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1.
Biomacromolecules ; 25(2): 675-689, 2024 Feb 12.
Article in English | MEDLINE | ID: mdl-38266160

ABSTRACT

The field of single-chain nanoparticles (SCNPs) continues to mature, and an increasing range of reports have emerged that explore the application of these small nanoparticles. A key application for SCNPs is in the field of drug delivery, and recent work suggests that SCNPs can be readily internalized by cells. However, limited attention has been directed to the delivery of small-molecule drugs using SCNPs. Moreover, studies on the physicochemical effects of drug loading on SCNP performance is so far missing, despite the accepted view that such small nanoparticles should be significantly affected by the drug loading content. To address this gap, we prepared a library of SCNPs bearing different amounts of a covalently conjugated therapeutic drug-sulfasalazine (SSZ). We evaluated the impact of the conjugated drug loading on both the synthesis and biological activity of SCNPs on pancreatic cancer cells (AsPC-1). Our results reveal that covalent drug conjugation to the side chains of the SCNP polymer precursor interferes with chain collapse and cross-linking, which demands optimization of reaction conditions to reach high degrees of cross-linking efficiencies. Small-angle neutron scattering and diffusion-ordered spectroscopy nuclear magnetic resonance (DOSY NMR) analyses reveal that SCNPs with a higher drug loading display larger sizes and looser structures, as well as increased hydrophobicity associated with a higher SSZ content. Increased SSZ loading led to reduced cellular uptake when assessed in vitro, whereby SCNP aggregation on the surface of AsPC-1 cells led to reduced toxicity. This work highlights the effects of drug loading on the drug delivery efficiency and biological behavior of SCNPs.


Subject(s)
Nanoparticles , Nanoparticles/chemistry , Drug Delivery Systems/methods , Polymers/chemistry , Pharmaceutical Preparations
2.
Biochemistry ; 62(14): 2202-2215, 2023 07 18.
Article in English | MEDLINE | ID: mdl-37368361

ABSTRACT

Heparanase (HPSE) is the only mammalian endo-ß-glucuronidase known to catalyze the degradation of heparan sulfate. Dysfunction of HPSE activity has been linked to several disease states, resulting in HPSE becoming the target of numerous therapeutic programs, yet no drug has passed clinical trials to date. Pentosan polysulfate sodium (PPS) is a heterogeneous, FDA-approved drug for the treatment of interstitial cystitis and a known HPSE inhibitor. However, due to its heterogeneity, characterization of its mechanism of HPSE inhibition is challenging. Here, we show that inhibition of HPSE by PPS is complex, involving multiple overlapping binding events, each influenced by factors such as oligosaccharide length and inhibitor-induced changes in the protein secondary structure. The present work advances our molecular understanding of the inhibition of HPSE and will aid in the development of therapeutics for the treatment of a broad range of pathologies associated with enzyme dysfunction, including cancer, inflammatory disease, and viral infections.


Subject(s)
Glucuronidase , Heparitin Sulfate , Animals , Heparitin Sulfate/chemistry , Glucuronidase/chemistry , Mammals/metabolism
3.
Angew Chem Int Ed Engl ; 62(20): e202301678, 2023 May 08.
Article in English | MEDLINE | ID: mdl-36914561

ABSTRACT

Polydopamine (PDA) is a synthetic model for melanin and has a wide range of opto-electronic properties that underpin its utility in applied and biological settings, from broadband light absorbance to possessing stable free radical species. Here, we show that PDA free radicals are photo-responsive under visible light irradiation, enabling PDA to serve as a photo-redox catalyst. Steady-state and transient electron spin resonance spectroscopy reveals a reversible amplification in semiquinone radical population within PDA under visible light. This photo-response modifies the redox potential of PDA and supports sensitisation of exogenous species via photoinduced electron transfer (PET). We demonstrate the utility of this discovery by employing PDA nanoparticles to photosensitise a common diaryliodonium photoinitiator and initiate free-radical polymerisation (FRP) of vinylic monomers. In situ 1 H nuclear magnetic resonance spectroscopy reveals an interplay between PDA-driven photosensitising and radical quenching during FRP under blue, green, and red light. This work provides crucial insights into the photoactive free radical properties of melanin-like materials and reveals a promising new application for polydopamine as a photosensitiser.

