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Biomedical subjects

Laura C Alonso

Publications and source records attributed to Laura C Alonso.

3 recordsLinked to original sources

In Vivo Selection Yields AAV-B1 Capsid for Central Nervous System and Muscle Gene Therapy.

Adeno-associated viral (AAV) vectors have shown promise as a platform for gene therapy of neurological disorders. Achieving global gene delivery to the central nervous system (CNS) is key for development of effective therapies for many of these diseases. Here we report the isolation of a novel CNS tropic AAV capsid, AAV-B1, after a single round of in vivo selection from an AAV capsid library. Systemic injection of AAV-B1 vector in adult mice and cat resulted in widespread gene transfer throughout the CNS with transduction of multiple neuronal subpopulations. In addition, AAV-B1 transduces muscle, β-cells, pulmonary alveoli, and retinal vasculature at high efficiency. This vector is more efficient than AAV9 for gene delivery to mouse brain, spinal cord, muscle, pancreas, and lung. Together with reduced sensitivity to neutralization by antibodies in pooled human sera, the broad transduction profile of AAV-B1 represents an important improvement over AAV9 for CNS gene therapy.

Animals↗

Molecular genetic and endocrine mechanisms of hair growth.

The prenatal morphogenesis of hair follicles depends upon a precisely regulated series of molecular genetic processes. Hormones and their receptors play prominent roles in modulating postnatal hair cycling, which recapitulates some aspects of morphogenesis. The responses to androgen are the most obvious of these. The postnatal androgen sensitivity of pilosebaceous units in different skin areas is programmed during prenatal development to permit clinical outcomes such as hirsutism and pattern baldness. Thyroid hormone, glucocorticoids, insulin-like growth factor-I, and prolactin have clinically significant effects on specific aspects of hair growth. The nuclear receptors vitamin D receptor and retinoid X receptor are essential for postnatal hair cycling. Other hormones have less clear effects on hair growth. Advances in research on the interaction of hormone target genes with the biological processes involved in hair morphogenesis and cycling can be expected to improve management of hirsutism and alopecia.

Alopecia↗

Oestrogens and puberty.

Oestrogens induce the development of female reproductive tissues. Endogenous human oestrogens include oestradiol, oestrone and oestriol. Oestrogen signalling in target tissues is dependent on the tissue concentration of oestrogen and the interaction of oestrogen receptors with an array of cell-specific co-regulator proteins. The diverse mechanisms of oestrogen signalling are complex and incompletely understood. In puberty, oestrogen is derived from both gonadal and peripheral sources. Originally, oestrogen was only thought to drive feminization in females; now, oestrogen is known to be important for pubertal development of males as well. Oestrogen is required for normal maturation of the neuroendocrine-gonadal axis and bone in both sexes, and a variety of other tissues are also responsive to oestrogen. Abnormal puberty can be associated with either excessive or inadequate oestrogen production. Girls deficient in oestrogen should receive replacement in physiological doses. Aromatase inhibitors and anti-oestrogens may prove to be useful therapeutic tools in some types of abnormal puberty.

Estradiol Congeners↗