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Biomedical subjects

Kenneth L Watkin

Publications and source records attributed to Kenneth L Watkin.

4 recordsLinked to original sources

Investigations into the physicochemical properties of dextran small particulate gadolinium oxide nanoparticles.

RATIONALE AND OBJECTIVES: Relatively few studies involving the physicochemical properties of crystalline, nanometer-sized particulate gadolinium complexes have been reported. This is in part because of the challenges associated with making nanoparticulate gadolinium suspensions that are stable in aqueous solution. Small particulate gadolinium oxide (SPGO) and SPGO embedded in albumin microspheres (gadolinium oxide albumin microspheres, GOAM), have been used experimentally as prototype contrast agents for multimodality imaging. MATERIALS AND METHODS: In the present study, an initial attempt was made to better solubilize SPGO, prevent particle aggregation, and investigate the physicochemical properties of dextran SPGO relevant to its use as a high-field magnetic resonance contrast agent in aqueous solution. RESULTS: Dextran SPGO demonstrates regular crystalline lattices and has a gadolinium oxide electron diffraction pattern consistent with that of published X-ray powder diffraction (XPD) patterns. The subtraction XPD pattern of dextran SPGO shows diffraction angles and intensities similar, but not identical, to that of published Gd2O3 diffraction patterns. High r2/r1 ratios and magnetic susceptibility studies indicate dextran SPGO can be classified as a superparamagnetic compound. Enhanced relaxivity is observed at high magnetic field strength; largely because of solubilization of SPGO via the surface adherent carbohydrate. Perhaps also contributing to the observed relaxivity enhancement is the ideal lattice structure of the central gadolinium oxide crystal and the effects of sonochemical preparation on nanoparticle physicochemical properties. CONCLUSIONS: It is anticipated that these studies will help provide a basis for the development of novel nanoparticulate contrast agent platforms capable of improving T1 and T2/T2* contrast for high-field magnetic resonance imaging and molecular imaging.

Contrast Media↗

Small particulate gadolinium oxide and gadolinium oxide albumin microspheres as multimodal contrast and therapeutic agents.

RATIONALE AND OBJECTIVE: To prepare and characterize new particulate contrast media, small particulate gadolinium oxide (SPGO) and gadolinium oxide albumin microspheres (GOAM), as prototype multimodal imaging and therapeutic agents. METHODS: SPGO was purchased from Alfa Aesar Inc. (Ward Hill, MA). GOAM were synthesized via ultrasonic irradiation using SPGO and 5% bovine serum albumin in aqueous solution. SPGO and GOAM were characterized by size, concentration, structure, and gadolinium content. Their relaxivity at high magnetic field strength and x-ray attenuating abilities were evaluated in 0.4% agar gel at room temperature. RESULTS: SPGO were confirmed to be 20-40 nm in diameter. GOAM have an average size of 2 to 5 microm and show a relatively homogeneous distribution of SPGO within the albumin microspheres. T1 and T2 relaxivity of GOAM was 6.7 seconds(-1) mmol/L(-1) and 38.5 seconds(-1) mmol/L(-1), respectively, while that of SPGO was 0.2 seconds(-1) mmol/L(-1) and 6.8 seconds(-1) mmol/L(-1), respectively. At 0, 0.004, 0.16, 4.0, and 16.0 mmol/L SPGO, x-ray attenuation values were measured at 2.11, 3.48, 7.06, 39.83, and 187.33 Hounsfield units, respectively. CONCLUSIONS: Use of SPGO and SPGO encapsulated in non-heat-hardened albumin microspheres (GOAM) represents a new approach. SPGO and GOAM have suitable physicochemical properties to warrant further biophysical and animal studies and reevaluation of toxicity limitations.

Animals↗

Muscle, adipose, and connective tissue variations in intrinsic musculature of the adult human tongue.

The purpose of this investigation was to identify the composition and organization of lingual tissues underlying the histostructural and biomechanical functions of the adult human tongue. The small-scale structures of three intrinsic muscle regions, their principal cells, structural complexities, and differences in underlying tissue composition were compared to other skeletal muscle systems and the results discussed in relation to lingual morphology. Analysis of pixel color distributions determined the percent area concentration of each stained tissue component. Results indicated that muscle content increased from anterior to posterior (p <.0001). Greater adipose (p =.005) and connective tissue (p <.002) concentrations occurred in anterior regions. Dense collagen sheaths and elastic fibers found anteriorly occurred with less magnitude in medial and posterior sites. The unique elastin, collagen, and adipose connective tissue distributions found in intrinsic sampling sites are discussed in terms of understanding lingual biomechanics in both normal and pathologic states.

Adipocytes↗