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1.
Int J Womens Dermatol ; 7(2): 184-186, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33937488

ABSTRACT

BACKGROUND: Minority populations are increasingly diagnosed with skin cancer and often in later stages with more aggressive subtypes. OBJECTIVE: We sought to pilot a study to evaluate the effectiveness of providing a skin cancer screening and education module to address potential barriers to dermatologic care for an underserved population in New Haven, Connecticut. METHODS: At a free clinic, voluntary adults (n = 24) waiting for a skin cancer screening were recruited and consented to participate. Participants completed a 16-question survey prior to the total body-skin examination and the educational module, as well as a survey after the examination. RESULTS: Most participants were uninsured (79%) and Hispanic (71%). Pre- and postintervention surveys indicated significant increases in knowledge, risk awareness, and confidence for self-screening. CONCLUSION: This study establishes an effective public health education intervention to promote the prevention of skin cancer. A multicenter study with a larger sample size and longer follow-up period to assess knowledge retention could further address limitations in this initial pilot study.

2.
Proc Natl Acad Sci U S A ; 118(7)2021 02 16.
Article in English | MEDLINE | ID: mdl-33526595

ABSTRACT

Keratinocyte-derived carcinomas, including squamous cell carcinoma (SCC), comprise the most common malignancies. Surgical excision is the therapeutic standard but is not always clinically feasible, and currently available alternatives are limited to superficial tumors. To address the need for a nonsurgical treatment for nodular skin cancers like SCC, we developed a bioadhesive nanoparticle (BNP) drug delivery system composed of biodegradable polymer, poly(lactic acid)-hyperbranched polyglycerol (PLA-HPG), encapsulating camptothecin (CPT). Nanoparticles (NPs) of PLA-HPG are nonadhesive NPs (NNPs), which are stealthy in their native state, but we have previously shown that conversion of the vicinal diols of HPG to aldehydes conferred NPs the ability to form strong covalent bonds with amine-rich surfaces. Herein, we show that these BNPs have significantly enhanced binding to SCC tumor cell surfaces and matrix proteins, thereby significantly enhancing the therapeutic efficacy of intratumoral drug delivery. Tumor injection of BNP-CPT resulted in tumor retention of CPT at ∼50% at 10 d postinjection, while CPT was undetectable in NNP-CPT or free (intralipid) CPT-injected tumors at that time. BNP-CPT also significantly reduced tumor burden, with a portion (∼20%) of BNP-CPT-treated established tumors showing histologic cure. Larger, more fully established PDV SCC tumors treated with a combination of BNP-CPT and immunostimulating CpG oligodeoxynucleotides exhibited enhanced survival relative to controls, revealing the potential for BNP delivery to be used along with local tumor immunotherapy. Taken together, these results indicate that percutaneous delivery of a chemotherapeutic agent via BNPs, with or without adjuvant immunostimulation, represents a viable, nonsurgical alternative for treating cutaneous malignancy.


Subject(s)
Carcinoma, Squamous Cell/drug therapy , Nanoparticles/chemistry , Skin Neoplasms/drug therapy , Adhesives/chemistry , Animals , Antineoplastic Agents, Phytogenic/administration & dosage , Antineoplastic Agents, Phytogenic/therapeutic use , Camptothecin/administration & dosage , Camptothecin/therapeutic use , Cell Line, Tumor , Glycerol/chemistry , Mice , Mice, Inbred C57BL , Polyesters/chemistry , Polymers/chemistry
4.
Evodevo ; 4(1): 20, 2013 Jul 04.
Article in English | MEDLINE | ID: mdl-23826799

ABSTRACT

BACKGROUND: A complex life cycle, such as complete metamorphosis, is a key innovation that can promote diversification of species. The evolution of a morphologically distinct larval stage is thought to have enabled insects to occupy broader ecological niches and become the most diverse metazoan taxon, yet the extent to which larval and adult morphologies can evolve independently remains unknown. Perturbation of larval limb regeneration allows us to generate larval legs and antennae with altered limb morphologies, which may be used to explore the developmental continuity that might exist between larval and adult appendages. In this study, we determined the roles of several appendage patterning transcription factors, abrupt (ab), dachshund (dac), Distal-less (Dll), and spineless (ss), in the red flour beetle, Tribolium castaneum, during larval appendage regeneration. The functions of these genes in regenerating and non-regenerating limbs were compared using RNA interference. RESULTS: During limb regeneration, dac and ss were necessary to re-pattern the same larval structures as those patterned during embryogenesis. Removal of these two genes led to larval appendage patterning defects that were carried over to the adult legs. Surprisingly, even though maternal knockdown of ab had minimal effects on limb allocation and patterning in the embryo, it was necessary for blastema growth, an earlier phase of regeneration. Finally, knockdown of Dll prevented the blastema-like bumps from re-differentiating into appendages. CONCLUSIONS: Our results suggest that, similar to vertebrates, the re-patterning phase of Tribolium larval limb regeneration relies on the same genes that are used during embryonic limb patterning. Thus, the re-patterning phase of regeneration is likely to be regulated by taxon-specific patterning mechanisms. Furthermore, Ab and Dll appear to play important roles during blastema proliferation and re-differentiation, respectively. Finally, our results show that continuity exists between larval and adult limb patterning, and that larval and adult leg morphologies may be developmentally coupled. Thus, the evolution of imaginal discs may have been a key step towards completely removing any developmental constraints that existed between larval and adult phenotypes.

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