting, S.J., Kaneva, M., Bhadresa, Y., Renshaw, D., Leoni, G., Patel, H.B., Kerrigan, M.J.P. and Locke, I.C. 2009. Melanocortin peptide therapy for the treatment of arthritic pathologies. The Scientific World Journal. 9, pp. 1394-1414. https://doi.org/10.1100/tsw.2009.163

Annexin 1 mediates the rapid anti-inflammatory effects of neutrophil-derived microparticles
Dalli, J., Norling, L.V., Renshaw, D., Cooper, D., Leung Kit-Y and Perretti, M. 2008. Annexin 1 mediates the rapid anti-inflammatory effects of neutrophil-derived microparticles. Blood. 112 (6), pp. 2512-2519. https://doi.org/10.1182/blood-2008-02-140533

Identification of an iron-hepcidin complex
Farnaud, S., Rapisarda, C., Bui, T.T.T., Drake, A.F., Cammack, R. and Evans, R.W. 2008. Identification of an iron-hepcidin complex. Biochemical Journal. 413 (3), pp. 553-557. https://doi.org/10.1042/BJ20080406

Isolation of lactoferrin from milk of different species: calorimetric and antimicrobial studies
Conesa, C., Sánchez, L., Rota, C., Pérez, M.D., Calvo, M., Farnaud, S. and Evans, R.W. 2008. Isolation of lactoferrin from milk of different species: calorimetric and antimicrobial studies. Comparative Biochemistry and Physiology. Part B: Biochemistry & Molecular Biology. 150 (1), pp. 131-139. https://doi.org/10.1016/j.cbpb.2008.02.005

The interaction of arginine- and tryptophan-rich cyclic hexapeptides with Escherichia coli membranes
Junkes, C., Wessolowski, A., Farnaud, S., Evans, R.W., Good, L., Bienert, M. and Dathe, M. 2008. The interaction of arginine- and tryptophan-rich cyclic hexapeptides with Escherichia coli membranes. Journal of Peptide Science. 14 (4), pp. 535-543. https://doi.org/10.1002/psc.940

Biochemical and spectroscopic studies of human melanotransferrin (MTf): electron-paramagnetic resonance evidence for a difference between the iron-binding site of MTf and other transferrins
Farnaud, S., Amini, M., Rapisarda, C., Cammack, R., Buic, T., Drake, A.F., Evans, R.W., Rahmanto, Y.S. and Richardson, D.R. 2008. Biochemical and spectroscopic studies of human melanotransferrin (MTf): electron-paramagnetic resonance evidence for a difference between the iron-binding site of MTf and other transferrins. International Journal of Biochemistry & Cell Biology. 40 (12), pp. 2739-2745. https://doi.org/10.1016/j.biocel.2008.07.003

Therapeutic exploitation of endogenous anti-inflammatory mechanisms: old and new leads
Renshaw, D., Urquhart, P. and Perretti, M. 2007. Therapeutic exploitation of endogenous anti-inflammatory mechanisms: old and new leads. Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry. 5 (4), pp. 289-305. https://doi.org/10.2174/187152306778772838

Prolactin in culture leads to a shift in stimulatory threshold but does not augment the K-ATP channel independent pathway for glucose-stimulated insulin secretion
Zariwala, M., Holness, M.J., Turner, M.D. and Sugden, M.C. 2007. Prolactin in culture leads to a shift in stimulatory threshold but does not augment the K-ATP channel independent pathway for glucose-stimulated insulin secretion. Diabetic Medicine. 24 (S1), p. 33. https://doi.org/10.1111/j.1464-5491.2007.02126.x

Enhancement of immune response of HBsAg loaded poly(L-lactic acid) microspheres against Hepatitis B through incorporation of alum and chitosan
Pandit, S., Cevher, E, Zariwala, M., Somavarapu, S. and Alpar, H.O. 2007. Enhancement of immune response of HBsAg loaded poly(L-lactic acid) microspheres against Hepatitis B through incorporation of alum and chitosan. Journal of Microencapsulation. 24 (6), p. 539–552. https://doi.org/10.1080/02652040701443700

Diet, obesity and diabetes: a current update
Walker, C.G., Zariwala, M.G., Holness, M.J. and Sugden, M.C. 2007. Diet, obesity and diabetes: a current update. Clinical Science. 112 (2), pp. 93-111. https://doi.org/10.1042/CS20060150

Characterisation of recombinant unglycosylated human serum transferrin purified from Saccharomyces cerevisiae
Sargent, P.J., Farnaud, S., Cammack, R., Zoller, H.M.P. and Evans, R.W. 2006. Characterisation of recombinant unglycosylated human serum transferrin purified from Saccharomyces cerevisiae. BioMetals. 19 (5), pp. 513-519. https://doi.org/10.1007/s10534-005-5532-6

Modelling of a metal-containing hepcidin
Farnaud, S., Patel, A. and Evans, R.W. 2006. Modelling of a metal-containing hepcidin. BioMetals. 19 (5), pp. 527-533. https://doi.org/10.1007/s10534-005-5883-z

Adrenomedullin increases the expression of calcitonin-like receptor and receptor activity modifying protein 2 mRNA in human microvascular endothelial cells
Schwarz, N., Renshaw, D., Kapas, S. and Hinson, J.P. 2006. Adrenomedullin increases the expression of calcitonin-like receptor and receptor activity modifying protein 2 mRNA in human microvascular endothelial cells. Journal of Endocrinology. 190 (2), pp. 505-514. https://doi.org/10.1677/joe.1.06806

Intra-adrenal mechanisms in the response to chronic stress: investigation in a rat model of emotionality
Kosti, O., Raven, P.W., Renshaw, D. and Hinson, J.P. 2006. Intra-adrenal mechanisms in the response to chronic stress: investigation in a rat model of emotionality. Journal of Endocrinology. 189 (2), pp. 211-218. https://doi.org/10.1677/joe.1.06638

