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J Duguid

Publications and source records attributed to J Duguid.

18 recordsLinked to original sources

Roadmap to approval: use of an automated sterility test method as a lot release test for Carticel, autologous cultured chondrocytes.

BACKGROUND: In February 2004, FDA approved a supplement to our biologics license for Carticel, autologous cultured chondrocytes, to use the BacT/ALERT microbial detection system as an alternative to the compendial sterility test for lot release. This article provides a roadmap to our approval process. The approval represents more than 4 years of development and validation studies comparing the Steritest compact system to the BacT/ALERT microbial detection system. METHODS: For this study, freshly cultured chondrocytes were prepared from a characterized cell bank. Microbial isolates were prepared from either American Type Culture Collection (ATCC) strains or from in-house contaminants. For each test condition, a suspension of chondrocyte cells and test organisms was inoculated into both aerobic media (SA standard adult culture bottles, FA FAN, tryptic soy broth) and anaerobic media (SN standard adult culture bottles, FN FAN, fluid thioglycollate media) and tested for sterility using the Steritest compact system (Millipore, Bedford, MA, USA) and the BacT/ALERT microbial detection system (bioMerieux, Durham, NC, USA). Negative control bottles were inoculated with chondrocytes and no microorganisms. All bottles were incubated for 14 days and read daily. Bacterial growth was determined by either visual examination of Steritest canisters or detection of a positive by the BacT/ALERT system. A gram stain and streak plate were used to confirm positive bottles and negative bottles after 14 days. RESULTS: The detection of a positive by either the Steritest compact system or the BacT/ALERT system was summarized for each organism in each validation study. Data generated from studies reducing the incubation temperature from 35 degrees C to 32 degrees C improved detection times in the automated method compared with the compendial method. Other improvements included the use of FAN aerobic and anaerobic media to absorb the gentamicin contained in the culture media of prepared chondrocyte samples. Chondrocytes alone did not generate positive results in either the compendial method or the automated method. DISCUSSION: Data from validation studies support the use of the BacT/ALERT microbial detection system as an alternative sterility test for Carticel.

Bacteria↗

Absence of macrocytic anaemia in Alzheimer's disease.

There is an association between Alzheimer's disease (AD) and low serum levels of vitamin B12 and folic acid. Patients also have elevated serum levels of homocysteine and disease progression might therefore be associated with the development of a macrocytic anaemia. We investigated the relationship between disease duration, homocysteine and haematological indices in patients with clinically diagnosed AD and healthy elderly controls. Haemoglobin and platelet counts fell only slightly with increasing dementia duration, but there were no other changes in haematological indices. In particular, macrocytosis and red cell distribution width were unrelated to disease duration and no patients were anaemic. Our results support previous observations that the neurological and haematological features of B12 and folate deficiency are often unrelated in these patients.

Aged↗

Synthetic peptide-based DNA complexes for nonviral gene delivery.

A major advantage of synthetic peptide-based DNA delivery systems is its flexibility. By design, the composition of the final complex can be easily modified in response to experimental results in vitro and in vivo to take advantage of specific peptide sequences to overcome extra- and intracellular barriers to gene delivery. The extreme heterogeneity which greatly complicates both the kinetics of DNA-poly(L-lysine) interaction and the thermodynamic stability of the final DNA complexes is avoided. Other unique features include the absence of biohazards related to the viral genome as well as the production of the viral vector and the absence of limitations on the size of the therapeutic genes that can be inserted in the recombinant viral vector. In principle, if the gene can be cloned into an expression plasmid, it can be delivered as a synthetic DNA complex. Since these synthetic delivery systems are composed of small peptides which may be poorly antigenic, they hold the promise of repeated gene administration, a highly desirable feature which will be important for gene targeting in vivo to endothelial cells, monocytes, hepatocytes and tumor cells.

Journal Article↗

Target specific optimization of cationic lipid-based systems for pulmonary gene therapy.

PURPOSE: Cationic lipids are capable of transferring foreign genes to the pulmonary epithelium in vivo. It is becoming increasingly clear that factors other than lipid molecular structure also influence efficiency of delivery using cationic lipid systems. This study is aimed at evaluating the effect of formulation variables such as cationic lipid structure, cationic lipid/DNA ratio, particle size, co-lipid content and plasmid topology on transgene expression in the lung. METHODS: The effect of varying the surface and colloidal properties of cationic lipid-based gene delivery systems was assessed by intratracheal instillation into rats. An expression plasmid encoding chloramphenicol acetyl transferase (CAT) was used to measure transgene expression. RESULTS: Cationic lipid structure, cationic lipid/DNA ratio, particle size, co-lipid content and topology of the plasmid, were found to significantly affect transgene expression. Complexation with lipids was found to have a protective effect on DNA integrity in bronchoalveolar lavage fluid (BALF). DNA complexed with lipid showed enhanced persistence in rat lungs as measured by quantitative polymerase chain reaction. CONCLUSIONS: Fluorescence microscopy analysis indicated that the instilled formulation reaches the lower airways and alveolar region. Data also suggests cationic lipid-mediated gene expression is primarily localized in the lung parenchyma and not infiltrating cells isolated from the BALF.

