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1.
ACS Infect Dis ; 10(5): 1679-1695, 2024 May 10.
Article in English | MEDLINE | ID: mdl-38581700

ABSTRACT

Linezolid is a drug with proven human antitubercular activity whose use is limited to highly drug-resistant patients because of its toxicity. This toxicity is related to its mechanism of action─linezolid inhibits protein synthesis in both bacteria and eukaryotic mitochondria. A highly selective and potent series of oxazolidinones, bearing a 5-aminomethyl moiety (in place of the typical 5-acetamidomethyl moiety of linezolid), was identified. Linezolid-resistant mutants were cross-resistant to these molecules but not vice versa. Resistance to the 5-aminomethyl molecules mapped to an N-acetyl transferase (Rv0133) and these mutants remained fully linezolid susceptible. Purified Rv0133 was shown to catalyze the transformation of the 5-aminomethyl oxazolidinones to their corresponding N-acetylated metabolites, and this transformation was also observed in live cells of Mycobacterium tuberculosis. Mammalian mitochondria, which lack an appropriate N-acetyltransferase to activate these prodrugs, were not susceptible to inhibition with the 5-aminomethyl analogues. Several compounds that were more potent than linezolid were taken into C3HeB/FeJ mice and were shown to be highly efficacious, and one of these (9) was additionally taken into marmosets and found to be highly active. Penetration of these 5-aminomethyl oxazolidinone prodrugs into caseum was excellent. Unfortunately, these compounds were rapidly converted into the corresponding 5-alcohols by mammalian metabolism which retained antimycobacterial activity but resulted in substantial mitotoxicity.


Subject(s)
Antitubercular Agents , Mycobacterium tuberculosis , Oxazolidinones , Prodrugs , Prodrugs/pharmacology , Prodrugs/chemistry , Antitubercular Agents/pharmacology , Antitubercular Agents/chemistry , Mycobacterium tuberculosis/drug effects , Oxazolidinones/pharmacology , Oxazolidinones/chemistry , Animals , Microbial Sensitivity Tests , Mice , Humans , Linezolid/pharmacology , Linezolid/chemistry , Drug Resistance, Bacterial , Mitochondria/drug effects , Mitochondria/metabolism
2.
Int J Mol Sci ; 24(10)2023 May 11.
Article in English | MEDLINE | ID: mdl-37239975

ABSTRACT

Within regenerative endodontics, exciting opportunities exist for the development of next-generation targeted biomaterials that harness epigenetic machinery, including microRNAs (miRNAs), histone acetylation, and DNA methylation, which are used to control pulpitis and to stimulate repair. Although histone deacetylase inhibitors (HDACi) and DNA methyltransferase inhibitors (DNMTi) induce mineralisation in dental pulp cell (DPC) populations, their interaction with miRNAs during DPC mineralisation is not known. Here, small RNA sequencing and bioinformatic analysis were used to establish a miRNA expression profile for mineralising DPCs in culture. Additionally, the effects of a HDACi, suberoylanilide hydroxamic acid (SAHA), and a DNMTi, 5-aza-2'-deoxycytidine (5-AZA-CdR), on miRNA expression, as well as DPC mineralisation and proliferation, were analysed. Both inhibitors increased mineralisation. However, they reduced cell growth. Epigenetically-enhanced mineralisation was accompanied by widespread changes in miRNA expression. Bioinformatic analysis identified many differentially expressed mature miRNAs that were suggested to have roles in mineralisation and stem cell differentiation, including regulation of the Wnt and MAPK pathways. Selected candidate miRNAs were demonstrated by qRT-PCR to be differentially regulated at various time points in mineralising DPC cultures treated with SAHA or 5-AZA-CdR. These data validated the RNA sequencing analysis and highlighted an increased and dynamic interaction between miRNA and epigenetic modifiers during the DPC reparative processes.