4.
Angew Chem Int Ed Engl ; 62(20): e202218955, 2023 May 08.
Article in English | MEDLINE | ID: mdl-36919238

ABSTRACT

Piezocatalysis offers a means to transduce mechanical energy into chemical potential, harnessing physical force to drive redox reactions. Working in the solid state, we show here that piezoelectric BaTiO3 nanoparticles can transduce mechanical load into a flux of reactive radical species capable of initiating solid state free radical polymerization. Activation of a BaTiO3 powder by ball milling, striking with a hammer, or repeated compressive loading generates highly reactive hydroxyl radicals (⋅OH), which readily initiate radical chain growth and crosslinking of solid acrylamide, acrylate, methacrylate and styrenic monomers. Control experiments indicate a critical role for chemisorbed water on the BaTiO3 nanoparticle surface, which is oxidized to ⋅OH via mechanoredox catalysis. The force-induced production of radicals by compressing dry piezoelectric materials represents a promising new route to harness mechanical energy for solid state radical synthesis.

5.
Chemistry ; 27(38): 9830-9838, 2021 Jul 07.
Article in English | MEDLINE | ID: mdl-33880824

ABSTRACT

Although sulfated xylooligosaccharides are promising therapeutic leads for a multitude of afflictions, the structural complexity and heterogeneity of commercially deployed forms (e. g. Pentosan polysulfate 1) complicates their path to further clinical development. We describe herein the synthesis of the largest homogeneous persulfated xylooligomers prepared to date, comprising up to eight xylose residues, as standards for biological studies. Near quantitative sulfation was accomplished using a remarkably mild and operationally simple protocol which avoids the need for high temperatures and a large excess of the sulfating reagent. Moreover, the sulfated xylooligomer standards so obtained enabled definitive identification of a pyridinium contaminant in a sample of a commercially prepared Pentosan drug and provided significant insights into the conformational preferences of the constituent persulfated monosaccharide residues. As the spatial distribution of sulfates is a key determinant of the binding of sulfated oligosaccharides to endogenous targets, these findings have broad implications for the advancement of Pentosan-based treatments.


Subject(s)
Oligosaccharides , Sulfates , Glucuronates , Pentosan Sulfuric Polyester
6.
J Org Chem ; 86(1): 178-198, 2021 01 01.
Article in English | MEDLINE | ID: mdl-33253562

ABSTRACT

Methods are reported for the efficient assembly of a series of phenol-derived propiolates, including the parent system 56, and their Au(I)-catalyzed cyclization (intramolecular hydroarylation) to give the corresponding coumarins (e.g., 1). Simple syntheses of natural products such as ayapin (144) and scoparone (145) have been realized by such means, and the first of these subject to single-crystal X-ray analysis. A related process is described for the conversion of propargyl ethers such as 156 into the isomeric 2H-chromene precocene I (159), a naturally occurring inhibitor of juvenile hormone biosynthesis.

8.
Org Lett ; 21(16): 6295-6299, 2019 08 16.
Article in English | MEDLINE | ID: mdl-31381356

ABSTRACT

Synthetically derived (Z)-ligustilide (1) has been subjected to photochemically-promoted dimerization processes under a range of conditions. By such means, varying distributions of the dimeric natural products tokinolides A-C (4, 3, and 6, respectively) and riligustilide (5) as well certain related (isomeric) compounds have been obtained. The structures of three of them have been confirmed by single-crystal X-ray analysis. The biosynthetic implications of the outcomes of this study are discussed.


