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Biomedical subjects

William R Freeman

Publications and source records attributed to William R Freeman.

10 recordsLinked to original sources

An orthotopic model for human uveal melanoma in SCID mice.

The microcirculation of primary uveal melanomas, their precursors, and their metastases is distinctive. Medium-sized and even large primary uveal melanomas typically lack significant zones of necrosis, suggesting that either these tumors are relatively well perfused or they are capable of growth in a severely blood-deprived microenvironment. In addition to normal choroidal vessels that are incorporated into nevi and most primary uveal melanomas, aggressive primary and metastatic uveal melanomas tend to contain patterns of extracellular matrix that surround spheroidal or cylindrical packets of tumor cells. Some components of this branching, looping, and interconnected system of matrix may be perfused. It is now known that the generation of this patterning is a characteristic of genetically dysregulated melanoma cells (nonaggressive tumor cells do not form these patterns and melanomas lacking branching, looping, or interconnected matrix patterns tend to follow a relatively indolent course). We developed an orthotopic model of an aggressive human uveal melanoma by injecting suspensions of the primary human choroidal melanoma cell line (OCM1) into the subretinal space of one eye of 20 SCID mice. All mice were examined daily for tumor growth and tumors developed in every eye within 3 weeks of injection. The tumors were characterized by extraocular extension and the development of looping matrix patterns characteristic of those seen in aggressive human uveal melanoma. As in human uveal melanomas, these patterns were perfused by blood in areas. The orthotopic injection of human uveal melanoma cells into the SCID mouse eye generates a model reproducing the matrix-associated microcirculatory patterns of aggressive primary human uveal melanomas. This model can be used to explore the molecular pathogenesis and modulation of this novel circulation in vivo, to facilitate our understanding of the blood flow to these tumors providing insight into perfusion and drug delivery, to enable testing of pharmacologic modulation of pattern formation and intratumoral blood flow, and to refine noninvasive methods such as confocal scanning laser ophthalmoscopy to detect the presence of these patterns by which ophthalmologists might assess the biological behavior of tumors as noninvasive substitute for biopsy.

Animals↗

Effects of preoperative and postoperative epiretinal membranes on macular hole closure and visual restoration.

OBJECTIVE: To investigate the effects of epiretinal membranes (ERMs) on macular hole surgical results and postoperative visual restoration. DESIGN: A subgroup analysis arising from a multicenter, controlled, randomized clinical trial. PARTICIPANTS: Ninety-one phakic eyes with an idiopathic macular hole that underwent standard vitrectomy for macular hole repair with or without ERM peeling. METHODS: Preoperative, intraoperative, and postoperative data of macular status, ERM status, and visual function status were recorded, and their relationships were analyzed. MAIN OUTCOME MEASURES: Visual acuity and clinical features of macular hole and ERM on baseline examination and scheduled follow-ups. RESULTS: ERM peeling was associated with greater anatomic hole closure success rates (67% of the ERM peeled vs. 35% of nonpeeled, P = 0.03) but not associated with visual improvement in eyes with anatomic hole closure (2.9 lines improvement vs. 3.6 lines improvement, P > 0.5). Macular hole reopening was associated with excessive ERM growth (P = 0.005). Postoperative ERMs were more common in the eyes that underwent cataract surgery after vitrectomy (77% in aphakic and 36% in phakic eyes, P = 0.02). Macular hole edge approximation or hole appearance after initial vitrectomy for hole repair was stable over the average 18-month period in 89% of the eyes; only approximately 10% of the eyes underwent changes in their hole appearance. The hole edge approximation or hole appearance was associated with preoperative hole size and postoperative visual acuity. Preoperative hole size was found to be the major predictor of postoperative visual acuity (P < 0.005). CONCLUSIONS: Surgical ERM peeling increases the anatomic hole closure rate. The presence of postoperative ERMs was not associated with postoperative visual acuity; however, excessive ERM growth contributed to hole reopening. Preoperative hole size was the most sensitive predictor for postoperative visual acuity. Surgical intervention during the early stages of macular hole before ERM formation is strongly recommended.

Epiretinal Membrane↗

Efficacy of Prinomastat) (AG3340), a matrix metalloprotease inhibitor, in treatment of retinal neovascularization.