Subject(s)
MicroRNAs , MicroRNAs/genetics , Dental Pulp , Vorinostat , Histone Deacetylase Inhibitors/pharmacology , Azacitidine/pharmacology , Decitabine/pharmacology , Hydroxamic Acids/pharmacology
3.
Exp Physiol ; 107(11): 1255-1264, 2022 11.
Article in English | MEDLINE | ID: mdl-36123314

ABSTRACT

NEW FINDINGS: What is the central question of this study? Chronotype reflects differences in circadian-mediated metabolic and hormonal profiles. But, does resting and/or exercise fuel use differ in early versus late chronotype as it relates to insulin sensitivity? What are the main finding and its importance? Early chronotypes with metabolic syndrome utilized more fat during rest and exercise independent of aerobic fitness when compared with late chronotypes. Early chronotypes were also more physically active throughout the day. Greater fat use was related to non-oxidative glucose disposal. These findings suggest that early chronotypes have differences in fuel selection that associate with type 2 diabetes risk. ABSTRACT: Early chronotypes (ECs) are often insulin-sensitive, in part, due to physical activity behaviour. It is unclear, however, if chronotypes differ in resting and/or exercise fuel oxidation in relation to insulin action. Using the Morningness-Eveningness Questionnaire (MEQ), adults with metabolic syndrome (ATP III criteria) were classified as EC (MEQ = 63.7 ± 0.9, n = 24 (19F), 54.2 ± 1.2 years) or late chronotype (LC; MEQ = 47.2 ± 1.4, n = 27 (23F), 55.3 ± 1.5 years). Carbohydrate (CHO) and fat oxidation (FOX, indirect calorimetry) were determined at rest, 55% and 85% V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ , along with heart rate and rating of perceived exertion. Physical activity patterns (accelerometers), body composition (DXA) and insulin sensitivity (clamp, 40 mU/m2 /min, 90 mg/dl) with an indirect calorimetry for non-oxidative glucose disposal (NOGD) were also determined. While demographics were similar, ECs had higher V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ (P = 0.02), NOGD (P < 0.001) and resting FOX (P = 0.02) than LCs. Both groups increased CHO reliance during exercise at 55% and 85% V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ (test effect, P < 0.01) from rest, although ECs used more fat (group effect, P < 0.01). ECs had lower sedentary behaviour and more physical activity during morning/midday (both, P < 0.05). FOX at 55% V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ correlated with V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ (r = 0.425, P = 0.004) whereas FOX at 85% V ̇ O 2 max ${\dot{V}}_{{{\rm{O}}}_{\rm{2}}{\rm{max}}}$ related to NOGD (r = 0.392, P = 0.022). ECs with metabolic syndrome used more fat in relation to insulin-stimulated NOGD.


Subject(s)
Diabetes Mellitus, Type 2 , Insulin Resistance , Metabolic Syndrome , Adult , Humans , Insulin , Glucose/metabolism , Blood Glucose/metabolism , Exercise/physiology
4.
Dent Mater ; 38(1): 2-6, 2022 01.
Article in English | MEDLINE | ID: mdl-34893350

ABSTRACT

OBJECTIVE: To clarify the terminology and its application in the context of materials placed in contact with tissues in living systems. METHODS: Review the nature of both the biological and chemical reactions occurring in such contexts with a view to a classification of types of behaviour and thus types of material. RESULTS: A range of types of behaviour was identified with clear diagnostic characteristics. Materials could thus be classified accordingly, with the possibility of more than one type of behaviour being exhibited. 'Bioactivity' was concluded to depend solely on the modulation of a natural biological process, but excluding pharmaceutical action. SIGNIFICANCE: Clarity in the characterisation and labelling of materials and their behaviours in biological systems will benefit the interpretation of the literature, the design of experiments, and future research directions.

