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Biomedical subjects

A L Muggleton-Harris

Publications and source records attributed to A L Muggleton-Harris.

At least 37 records · Page 2Linked to original sources

Rapid preimplantation detection of mutant (shiverer) and normal alleles of the mouse myelin basic protein gene allowing selective implantation and birth of live young.

As a model for the detection of human genetic disease in preimplantation embryos, we describe a method in which trophectoderm biopsy samples from viable mouse blastocysts are simultaneously analyzed for the presence of a normal or mutant allele of the myelin basic protein gene by the polymerase chain reaction. The biopsied embryos are kept in culture during analysis of biopsied material and later reintroduced to a foster mother. Prenatal diagnosis can be completed in less than 7 hr. The identity of either amplification product was proved conclusively by direct sequence analysis of amplified products. Ninety-six percent of recovered blastocysts survived biopsy, as judged by re-formation of a blastocyst cavity in culture. Fifty-nine percent of the biopsied embryos established pregnancy by day 6.5, compared to 88% of unmanipulated controls. This approach can be applied to preimplantation diagnosis of human genetic diseases by using extraembryonic cells from blastocysts obtained after in vitro fertilization or uterine lavage. It will make possible the elimination of a mutant allele from a family in a single generation.

Alleles↗

Improvement of the culture conditions for the development of human preimplantation embryos.

The culture of human preimplantation embryos from the 1-cell to the morula/blastocyst stage of development is not satisfactory at present. The success of various IVF laboratories ranges from 18 to 23%, therefore there is a requirement for improvement in the standard conditions used to culture the embryo. Using a limited number of 'spare' human embryos which were donated for research, in-vitro studies have been undertaken using various culture media. The results show that a significant improvement in viability is achieved using Ham's F-12 medium compared with other media presently used for culturing embryos.

Culture Media↗

Statin expression associated with terminally differentiating and postreplicative lens epithelial cells.

The expression of a nuclear (57 kDa) protein statin has been previously characterized as a specific marker of quiescent or senescent aging human fibroblasts in vitro. In these studies we have shown that the expression of statin is associated specifically with the postreplicative and terminally differentiating lens epithelial cell. By monitoring the synthesis of specific lens crystallin proteins, and the morphological and cellular changes associated with this differentiated system, we have demonstrated a close correlation between statin expression and cell commitment to the G0 nonreplicative cell cycle state.

Animals↗

Pre-implantation diagnosis of HPRT-deficient male and carrier female mouse embryos by trophectoderm biopsy.

In an animal model for Lesch-Nyhan syndrome, the affected male embryos, as well as the carrier female embryos, have been successfully identified by biochemical microassay of a sample of trophectoderm cells taken from the mouse embryos at the blastocyst stage. The embryos were removed from the uterus, diagnosed and returned to the uterus within 2 days without the need for cryopreservation. The diagnosis was confirmed at 14 days gestation by analysis of the hypoxanthine phosphoribosyl transferase (HPRT) status of the fetuses. Live young were obtained from biopsied embryos after transfer.

Animals↗

Cytoplasmic factors influence mitochondrial reorganization and resumption of cleavage during culture of early mouse embryos.

The mitochondrial distribution pattern has been monitored in normally cleaving and developmentally arrested preimplantation mouse embryos in vitro and compared with the distribution found immediately after flushing from the oviduct in vivo. Mitochondria in normally cleaving embryos in vitro and in vivo were found to be homogeneously distributed throughout the cytoplasm of the blastomeres during interphase. In developmentally arrested embryos in vitro the mitochondria became progressively aggregated and localized in the perinuclear region and the area of the cytocortex immediately adjacent to the plasma membrane. Injection of G2 cell cycle cytoplasmic factor(s) from a cycling 2-cell embryo into an arrested embryo resulted in the re-initiation of normal cleavage. Concomitant with the re-initiation of cleavage, a re-distribution of the aggregated mitochondria to the pattern, associated with normally cycling embryos, was observed. Specific mitochondrial translocations to the mitotic spindle were observed during cleavage. The results have shown that observation of the mitochondrial distribution using the vital stain Rhodamine 123, provides an accurate and reliable prediction of an embryo's ability to proceed through the next cleavage stage and develop in vitro and suggests that the specific association of mitochondria with the mitotic spindle is a prerequisite for normal cleavage.

Animals↗

An in vivo and in vitro study of the embryonic and adult lop mutant congenital cataractous lens.

A detailed histological study of the embryonic and adult congenital cataract Lop mouse lens has been made. A comparison with the congenital cataract (CatFr) mouse lens has shown that the full range of lens anomalies noted in the congenital cataractous mice are very similar. However, the Lop mutant demonstrates these defects to a greater degree in both the embryonic and adult stages. The lens epithelial cells of the Lop adult lens have been cultured to ascertain their in vitro phenotype. These studies have shown that the proliferation pattern and population doubling level are similar to that of the CatFr lens epithelial cells. A comparison with non-cataractous mouse lens epithelial cells demonstrates that the congenital cataractous mice lens epithelial cells have a very limited life span in vitro. An increase in the nuclear diameter with population doubling level was observed in the cultured mouse lens epithelial cells.