Early protein restriction attenuates effects of increased age to suppress the response of adipose-tissue LPL activity to feeding
Zariwala, M., Holness, M.J. and Sugden, M.C. 2006. Early protein restriction attenuates effects of increased age to suppress the response of adipose-tissue LPL activity to feeding. Diabetic Medicine. 23 (S2), pp. 31-138. https://doi.org/10.1111/j.1466-5468.2006.01875.x

An overview of molecular aspects of iron metabolism
Syed, B.A., Sargent, P.J., Farnaud, S. and Evans, R.W. 2006. An overview of molecular aspects of iron metabolism. Hemoglobin. 30 (1), pp. 69-80. https://doi.org/10.1080/03630260500455318

Towards a tree-induction approach to antimicrobial activity analysis of cationic peptides
Farnaud, S., Wang, Z., Dybowski, R., Odell, E.W. and Evans, R.W. 2006. Towards a tree-induction approach to antimicrobial activity analysis of cationic peptides. Biochemistry and Cell Biology. 84 (3), p. 394. https://doi.org/10.1139/O06-900

Structure/function overview of proteins involved in iron storage and transport
Sargent, P.J., Farnaud, S. and Evans, R.W. 2005. Structure/function overview of proteins involved in iron storage and transport. Current Medicinal Chemistry. 12 (23), pp. 2683-2693. https://doi.org/10.2174/092986705774462969

Lactoferrin: the conductor of the immunological system?
Farnaud, S. and Evans, R.W. 2005. Lactoferrin: the conductor of the immunological system? in: Veskler, B.A. (ed.) New research on immunology New York Nova Science Publishers.

Variation in antimicrobial activity of lactoferricin-derived peptides explained by structure modelling
Farnaud, S., Patel, A., Odell, E.W. and Evans, R.W. 2004. Variation in antimicrobial activity of lactoferricin-derived peptides explained by structure modelling. FEMS Microbiology Letters. 238 (1), pp. 221-226. https://doi.org/10.1111/j.1574-6968.2004.tb09759.x

The plug domain of a neisserial TonB-dependent transporter retains structural integrity in the absence of its transmembrane β-barrel
Oke, M., Sarra, R., Ghirlando, R., Farnaud, S., Gorringe, A.R., Evans, R.W. and Buchanan, S.K. 2004. The plug domain of a neisserial TonB-dependent transporter retains structural integrity in the absence of its transmembrane β-barrel. FEBS Letters. 564 (3), pp. 294-300. https://doi.org/10.1016/S0014-5793(04)00196-6

Interactions of lactoferricin-derived peptides with LPS and antimicrobial activity
Farnaud, S., Spiller, C., Moriarty, L.C., Patel, A., Gant, V., Odell, E.W. and Evans, R.W. 2004. Interactions of lactoferricin-derived peptides with LPS and antimicrobial activity. FEMS Microbiology Letters. 233 (2/29), pp. 193-199. https://doi.org/10.1111/j.1574-6968.2004.tb09482.x

Lactoferrin: a multifunctional protein with antimicrobial properties
Farnaud, S. and Evans, R.W. 2003. Lactoferrin: a multifunctional protein with antimicrobial properties. Molecular Immunology. 40 (7), pp. 395-405. https://doi.org/10.1016/S0161-5890(03)00152-4

Bacterial lipopolysaccharide directly stimulates cortisol secretion in human adrenal cells
Vakharia, K., Renshaw, D. and Hinson, J.P. 2002. Bacterial lipopolysaccharide directly stimulates cortisol secretion in human adrenal cells. Endocrine Research. 28 (4), pp. 357-361. https://doi.org/10.1081/ERC-120016809

Bacterial Lipopolysaccharide directly stimulates cortisol secretion in human adrenal cells
Vakharia, K., Renshaw, D. and Hinson, J.P. 2002. Bacterial Lipopolysaccharide directly stimulates cortisol secretion in human adrenal cells. Endocrine Research. 28 (4), pp. 357-361. https://doi.org/10.1081/ERC-120016809

Support for a three-dimensional structure predicting a Cys-Glu-Lys catalytic triad for Pseudomonas aeruginosa amidase comes from site-directed mutagenesis and mutations altering substrate specificity
Novo, C., Farnaud, S., Tata, R., Clemente, A. and Brown, P.R. 2002. Support for a three-dimensional structure predicting a Cys-Glu-Lys catalytic triad for Pseudomonas aeruginosa amidase comes from site-directed mutagenesis and mutations altering substrate specificity. Biochemical Journal. 365 (3), pp. 731-738. https://doi.org/10.1042/BJ20011714

Regulation of rat adrenal vasoactive intestinal peptide content: effects of adrenocorticotropic hormone treatment and changes in dietary sodium intake
Hinson, J.P., Renshaw, D., Carroll, M. and Kapas, S. 2001. Regulation of rat adrenal vasoactive intestinal peptide content: effects of adrenocorticotropic hormone treatment and changes in dietary sodium intake. Journal of Neuroendocrinology. 13 (9), pp. 769-773. https://doi.org/10.1046/j.1365-2826.2001.00692.x

Evidence that cysteine-166 is the active-site nucleophile of Pseudomonas aeruginosa amidase: crystallization and preliminary X-ray diffraction analysis of the enzyme
Farnaud, S., Tata, R., Sohi, M.K., Wan, T., Brown, P.R. and Sutton, B.J. 1999. Evidence that cysteine-166 is the active-site nucleophile of Pseudomonas aeruginosa amidase: crystallization and preliminary X-ray diffraction analysis of the enzyme. Biochemical Journal. 340 (3), pp. 711-714.

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