5.
Neurol Clin Pract ; 11(3): e344-e346, 2021 Jun.
Article in English | MEDLINE | ID: mdl-34484909
6.
Asia Pac J Ophthalmol (Phila) ; 10(1): 63-73, 2021 01 19.
Article in English | MEDLINE | ID: mdl-33481396

ABSTRACT

ABSTRACT: The management of noninfectious uveitis is constantly evolving. A new "biologic era" in treatment began after the effectiveness of tumor necrosis factor-alpha blocking drugs was demonstrated in rheumatologic inflammatory diseases. The goal of specific immunomodulation with a biologic drug is to target inflammation at the molecular level with a low rate of serious adverse events. The purpose of this review is to summarize current knowledge of biologic drugs in the treatment of noninfectious uveitis by describing clinical studies and recent pharmacological developments.


Subject(s)
Uveitis , Biological Products/therapeutic use , Humans , Uveitis/drug therapy
8.
J Endod ; 46(9S): S42-S45, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32950194

ABSTRACT

AIM: This article seeks to provide a historical perspective on the development of the pulp biology and regeneration research field, especially through the activities of the International Association for Dental Research Pulp Biology and Regeneration research group, and to identify the importance of technological advances for both past and future directions of this research field. RESULTS/DISCUSSION: Key questions needing to be addressed in this field (relating to stem cells, bacterial challenges, progression and control of inflammation, and the specificity of dentinogenic responses during regeneration) to facilitate significant progress are also considered.


Subject(s)
Dental Pulp , Stem Cells , Regeneration
9.
Arch Oral Biol ; 119: 104888, 2020 Nov.
Article in English | MEDLINE | ID: mdl-32932150

ABSTRACT

OBJECTIVE: To compare proteomics and biological function of human dentin matrix molecules (hDMMs) and bovine dentin matrix molecules (bDMMs). DESIGN: Dentin powder from human or bovine teeth (n = 4) was demineralized in 10% (v/v) ethylenediaminetetraacetic acid for 7 days. The extracts were dialyzed, lyophilized and proteins were characterized using liquid chromatography-tandem mass spectrometry and shotgun proteomic analysis. To study biological function, mouse-derived undifferentiated dental pulp cells (OD21) were treated with 0.01, 0.1 or 1 µg/mL of hDMMs or bDMMs and proliferation was measured after 24 hours and 48 hours using 3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) assay. Cell migration was assessed after 24 hours using a Boyden chamber. Alizarin Red S staining was used to evaluate mineral formation. RESULTS: There were 307 proteins identified, of which 93 proteins were common to both species. Gene Ontology functional analysis demonstrated similar pattern of biological process in both species which consisted mainly of tissue development and biomineralization. hDMMs and bDMMs both enhanced cell proliferation. After 24 hours, all concentrations of bDMMs promoted cell proliferation (p ≤ 0.05), while hDMMs did not affect proliferation. After 48 hours, groups with 1µg/mL of bDMMs and 0.01µg/mL of hDMMs had increased cell proliferation compared to control (p ≤ 0.0001). All concentrations of hDMMs and bDMMs enhanced cell migration and mineralization (p ≤ 0.0001). CONCLUSION: bDMMs has similar biological functions as hDMMs. Moreover, bDMMs stimulated cell proliferation, migration and differentiation similar to hDMMs.


Subject(s)
Dental Pulp/cytology , Dentin/chemistry , Regeneration , Animals , Cattle , Cell Differentiation , Cell Movement , Cell Proliferation , Cells, Cultured , Female , Humans , Mice , Proteomics
10.
ACS Infect Dis ; 6(7): 1951-1964, 2020 07 10.
Article in English | MEDLINE | ID: mdl-32470286