PURPOSE: To study the activity of the novel anti-angiogenic compound AG3340 (Prinomastat), a selective inhibitor of matrix metalloproteases, in an animal model of retinal neovascularization. METHODS: C57BL/6J mice were used to produce oxygen-induced retinal neovascularization. Mice were exposed to room air from birth (P0) to postnatal 7 days (P7) and to hyperoxia (75% oxygen) for the next 5 days. On postnatal day 12 (P12) the animals were returned to the room air and were treated until postnatal day 16 (P16) with intraperitoneal injections of AG 3340. Four groups were assigned: no drug, 1.6 mg/kg/day, 16 mg/kg/day and 48 mg/kg/day. On day 17 (P17) the animals were sacrificed and the eyes prepared for histological sectioning. Preretinal neovascularization was assessed by counting neovascular nuclei of endothelial cells in the preretinal side of the internal limiting membrane (ILM). The use of animals for this study complies with the ARVO guidelines for animal research. RESULTS: AG3340 administered systemically by intraperitoneal injections inhibited hypoxia-induced retinal neovascularization. The inhibition was dose dependent with highly significant decrease of neovascular nuclei counts among eyes treated with 0, 1.6 mg/kg, 16 mg/kg and 48 mg/kg doses. There appears to be a saturation effect of inhibition at the level of 70% at the two highest doses of 16 mg/kg and 48 mg/kg. CONCLUSIONS: AG3340 administered systemically significantly inhibits oxygen-induced retinal neovascularization in an animal model and appears to be a promising candidate for the treatment of neovascular retinal diseases.

Animals↗

The effect of prinomastat (AG3340), a synthetic inhibitor of matrix metalloproteinases, on uveal melanoma rabbit model.

PURPOSE: We studied the effects of intravitreally administered prinomastat on the take rate and growth of uveal melanoma after xenograft implantation in rabbit uveal melanoma model. METHODS: Uveal melanoma xenograft was implanted to suprachoroidal space in each eye of 24 pigmented rabbits which were immunosuppressed with cyclosporine. One week after surgery, the eyes were randomized to receive prinomastat or the vehicle of the prinomastat intravitreally every week for 4 weeks. The take rate of the xenograft, tumor height, apoptosis, and necrosis in the eyes which developed tumors from the treatment and control groups were compared. RESULTS: A tumor mass was identified in 8 of 24 (33%) prinomastat-treated eyes and 20 of 24 (83%) of the vehicle-treated eyes. Echographic measurements revealed a mean tumor height of 2.2 mm in the prinomastat-treated group and 3.8 mm in the control group in those eyes with take of tumor (p < 0.001). Stereomicroscopic measurements showed a mean tumor height of 1.9 mm in the treatment group and 3.9 mm in the control group (p < 0.001). The mean number of apoptotic nuclei detected per mm(2) of the histologic section in the non-necrotic tumor was 8.12 in the prinomastat-treated group and 0.57 in the control group (p < 0.001). Evaluation of the digital images in microscopic sections of the tumors on histologic slides revealed 29.6% necrosis in prinomastat-treated eyes as compared to 10.9% in vehicle-treated eyes (p = 0.003). CONCLUSIONS: These results suggest that prinomastat treatment significantly reduces the take rate and the growth rate of xenograft in uveal melanoma rabbit model.

Animals↗

Human immunodeficiency virus type 2 (HIV-2) vector-mediated in vivo gene transfer into adult rabbit retina.

PURPOSE: To evaluate the potential usefulness of HIV-2 viral vector in in vivo retinal gene therapy. METHODS: An HIV-2 virus based viral vector was constructed and administered subretinally and intravitreally into rabbit eyes. After viral vector administration, the eyes were closely monitored for any adverse effects by slit lamp, indirect ophthalmoscopy, and fundus photography. Eyes were enucleated at specified times after injection, and reporter gene expression was identified within cell types and graded by the pattern and distribution of staining cells using fluorescent microscopy. RESULTS: The HIV-2 viral vector demonstrated efficient gene transfer into many types of retinal cells without apparent cytotoxicity. Notably with subretinal injection, the HIV-2 vector resulted in higher efficiency of transduction of photoreceptor cells than of the other cell types (p < 0.05). With the intravitreal administration of HIV-2 viral vectors, cellular transduction and transgene expression in the ganglion cell layer was the dominant finding. CONCLUSIONS: HIV-2 viral vector may be a useful gene delivery vehicle for retinal photoreceptor cells and ganglion cells. It deserves further exploration to investigate its potential merit in long term gene therapy protocols and in other animal species.