Subject(s)
4-Butyrolactone/analogs & derivatives , Benzofurans/chemical synthesis , 4-Butyrolactone/chemistry , Benzofurans/chemistry , Catalysis , Crystallography, X-Ray , Cycloaddition Reaction , Dimerization , Metals/chemistry , Molecular Structure , Photochemistry/methods
9.
Org Lett ; 21(16): 6342-6346, 2019 08 16.
Article in English | MEDLINE | ID: mdl-31364356

ABSTRACT

On exposure to a combination of Cu[I]- and Pd[0]-based catalysts, compounds such as 1 and 7 engage in tandem Ullmann-Goldberg cross-coupling and cyclopalladation-reductive elimination reactions to give benzofurans such as 8. Related reactions involving hetero-Michael additions of o-halogenated phenols or anilines to propiolates and the Pd[0]-catalyzed cyclization of the resulting conjugates provide, in a one-pot process, alternately functionalized benzofurans, indoles, or phthalanes.

10.
RSC Adv ; 9(10): 5501-5511, 2019 Feb 11.
Article in English | MEDLINE | ID: mdl-35515937

ABSTRACT

An aerobic coupling of 2-aminopyrimidines or 2-aminopyridines with trans-chalcones to afford aroylimidazo[1,2-a]pyrimidines and aroylimidazo[1,2-a]pyridines is reported. Reactions proceed in the presence of CuFe2O4 superparamagnetic nanoparticle catalyst, two equivalents of iodine, oxygen oxidant, and 1,4-dioxane solvent. The catalyst is superior to many common copper or iron complexes. Copper ferrite could be easily separated by magnetic decantation and reused up to 5 times without a major loss of activity. The method described here marks a rare example of using a simple, heterogeneous catalyst for synthesis of fused heterocycles. To our best knowledge, aroylimidazo[1,2-a]pyrimidines and aroylimidazo[1,2-a]pyridines were not previously synthesized using this protocol.

11.
Org Biomol Chem ; 16(28): 5086-5089, 2018 07 18.
Article in English | MEDLINE | ID: mdl-29961776

ABSTRACT

A new route to substituted furocoumarins via copper-catalyzed cyclization between 4-hydroxycoumarins and ketoximes was developed. CuBr2 exhibited higher activity than other copper salts, affording the desired furocoumarins in high yields. The transformation proceeded readily in the absence of stoichiometric external oxidants. The significance of this synthetic strategy would be (1) the easily available starting materials; (2) low cost catalyst CuBr2; and (3) being without stoichiometric external oxidants. This protocol is complementary to previous approaches in the synthesis of substituted furocoumarins.

12.
Chem Asian J ; 9(1): 67-70, 2014 Jan.
Article in English | MEDLINE | ID: mdl-24347067

ABSTRACT

Polyoxygenated cyclooctenones closely related to the enantiomeric form of the Eastern hemisphere of the structurally and biogenetically unusual macrolactam tripartilactam have been assembled from an enzymatically-derived and homochiral cis-1,2-dihydrocatechol. Key steps include the oxidative cleavage of the chlorinated double bond within a derivative of the starting cis-1,2-dihydrocatechol and a ring-closing metathesis reaction to establish the required eight-membered ring.


Subject(s)
Cyclobutanes/chemistry , Cyclooctanes/chemical synthesis , Cyclooctanes/metabolism , Lactams/chemistry , Cyclization , Cyclooctanes/chemistry , Molecular Structure , Stereoisomerism
13.
J Biol Chem ; 280(45): 37489-94, 2005 Nov 11.
Article in English | MEDLINE | ID: mdl-16166093