ABSTRACT

Phenotypic whole-cell screening against Mycobacterium tuberculosis (Mtb) in glycerol-alanine-salts supplemented with Tween 80 and iron (GASTE-Fe) media led to the identification of a 2-aminoquinazolinone hit compound, sulfone 1 which was optimized for solubility by replacing the sulfone moiety with a sulfoxide 2. The synthesis and structure-activity relationship (SAR) studies identified several compounds with potent antimycobacterial activity, which were metabolically stable and noncytotoxic. Compound 2 displayed favorable in vitro properties and was therefore selected for in vivo pharmacokinetic (PK) studies where it was found to be extensively metabolized to the sulfone 1. Both derivatives exhibited promising PK parameters; however, when 2 was evaluated for in vivo efficacy in an acute TB infection mouse model, it was found to be inactive. In order to understand the in vitro and in vivo discrepancy, compound 2 was subsequently retested in vitro using different Mtb strains cultured in different media. This revealed that activity was only observed in media containing glycerol and led to the hypothesis that glycerol was not used as a primary carbon source by Mtb in the mouse lungs, as has previously been observed. Support for this hypothesis was provided by spontaneous-resistant mutant generation and whole genome sequencing studies, which revealed mutations mapping to glycerol metabolizing genes indicating that the 2-aminoquinazolinones kill Mtb in vitro via a glycerol-dependent mechanism of action.


Subject(s)
Antitubercular Agents , Mycobacterium tuberculosis , Animals , Antitubercular Agents/pharmacology , Drug Design , Mice , Structure-Activity Relationship
11.
Front Genet ; 11: 1, 2020.
Article in English | MEDLINE | ID: mdl-32117431

ABSTRACT

If dental caries (or tooth decay) progresses without intervention, the infection will advance through the dentine leading to severe pulpal inflammation (irreversible pulpitis) and pulp death. The current management of irreversible pulpits is generally root-canal-treatment (RCT), a destructive, expensive, and often unnecessary procedure, as removal of the injurious stimulus alone creates an environment in which pulp regeneration may be possible. Current dental-restorative-materials stimulate repair non-specifically and have practical limitations; as a result, opportunities exist for the development of novel therapeutic strategies to regenerate the damaged dentine-pulp complex. Recently, epigenetic modification of DNA-associated histone 'tails' has been demonstrated to regulate the self-renewal and differentiation potential of dental-stem-cell (DSC) populations central to regenerative endodontic treatments. As a result, the activities of histone deacetylases (HDAC) are being recognised as important regulators of mineralisation in both tooth development and dental-pulp-repair processes, with HDAC-inhibition (HDACi) promoting pulp cell mineralisation in vitro and in vivo. Low concentration HDACi-application can promote de-differentiation of DSC populations and conversely, increase differentiation and accelerate mineralisation in DSC populations. Therapeutically, various HDACi solutions can release bioactive dentine-matrix-components (DMCs) from the tooth's extracellular matrix; solubilised DMCs are rich in growth factors and can stimulate regenerative processes such as angiogenesis, neurogenesis, and mineralisation. The aim of this mini-review is to discuss the role of histone-acetylation in the regulation of DSC populations, while highlighting the importance of HDAC in tooth development and dental pulp regenerative-mineralisation processes, before considering the potential therapeutic application of HDACi in targeted biomaterials to the damaged pulp to stimulate regeneration.

13.
Vet Clin North Am Small Anim Pract ; 49(3): 501-517, 2019 May.
Article in English | MEDLINE | ID: mdl-30850306

ABSTRACT

Many palliative care patients have reduced oral intake during their illness. Managing inadequate intake through appetite stimulation and/or artificial hydration and nutrition poses many clinical, ethical, and logistical dilemmas. This article aids the health care team in making appropriate recommendations regarding assisted nutrition and hydration for palliative care and terminal patients. It provides a decision-making framework, including an ethical approach to determining appropriate use of assisted feeding and hydration methods in pets at the end of life. It also summarizes various clinical and logistical approaches to treating decreased food/water consumption, including potential benefits and burdens, should intervention be deemed appropriate.


