1.Use of regenerative tissue matrix as an oral layer for the closure of recalcitrant anterior palatal fistulae: a pilot study.
Sunil RICHARDSON ; James S HOYT ; Rohit K KHOSLA ; Rakshit Vijay Sinai KHANDEPARKER ; Vihang Y SUKHADIA ; Nisheet AGNI
Journal of the Korean Association of Oral and Maxillofacial Surgeons 2016;42(2):77-83
OBJECTIVES: To evaluate the effectiveness of regenerative tissue matrix (Alloderm) as an oral layer for difficult anterior palatal fistula closure. MATERIALS AND METHODS: The authors have tested the feasibility of a novel surgical technique of adding a regenerative tissue matrix (Alloderm) as an oral layer for closure of recalcitrant large anterior palatal fistulae and report the outcome of the first 12 patients in this pilot study. Patients with recurrent large fistula who otherwise would require either a local pedicled flap, free flap, or an obturator were treated with this technique and followed up for at least 6 months to monitor the progress of healing. RESULTS: Of the 12 patients, 8 patients (66.7%) had complete closure of the fistula, and 2 patients (16.7%) showed reduction in size of the fistula to the extent that symptoms were eliminated, for an overall success rate of 83.3% (10/12 patients). Premature graft loss and recurrence of the fistula were noted in 2 patients (16.7%). CONCLUSION: Alloderm provided an adequate barrier allowing healing to occur unimpeded and allowed closure of the palatal fistula. In our experience, this new technique using regenerative tissue matrix as an adjunct to the oral layer in large anterior palatal fistula has an advantage compared to other more invasive complex procedures and has been shown to provide satisfactory results.
Cleft Palate
;
Collagen
;
Fistula*
;
Free Tissue Flaps
;
Humans
;
Pilot Projects*
;
Recurrence
;
Surgical Flaps
;
Transplants
2.The treatment of primary and metastatic renal cell carcinoma (RCC) with image-guided stereotactic body radiation therapy (SBRT)
BS Teh ; C Bloch ; M Galli-Guevara ; L Doh ; S Richardson ; S Chiang ; P Yeh ; M Gonzalez ; W Lunn ; R Marco ; J Jac ; AC Paulino ; HH Lu ; EB Butler ; RJ Amato
Biomedical Imaging and Intervention Journal 2007;3(1):1-9
Purpose: Brain metastases from renal cell carcinoma (RCC) have been successfully treated with stereotactic
radiosurgery (SRS). Metastases to extra-cranial sites may be treated with similar success using stereotactic body
radiation therapy (SBRT), where image-guidance allows for the delivery of precise high-dose radiation in a few fractions.
This paper reports the authors’ initial experience with image-guided SBRT in treating primary and metastatic RCC.
Materials and methods: The image-guided Brainlab Novalis stereotactic system was used. Fourteen patients with
23 extra-cranial metastatic RCC lesions (orbits, head and neck, lung, mediastinum, sternum, clavicle, scapula, humerus,
rib, spine and abdominal wall) and two patients with biopsy-proven primary RCC (not surgical candidates) were treated
with SBRT (24-40 Gy in 3-6 fractions over 1-2 weeks). All patients were immobilised in body cast or head and neck
mask. Image-guidance was used for all fractions. PET/CT images were fused with simulation CT images to assist in
target delineation and dose determination. SMART (simultaneous modulated accelerated radiation therapy) boost
approach was adopted. 4D-CT was utilised to assess tumour/organ motion and assist in determining planning target
volume margins.
Results: Median follow-up was nine months. Thirteen patients (93%) who received SBRT to extra-cranial
metastases achieved symptomatic relief. Two patients had local progression, yielding a local control rate of 87%. In the two patients with primary RCC, tumour size remained unchanged but their pain improved, and their renal function was
unchanged post SBRT. There were no significant treatment-related side effects.
Conclusion: Image-guided SBRT provides excellent symptom palliation and local control without any significant
toxicity. SBRT may represent a novel, non-invasive, nephron-sparing option for the treatment of primary RCC as well as extra-cranial metastatic RCC.