Animals↗

Factors modulating mouse lens epithelial cell morphology with differentiation and development of a lentoid structure in vitro.

The morphological and cellular changes that occur with differentiation and development of a lentoid structure from cultured mouse lens epithelial cells have been found to be dependent on the presence of lens capsule in association with the cells. The development of the 'lentoid body' is a multiphase process involving cell replication, synthesis of mucosubstances and a basement collagen membrane, cell aggregation and differentiation. Stage-specific synthesis of lens proteins confirms that the genes regulating normal differentiation in vivo are operating in the in vitro system. The hydrated collagen gel studies described in this report demonstrate that the cuboidal morphology and apical-basal polarity of the lens epithelial cells are dependent on their relationship with the lens capsule. Following a replicative phase the cells assume a mesenchyme-like morphology and migrate into the gel. Trypsinized cells freed from the lens capsule replicate but form colonies on the surface of the gel. The implications of these results are discussed with respect to previous observations made on normal lens development and the abnormalities associated with the congenital cataractous embryonic lens.

Animals↗

Rescue of developmental lens abnormalities in chimaeras of noncataractous and congenital cataractous mice.

In the study of the lens of a congenital cataractous mouse mutant (CAT), it has been shown that a loss of growth regulation at the cellular level causes gross lens abnormalities. The phenotypic characteristics of the cataractous mouse lens are similar to those seen in human congenital cataract and thus serves as a model system for medical research. In this present investigation, we have demonstrated that the abnormalities of the congenital cataractous lens can be rescued by forming chimaeras between DBA/2 (a noncataractous strain of mouse) and the CAT mutant. This report describes the histological, cellular and biochemical analysis of the resultant chimaeric eyes, and discusses possible mechanisms by which these results were achieved.

Animals↗

Age-dependent metabolic changes in cultured human fibroblasts.

The effects of metabolic poisons on the ATP content of cultured human skin fibroblasts at selected in vitro and in vivo ages were studied. Potassium cyanide, iodacetamide, and Arsenate were used to inhibit ATP restoration by glycolysis and oxidative phosphorylation. Cells treated with these metabolic poisons showed an age-dependent change in their ATP content. The decrease in cellular ATP content after exposure to these drugs was taken as an estimate of ATP turnover. It was found that there was a decrease in the ATP turnover with increasing population doubling level (i.e. in vitro age), and cells cultured from a 68-yr-old donor had a lower ATP turnover than those cultured from a neonatal donor. This decreased ATP turnover correlates with a previous finding of a decreased ability of "older" cells to be stimulated to migrate in culture and suggests that there is a metabolic component to this age-related functional deficiency.

Adenosine Triphosphate↗

Replicative potential of individual cell hybrids derived from young and old donor human skin fibroblasts.

Neonatal, adult, and aged donor human skin fibroblast cell cultures have been characterized for the population doubling potential and in vitro-in vivo relationship. Hybrid cells derived from individual whole-cell fusions of replicating GRC 387 (aged) and CSC 303 (neonatal) cells demonstrated that an intermediate mode of replication between that of the two parental cell lines occurred; therefore the longevity of the aged fibroblast cells was enhanced. The GRC 387 cells have an extended post-replicative phase-out period in comparison with the CSC 303 cells, and the experimental hybrids demonstrated a 20-25% increase of the period over that of the GRC 387 cells.

Aging↗

Modification of the cataractous phenotype by somatic cell hybridization.

Characterized mouse lens epithelial cell cultures and their clonal isolates obtained from normal and cataractous mice display a finite life-span. The cells of cataractous origin have a decreased number of population doubling levels compared to the capacity of the normal cells to replicate in vitro. Hybrid cells derived from individual cell fusions of normal (CD-1, DBA/2) and cataractous (Catfr) lens epithelial cells have a mode of replication similar to that of normal cells. These results demonstrate that the abnormal in vitro replicative state of the cataractous cells has been modified by the addition of normal lens epithelial cell components.

Animals↗

In vitro characterization of response to stimulus (wounding) with regard to ageing in human skin fibroblasts.

Confluent cultured normal human skin fibroblasts from neonatal, adult and aged donors have been stimulated to respond to wounding of the cell sheet. The latent period prior to initial migration of cells from the leading edge of the monolayer is correlated with in vitro population doubling level and in vivo donor age. Time-lapse photography of areas along the edge of the cell sheet reveals a specific pattern of migration by which the cells reestablish a confluent monolayer.

Aging↗

Replicative potentials of various fusion products between WI-38 and SV40 transformed WI-38 cells and their components.

Hybrid cells derived from whole-cell fusions of replicating phase-II normal fibroblast cells (WI-38s) with SV40 transformed WI-38 fibroblast cells (CL-1s) demonstrated that the majority of the hybrid experimental cells still maintained a finite life-span. Approximately 2% demonstrated sustained and possibly indefinite replication. Experimental binucleate cells and subsequent hybrid synkaryons were also formed by fusing CL-1 karyoplasts into phase-II WI-38 replicating normal fibroblasts. In addition, viable cells were constructed from WI-38 fibroblast cytoplasts with CL-1 karyoplasts. Sustained replication was not observed in these crosses.

Cell Division↗