Animals↗

Paradoxical activity of CMV retinitis in patients receiving highly active antiretroviral therapy.

PURPOSE: To report two types of atypical behaviors of cytomegalovirus (CMV) retinitis in the highly active antiretroviral therapy (HAART) era, including active CMV retinitis in the presence of persistently high CD4 cell counts during HAART and CMV retinitis that has not reactivated despite persistently low CD4 cell counts. METHODS: Prospective, longitudinal, observational study of a cohort of 116 patients with acquired immunodeficiency syndrome who had a history of CMV retinitis during the HAART era. RESULTS: Sixty (52%) of the 116 patients with acquired immunodeficiency syndrome and CMV retinitis were HAART responders. Subsequently, HAART failed for 9 of the 60 patients with low CD4 cell counts. Of these 9 patients, 5 developed reactivation of CMV retinitis, and 4 remained free of CMV retinitis despite CD4 cell counts of <50/microL and lack of anti-CMV therapy. Paradoxically, there was a patient with a documented median CD4 cell count of 204/microL for 19 months who had newly diagnosed active CMV retinitis. CONCLUSION: In the HAART era, CMV retinitis may remain quiescent despite extremely low CD4 cell counts, and rarely, CMV retinitis may become active in the setting of persistently high CD4 cell counts in a subset of HAART responders.

AIDS-Related Opportunistic Infections↗

Retinal imaging with a low-cost micromachined membrane deformable mirror.

PURPOSE: To study the retina in normal subjects with a high-resolution imaging system using adaptive optics for wave front aberration correction. METHODS: We used a low-cost 37-element micromachined membrane deformable mirror (MMDM) with a continuous membrane as the reflective surface. A Hartmann-Shack wave front sensor with cooled charge coupled device camera was used to measure the wave front aberration. Zernike polynomials were used to describe the wave front shape. We developed a mirror control system to compensate for wave aberrations. We tested this instrument in normal subjects. RESULTS: We were able to image the retina in monochromatic laser light and document the increase in resolution. While it is hard to estimate the exact size of the smallest structures in the image, we were able to subjectively grade the image quality. The system is able to compensate for higher order aberrations present in the human eye. CONCLUSION: The capabilities of correcting ocular aberrations are limited by the number of adjustable elements in the mirror and the deflection range of the surface. The advantage of the MMDM system is its low cost when compared with other adaptive optics solutions such as piezodriven mirrors and spatial light modulators. This technique may allow for improved resolution for clinical fundus photography.

Adult↗

Treatment or prevention of herpes simplex virus retinitis with intravitreally injectable crystalline 1-O-hexadecylpropanediol-3-phospho-ganciclovir.

PURPOSE: To evaluate an intraocular drug delivery system consisting of the crystalline ammonium salt of 1-O-hexadecylpropanediol-3-phospho-ganciclovir (HDP-P-GCV) as a slow-release form of the drug. METHODS: A dosage of 0.885, 1.57, 2.8, 4.486, or 8.85 micromol of ammonium salt HDP-P-GCV in 0.1 mL was intravitreally injected into rabbit vitreous. The toxicity and safety were evaluated with ophthalmoscopy, electroretinography, and pathology. Drug vitreous levels were determined at various time intervals by means of HPLC. The treatment efficacy and duration of efficacy were tested in a herpes simplex virus (HSV)-1 retinitis rabbit model. RESULTS: Intravitreal injections of the compound revealed clear vitreous of optic axis, a desirable drug depot in the inferior vitreous cavity, and no clinical toxicity, except for variable mild local posterior subcapsular cataract and local retinal toxicity with high doses. HPLC analysis showed free ammonium salt of HDP-P-GCV in the upper vitreous at a level of 0.2 microM 12 weeks after the 2.8-micromol initial intravitreal dose. Drug concentration was still 1.95 microM 20 weeks after the 8.85-micromol initial intravitreal dose. These concentrations (0.2 and 1.95 microM) were 10 and 100 times higher, respectively, than the median inhibitory concentration (IC(50)) of HSV-1 (0.023 microM). Treatment with the highest nontoxic dose (2.8 micromol) and the highest dose (8.85 micromol) showed significant protection from HSV-1 infection (P < 0.05) and provided sustained antiviral effect after a single intravitreal drug injection. CONCLUSIONS: The crystalline ammonium salt of HDP-P-GCV may be a very useful local therapy for herpes family viral retinitis.

Animals↗