Subject(s)
Nutritional Status , Pain/veterinary , Palliative Care , Animals , Cachexia/prevention & control , Cachexia/veterinary , Dehydration/prevention & control , Dehydration/veterinary , Fluid Therapy/veterinary , Nutrition Therapy/veterinary , Pain/prevention & control
14.
BMC Med Educ ; 19(1): 54, 2019 Feb 12.
Article in English | MEDLINE | ID: mdl-30755207

ABSTRACT

BACKGROUND: Junior doctors undertake a significant amount of prescribing; however, they are not well prepared for this, and report they would like more training in their undergraduate courses. To address this we tested a pharmacist-led prescribing program for final-year medical students. METHODS: Sixteen final-year students took part in the program. The program involved students writing prescriptions and getting feedback from clinical pharmacists, undertaking prescribing and calculation tutorials, and spending time in the pharmacy department. Evaluation included a pre- and post-assessment of their confidence and skills in prescribing, and a feedback session discussing the strengths and weakness of the program, and their perceptions about the role of pharmacists. Changes in the pre- and post-assessment of confidence and skills were examined with permutation and Mann-Whitney U tests. RESULTS: There was a significant improvement in students' confidence in prescribing, and a small but consistent improvement in prescribing skills. Of note, no student prescribed inappropriately and potentially harmfully after the program. Participants were positive about the program, and indicated a better understanding about the pharmacists' role and their ability to support them as junior doctors. CONCLUSIONS: This study has shown the potential effect of a pharmacist-led prescribing program on the skills and confidence in prescribing by medical students. It provided an interprofessional teaching opportunity, preparing students for a team-based approach to patient management.


Subject(s)
Clinical Competence/standards , Education, Medical, Undergraduate/methods , Medication Errors/prevention & control , Pharmacists , Practice Patterns, Physicians'/standards , Students, Medical , Drug Prescriptions , Humans , Pilot Projects , Program Evaluation
15.
Article in English | MEDLINE | ID: mdl-30745397

ABSTRACT

AN12855 is a direct, cofactor-independent inhibitor of InhA in Mycobacterium tuberculosis In the C3HeB/FeJ mouse model with caseous necrotic lung lesions, AN12855 proved efficacious with a significantly lower resistance frequency than isoniazid. AN12855 drug levels were better retained in necrotic lesions and caseum where the majority of hard to treat, extracellular bacilli reside. Owing to these combined attributes, AN12855 represents a promising alternative to the frontline antituberculosis agent isoniazid.


Subject(s)
Antitubercular Agents/pharmacology , Aza Compounds/pharmacology , Boron Compounds/pharmacology , Hydrocarbons, Fluorinated/pharmacology , Inhibins/antagonists & inhibitors , Mycobacterium tuberculosis/drug effects , Tuberculosis, Pulmonary/drug therapy , Animals , Bacterial Load/drug effects , Disease Models, Animal , Drug Development , Female , Isoniazid/pharmacology , Lung/pathology , Mice , Mice, Inbred C3H , Microbial Sensitivity Tests , Tuberculosis, Pulmonary/microbiology
16.
Front Genet ; 9: 311, 2018.
Article in English | MEDLINE | ID: mdl-30131827

ABSTRACT

Concerns over the cost and destructive nature of dental treatment have led to the call for novel minimally invasive, biologically based restorative solutions. For patients with toothache, this has resulted in a shift from invasive root-canal-treatment (RCT) toward more conservative vital-pulp-treatment (VPT) procedures, aimed to protect the pulp and harness its natural regenerative capacity. If the dental pulp is exposed, as long as the infection and inflammation can be controlled, conservative therapies can promote the formation of new tertiary dentine in a stem cell-led reparative process. Crucially, the volume and quality of new dentine is dependent on the material applied; however, currently available dental-materials are limited by non-specific action, cytotoxicity and poor clinical handling. Looking to the future, an improved understanding of the cellular regulators of pulpal inflammation and associated repair mechanisms is critical to predict pulpal responses and devise novel treatment strategies. Epigenetic modifications of DNA-associated proteins and the influences of non-coding RNAs have been demonstrated to control the self-renewal of stem cell populations as well as regulate mineralised tissue development and repair. Notably, the stability of microRNAs and their relative ease of sampling from pulpal blood highlight their potential for application as diagnostic inflammatory biomarkers, while increased understanding of their actions will not only enhance our knowledge of pulpal disease and repair, but also identify novel molecular targets. The potential therapeutic application of epigenetic modifying agents, DNA-methyltransferase-inhibitors (DNMTi) and histone-deacetylase-inhibitors (HDACi), have been shown to promote mineralisation and repair processes in dental-pulp-cell (DPC) populations as well as induce the release of bioactive dentine-matrix-components. Consequently, HDACis and DNMTis have the potential to enhance tertiary dentinogenesis by influencing the cellular and tissue processes at low concentrations with minimal side effects, providing an opportunity to develop a topically placed, inexpensive bio-inductive restorative material. The aim of this review is to highlight the potential role of epigenetic approaches in the treatment of the damaged dental pulp, considering the opportunities and obstacles, such as off-target effects, delivery mechanisms, for the therapeutic use of miRNA as an inflammatory biomarker or molecular target, before discussing the application of HDACi and DNMTi to the damaged pulp to stimulate repair.