Animals↗

Consequences for fetus and neonate of maternal red cell allo-immunisation.

AIMS: To study the distribution of clinically important red cell antibodies in pregnancy, and the associated fetal and neonatal morbidity and mortality. METHODS: The case notes of women with clinically important red cell antibodies identified in their serum during pregnancy were reviewed. RESULTS: During a 12 month period 22,264 women were referred for antenatal screening. Clinically important red cell antibodies were detected in 244 (1%). Of these, 100 were anti-D and 144 were non-RhD antibodies. There were three intrauterine deaths, three fetuses required intrauterine transfusion, 10 neonates were transfused, 27 others had phototherapy, and 27 with a positive direct antiglobulin test received no treatment. Early fetal losses occurred in the presence of both high and low levels of anti-D. CONCLUSIONS: Anti-D remains the most common clinically important antibody in pregnancy, and accounts for the greatest fetal and neonatal morbidity and mortality. Of the other antibodies detected, anti-c was associated with most neonatal morbidity. The production of many of the non-D antibodies detected could be avoided by the use of selected red cells when transfusing pre-menopausal women.

Blood Group Antigens↗

Major histocompatibility complex genes have an increased brain expression after scrapie infection.

We have examined the expression of the major histocompatibility complex (MHC) antigens and related genes in scrapie-infected hamster brain. Both the class I and the class II MHC genes as well as the class II-associated invariant chain were found to have an increased brain expression after scrapie infection. The increased expression of the class I complex was immunohistochemically localized primarily to neurons, though some astrocytes contained much smaller amounts of the class I complex. While there is no detectable immune response to scrapie infection, the possibility that increased MHC expression affords some defense against the scrapie agent is discussed.

Animals↗

Raman spectroscopy of DNA-metal complexes. I. Interactions and conformational effects of the divalent cations: Mg, Ca, Sr, Ba, Mn, Co, Ni, Cu, Pd, and Cd.

Interactions of divalent metal cations (Mg2+, Ca2+, Ba2+, Sr2+, Mn2+, Co2+, Ni2+, Cu2+, Pd2+, and Cd2+) with DNA have been investigated by laser Raman spectroscopy. Both genomic calf-thymus DNA (> 23 kilobase pairs) and mononucleosomal fragments (160 base pairs) were employed as targets of metal interaction in solutions containing 5 weight-% DNA and metal:phosphate molar ratios of 0.6:1. Raman difference spectra reveal that transition metal cations (Mn2+, Co2+, Ni2+, Cu2+, Pd2+, and Cd2+) induce the greatest structural changes in B-DNA. The Raman (vibrational) band differences are extensive and indicate partial disordering of the B-form backbone, reduction in base stacking, reduction in base pairing, and specific metal interaction with acceptor sites on the purine (N7) and pyrimidine (N3) rings. Many of the observed spectral changes parallel those accompanying thermal denaturation of B-DNA and suggest that the metals link the bases of denatured DNA. While exocyclic carbonyls of dT, dG, and dC may stabilize metal ligation, correlation plots show that perturbations of the carbonyls are mainly a consequence of metal-induced denaturation of the double helix. Transition metal interactions with the DNA phosphates are weak in comparison to interactions with the bases, except in the case of Cu2+, which strongly perturbs both base and phosphate group vibrations. On the other hand, the Raman signature of B-DNA is largely unperturbed by Mg2+, Ca2+, Sr2+, and Ba2+, suggesting much weaker interactions of the alkaline earth metals with both base and phosphate sites. A notable exception is a moderate perturbation by alkaline earths of purine N7 sites in 160-base pair DNA, with Ca2+ causing the greatest effect. Correlation plots demonstrate a strong interrelationship between perturbations of Raman bands assigned to ring vibrations of the bases and those of bands assigned to exocyclic carbonyls and backbone phosphodiester groups. However, strong correlations do not occur between the Raman phosphodioxy band (centered near 1092 cm-1) and other Raman bands, suggesting that the former is not highly sensitive to the structural changes induced by divalent metal cations. The structural perturbations induced by divalent cations are much greater for > 23-kilobase pair DNA than for 160-base pair DNA, as evidenced by both the Raman difference spectra and the tendency toward the formation of insoluble aggregates. In the presence of transition metals, aggregation of high-molecular-weight DNA is evident at temperatures as low as 11 degrees C. A relationship between DNA melting and aggregation is proposed in which initial metal binding at major groove sites locally destabilizes the B-DNA double helix, causing displacement of the bases away from one another and exposing additional metal binding sites. Metal cation linkage of two displaced bases would allow separate DNA strands to crosslink. Aggregation is proposed to result from the formation of an extended network of these crosslinks.

Animals↗

The Liverpool chimaera.

A dispermic human chimaera is described who is a fertile female XX/XY chimaera. The chimaera was discovered due to anomalies found during routine antenatal testing. The patient had two red cell populations differing in three blood group systems; ABO, Rh and MN. Analysis of cultured lymphocytes showed 70% of cells to have the 46, XY male karyotype and analysis of cultured skin cells showed 30% of cells to have the 46, XY karyotype.

ABO Blood-Group System↗