3.Changes in body weight, blood pressure and selected metabolic biomarkers with an energy-restricted diet including twice daily sweet snacks and once daily sugar-free beverage.
Sharon M NICKOLS-RICHARDSON ; Kathryn E PIEHOWSKI ; Catherine J METZGAR ; Debra L MILLER ; Amy G PRESTON
Nutrition Research and Practice 2014;8(6):695-704
BACKGROUND/OBJECTIVES: The type of sweet snack incorporated into an energy-restricted diet (ERD) may produce differential effects on metabolic improvements associated with body weight (BW) loss. This study compared effects of incorporating either twice daily energy-controlled dark chocolate snacks plus once daily sugar-free cocoa beverage (DC) to non-chocolate snacks plus sugar-free non-cocoa beverage (NC) into an ERD on BW loss and metabolic outcomes. MATERIALS/METHODS: In an 18-week randomized comparative trial, 60 overweight/obese premenopausal women were assigned to DC (n = 30) or NC group (n = 30). Dietary intake was measured at baseline and week 18, and BW, anthropometrics, blood pressure (BP) and serum glucose, insulin and lipid concentrations were measured at baseline, and weeks 6, 12 and 18. Data were analyzed using repeated measures ANOVA. RESULTS: Using intention-to-treat analysis, women in DC and NC groups reduced energy intake (both P < 0.001) and lost 4.4 +/- 0.6 kg and 5.0 +/- 0.9 kg (both P < 0.001), respectively. Both groups lowered systolic and diastolic BP [DC = 2.7 (P < 0.05), 2.7 (P < 0.01); NC = 3.4 (P < 0.01), 4.2 (P < 0.01) mmHg, respectively]. Glucose and insulin concentrations decreased by 0.72 mmol/L (P < 0.001) and 13.20 pmol/L (P < 0.01) in DC group and by 0.83 mmol/L (P < 0.001) and 13.20 pmol/L (P < 0.01), respectively, in NC group. Total cholesterol increased in NC group (P < 0.05), with no significant lipid changes in DC group. There were no significant differences in biomarker outcomes between groups. CONCLUSIONS: Overweight/obese premenopausal women following an 18-week ERD that included either DC or NC sweet snack and sugar-free beverage lost equivalent amounts of BW and improved BP measurements and glucose and insulin concentrations.
Beverages*
;
Biomarkers*
;
Blood Glucose
;
Blood Pressure*
;
Body Weight*
;
Cacao
;
Cholesterol
;
Diet*
;
Energy Intake
;
Female
;
Glucose
;
Humans
;
Insulin
;
Obesity
;
Snacks*
4.A post-classical theory of enamel biomineralization… and why we need one.
James P SIMMER ; Amelia S RICHARDSON ; Yuan-Yuan HU ; Charles E SMITH ; Jan Ching-Chun HU
International Journal of Oral Science 2012;4(3):129-134
Enamel crystals are unique in shape, orientation and organization. They are hundreds of thousands times longer than they are wide, run parallel to each other, are oriented with respect to the ameloblast membrane at the mineralization front and are organized into rod or interrod enamel. The classical theory of amelogenesis postulates that extracellular matrix proteins shape crystallites by specifically inhibiting ion deposition on the crystal sides, orient them by binding multiple crystallites and establish higher levels of crystal organization. Elements of the classical theory are supported in principle by in vitro studies; however, the classical theory does not explain how enamel forms in vivo. In this review, we describe how amelogenesis is highly integrated with ameloblast cell activities and how the shape, orientation and organization of enamel mineral ribbons are established by a mineralization front apparatus along the secretory surface of the ameloblast cell membrane.
Ameloblasts
;
chemistry
;
cytology
;
Amelogenesis
;
physiology
;
Basement Membrane
;
chemistry
;
Crystallization
;
Dental Enamel
;
chemistry
;
Dental Enamel Proteins
;
secretion
;
Humans
;
Tooth Calcification
5.Hysteresis in human HCN4 channels: a crucial feature potentially affecting sinoatrial node pacemaking.