17.
J Endod ; 43(9S): S1-S6, 2017 Sep.
Article in English | MEDLINE | ID: mdl-28778510

ABSTRACT

Pulp regeneration and its clinical translation into regenerative endodontic procedures are receiving increasing research attention, leading to significant growth of the published scientific and clinical literature within these areas. Development of research strategies, which consider patient-, clinician-, and scientist-based outcomes, will allow greater focus on key research questions driving more rapid clinical translation. Three key areas of focus for these research questions should include cells, signaling, and infection/inflammation. A translational pathway is envisaged in which clinical approaches are increasingly refined to provide regenerative endodontic protocols that are based on a robust understanding of the physiological processes and events responsible for the normal secretion, structure, and biological behavior of pulpal tissue.


Subject(s)
Dental Pulp Diseases/therapy , Dental Pulp/physiology , Regeneration , Cell Physiological Phenomena , Endodontics/methods , Humans , Stem Cell Transplantation
18.
Sci Rep ; 7(1): 3323, 2017 06 12.
Article in English | MEDLINE | ID: mdl-28607361

ABSTRACT

The requirement for immediate vascularization of engineered dental pulp poses a major hurdle towards successful implementation of pulp regeneration as an effective therapeutic strategy for root canal therapy, especially in adult teeth. Here, we demonstrate a novel strategy to engineer pre-vascularized, cell-laden hydrogel pulp-like tissue constructs in full-length root canals for dental pulp regeneration. We utilized gelatin methacryloyl (GelMA) hydrogels with tunable physical and mechanical properties to determine the microenvironmental conditions (microstructure, degradation, swelling and elastic modulus) that enhanced viability, spreading and proliferation of encapsulated odontoblast-like cells (OD21), and the formation of endothelial monolayers by endothelial colony forming cells (ECFCs). GelMA hydrogels with higher polymer concentration (15% w/v) and stiffness enhanced OD21 cell viability, spreading and proliferation, as well as endothelial cell spreading and monolayer formation. We then fabricated pre-vascularized, full-length, dental pulp-like tissue constructs by dispensing OD21 cell-laden GelMA hydrogel prepolymer in root canals of extracted teeth and fabricating 500 µm channels throughout the root canals. ECFCs seeded into the microchannels successfully formed monolayers and underwent angiogenic sprouting within 7 days in culture. In summary, the proposed approach is a simple and effective strategy for engineering of pre-vascularized dental pulp constructs offering potentially beneficial translational outcomes.


Subject(s)
Dental Pulp/blood supply , Tissue Engineering/methods , Tissue Scaffolds/chemistry , Animals , Cell Movement , Cell Proliferation , Cell Survival , Cells, Cultured , Elasticity , Endothelial Cells/cytology , Gelatin/chemistry , Hydrogels , Methacrylates/chemistry , Papio , Regeneration , Sus scrofa
19.
BMC Oral Health ; 17(1): 37, 2017 Jan 09.
Article in English | MEDLINE | ID: mdl-28068974