ABSTRACT

Insulin resistance is a cardinal feature of normal pregnancy and excess growth hormone (GH) states, but its underlying mechanism remains enigmatic. We previously found a significant increase in the p85 regulatory subunit of phosphatidylinositol kinase (PI 3-kinase) and striking decrease in IRS-1-associated PI 3-kinase activity in the skeletal muscle of transgenic animals overexpressing human placental growth hormone. Herein, using transgenic mice bearing deletions in p85alpha, p85beta, or insulin-like growth factor-1, we provide novel evidence suggesting that overexpression of p85alpha is a primary mechanism for skeletal muscle insulin resistance in response to GH. We found that the excess in total p85 was entirely accounted for by an increase in the free p85alpha-specific isoform. In mice with a liver-specific deletion in insulin-like growth factor-1, excess GH caused insulin resistance and an increase in skeletal muscle p85alpha, which was completely reversible using a GH-releasing hormone antagonist. To understand the role of p85alpha in GH-induced insulin resistance, we used mice bearing deletions of the genes coding for p85alpha or p85beta, respectively (p85alpha (+/-) and p85beta(-/-)). Wild type and p85beta(-/-) mice developed in vivo insulin resistance and demonstrated overexpression of p85alpha and reduced insulin-stimulated PI 3-kinase activity in skeletal muscle in response to GH. In contrast, p85alpha(+/-)mice retained global insulin sensitivity and PI 3-kinase activity associated with reduced p85alpha expression. These findings demonstrated the importance of increased p85alpha in mediating skeletal muscle insulin resistance in response to GH and suggested a potential role for reducing p85alpha as a therapeutic strategy for enhancing insulin sensitivity in skeletal muscle.


Subject(s)
Growth Hormone/metabolism , Insulin Resistance/physiology , Insulin/metabolism , Muscle, Skeletal/metabolism , Phosphatidylinositol 3-Kinases/metabolism , Signal Transduction , Animals , Gene Expression Regulation, Enzymologic , Humans , Insulin Receptor Substrate Proteins , Insulin-Like Growth Factor I/genetics , Insulin-Like Growth Factor I/metabolism , Mice , Mice, Knockout , Mice, Transgenic , Phosphatidylinositol 3-Kinases/chemistry , Phosphoproteins/metabolism , Placenta Growth Factor , Pregnancy Proteins , Protein Subunits/chemistry , Protein Subunits/metabolism
14.
Biochem Biophys Res Commun ; 324(3): 1004-10, 2004 Nov 19.
Article in English | MEDLINE | ID: mdl-15485654

ABSTRACT

Phogrin (IA2-beta) is an integral membrane protein of dense-core vesicles in neuroendocrine cells. We have examined the recycling of endogenous phogrin following exocytosis in insulin secreting Min6 beta-cells by monitoring stimulus dependent-uptake of antibodies directed against the lumenal domain of the protein. While low levels of internalized phogrin accumulated in LAMP1-positive lysosomes, more than 35% of internalized phogrin recycled back to an insulin-positive compartment and could return to the cell surface during a second exocytic stimulation. The recycling phogrin transited a syntaxin 6-positive compartment but did not appear to go through the TGN38-positive trans Golgi network. The results suggest a model in which secretory membrane components can recycle from the endosomal system to immature secretory granules without interaction with the major portion of the TGN.


Subject(s)
Golgi Apparatus/metabolism , Insulin/metabolism , Islets of Langerhans/metabolism , Animals , Cell Line , Cell Membrane/metabolism , Chickens , Endocytosis , Exocytosis , Image Processing, Computer-Assisted , Lysosomal Membrane Proteins , Lysosomes/metabolism , Membrane Glycoproteins/chemistry , Membrane Glycoproteins/metabolism , Membrane Proteins/chemistry , Membrane Proteins/metabolism , Mice , Microscopy, Fluorescence , Protein Structure, Tertiary , Protein Tyrosine Phosphatases/chemistry , Qa-SNARE Proteins , Rabbits , Receptor-Like Protein Tyrosine Phosphatases, Class 8 , Time Factors , trans-Golgi Network/metabolism
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