Yong-Fu XIAO ; Natalie CHANDLER ; Halina DOBRZYNSKI ; Eric S RICHARDSON ; Erica M TENBROEK ; Joshua J WILHELM ; Vinod SHARMA ; Anthony VARGHESE ; Mark R BOYETT ; Paul A IAIZZO ; Daniel C SIGG
Acta Physiologica Sinica 2010;62(1):1-13
The hyperpolarization-activated cyclic nucleotide-gated (HCN) channels modulate and regulate cardiac rhythm and rate. It has been suggested that, unlike the HCN1 and HCN2 channels, the slower HCN4 channel may not exhibit voltage-dependent hysteresis. We studied the electrophysiological properties of human HCN4 (hHCN4) channels and its modulation by cAMP to determine whether hHCN4 exhibits hysteresis, by using single-cell patch-clamp in HEK293 cells stably transfected with hHCN4. Quantitative real-time RT-PCR was also used to determine levels of expression of HCNs in human cardiac tissue. Voltage-clamp analysis revealed that hHCN4 current (I(h)) activation shifted in the depolarizing direction with more hyperpolarized holding potentials. Triangular ramp and action potential clamp protocols also revealed hHCN4 hysteresis. cAMP enhanced I(h) and shifted activation in the depolarizing direction, thus modifying the intrinsic hHCN4 hysteresis behavior. Quantitative PCR analysis of human sinoatrial node (SAN) tissue showed that HCN4 accounts for 75% of the HCNs in human SAN while HCN1 (21%), HCN2 (3%), and HCN3 (0.7%) constitute the remainder. Our data suggest that HCN4 is the predominant HCN subtype in the human SAN and that I(h) exhibits voltage-dependent hysteresis behavior that can be modified by cAMP. Therefore, hHCN4 hysteresis potentially plays a crucial role in human SAN pacemaking activity.
Biological Clocks
;
physiology
;
Cyclic AMP
;
physiology
;
Cyclic Nucleotide-Gated Cation Channels
;
physiology
;
Electrophysiological Phenomena
;
HEK293 Cells
;
Humans
;
Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels
;
Muscle Proteins
;
physiology
;
Patch-Clamp Techniques
;
Potassium Channels
;
Sinoatrial Node
;
physiology
;
Transfection
6.The upregulated intestinal folate transporters direct the uptake of ligand-modified nanoparticles for enhanced oral insulin delivery.
Jingyi LI ; Yaqi ZHANG ; Miaorong YU ; Aohua WANG ; Yu QIU ; Weiwei FAN ; Lars HOVGAARD ; Mingshi YANG ; Yiming LI ; Rui WANG ; Xiuying LI ; Yong GAN
Acta Pharmaceutica Sinica B 2022;12(3):1460-1472
Transporters are traditionally considered to transport small molecules rather than large-sized nanoparticles due to their small pores. In this study, we demonstrate that the upregulated intestinal transporter (PCFT), which reaches a maximum of 12.3-fold expression in the intestinal epithelial cells of diabetic rats, mediates the uptake of the folic acid-grafted nanoparticles (FNP). Specifically, the upregulated PCFT could exert its function to mediate the endocytosis of FNP and efficiently stimulate the traverse of FNP across enterocytes by the lysosome-evading pathway, Golgi-targeting pathway and basolateral exocytosis, featuring a high oral insulin bioavailability of 14.4% in the diabetic rats. Conversely, in cells with relatively low PCFT expression, the positive surface charge contributes to the cellular uptake of FNP, and FNP are mainly degraded in the lysosomes. Overall, we emphasize that the upregulated intestinal transporters could direct the uptake of ligand-modified nanoparticles by mediating the endocytosis and intracellular trafficking of ligand-modified nanoparticles via the transporter-mediated pathway. This study may also theoretically provide insightful guidelines for the rational design of transporter-targeted nanoparticles to achieve efficient drug delivery in diverse diseases.