ABSTRACT

BACKGROUND: The present study aimed to develop an in vitro model for stain removal from natural enamel for the assessment and comparison of oral hygiene products. METHODS: Bovine teeth (n = 8 per group) were ground/polished to provide flat enamel specimens and ferric-tannate deposits were precipitated onto the enamel surfaces. The ferric-tannate stained enamel specimens were brushed using an in vitro tooth-brushing simulator with slurries containing commercially available toothpaste products, dental abrasive particles, and sodium tripolyphosphate (STP) solutions of different concentrations. The colour of the enamel surfaces was measured using a spectrophotometer before and after stain application as well as after the brushing treatments. RESULTS: Differences in stain removal efficacy were found between the toothpastes categorised as whitening and non-whitening comprising of different types of dental abrasives (hydrated silica and alumina). A mean value of 27% for stain removal was detected for the three non-whitening toothpastes and 59% of stain removal was detected for the three whitening toothpastes after 1000 strokes. Compared with the slurry with Zeodent 113 abrasive alone, the addition of STP provided better performance for stain removal under the same brushing conditions (mean value of 62% for Zeodent 113 abrasive alone and 72% with the addition of 5% (w/w) STP after 1000 strokes). No difference was evident between the STP concentration of 5% (w/w) and 10% (w/w). CONCLUSIONS: The ferric-tannate/bovine enamel model reported here provides good stain retention, is rapidly and easily prepared, and is shown to be progressively and reproducibly sensitive to toothbrushing using different toothpastes and surfactant/chelating agent solutions. Importantly, it provides good discrimination between various oral hygiene products. The stain removal assay reported here has considerable potential to enable comparative assessments of different toothpaste types in terms of their cleaning capabilities.


Subject(s)
Dentifrices/pharmacology , Tooth Discoloration/therapy , Toothbrushing , Animals , Cattle , Colorimetry , In Vitro Techniques , Materials Testing , Surface Properties
20.
J Immunol ; 196(6): 2809-18, 2016 Mar 15.
Article in English | MEDLINE | ID: mdl-26864031

ABSTRACT

Live attenuated vaccines such as SIV with a deleted nef gene have provided the most robust protection against subsequent vaginal challenge with wild-type (WT) SIV in the SIV-rhesus macaque model of HIV-1 transmission to women. Hence, identifying correlates of this protection could enable design of an effective HIV-1 vaccine. One such prechallenge correlate of protection from vaginal challenge has recently been identified as a system with three components: 1) IgG Abs reacting with the viral envelope glycoprotein trimeric gp41; 2) produced by plasma cells in the submucosa and ectopic tertiary lymphoid follicles in the ectocervix and vagina; and 3) concentrated on the path of virus entry by the neonatal FcR in the overlying epithelium. We now examine the mucosal production of the Ab component of this system after vaginal challenge. We show that vaginal challenge immediately elicits striking increases in plasma cells not only in the female reproductive tract but also at other mucosal sites, and that these increases correlate with low but persistent replication at mucosal sites. We describe vaginal ectopic follicles that are structurally and functionally organized similar to follicles in secondary lymphoid organs, and we provide inferential evidence for a key role of the female reproductive tract epithelium in facilitating Ab production, affinity maturation, and class switch recombination. Vaccination thus accesses an epithelial-immune system axis in the female reproductive tract to respond to exposure to mucosal pathogens. Designing strategies to mimic this system could advance development of an effective HIV-1 vaccine.


Subject(s)
AIDS Vaccines/immunology , Epithelium/metabolism , HIV Infections/immunology , HIV-1/physiology , Simian Acquired Immunodeficiency Syndrome/immunology , Simian Immunodeficiency Virus/physiology , Vagina/immunology , Animals , Antibodies, Viral/metabolism , Epithelium/immunology , Female , HIV Envelope Protein gp41/immunology , Histocompatibility Antigens Class I/metabolism , Humans , Immunity, Humoral , Immunity, Mucosal , Immunization , Macaca mulatta , Receptors, Fc/metabolism , Vaccines, Attenuated , Virus Internalization , Virus Replication
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